应用科技
應用科技
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YING YONG KE JI
2014年
1期
59-64
,共6页
吴继超%张艳秋%赵亚楠%江树勇%单德彬
吳繼超%張豔鞦%趙亞楠%江樹勇%單德彬
오계초%장염추%조아남%강수용%단덕빈
铝合金%锻造%等温精密锻造%有限元法
鋁閤金%鍛造%等溫精密鍛造%有限元法
려합금%단조%등온정밀단조%유한원법
aluminum alloy%forging process%isothermal precision forging%finite element method
为选择合适的铝合金环形座锻件等温精密成形工艺,防止各种缺陷的发生,并使其获得合格的力学性能和抗应力腐蚀性能,采用有限元方法模拟了环形座锻件的成形过程。分析了成形时的金属流动规律,并通过预锻制坯和三次模锻工艺形成了外形完美、性能合格的高质量铝合金环形座锻件。结果表明,环形座外环壁表面处易受剧烈剪切变形而产生粗晶缺陷,因此应适当减小该处的坯料体积。坯料设计时应精确计算体积,避免多余金属过多引起终锻后期的大量金属外排,从而防止外环壁折叠缺陷的产生。通过采用多次模锻的方法在每次模锻后去除多余飞边和连皮,既可以减小下一阶段模锻成形过程中飞边桥部的阻力,降低模压力,又可以防止终锻时大量金属外排造成的折叠缺陷。
為選擇閤適的鋁閤金環形座鍛件等溫精密成形工藝,防止各種缺陷的髮生,併使其穫得閤格的力學性能和抗應力腐蝕性能,採用有限元方法模擬瞭環形座鍛件的成形過程。分析瞭成形時的金屬流動規律,併通過預鍛製坯和三次模鍛工藝形成瞭外形完美、性能閤格的高質量鋁閤金環形座鍛件。結果錶明,環形座外環壁錶麵處易受劇烈剪切變形而產生粗晶缺陷,因此應適噹減小該處的坯料體積。坯料設計時應精確計算體積,避免多餘金屬過多引起終鍛後期的大量金屬外排,從而防止外環壁摺疊缺陷的產生。通過採用多次模鍛的方法在每次模鍛後去除多餘飛邊和連皮,既可以減小下一階段模鍛成形過程中飛邊橋部的阻力,降低模壓力,又可以防止終鍛時大量金屬外排造成的摺疊缺陷。
위선택합괄적려합금배형좌단건등온정밀성형공예,방지각충결함적발생,병사기획득합격적역학성능화항응력부식성능,채용유한원방법모의료배형좌단건적성형과정。분석료성형시적금속류동규률,병통과예단제배화삼차모단공예형성료외형완미、성능합격적고질량려합금배형좌단건。결과표명,배형좌외배벽표면처역수극렬전절변형이산생조정결함,인차응괄당감소해처적배료체적。배료설계시응정학계산체적,피면다여금속과다인기종단후기적대량금속외배,종이방지외배벽절첩결함적산생。통과채용다차모단적방법재매차모단후거제다여비변화련피,기가이감소하일계단모단성형과정중비변교부적조력,강저모압력,우가이방지종단시대량금속외배조성적절첩결함。
In order to choose an appropriate process for the isothermal precision forging of an aluminum alloy ring seat, prevent the occurrence of various defects and make the alloy possess qualified mechanical properties as well as resistance to stress corrosion, the finite element method (FEM) was adopted to simulate the forming process of the ring seat forging. The laws of metal flow were analyzed and high-quality aluminum alloy forging of the ring seat with perfect shape and appropriate performance were obtained by combining preforging with three times of die forging. The results show that severe shear deformation is easy to occur on the wall surface of the outer ring of the ring seat, which shall result in the coarse-grained defect, so the billet volume in the zone should be decreased properly. Billet volume should be calculated accurately in the process of billet design so as to avoid the outflow of plenty of metal caused by the excess metal in the late stage of final forging, which can avoid the folding defect in the wall of outer ring. By means of multiple die forging, excess metal in flash and wad is removed after each die forging step, which can not only reduce the resistance of the flash bridge in the next stage of die forging to lessen the forging force, but also prevent the folding defect caused by overabundance metal in the final die forging.