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Quality and surface integrity of waterjet machined automotive composites

机译:水刀加工的汽车复合材料的质量和表面完整性

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Machining edge quality and static, dynamic loading response of two commonly used automotive composites namely sheet mold compound (SMC) material systems - SMC-R27, and SMC-R37 were investigated. In addition to characterizing the fatigue life and low velocity impact response, failure progression of the material systems, the edge effects of diamond saw cutting, waterjet cutting and abrasive waterjet cutting were investigated using optical microscopy and contact surface profilometry. Effects of edge finishing on fatigue life in terms of applied maximum stress to number of cycles to failure. Impact force-time and displacement-time responses were measured and used to characterize energy absorption capabilities and potential correlation to post processing operation and fiber volume fraction. Pre and post-fracture edge surface micrographs were examined to relate the failure behavior on the machined surfaces. Experiments and measurements all show that the failure zone size and fracture growth behavior are clearly dependent on the edge finishing process.
机译:研究了两种常用的汽车复合材料(片状模塑料(SMC)材料系统SMC-R27和SMC-R37)的加工边缘质量以及静态,动态载荷响应。除了表征疲劳寿命和低速冲击响应外,还使用光学显微镜和接触表面轮廓仪研究了材料系统的失效进程,金刚石锯片切割,水刀切割和磨料水刀切割的边缘效应。边缘精加工对疲劳寿命的影响,这取决于施加的最大应力与失效循环数之间的关系。测量了冲击力时间和位移时间响应,并将其用于表征能量吸收能力以及与后处理操作和纤维体积分数的潜在相关性。检查了断裂前后的边缘表面显微照片,以关联加工表面上的破坏行为。实验和测量结果均表明,破坏区的大小和裂缝的生长行为显然取决于边缘修整过程。

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