热加工工艺
熱加工工藝
열가공공예
HOT WORKING TECHNOLOGY
2010年
5期
17-20
,共4页
细晶5083铝合金%非等温拉深%拉深成形能力%极限拉深比
細晶5083鋁閤金%非等溫拉深%拉深成形能力%極限拉深比
세정5083려합금%비등온랍심%랍심성형능력%겁한랍심비
fine-grained 5083 Al ahoy%nonisothcrmal deep drawing%deep drawing formability%limiting drawing ratio(LDR)
通过实验研究了拉深凹模温度、拉深速度、压边间隙及润滑条件对细晶5083铝合金非等温拉深工艺的影响.实验结果表明:细晶5083铝合金板料在凹模温度为250℃以上具有良好的拉深成形能力.当凹模温度为275℃时,极限托深比达到2.9;当在较佳的凹模温度不同的拉深速度下进行拉深时,得出细晶5083铝合金非等温拉深工艺在一定的拉深速度范嗣内对应变速率不敏感,在压头速度≤2mm/min时均能拉深成功.考虑了润滑层厚度和材料在升温过程中的热膨胀性能,通过实验得出的最佳压边间隙为1.9mm.选用水基石墨作为润滑剂,润滑层厚度达到0.3mm左右时拉深能够成功进行.
通過實驗研究瞭拉深凹模溫度、拉深速度、壓邊間隙及潤滑條件對細晶5083鋁閤金非等溫拉深工藝的影響.實驗結果錶明:細晶5083鋁閤金闆料在凹模溫度為250℃以上具有良好的拉深成形能力.噹凹模溫度為275℃時,極限託深比達到2.9;噹在較佳的凹模溫度不同的拉深速度下進行拉深時,得齣細晶5083鋁閤金非等溫拉深工藝在一定的拉深速度範嗣內對應變速率不敏感,在壓頭速度≤2mm/min時均能拉深成功.攷慮瞭潤滑層厚度和材料在升溫過程中的熱膨脹性能,通過實驗得齣的最佳壓邊間隙為1.9mm.選用水基石墨作為潤滑劑,潤滑層厚度達到0.3mm左右時拉深能夠成功進行.
통과실험연구료랍심요모온도、랍심속도、압변간극급윤활조건대세정5083려합금비등온랍심공예적영향.실험결과표명:세정5083려합금판료재요모온도위250℃이상구유량호적랍심성형능력.당요모온도위275℃시,겁한탁심비체도2.9;당재교가적요모온도불동적랍심속도하진행랍심시,득출세정5083려합금비등온랍심공예재일정적랍심속도범사내대응변속솔불민감,재압두속도≤2mm/min시균능랍심성공.고필료윤활층후도화재료재승온과정중적열팽창성능,통과실험득출적최가압변간극위1.9mm.선용수기석묵작위윤활제,윤활층후도체도0.3mm좌우시랍심능구성공진행.
The effect of temperature of female die,deep drawing speeds,blankholder gap and lubricating condition on nonisothermal deep technology of fine-grained 5083 Al alloy was studied.The experimental results show that the fine-grained 5083 Al alloy sheets have good deep drawing formability when temperature of female die is higher than 250℃.When the temperature of female die was 275℃,the limiting drawing ratio(LDR)of the material reaches maximum 2.9.Under the optimum female-temperature and different punch speed,the influences of strain rate on the nonisothermal deep drawing process of fine-grained 5083 Al alloy is a little.When the punch speed is equal or less than 2 mm/min;the deep drawing is well.The optimum blankholder gap 1.9 mm is determined to think of the thickness of lubricating layer and thermal expansion during temperature rising.When the colloidal graphite mixed with water is selected for the lubricant and the thickness of lubricant is about 0.3 mm,the deep drawing experiment can be carried out successfully.