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Machinability Control - A Topic of Great Importance to the Engineering Industry

机译:可加工控制 - 对工程行业非常重视的话题

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More complicated and expensive machine tools together with production with limited manpower requires disturbance free and safe manufacturing, to avoid expensive and unexpected stops. The result of a machining operation is based on the interaction between manufacturing method, the machine tool and the material. There exist few well-documented test methods. Mainly the ISO 3685 is referred to, at least in Europe. This single point turning test is, however, based on cutting tools no longer available and on rather long times in cut, as the test specimen has a length of 400 - 600 mm. In order to reach good conformity between the test results and a production environment, the applied test methods need to be fine-tuned to better simulate reality. For that reason, the ISO 3685 test method has been slightly modified and new test methods have been developed to determine a raw material's machinability. Among others ways to evaluate the impact from short machining cycles, 1-15 seconds, through different discontinuous machining modes have been developed, which will be described here. Important parameters affecting the manufacturing result are tool life / tool cost versus cutting data, chip formation to avoid chip jamming, surface roughness, and component distortion. This paper will present the relationship between certain parameters and the raw material properties; steel grade and composition and cutting forces evaluated through different methods.
机译:与有限的人力有限的生产一起更复杂和昂贵的机床,需要无干扰和安全的制造,以避免昂贵和意外的停止。加工操作的结果基于制造方法,机床和材料之间的相互作用。有很少有记录的测试方法。主要是ISO 3685至少在欧洲提到。然而,这种单点转动测试是基于切割工具不再可用,而在切割中相当长的时间,因为试样的长度为400-600mm。为了在测试结果和生产环境之间达到良好的符合性,所应用的测试方法需要微调以更好地模拟现实。因此,ISO 3685测试方法已经略微修改,并且已经开发出新的测试方法来确定原料的可加工性。在其他方法中,已经开发了通过不同的不连续加工模式来评估来自短加工循环的冲击,这将在此描述。影响制造结果的重要参数是刀具寿命/工具成本与切割数据,芯片形成,以避免芯片干扰,表面粗糙度和组件失真。本文将呈现某些参数与原料特性之间的关系;通过不同方法评估钢级和组成和切割力。

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