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EFFECTS OF STRIKER SHAPE AND ATTACHED POSITION OF STRAIN GAGE ON MEASURED LOAD IN INSTRUMENTED CHARPY IMPACT TEST

机译:打击板形状和应变片的安装位置对仪器化嬉皮冲击试验中测得载荷的影响

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Instrumented Charpy impact test is widely used for the evaluation of toughness of many kinds of materials and small scale specimens. In the test, therefore, it is important to record an accurate impact load. Generally, one can obtain measured load in the instrumented Charpy impact test by multiplying the output signal from strain gage attached to the instrumented striker by load-calibration factor assuming a liner relationship between the strain gage signal and applied load. Although JIS or ISO describes about the instrumented striker, amplifier, data processing parameter and etc., detailed methods on the load measurement is scarcely described in any standard. In the present study, two types of striker were used. The strain gages were attached to four positions in each striker. Instrumented Charpy impact test was carried out using these strikers in order to investigate the effect of gage position on actual impact load. By the finite element analysis, the effect of the strain gage position on the measured load was also investigated. As a result, it became clear that the accurate impact load was not measured around the end of slit which was introduced to release the constraining effect of elastic deformation of the gage position from surrounding hammer; the effect of the vibration of the hammer appeared strongly around this position. It is recommended to prevent the effect of such vibration by attaching the gage away from such position.
机译:仪器化的夏比冲击试验被广泛用于评估多种材料和小规模试样的韧性。因此,在测试中,记录准确的冲击载荷很重要。通常,假设应变计信号和施加的负载之间存在线性关系,将附着在仪器前锤上的应变计的输出信号乘以负载校准因子,即可在仪器化的夏比冲击试验中获得测量的负载。尽管JIS或ISO对仪表式撞针,放大器,数据处理参数等进行了描述,但在任何标准中都很少描述负载测量的详细方法。在本研究中,使用了两种类型的撞针。应变计连接到每个撞针的四个位置。使用这些撞针进行了仪器化的夏比冲击试验,以研究量规位置对实际冲击载荷的影响。通过有限元分析,还研究了应变计位置对测得载荷的影响。结果,清楚的是,在引入的狭缝的端部附近未测量到准确的冲击载荷,从而从周围的锤子释放了应变仪位置的弹性变形的约束效果。锤子振动的影响在此位置附近强烈出现。建议通过将量规安装在远离该位置的位置来防止这种振动的影响。

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