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A new standard approved by ASTM International’s air quality committee ( D22 ) will be used to assess and help prevent human exposure to lead hazards in the air. The new test method ( D8568 ) covers the determination of lead in airborne particulate, dust by wipe and micro-vacuuming, paint, and soil collected in and around buildings and related structures using graphite furnace atomic absorption…, Media Inquiries:, Gavin O’Reilly, tel +1.610.832.9618; goreilly@astm.org, Committee Contact:, Ashley Wiand, tel +1.610.832.9551; awiand@astm.org Release #11837 ###
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A new ASTM International standard ( D8560 ) will help to determine the presence of polyfluoroalkyl substances (PFAS) in the indoor air environment. ASTM’s air quality committee ( D22 ) developed the new standard. According to ASTM member Dustin Poppendieck, quantifying PFAS concentrations in indoor air is important for accurate and meaningful exposure analysis and risk assessments since some PFAS…, Media Inquiries:, Gavin O’Reilly, tel +1.610.832.9618; goreilly@astm.org, Committee Contact:, Ashley Wiand, tel +1.610.832.9551; awiand@astm.org Release #11832 ###
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ASTM International’s robotics, automation, and autonomous systems committee ( F45 ) is seeking participation in the development of proposed standards for testing and recording assembly capabilities of robot systems. According to ASTM member Kenny Kimble, a mechanical engineer with the National Institute of Standards and Technology, the proposed standards ( WK87213 and WK87214 ) will provide a…, Media Inquiries:, Gavin O’Reilly, tel +1.610.832.9618; goreilly@astm.org, Committee Contact:, Nora Nimmerichter, tel +1.610.832.9815; nnimmerichter@astm.org Release #11721 ###
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ASTM International’s robotics, automation, and autonomous systems committee ( F45 ) has proposed a test method ( WK86916 ) for disturbance rejection testing of legged robots. “Our goal is to develop detailed testing methods and measurements that can accurately evaluate the locomotion stability of a legged robot (i.e., walking without falling-over),” according to ASTM member Bowen Weng. “The…, Media Inquiries:, Gavin O’Reilly, tel +1.610.832.9618; goreilly@astm.org, Committee Contact:, Nora Nimmerichter HER , tel +1.610.832.9815; nnimmerichter@astm.org Release #11698 ###
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ASTM International’s robotics, automation, and autonomous systems committee ( F45 ) is developing a proposed standard that will focus on the use of hardware and peripherals in robotic training systems. According to ASTM member Anton Koretskov, the proposed standard (WK84838) will help to ensure that hardware and peripherals from different manufacturers can work seamlessly, allowing for greater…, Media Inquiries:, Dan Bergels, tel +1.610.832.9602; dbergels@astm.org, Committee Contact:, Nora Nimmerichter, tel +1.610.832.9815; nnimmerichter@astm.org Release #11634, ###
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ASTM International’s robotics, automation, and autonomous systems committee ( F45 ) is developing a proposed standard on grasp strength of robot end-effectors. The proposed standard ( WK83863 ) is a test method for evaluating grasp strength of these end-effectors, which will reveal capabilities of robotic hands, including limits of payload size and resistance to pull/push forces during operation…, Media Inquiries:, Dan Bergels, tel +1.610.832.9602; dbergels@astm.org, Committee Contact:, Nora Nimmerichter, tel +1.610.832.9815; nnimmerichter@astm.org Release #11617 ###
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ASTM International’s robotics, automation, and autonomous systems committee ( F45 ) is developing a standard on mobile manipulator performance for static/indexed tasks. The proposed standard will describe accepted procedures and test methods, including the supporting test apparatus, for measuring the static/indexed task performance of a single mobile manipulator. A mobile manipulator is a robotic…, Media Inquiries:, Dan Bergels, tel +1.610.832.9602; dbergels@astm.org, Committee Contact:, Nora Nimmerichter, tel +1.610.832.9815; nnimmerichter@astm.org Release #11575 ###
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A new ASTM International standard will provide specifications for objects used in testing automatic, automated, or autonomous unmanned ground vehicles (A-UGVs). The standard was developed by ASTM’s committee on robotics, automation, and autonomous systems ( F45 ). This standard ( F3588 ) provides specifications for a set of reference objects to act as obstacles or infrastructure for testing the…, Media Inquiries:, Dan Bergels, tel +1.610.832.9602; dbergels@astm.org, Committee Contact:, Nora Nimmerichter, tel +1.610.832.9815; nnimmerichter@astm.org Release #11572 ###
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ASTM International’s committee on robotics, automation, and autonomous systems ( F45 ) has formed a new subcommittee on grasping and manipulation. This new subcommittee ( F45.05 ) will develop standards that evaluate performance in several major areas of robotic manipulation. The first three task groups of the committee will develop standards for performance of grasping type end-effectors, mobile…, Media Inquiries:, Dan Bergels, tel +1.610.832.9602; dbergels@astm.org, Committee Contact:, Nora Nimmerichter, tel +1.610.832.9815; nnimmerichter@astm.org Release #11539 ###
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ASTM International’s robotics, automation, and autonomous systems committee ( F45 ) has launched a new subcommittee on grasping and manipulation (F45.05). The committee develops standards that are applicable to, but not limited to, automatic/automated autonomous vehicles, robotic arms/manipulators, and the sensors used in these systems for smart infrastructures, advanced manufacturing, logistics…, M, edia Inquiries:, Dan Bergels, tel +1.610.832.9602; dbergels@astm.org, Committee Contact:, Nora Nimmerichter, tel +1.610.832.9815; nnimmerichter@astm.org Release #11482 ###