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车削条件下不同材料表面完整性对疲劳寿命的影响综述
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作者 律谱 《广东经济》 2017年第5X期119-119,共1页
随着航空航天事业和国防科技事业的发展,国家战略设备对机械零件的疲劳寿命提出了越来越高的要求,希望能够在高速高效高精密的条件下生产出具有高疲劳寿命的机械零件.而影响机械零件疲劳寿命的主要原因在于其表面完整性,零件表面的材料... 随着航空航天事业和国防科技事业的发展,国家战略设备对机械零件的疲劳寿命提出了越来越高的要求,希望能够在高速高效高精密的条件下生产出具有高疲劳寿命的机械零件.而影响机械零件疲劳寿命的主要原因在于其表面完整性,零件表面的材料分布不均、加工时产生的残余应力不同、不同的表面形貌、随机分布的微裂纹和组织损伤、加工面的应力集中等等,都是影响机械零件疲劳寿命的因素.本文从不同的加工工艺,及不同的加工材料为切入点分析综合不同条件下零件表面完整性对疲劳寿命的影响. 展开更多
关键词 车削条件 不同材料 表面完整性 疲劳寿命 影响综述
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多面体型面的车削加工
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作者 华启升 《机械制造》 北大核心 2001年第2期10-11,共2页
关键词 多面体型面 车削加工 车削参数 型面数 车削条件
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Development of analysis model for geometric error in turning processes 被引量:1
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作者 LEE Mun-jae LEE Choon-man 《Journal of Central South University》 SCIE EI CAS 2011年第3期711-717,共7页
A finite element model was established for analyzing the geometric errors in turning operations and a two-step analyzing process was proposed. In the first analyzing step, the cutting force and the cutting heat for th... A finite element model was established for analyzing the geometric errors in turning operations and a two-step analyzing process was proposed. In the first analyzing step, the cutting force and the cutting heat for the cutting conditions were obtained using the AdvantEdge. Also, the deformation of a workpiece was estimated in the second step using the ANSYS. The deformation was analyzed for a 150 mm-long workpiece at three different measuring points, such as 10, 70 and 130 mm from a reference point, and the amounts of the deformation were compared through experiments. /n the results of the comparison and analysis, the values obtained from these comparison and analysis represent similar tendencies. Also, it is verified that their geometric errors increase with the increase in temperature. In addition, regarding the factors that affect the deformation of a workpiecc, it can be seen that the geometric error in the lathe is about 15%, the error caused by the cutting force is about 10%, and the deformation caused by the heat is about 75%. 展开更多
关键词 geometric error machining accuracy finite element analysis TURNING cutting force cutting temperature
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