材料导报
材料導報
재료도보
MATERIALS REVIEW
2010年
4期
58-62
,共5页
毛建军%潘复生%陈先华%彭建%汤爱涛%刘传璞
毛建軍%潘複生%陳先華%彭建%湯愛濤%劉傳璞
모건군%반복생%진선화%팽건%탕애도%류전박
ZK60镁合金%热压缩变形%流变应力%变形激活能%动态再结晶
ZK60鎂閤金%熱壓縮變形%流變應力%變形激活能%動態再結晶
ZK60미합금%열압축변형%류변응력%변형격활능%동태재결정
ZK60 magnesium alloy%hot compression deformation%flow stress%deformation activation energy%dynamic recrystallization
采用Gleeble-1500热模拟机在温度250~400℃、应变速率0.001~1s~(-1)、最大变形程度105%的条件下对ZK60镁合金进行了高温压缩模拟实验研究.分析了实验合金在高温变形时的流变应力和应变速率及变形温度之间的关系,计算了变形激活能和应力指数,并观察了热压缩变形过程中组织的变化.结果表明,合金的峰值流变应力随应变速率的增大而增加,随温度的升高而减小;在给定的变形条件下,计算出合金的变形激活能为63~130kJ/mol,应力指数为2.78~3.79;降低变形温度和提高应变速率可使再结晶晶粒的平均尺寸减小.
採用Gleeble-1500熱模擬機在溫度250~400℃、應變速率0.001~1s~(-1)、最大變形程度105%的條件下對ZK60鎂閤金進行瞭高溫壓縮模擬實驗研究.分析瞭實驗閤金在高溫變形時的流變應力和應變速率及變形溫度之間的關繫,計算瞭變形激活能和應力指數,併觀察瞭熱壓縮變形過程中組織的變化.結果錶明,閤金的峰值流變應力隨應變速率的增大而增加,隨溫度的升高而減小;在給定的變形條件下,計算齣閤金的變形激活能為63~130kJ/mol,應力指數為2.78~3.79;降低變形溫度和提高應變速率可使再結晶晶粒的平均呎吋減小.
채용Gleeble-1500열모의궤재온도250~400℃、응변속솔0.001~1s~(-1)、최대변형정도105%적조건하대ZK60미합금진행료고온압축모의실험연구.분석료실험합금재고온변형시적류변응력화응변속솔급변형온도지간적관계,계산료변형격활능화응력지수,병관찰료열압축변형과정중조직적변화.결과표명,합금적봉치류변응력수응변속솔적증대이증가,수온도적승고이감소;재급정적변형조건하,계산출합금적변형격활능위63~130kJ/mol,응력지수위2.78~3.79;강저변형온도화제고응변속솔가사재결정정립적평균척촌감소.
Hot compression tests of ZK60 magnesium alloy are performed on Gleeble-1500 thermal simulator testing machine at temperatures ranging from 250℃ to 400℃ and strain rates between 0.001s~(-1) and 1s~(-1).The relationship between flow stress and deformation temperature as well as strain rate is analyzed and the deformation activation energy and stress exponent are calculated.The strained microstructure of the alloy is characterized by optical microscope after compression deformation.It is shown that the peak flow stress increases with an increase of strain rate at constant temperature,and becomes lower with elevating deformation temperature at constant strain rate.The deformation activation energy of 63~130kJ/mol and the corresponding stress exponent of 2.78~3.79 are determined respectively.The average dynamically recrystallized grain size reduces with decreasing temperature and increasing strain rate.