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航空发动机钛合金复杂型面零件的热拉深成形工艺 被引量:1
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作者 乔旭东 王鹏飞 +4 位作者 陈明和 李春阳 吴亚凤 王富明 冯栋 《锻压技术》 CAS CSCD 北大核心 2023年第10期60-66,共7页
针对航空发动机整流罩屏零件的结构特点和拉深减薄问题,对TC1钛合金进行高温成形性能实验,基于有限元仿真模拟软件PAMSTAMP,对TC1钛合金零件展开后的坯料进行计算并模拟热拉深成形过程,将优化的模拟结果用于实际生产。结果表明:采用PAMS... 针对航空发动机整流罩屏零件的结构特点和拉深减薄问题,对TC1钛合金进行高温成形性能实验,基于有限元仿真模拟软件PAMSTAMP,对TC1钛合金零件展开后的坯料进行计算并模拟热拉深成形过程,将优化的模拟结果用于实际生产。结果表明:采用PAMSTAMP仿真软件可以有效预测零件的拉深缺陷、优化钣金初始坯料和拉深成形工艺路线以及节约试制成本;在压边力为30 kN、拉深速度为3000 mm·s^(-1)和摩擦因数为0.12的条件下,采用优化后的对坯料进行3次热成形的工艺方案,可以获得减薄尺寸满足要求的整流罩屏零件。 展开更多
关键词 TC1钛合金 整流罩屏 热拉深 减薄 高温成形性能
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Microstructure and high-temperature mechanical properties of near net shaped Ti−45Al−7Nb−0.3W alloy by hot isostatic pressing process 被引量:5
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作者 Hui-zhong LI Yi-xuan CHE +5 位作者 Xiao-peng LIANG Hui TAO Qiang ZHANG Fei-hu CHEN Shuo HAN Bin LIU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第11期3006-3015,共10页
Near net shaped Ti−45Al−7Nb−0.3W alloy(at.%)parts were manufactured by hot isostatic pressing(HIP).The microstructure and high-temperature mechanical properties of the alloy were investigated by X-ray diffractometry(X... Near net shaped Ti−45Al−7Nb−0.3W alloy(at.%)parts were manufactured by hot isostatic pressing(HIP).The microstructure and high-temperature mechanical properties of the alloy were investigated by X-ray diffractometry(XRD),scanning electron microscopy(SEM)and transmission electron microscopy(TEM).The results show that at a temperature of 700℃,the peak yield stress(YS)and ultimate tensile stress(UTS)of alloy are 534 and 575 MPa,respectively,and the alloy shows satisfactory comprehensive mechanical properties at 850℃.The alloy exhibits superplastic characteristics at 1000℃ with an initial strain rate of 5×10^−5 s^−1.When the tensile temperature is below 750℃,the deformation mechanisms are dislocation movements and mechanical twinning.Increasing the tensile temperature above 800℃,grain boundary sliding and grain rotation occur more frequently due to the accumulation of dislocations at grain boundary. 展开更多
关键词 TiAl alloy near net shape powder metallurgy high-temperature mechanical properties
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