Archive for Product Focus

Global Technology Partners in Focus: ETCO Inc.

 

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ETCO Incorporated has been a Global Technology Partner with WPS for almost four decades. Both companies share something in common, they are both multi generation companies, ETCO in its third and WPS in its second. We have had a long and successful relationship between businesses but it also extends to personal connections built up over the years.  It is only right that we begin our interview series with the relationship that started it all.

I am pleased to introduce John Stiness. John is the Vice President of Sales for ETCO. WPS has asked John to provide an overview of ETCO to our readership.

Terry Curtis and John Stiness (ETCO). Primo XLT with ETCO Closed Back Flag.

Terry Curtis (WPS) and John Stiness (ETCO). 

WPS: John, tell us a little about yourself and your years of service to ETCO.

JS: I started with ETCO 28 years ago as their Inside Sales Manager for the Engineered Products division in Warwick, RI.  In 1994 I was named Vice President of Sales.  Eight years ago I moved to Bradenton, Florida and took over responsibility for all ETCO sales. I been married for 32 years and recently became a grandfather for the first time.

WPS: Describe the scope of products that ETCO supplies.

JS: ETCO provides a wide variety of stamped metal and rubber products typically used in crimping and connecting to wires. These products are often valued added in manufacturing process with insulators, clips, laser welds and other cost saving features.  ETCO also produces and services wire termination equipment.

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WPS: ETCO has multiple campuses to serve its international customers. Can you describe these locations.

JS: ETCO has an international presence with distributors in the UK, Poland, Russia, China and Mexico. This reduces our lead times and lowers transportation costs for our customers.

WPS: Can you outline a specialty of ETCO that defines ETCO

JS: If I had to narrow down the one specific area of specialization that ETCO offers, it would be the in-house capability to produce custom metal stampings and then integrated these seamlessly with our customers manufacturing process by providing unique application equipment.

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WPS: Do you think this helps ETCO In other areas of service to its customers.

JS: This comprehensive, one stop approach allows our customers streamlining of design, manufacturing and automation.

WPS: Today’s business environment requires stringent quality systems to assure customers receive the right part and on time. Can you describe the ETCO culture of quality?

JS: ETCO’s quality is driven by the commitment of the owner to the four absolutes of Quality: Conformance to requirements, prevention, zero defects and measurements.

 WPS: You have been part of the ETCO team for 28 years. That is a significant amount of time with this organization. Is this level of tenure with ETCO unique or is it also part of the company culture?

JS: My long tenure is nothing unique for ETCO. It’s a great place to work

WPS: Customer support from the factory side is very important to ensuring good flow of product and two way communication. ETCO has a group of experienced sales representatives supplying local support to its customers. John tell us how a local connection to the ETCO customer base is important to the overall company goal of serving its customers.

JS: Our manufacturers Reps have an intimate knowledge of their customers’ needs and expectations. ETCO leverages this experience to provide our customers with cradle to grave support.

WPS: Finally, companies who stand still tend to get trampled by those running past them. How is ETCO looking towards the future in product development and research?

JS: ETCO has a dedicated team in Research and Development looking into new products and processes. With innovations in design and manufacturing our customers are assured of having the cutting edge technology and cost saving improvements.

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John, WPS greatly values the relationship we have built up for close to four decades. We are grateful to be part of the ETCO team in serving our customers. Thank you for your time today.

For more information on ETCO Incorporated, please visit www.etco.com. Connect Your Way to WireProcess Specialties for the solutions provider you need to power your wire assembly processes.

Control Laser Applications Focus: Automotive Back lit buttons

It is a standard feature in every automobile today, the back lit button.  Convenient and safe viewing of control switches in low light or darkness. But did you know that Control Laser was the pioneer in this process technology?

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For years, the automotive industry has relied on Control Laser to provide them with laser marking and laser engraving systems for their automotive production.

Our applications expert, Jack Williams, has been instrumental in developing cutting-edge new ways to doing things such as his role in plastic color marking methods and developing the back-lit button technology that is now prevalent in every part of the automotive industry & beyond.

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Connect Your Way with WireProcess Specialties for your assembly solutions.

Processing with Lasers

Laser Processing is a very well established technology that is used in a large range of applications. In fact 2015 is the 50th anniversary of the first industrial laser. Industries such as Medical and Industrial manufacturing facilities use lasers. Wire Processing has well defined processing methods: measure to length, cut and marking of wire, wire stripping, crimping terminals, assembling to a wire harness and electrical testing. A number of other methods are also deployed such as Ultrasonic Splicing and Heat Shrink Tube Processing. The laser as a technology in wire processing supports applications that cannot be done with a traditional wire stripping or marking method. In these cases, contact processing of wire (blades, hot impression onto insulation) runs a risk of damage to the insulation or conductors. This is very critical in mission critical applications such as medical and aerospace. A wire harness or wire lead is a component of a larger assembly which can include enclosures and connection to other electrical devices and electronics such as printed circuit boards. Even these assemblies have application possibilities with lasers. In this posting we will demonstrate some of these applications.

Wire Stripping

Lasers are used in applications such as Teflon coated twisted pair cable, where contact with a blade risks nicking the insulation on the inner conductors or the braided shield.

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Marking and Engraving

A laser can be used to apply a mark to a number of materials including metal and plastic.  By adjusting the focal point of the laser, a mark can be applied to the surface or engrave deep into the surface of the material being marked.

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IC Decapsulation

Lasers can be used in IC Decapsulation to remove layers of material to inspect the chip’s underlying circuits.

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Cutting

Laser cutting is a common application in manufacturing.  A laser can cut materials to length as well as complex assemblies with many cuts or holes as illustrated below.

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Welding

Laser welding is used in a number of applications including jewelry. Lasers provide localized heat with short cycle time to minimize distortion of surrounding materials

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TJ Curtis Technologies Inc and our WireProcess Specialties Division provide solutions to companies who manufacture a large range of products. We are constantly looking for ways to help our customers improve their productivity and reduce processing costs. Connect Your Way today to begin.

Wire Processing Solutions for Communication Cables

Wire Processing Techniques span a number of assembly categories. In this posting we cover some of the processing methods used in assembling a communication cable.

We will focus on a  few cable types that represent the wider variety of communications cable assemblies and share processing methods.

Coaxial Cable

Coax cable generally has several layers including an outer jacket, woven metal shield and dielectric insulation over a center conductor.  Most applications require two or three stage stripping. This wire is normally crimped into a round coaxial connector. Stripping specifications are specified by the connector manufacturer to match the connector. The connectors are loose piece and have a pin that is crimped to the center conductor and the housing is placed over the wire and crimped on. The trend of coaxial cable is consistent with other wire, that is the range is increasing. We are seeing micro coax cables and at the other end large cable such as LMR400 for large telecomm installations such as cell towers.

Wire Cut to Length.

As this wire is typically stripped in two or three stages in an offline process (see Wire Strip), wire is separately cut to length.

Model 31 manual cutter from Carpenter Manufacturing

Model 31 manual cutter from Carpenter Manufacturing

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Wire Strip

As mentioned above, this wire is normally stripped in two of three stages in a fixed strip length that is specified by the connector manufacturer. These multiple stages are processed using a programmable unit which can process multiple strips in sequence. Or separating the two or three processes onto separately adjusted stripping heads. See illustrations below.

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Carpenter Model 74

Schaefer ST730 Coaxial Wire Stripper

Schaefer ST730 Coaxial Wire Stripper

Rittmeyer Beri.Co.Max Coaxial Wire Stripper for large cable.

Rittmeyer Beri.Co.Max Coaxial Wire Stripper for large cable.

Crimp

Crimping coaxial connectors is also a two step process. A terminal is crimped to the center conductor. The connector housing is assembled over the wire and crimped to the insulation. The crimp is normally hex shaped.  Hand or bench equipment for loose piece terminals is used to crimp both the center conductor and connector housing.

Wezag CS30 Hand Crimp Tool

Wezag CS30 Hand Crimp Tool

CS300 Electric Crimper for Loose Piece terminals.

Wezag CS300 Electric Crimper for Loose Piece terminals.

 

Automated processing of coaxial wire is possible for high volume applications.

RJ11 and RJ45 Cables

Cut and Strip

Cut and strip of RJ11 or RJ45 is possible. This wire is either flat (as pictured below) or round. Flat or radius blades are required to provide the desired nick and scrape free results.

RJ11 Parallel Wire Stripped on Carpenter Compu-Strip 97A.

RJ11 Parallel Wire Stripped on Carpenter Compu-Strip 97A.

Strip

Inner conductors and the outer jacket (round cable) can also be stripped stripped using rotary or blade style of wire strippers as illustrated below. Results are application dependent as some wire is irregular in shape.

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Carpenter Model 72C

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Carpenter Model 78

Crimp

Modular plugs are loose piece and require a linear action crimp head to crimp (Insulation displacement) modular plugs. The crimp heads are designed to process all leads at one time. Crimping can be done on the CS300 as pictured above or a pneumatic powered crimper like the SSC below.

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Multi-Conductor Cables

Cut and Strip

A cut and strip machine as described for the RJ11/45 wire above can also be used to remove the outer jacket of a multi-conductor wire.  Radius blades may be required for some applications. For larger volume applications, wire processing machines are available where the outer jacket and inner conductors are processed at the same time.

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Strip

In addition to the outer jacket stripping using a bench top rotary as described above, larger cross sections and longer strip lengths may require a heavy duty wire stripper as illustrated below.

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Crimp

Crimping can be loose piece using the CS300 or SSC as described above or reel form terminals on strip.

Side Feed applicator from Applitek.

Side Feed applicator from Applitek.

Summary

As shown by the above applications, there are cross over techniques to these three examples. And by extension, other similar communication wire types. Finding the proper mix of processing methods is important to optimize a specific customer requirement. And that requires a partner that has the broad application knowledge and connections to produce the desired result.  WireProcess Specialties is that partner. We have the resources and partnerships you need. Connect Your Way to WireProcess Specialties.

Methods of Marking Wire and Cable

Marking wire with an identifying number or character has been a necessary part of wire assembly for as long as anyone can recall. Most electrical standards require a mark identifying a specific electrical circuit for tracability in assembly and service

Methods of marking a wire continue to evolve as processing technology improves. New methods are being introduced to compliment existing processing methods which continue to be effective. The result is a wide range of processing options to meet virtually all applications and production volumes.

We will outline some of the more common processing methods and how they are applied in a production environment.

Labels

Label mark

Adhesive labels are an effective method of applying an alpha numeric mark to wire. Processing methods include manual from a box or card, labeling guns and semi automatic systems.  Label adhesion can be affected by the type of wire insulation and quality of the label itself.  Permanence can be affected by the above plus the operating environment of the wire. The operating environment can include temperature, humidity and the presence of chemicals or contaminants). Cost of application equipment can range from zero (manual) to high (semi-automated, integrated with a cut only or wire cut and strip machine).

Hot Stamp

Stamprite Machine Hot Stamp Marker

Hot stamp marking is a wire marking process that dates back to World War II.  Hot Stamp marking uses heat type and thermal marking foil to place a mark to the surface of a wire.  The wire is fed through a guide or anvil and the guide assembly lifts up to contact the heated type surface with the foil sandwiched between the type and the wire.  There are two types of hot stamp markers, separate marking type and wheels.  The separate marking type are arranged in the desired number sequence and mounted into a type holder.  In the case of a wheel type of marker, each wheel represents one character and includes the characters generally used (0-9, A-Z, blank and special marks: right and left arrow and hyphen).   Wheel type are quicker to change over and lend themselves better to manual or automatic processing. Actuation is by lever or foot pedal for manual (offline) processing and integrated into a semi or fully automated solution with actuation controlled by the automation system.

Hot stamp marking is less prone to environmental conditions that can affect the adhesion of a wire label.  Some industries specify other marking methods as the mark is imprinted to the surface of the wire using heat and there are concerns about potential damage to the insulation.  But the cycle time is limited and the heat applied is localized so this processing method is acceptable for the majority of applications.

End marking (same or different number on opposing ends of the wire) and continuous (along the length of the wire at a fixed distance) are normal processing types.  Continuous marking does slow down a semi or fully automated wire processing machine as the wire feed must stop during the stamping process.  The number of marks and distance between marks affects processing speed.

The type of thermal marking foil used, the temperature of the type and impression time are critical factors for a hot stamp mark.  The insulation type and wall thickness normally determine the foil, temperature and cycle time. Marking foil normally comes in rolls and is white or black.

Ink Jet

Ink Jet marking is a newer technology relative to hot stamp.  Ink droplets are sprayed onto the wire surface in a pattern to form a character or character string.  Ink jet marking systems are fully programmable and offer more character options than other methods.  These markers can also interface into the operating system of semi or fully automated processing systems. The interface provides programming and processing communication to the marker.  End or continuous marking is possible but It is important to note that without a programming interface between the processing machine and marker, only continuous marking can be processed.  Line speed is quicker than other processes as the process does stop to apply a mark to the wire.

There are a wide variety of pigmented and non-pigmeted inks available to suit a wide range of insulation types.  In addition, chemicals to clean the ink jet head are required to prevent dried ink from clogging the jets. Special handling of ink and chemicals is required and maintenance personnel are normally trained how to properly apply and store chemicals. Ink jet markers are typically dedicated to one type or ink due to the cleaning process required to transition from one ink type to another.

Permanence to an insulation can be a factor as the ink normally does not penetrate below the insulation surface.  The mark can rub off in some environments.  Using pre or post treatment methods such as plasma or UV curing can improve the adhesion of the ink to the wire.

Heat Shrink

Marking to heat shrink and applying the marked heat shrink to a wire is another method.  The heat shrink tube is marked and cut to length on a dedicated machine.  The marked heat shrink tube is applied to the wire manually using the Judco Focus Lite or heat gun.  The mark to the heat shrink is applied using methods such as hot stamp or ink jet.

Laser Marking

CLC Wire Mark

Laser marking is an emerging marking technology.  Line speed is slower than ink jet but suited for continuous marking.  Mark characters and character strings are programmable.  A black mark is the primary color as the character is burned into the insulation surface.  A marking method endorsed by military and aerospace.

Wire Process Specialties provides solutions for processing wire harnesses.  Connect Your Way to WPS to see how we can assist your company in their processing problems.

Wire Processing Solutions for Automation Assembly and Electrical Paneling.

Producing a wire assembly can be a simple process such as a simple hook up wire.  It can be as complex as a multi circuit wire harness.  Processing solutions for these wire assemblies can also be simple to complex.  The appropriate solution generally is dictated by the lot and global production size of a particular sub assembly.  Companies who’s core product is a wire assembly generally use a mix of processing solutions from manual hand tools through single process bench equipment to multi process automation.  Companies who process a wire assembly as a sub assembly installed into their core product typically use hand tools and bench top single and multi process equipment. This article focuses on solutions for low to moderate wire assembly requirements.  Companies who process electronics and printed circuit boards also fit in this category.

Manual Assembly Tools

 

Wire and Tube Cutting

Wezag SH CutterThe Wezag SH series of wire cutters are designed for cutting heavy cable.  Ratchet design and long handles provide high compression force with less physical effort.

 

31_9497The Carpenter 31 bench top wire and tube cutter is designed to cut wire and tube using a lever action.  The 31 has a 1″ high by 4″ high blade opening allowing for a large range of materials to be processed.  Separators can be added to accurately process multiple rows of material.

 

 

Wire Crimping

Featured Product

Wezag AE24-1 Wezag AE 24

The Wezag AE24 hand crimp tool is a universal hand tool designed to crimp ferrules.   A patented design from Wezag offers one universal die set to crimp ferrules from 24 to 10 awg.  No more guessing which crimp opening to use making the crimp process faster and more efficient. Ergonomic design reduces fatigue.

CS30STRATO

Wezag Tools supplies a full line of hand crimp tooling for open barrel terminals, closed barrel insulated and uninsulated terminals terminals and four point crimp for screw machine style pins.

.Powered Single Process Assembly Tools.

 Wire Stripping

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Model 78
The Carpenter 78 is a pneumatic wire stripper which can process a wide range of wire sizes.  Using easily adjustable knobs to set the wire size, strip and pull lengths, the 78 can quickly change from one wire size to the next making small lots much more cost effective.  Other options for wire stripping include rotary wire strippers to efficiently strip the wire and twist the strands.

 

Terminal Crimping

62

The Carpenter Accu-Crimp 62 is pneumatically powered and can crimp a wide range of insulated and uninsulated terminals.  The die opening is always closed for safety purposes and is opened to load the terminals by pressing the upper knob.

Wezag CS 200

The Wezag CS200 is an electric powered crimp machine for loose piece terminals.  The CS200 can accept crimp heads for standard Wezag crimp tools providing the ultimate in flexibility.

Powered Multi Process Assembly Tools.

Wire/Tube Measure and Cut

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Carpenter Compu-Cut 42C
The Compu-Cut 42C is a high performance wire and tube cutting machine with a large opening to process heavy cable, large OD tube, or several rows of material.  The 42C uses high accuracy feed motors and a powerful pneumatic cutter head.  In addition to the 42C, the Compu-Cut 33 is a smaller cutter for light duty wire and tube processing.

Wire Cut and Strip

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Compu-Strip 97A

For more information, please view our product focus on the 97A.

For high current or heavy cable applications, please refer to our article on large cable processing.

Other processing solutions include wire marking, ultrasonic wire splicing and shrinking of heat shrinkable tube.

Wire Process Specialties is equipped to supply your requirements for wire processing from simple manual tools to semi-automation and beyond.  Connect Your Way to WPS to find out how we can apply our technology to your processes to improve efficiency and reduce costs.

Rotary vs V Blade Wire Stripping.

Wire stripping is a mechanical insulation separation process which can be performed by various methods.  Two of the most common methods are Rotary Blade and V Blade. This article will outline these two methods, the advantages and drawbacks.

Rotary Blade.

A wire stripper with a rotary blade has one or two blades centered around an opening that the wire is pushed through.  A wire guide sized to  the wire OD ensures the wire does not rotate in an oblong fashion and cause damage to the inner conductors.  The blades are adjusted to match the ID of the wire without nicking the inner conductors.  During processing, the blades close around the wire and rotate to slit the jacket. A number of revolutions may be required to separate the insulation slug from the wire.  This depends on the thickness and insulation type.

The rotary blades provide a very clean shoulder on the insulation.  The rotary action of the blades also twists the stands of single conductor stranded wire, which helps in the insertion of the wire to a terminal block or PC board hole prior to wave soldering.  Non concentric wire can be problematic and cause less than desirable results in nicked strands or jagged separation of the insulation. Below is the operation of the Carpenter 72C which shows the action of the rotary blade to strip wire.

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V Blade.

The V blade configuration provides good quality wire stripping of a large range of wire cross sections. This blade style is used on bench top single process wire strippers, automated cut/strip machines and fully automated work centers such as the Schaefer Megomat Primo XLT.  Adjusting a V blade wire stripper is fast and changeover to a different wire takes only a few seconds.  The angle of a V blade is typically 90 degrees.  This angle is generally accepted as the best providing optimum overall results on a wide rage of wire sizes.  Narrow entry angles such as 30 or 60 degree are also used but would be deployed on specific applications. The V blade strips the wire at four points and not the whole surface as a rotary blade does.  Special configurations like the Lakes patented Uni-V blade adds a secondary angle which provides more contact to the blade.

Other V blade configurations are full radius and tangent radius V.  The blade illustrated above is full radius blade for a Carpenter Compu-Strip 97A.  This blade is sized for a specific wire cross section.  Adjacent wire sizes cannot be stripped with a radius V blade.

The illustration above shows the Tangent radius (Lakes Precision TA-V).  The entry angle lines meet the arc at a tangent point. This type of blade, when closed, presents a diamond shaped edge profile.Advantages: By adjusting cutter head shut height, ( if insulation material and wall thickness allow), you can process
adjacent wire sizes with the same blade, or you could compensate for off-center wire extrusions.

The video below illustrates the operation of a 90 degree V blade in a Carpenter 77E heavy duty wire stripper.

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The V blade profile with its variations can process a large variety of wire sizes and insulation types.  The four point contact on the 90 degree V blade provides a lesser quality shoulder than the rotary but can be offset by the use of a full or tangent radius V blade.

Wire Process Specialties has over three decades of experience providing wire processing solutions.  How can we help you optimize your production processes with a component or processing equipment solution?  Connect Your Way to WPS today to begin the dialogue and the path to lower processing costs and higher production efficiency.

 

 

Crimp Quality Process Validation and Monitoring Part Three

This is the final installment of Crimp Quality Process Validation and Monitoring.  In part one, we discussed pre-process validation. In part two we outlined real time monitoring process during production.  In this segment, we will discuss the calibration and machine capability of crimping presses as an integral part of an overall quality strategy.

Process Capability
Process Capability is the total variation in a production process and the ability for that process to be reproduce-able over time and within stated production specifications.  Measurements during the production process are taken then grouped together to form a histogram (bell curve). The distribution of measurement results provide an indication of present conformance of the item being produced.  Process Capability is a valuable tool for making changes to improve the production process. The capability of a production process is based on multiple factors which are common among almost all production processes The major factors are People, Machine, Methods and Materials. Each factor has its own process variation and contributes to the overall process capability.

In crimping a wire to a terminal, these factors above come into play and can be controlled at the plant level in different degrees.  For example:

Considering “People” as a factor, the manual locating of a terminal in a bench top crimp press is one level of variation. Training operators improves the process and is eliminated when an automatic processing machine is deployed.  Methods can range widely but could include maintenance schedules, operator and set up personnel training, set up and operating procedures.  Effects the Machine has on the process can include the machine age (wear and tear), maintenance and overall accuracy and repeatability of the machine itself.  Machines can include the crimp press, terminal applicator and in the case of an automated machine the robotic assembly to deliver a stripped wire to the crimp press.  The factor which the producer has less control is materials which include wire, terminals and weather seals.  In the case of materials, specifications are generally established by the material manufacturer within their own production process.

Crimp Press Capability

The machine component which can cause excessive variation in the process and which is the last area companies look to for process improvement is the crimp press itself.  Even with stable materials, methods, people and crimp applicators additional process variation can occur with the crimp press.  Presses have a long production life cycle and in that time bearing, crankshafts and ram assemblies can get worn. Which will show up as piece by piece variation.

The illustration at the left shows a chart of a crimp press which was calibrated and the press was cycled to determine peak crimp force per piece.  The top chart shows the shut height measurement and the bottom chart shows reference force.  Excessive variation can be found in the force chart on a piece by piece basis.  The shut height measurement was in control where the force was not in control.

The illustration at left was the same press after maintenance was performed to tighten up the press ram assembly.  The force measurements were brought into statistical control.  The shut height measurement also improved statistically. The result of this improvement will be a process that is in better statistical control and a product which will perform consistently better piece by piece.

The tool used is the C&S PAL3001 which can calibrate a press to the industry standard shut height and take force measurement readings to determine machine capability.

 

 

 

Wire Process Specialties can supply your crimp validation equipment and in-process measurement and data collection for ongoing process improvement.  Connect You Way to WPS find out more.

Etco Insulated Quick-Connects and New Innovations

Wire Process Specialties has a deep and rich history with Etco Incorporated spanning more than 30 years.  Etco is a manufacturer of high quality terminal stampings in reel form for attachment by automatic crimp dies.  Our customers appreciate the consistency in people and company operating philosophy.  Etco is privately owned and operated with two facilities, the corporate office, R&D and Manufacturing in Bradenton Florida and an engineering and manufacturing facility in Warwick Rhode Island.

In the late 1980’s the need for a high performance insulated quick connector was established. A connector which has superior crimping and insulating characteristics and can be applied in one stroke of a crimp applicator. Etco answered that challenge and the Etco Insulated terminal series was born.

The basic concept of the Etco Insulated terminal is a plastic insulator partly embedded over an open barrel quick connect.  The terminal is loaded into the applicator, the terminal is crimped on the downstroke of the press and the insulator is assembled over the terminal on the upstroke of the press. This connector assembly is a more reliable and better quality connector than the closed barrel insulated terminal alternate.

The Etco applicator is a mini style which can be mounted into most crimp presses semi-automated using an operator to present the wire, or fully automatic on a swing arm style wire process machine like the Schaefer Megomat Uno.  The applicator uses a  mechanical feed system for simple but accurate terminal feeding.  The insulator is inserted over the crimped terminal using an air cylinder which is activated on the applicator upstroke.

 

The Etco Insulated terminal series includes in line female quick connects from 1/8″ to 1/4″ width.  Interlocking 1/4″ males are available to mate with the Etco female quick connects. The Etco catalogue can be found on the Etco page of wireprocess.com

 

 New Product Introduction – the Etco Fully Insulated Flag Quick Connect

 A CSA and UL recognized flag quick connect has been part of the Etco product line for many years.  The back of the terminal was open due to the terminal construction but approved by the product safety standards. New UL standards are being published which include a tighter requirement to fully enclose the metal contact.

Etco has recently introduced a back to the flag terminal to make the Etco Flag series the first in the market to meet the new UL standard.

 

 The back of the Etco flag is assembled onto the crimped terminal by an external assembly machine.  The terminal is presented into the assembly machine and activated. The terminal back is inserted into apertures in the terminal housing.

To view the advertisement from Etco on the new terminal, click here.

 

 

Etco, another valued Global Technology Partner shows how Wire Process Specialties can fully supply your wire processing needs. Connect Your Way to Wire Process Specialties to let us help you solve your wire processing challenges.

 

Crimp Quality Process Validating and Monitoring: Part Two

In part one of this series, we covered the critical steps used to validate a wire to terminal crimp prior to initiating production on a wire lead or harness. In part two we will uncover some of the processes companies currently deploy to monitor the crimping process during production.

Although companies still perform an in production spot check of crimp quality using validation methods (crimp height, pull test), these methods show compliance to crimp specifications on a single piece at a time during production and do not demonstrate full statistical capability of the process.  Visual inspection is another method.  But as we have seen with the cross sections illustrated in part one, significant variation could be occurring inside the crimp that is invisible to the inspector.  It has been shown that 100% visual (human)  inspection is only 80% effective over time.  Given 20 out of 100 parts may not be properly inspected, there is a potential for parts to be supplied that are not to specification.

In process monitoring methods are now used to ensure each wire termination meets crimp force specifications. Crimp force monitoring is the common in process method used which we will outline. New methods are emerging in the future, one which we will briefly cover.

Crimp Force Monitoring

Crimp Force Monitors (also known as Crimp Quality Monitors, CFM or CQM) measure crimp force of each terminations in real time.  CFMs take force readings from the start to the end of the crimp cycle using a force sensor which is mounted in the base plate under the applicator, the ram adaptor above the applicator or on the press frame.  The readings are received by the crimp monitor base unit which compiles and creates a crimp curve.  The crimp curve is compared with a reference crimp curve, created by a teach in process at the beginning of production.  Crimp errors such as high and low insulation, wrong wire size and cut strands are typical defects detected.  Not so typical defects include strands partially encapsulated and laminated to the top of the crimp. When a defect is detected, a signal can be sent to the processing machine to stop or initiate a reject cut off sequence if installed.

You will find below an example of a normal curve from data points compiled from a single crimp.  Also two more crimp curves showing common crimp defects.

 The illustration above shows a normal crimp curve with no variation from the teach in reference sample. In the case of the C&S MX series crimp monitors, the crimp curve is split into three vertical sections which have tolerances applied on each side of the reference (teach in) curve.  Each zone has a separate tolerance band which is progressively tighter as the press reaches bottom dead center and crimp force is at its peak. The chart below the curve is a point by point visual of the variation above or below the reference point from the teach in.  In the case of the normal curve, very little variation is shown.

The illustration above shows the effect of strands cut and missing from the crimp. The measured result (in yellow) shows lower results and an error condition starting in the second and continuing through the third zones.  The point by point variation also shows this condition.

In the illustration above, the insulation was embedded in the conductor crimp which is also known as “high insulation”.  As the conductor crimp wings make contact with the insulation and see excess resistance, the forces spike quickly but then drop off as quickly in the first zone.  Then the crimp force does not reach the required peak through the third zone and an under load error occurs.

The crimp force monitoring process is now a standard in most wire and cable harness facilities and is mandated as a minimum quality measurement tool  for automotive harnesses. The C&S MX series crimp monitors operate as a standalone solution for a bench press or installed onto multi station automated wire processing machines.  Connected with the BBMX client server network, the MX series provides a cross platform data logging and monitoring system for plant wide quality assurance.

New Crimp Monitoring Technologies

Crimp force has been the standard in process method of measuring crimp quality for over 15 years.  In the coming years, vision systems will be an additional tool for monitoring crimp quality.  The video below shows the C&S CVM-2 vision system with two cameras and monitors in simulation of a crimped wire passing through and being measured at high speed by the cameras.

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 Wire Process Specialties partners with C&S Technologies, a global leader in the supply of crimp process validation and monitoring systems.  We can supply simple inspection tools or create a complete integrated system for plant wide control of the crimping process.  Connect Your Way to Wire Process Specialties to get a personalized assessment of your requirements.

Part 3 of this series outlining crimp press calibration coming soon.