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金属型离心铸造Ti—48%Al—2%Cr—2%Nb合金汽车排气阀的研制
引用本文:盛文斌,李东,杨锐,郭景杰,刘羽寅,苏彦庆,贾均.金属型离心铸造Ti—48%Al—2%Cr—2%Nb合金汽车排气阀的研制[J].铸造,2001,50(3):129-133.
作者姓名:盛文斌  李东  杨锐  郭景杰  刘羽寅  苏彦庆  贾均
作者单位:1. 中国科学院金属研究所钛合金研究室, 辽宁沈阳110015
2. 哈尔滨工业大学 材料科学与工程学院, 黑龙江哈尔滨150001
摘    要:本文利用离心铸造的方法,在金属型中浇铸了T 湛8%A轼%Cr-2%Nb合金汽车排气阀,通过SEM、XRD和EMPA等分析手段。对排气阀坯件的表面层结组织形态、成分分布和力学性能等特征进行了检测,并将热等静压(HIP)处理后的排气阀安装到483Q型柴油发动机上进行了台架试验,结果表明,金属型离心浇铸Ti-Al基合金排气阀,在保证阀体成分均匀性的同时,可在一定程度上细化铸件的显微组织,HIP处理后排气阀的平均力学性能为:σb=670MPa,σ0.2=527.5MPa和δ=3%,进一步的台架测试结果表明,热电厂气阀在测试过程中表现出了优异的密封性和耐磨性,完全满足发动机的性能要求。

关 键 词:Ti-Al基合金  离心铸造  金属型铸造  排气阀  汽车
文章编号:1001-4977(2001)03-0129-05
修稿时间:2000年10月8日

Research on Ti-48%Al-2%Cr-2%Nb Automobile Exhaust Valve Cast by Centrifugal Casting Process in Permanent Mold
SHENG Wen bin ,LI Dong ,YANG Rui ,GUO Jing jie ,LIU Yu yin ,SU Yan qing ,JIA Jun.Research on Ti-48%Al-2%Cr-2%Nb Automobile Exhaust Valve Cast by Centrifugal Casting Process in Permanent Mold[J].Foundry,2001,50(3):129-133.
Authors:SHENG Wen bin  LI Dong  YANG Rui  GUO Jing jie  LIU Yu yin  SU Yan qing  JIA Jun
Affiliation:SHENG Wen bin 1,LI Dong 1,YANG Rui 1,GUO Jing jie 2,LIU Yu yin 1,SU Yan qing 2,JIA Jun 2
Abstract:In this paper, Ti-48Al-2Cr-2Nb automobile exhaust valve was castby the centrifugal casting method in permanent mold and its surface layer structure, microstructure, element distribution , mechanical properties etc were analyzed by SEM, XRD and EMPA . Furthermore, the valves treated by HIP were tested on 483Q diesel engine platform. Results showed that the distribution of alloying elements in Ti-Al based alloy for exhaust valve was uniform and its microstructure was refined to a certain extent. The mechanical properties of exhaust valve cast by centrifugal permanent mold then treated by HIP were that the σb = 670MPa, σ0.2 =527.5MPa and δ=3%. Result of the engine platform test showed that the valve had excellent air-tightness and wear-resistant properties, so could successfully satisfy requirements of the engine.
Keywords:Ti  Al based alloy  centrifugal casting  permanent mold casting  exhaust valve  engine platform test  high temperature properties
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