首页> 外文会议>International ESAFORM Conference on Material Forming >Stability of phase transformation models for Ti-6A1-4V under cyclic thermal loading imposed during laser metal deposition
【24h】

Stability of phase transformation models for Ti-6A1-4V under cyclic thermal loading imposed during laser metal deposition

机译:激光金属沉积施加循环热负荷下Ti-6a1-4V相变模型的稳定性

获取原文

摘要

Processing conditions play a crucial role for the resulting microstructure and properties of the material. In particular, processing materials under non-equilibrium conditions can lead to a remarkable improvement of the final properties [1]. Additive manufacturing represents a specific process example considered in this study. Models for the prediction of residual stresses and microstructure in additive manufacturing processes, such as laser metal deposition, are being developed with huge efforts to support the development of materials and processes as well as to support process design [2-4]. Since the microstructure predicted after each heating and cooling cycle induced by the moving laser source enters the phase transformation kinetics and microstucture evolution of the subsequent heating and cooling cycle, a feedback loop for the microstructure calculation is created. This calculation loop may become unstable so that the computed microstructure and related properties become very sensitive to small variations in the input parameters, e.g. thermal conductivity. In this paper, a model for phase transformation in Ti-6A1-4V, originally proposed by Charles Murgau et al. [5], is adopted and minimal adjusted concerning the decomposition of the martensite phase are made. This model is subsequently used to study the changes in the predictions of the different phase volume fractions during heating and cooling under the conditions of laser metal deposition with respect to slight variations in the thermal process history.
机译:加工条件对所得的微观结构和材料的性质起着至关重要的作用。特别地,在非平衡条件下的加工材料可导致最终性质的显着改善[1]。添加剂制造代表本研究中考虑的特定方法示例。用于预测剩余应力的模型和添加剂制造过程中的微观结构,例如激光金属沉积,以巨大的努力开发支持材料和工艺的开发以及支持工艺设计[2-4]。由于由移动激光源引起的每个加热和冷却循环在随后的加热和冷却循环引起的每次加热和冷却循环之后预测的微结构,因此产生用于微结构计算的反馈回路。该计算回路可能变得不稳定,使得计算的微结构和相关性能对输入参数的小变化非常敏感,例如,导热系数。本文最初由Charles Murgau等人提出的Ti-6a1-4v相变模型。采用并对马氏体相的分解进行了最小的调整。随后,该模型用于研究在激光金属沉积条件下加热和冷却期间不同相体积分数的预测的变化,相对于热处理历史的微小变化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号