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Superplasticity and solid-phase bonding of nanostructured materials (Review) Part II. The model of the solid-phase joint formation in titanium alloy under conditions of low temperature superplasticity

机译:纳米结构材料的超塑性和固相结合(综述)第二部分。低温超塑性条件下钛合金固相接头形成模型

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摘要

The manuscript presents a chronological review of studies dealing with the influence of the effect of superplasticity (SP) on improved solid state weldability of crystalline materials. The manuscript considers a model of solid state joining under conditions of low temperature superplasticity for nanostructured titanium alloy VT6. The data of physical modeling of the process of solid state joining under low temperature SP conditions provide scientific basis for substantiation of practical implementation of nanostructured materials at aircraft and air engine enterprises for developing advanced resource-saving technologies for producing hollow components by pressure welding.
机译:该手稿按时间顺序对研究进行了回顾,涉及超塑性(SP)的影响对改善晶体材料的固态可焊性的影响。该手稿考虑了纳米结构钛合金VT6在低温超塑性条件下的固态连接模型。低温SP条件下固态连接过程的物理模型数据为在飞机和航空发动机企业中证实纳米结构材料的实际应用提供了科学依据,以开发先进的资源节约技术以通过压焊生产中空部件。

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