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Heat shock behavior of permanent die during non-solid near-net forming process

机译:非固态近净成形过程中永久性模具的热冲击行为

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摘要

Heat shocks caused by alloy melt and coat spraying are the main reason of die plastic deformation and early fracture. Based on theoretical analysis of heat shock phenomenon, two characteristic parameters of die damage caused by heat shock were proposed, which are heat shock plastic deformation index (HSPI) and heat shock crack index (HSCI). The effect of heat shock on die plastic deformation and fracture behaviors was described quantitatively by these two parameters. HSPI represents approaching of heat shock stress to die yield stress. Plastic deformation will happen on a die if this index reaches 1.HSCI represents approaching of heat shock stress to die tensile strength. Die fracture will happen if this index reaches 1.According to theoretical analysis of heat transfer, theoretical models of HSPI and HSCI were established. It is found that, the smaller the interfacial thermal resistance (ITR) is, the higher the pouring temperature and die temperature are before heat shock, and the greater the HSPI and HSCI are, which can be fitted as exponential curves, linear and cubic curves.
机译:合金熔体和涂层喷涂引起的热冲击是模具塑性变形和早期断裂的主要原因。在对热冲击现象进行理论分析的基础上,提出了由热冲击引起的模具损伤的两个特征参数,即热冲击塑性变形指数(HSPI)和热冲击裂纹指数(HSCI)。通过这两个参数定量描述了热冲击对模具塑性变形和断裂行为的影响。 HSPI表示接近热冲击应力而导致屈服应力。如果该指数达到1,则在模具上会发生塑性变形。HSCI表示热冲击应力接近模具拉伸强度。如果该指数达到1,就会发生模具断裂。根据传热的理论分析,建立了HSPI和HSCI的理论模型。结果表明,界面热阻(ITR)越小,热冲击前的浇铸温度和模具温度越高,HSPI和HSCI越大,可以拟合为指数曲线,线性和三次曲线。 。

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