首页> 外文会议>Proceedings of the ASME Design Engineering Division 2003 >A NEW CYCLIC IMPACT TEST INSTRUMENT AND METHODOLOGY FOR HAND-STRUCK TOOLS
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A NEW CYCLIC IMPACT TEST INSTRUMENT AND METHODOLOGY FOR HAND-STRUCK TOOLS

机译:手动工具的新型循环冲击试验仪器和方法

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The use of hand-struck tools is still a necessary job function for technicians in several industries throughout the world. Despite the importance of these tools, evolving concerns regarding the detrimental effects of their long-term use continue to grow. Repetitive motion injuries, nerve damage of the hands and arms, and hearing loss are some of the problems that continue to afflict users of these types of tools. Although hammer-tool systems are relatively simple mechanical systems that have required very little improvement historically, the growing concerns associated with then- use necessitate a thorough evaluation of current tool designs, In addition, the introduction of new and modified tools with improved performance characteristics will be essential to maintaining their long term, effective use in the workplace. Currently, no standard test methods exist to assess the performance characteristics of hand-struck tools. This makes evaluations and comparisons very difficult since performance characteristics are significantly influenced by the user of the tool. As a result, for the purposes of assessing the performance of current hammer-tool systems as well as evaluating alternate designs, a new testing device for hand-struck tools was developed. The device is designed to simulate the approximate cyclic kinematic motion of a user repeatedly hitting a tool with a conventional hammer. A computer controller automates the striking and return stroke actions, and the resulting impact velocity and force exerted by the hammer are adjustable and approximate the performance of a human. For the purpose of development, the testing device was designed to accept steel hand-struck chisels. As configured, a chisel is placed in the device and used to shear a standard, replaceable work piece. The key output of this test is the number of impacts needed to fail the standard piece. Other features integrated into the device include a load cell under the work piece to capture the force exerted during a hammer impact, measurement of the hammer velocity at impact, noise measurements, and an automatic counter to record the number of hammer impacts required to fail the work piece. Preliminary tests with standard, conventional chisels indicate the device is capable of failing a standard 6.5 mm steel drill rod work piece in the same number of hammer blows as an experienced chisel user. Subsequent work will focus on characterizing and improving the properties of hammer-chisel systems relevant to the detrimental effects associated with their long term use.
机译:对于全球多个行业的技术人员而言,使用手动工具仍然是一项必不可少的工作。尽管这些工具很重要,但对于长期使用它们的有害影响的关注仍在不断增长。重复性运动损伤,手和手臂的神经损伤以及听力丧失是继续困扰这些类型工具使用者的一些问题。尽管锤工具系统是相对简单的机械系统,历史上几乎不需要改进,但是与使用相关的日益增长的关注要求对当前的工具设计进行全面评估。此外,引入具有改进性能特征的新型工具和改进工具对于在工作场所中长期有效地使用它们至关重要。当前,尚没有标准的测试方法来评估手冲工具的性能特征。由于性能特征受到工具用户的显着影响,因此这使得评估和比较非常困难。结果,出于评估当前锤工具系统的性能以及评估替代设计的目的,开发了一种用于手敲工具的新型测试设备。该设备设计为模拟用户用常规锤反复敲打工具的近似周期性运动。计算机控制器可自动执行击打和回击动作,由此产生的撞击速度和锤子施加的力是可调的,可近似人体的表现。为了开发的目的,测试设备被设计成可以接受钢制手工凿子。按照配置,凿子放置在设备中,用于剪切标准的可更换工件。该测试的关键输出是使标准件不合格所需的冲击次数。集成到设备中的其他功能包括:在工件下方的称重传感器,用于捕获锤击时施加的力;测量锤击时的速度;测量噪声;以及自动计数器,以记录使锤击失败所需的锤击次数。作品。使用标准的常规凿子进行的初步测试表明,该设备能够通过与经验丰富的凿子使用者相同的锤击次数,使标准的6.5 mm钢制钻杆工件失效。随后的工作将集中在与长期使用相关的有害影响有关的锤式凿子系统的特性和改进上。

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