measuring the effectiveness of mold making machinery · provide real-time machine monitoring,...

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16 MoldMaking Technology October 2010 Machining By Thomas R. Cutler communicating directly with corporate information sys- tems, increasing operational efficiency. Available applications provide real-time machine monitoring, acquisition of OEE metrics, dynamic CAM, automatic synchronization of part programs, DNC, work order scheduling and central control of machine operations. On the research front, earlier this year, during a keynote address at the Canadian Manufacturers & Exporters confer- ence held in Ottawa, Canadian Minister of Industry, Tony Clement announced funding for several groundbreaking, large-scale, multidisciplinary research projects. Included was the NSERC Canadian Network for Research and Innovation in Machining Technology (CANRIMT), led by Dr. Yusuf Altintas of The University of British Columbia. The five-year, $5 million network involves university researchers from across Canada working in modeling, analysis, monitoring and control of machining processes and manufacturing automation. Dr. Allan Spence at McMaster University comments on addi- tional collaboration with other industry participants*, “This is a special opportunity to advance virtual machining technology through integration of laser scanning and CAD algorithms with online monitoring, measurement and control. This Measuring the Effectiveness Of Your Mold Machining Operations M any machine tools used in moldmaking are poorly set up for the data collection and com- munications needed to measure the Overall Equipment Effectiveness (OEE) information needed for profitable company decision-making. There are historical reasons for these shortcomings, along with industry and research solutions emerging to address them. Reasons for Obsolete Technology In the 1980s, CNC machines with RS232 serial ports for communications with computers emerged. Programs were stored on a PC, backed up or called up remotely, and were much easier to manage than punched paper tape. The approach was so successful that many of these controls and machines remain in use today. The main weakness of RS232 serial port technology is the length of the cables required in a shop floor environment. Longer cables require slower data transfer (< 2400 Baud) rates, and increase the risk of data transmission errors. The harsh environmental conditions of some moldmaking shops can cause PC failures that interrupt day-to-day operations. In today’s competitive mold manufacturing environment, these failures are no longer acceptable. Migrating to the ethernet for networking connectivity is the solution. Conversion to a company-wide, Ethernet-based machine tool communication network, (while still loading and accessing a machine through a local, legacy serial port is cost-effective) has a short return-on-investment (ROI) period. It also provides the easiest migration path to reliable shop floor information and increased operational efficiency. There are advantages to migrating from serial to ethernet communications on the shop floor, including machines A review of the shortcomings and solutions to OEE challenges. Fanuc 21i twin turret control with automatic OEE universal machine interface, top right, and 2 Ax750 I/O links below.

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Page 1: Measuring the Effectiveness of Mold Making Machinery · provide real-time machine monitoring, acquisition of OEE metrics, dynamic CAM, automatic synchronization of part ... money

16 MoldMaking Technology October 2010

Machining By Thomas R. Cutler

communicating directly with corporate information sys-tems, increasing operational efficiency. Available applications provide real-time machine monitoring, acquisition of OEE metrics, dynamic CAM, automatic synchronization of part programs, DNC, work order scheduling and central control of machine operations.

On the research front, earlier this year, during a keynote address at the Canadian Manufacturers & Exporters confer-ence held in Ottawa, Canadian Minister of Industry, Tony Clement announced funding for several groundbreaking, large-scale, multidisciplinary research projects. Included was the NSERC Canadian Network for Research and Innovation in Machining Technology (CANRIMT), led by Dr. Yusuf Altintas of The University of British Columbia. The five-year, $5 million network involves university researchers from across Canada working in modeling, analysis, monitoring and control of machining processes and manufacturing automation. Dr. Allan Spence at McMaster University comments on addi-tional collaboration with other industry participants*, “This is a special opportunity to advance virtual machining technology through integration of laser scanning and CAD algorithms with online monitoring, measurement and control. This

Measuring the EffectivenessOf Your Mold MachiningOperations

Many machine tools used in moldmaking are poorly set up for the data collection and com-munications needed to measure the Overall

Equipment Effectiveness (OEE) information needed for profitable company decision-making. There are historical reasons for these shortcomings, along with industry and research solutions emerging to address them.

Reasons for Obsolete TechnologyIn the 1980s, CNC machines with RS232 serial ports for communications with computers emerged. Programs were stored on a PC, backed up or called up remotely, and were much easier to manage than punched paper tape. The approach was so successful that many of these controls and machines remain in use today.

The main weakness of RS232 serial port technology is the length of the cables required in a shop floor environment. Longer cables require slower data transfer (< 2400 Baud) rates, and increase the risk of data transmission errors. The harsh environmental conditions of some moldmaking shops can cause PC failures that interrupt day-to-day operations.

In today’s competitive mold manufacturing environment, these failures are no longer acceptable. Migrating to the ethernet for networking connectivity is the solution. Conversion to a company-wide, Ethernet-based machine tool communication network, (while still loading and accessing a machine through a local, legacy serial port is cost-effective) has a short return-on-investment (ROI) period. It also provides the easiest migration path to reliable shop floor information and increased operational efficiency.

There are advantages to migrating from serial to ethernet communications on the shop floor, including machines

A review of the shortcomings and solutions to OEE challenges.

Fanuc 21i twin turret control with automatic OEE universal machine interface, top right, and 2 Ax750 I/O links below.

Page 2: Measuring the Effectiveness of Mold Making Machinery · provide real-time machine monitoring, acquisition of OEE metrics, dynamic CAM, automatic synchronization of part ... money

moldmakingtechnology.com 17

Phot

os c

ourt

esy

of M

emex

Aut

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ion.

funding will allow us to more precisely predict and control mold machining operations—even for cases where actual geometry departs from CAD actuals. To accelerate industrial adoption, we will be using the Memex* Ax9150 Universal Machine Interface with our CNC machine tools.”

How to Technologically AdvanceTraditionally, the continuous process sector has provided leadership in adopting and using efficiency metrics. The simple observation is that continuous processes deploy very expensive ($20K to >$1M) process control MES systems at ini-

tial deployment. These systems directly capture the relevant information needed to report appropriate metrics.

In contrast, because discrete part production (e.g. CNC) errors are limited in scope, moldmakers can rarely justify the expensive MES systems. New machine interface hardware has reduced this expense to $4,000 per machine, making OEE metric collection affordable. The ROI is very rapid, with reports of 20 percent or greater productivity improvements.

“Operator-less” Input Because the OEE system can automatically accept signals directly from the machine tool control, unless there is a fault or other downtime event, there is no longer a need for the operator to provide input for each cycle. This direct and real-time capability avoids ERP data entry issues with operator errors, failure to record and lost hand-written reports. The OEE system saves significant labor time—often justifying the investment even before the benefits of increased efficiency, lower product costs and competitive advantages are factored into a cost benefit analysis. This is considered the most critical factor to moldmakers as it removes the human element and there is accurate data with built-in monitoring tools and alerts. If you can measure it, then you can manage it.

OEE BenefitsFrom a moldmaker’s perspective, OEE provides valuable new benefits. Here are some recent comments received from both management and shop floor users:• “We now have a tool to communicate to the people on the

shop floor that our performance can improve.”• “The OEE data provided improves human as well as

machine-to-machine communications.”

LEArn MOREEnsuring a Long Machine Tool LifecycleSave time, money and aggravation by taking care of your machinetools with a lifecycle approach.

Article Link: moldmakingtechnology.com/articles/101001.html.

Inside the CNC control panel, showing an ethernet to serial bridge, universal network interface on bottom right, connected to a handheld HMI for operator program DNC control.

Fanuc 11 control test system showing ethernet, wireless, serial and handheld HMI all connected.

Page 3: Measuring the Effectiveness of Mold Making Machinery · provide real-time machine monitoring, acquisition of OEE metrics, dynamic CAM, automatic synchronization of part ... money

18 MoldMaking Technology October 2010

Machining

• “We believe we can use data to motivate employees with a shared understanding of how we can be more productive, and that’s what it’s all about.”

• “Our biggest differentiator is productivity and OEE helps us identify areas to improve our efficiency.”

• “Machines are islands of unconnected information—like hav-ing a group of office PCs, each with different software—now

cOntributOrThomas R. Cutler is the President & CEO of Fort Lauderdale, Florida-based, TR Cutler, Inc). Cutler is the founder of the Manufacturing Media Consortium of 3,500 journalists and editors writing about trends in manufacturing. Cutler is a member of the Society of Professional Journalists, Online News Association, American Society of Business Publication Editors, Committee of Concerned Journalists, as well as author of more than 400 feature articles annually regarding the manufacturing sector. Cutler is also the developer of lean technology C.E.O (Continuous Experiential Optimization).

FOR MORE InFORMATIOn: tr cutler, [email protected] trcutlerinc.com

*Memex Automation, a business unit of Astrix networks [email protected] / memex.ca

we can network machines together, just like networking an office.”

• “We had passive OEE with manual clip boards and now we have active OEE, visible in the plant.”

• “The key to better productivity is not just to track perfor-mance, but to act on problems in real-time.”

• “Machine connectivity unites the islands of machine auto-mation, establishing a fully-connected, enterprise-wide manufacturing nervous system that gives real-time visibility of production and the ability to adapt and control each machine.”• “Customers can see and believe in

what we’re doing to improve on-time delivery because we have traceability of machine operations through OEE.”

The Future Is BrightMoldmaking has entered the 21st cen-tury. Global technology initiatives from technology suppliers, coupled with university research—such as the NSERC CANRIMT initiative—recognize that the machine tools used in moldmak-ing are uniquely poised for evolution to new communication capabilities, OEE measurement and CAD-based virtual machining advances.

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