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Hot Working Defines Thermomechanical Processing (TMP) For Aluminum Alloys And Composites

机译:热加工为铝合金和复合材料定义热机械加工(TMP)

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TMP of Al alloys includes hot working with dynamic substructures and deformation bands for texture components combined with static recovery or recrystallization as well as cold working altered by annealing. The above processes are separately tailored for solute (Al, Mg), dispersoid (Al-0.7Fe) and precipitation hardening alloys; aging combined with deformation can raise strength or improve fatigue or corrosion resistance. Hot and cold rolling with suitable holding intervals are managed to combine deformation and annealing textures for planar anisotropy or for producing less fibrous grains to avoid delamination corrosion; grains may be severely refined by discontinuous or continuous recrystallization for superplastic sheet. In hot-billet and impact extrusion as an addition to substructure and texture strengthening, the intense heating near the die may be employed for precipitate solution with exit quenching for press heat treatment to T5 temper. Similarly, friction stir surface treatment and welding provide intense hot straining with additional softening as metal is swept behind the pin. In combination with some of the above, forging provides grain and dispersoid fibering oriented for crack retardation; semi solid forming competes with this.
机译:铝合金的TMP包括具有动态子结构和变形带的热加工,以及与静态恢复或再结晶相结合的织构组件的变形带,以及通过退火改变的冷加工。以上工艺分别针对溶质(Al,Mg),弥散体(Al-0.7Fe)和沉淀硬化合金量身定制;老化与变形相结合可以提高强度或改善疲劳或耐腐蚀性。对热轧和冷轧以及适当的保持间隔进行管理,以将变形和退火织构相结合,以实现平面各向异性或减少纤维状晶粒的产生,从而避免分层腐蚀。超塑性板材的不连续或连续重结晶可能会严重地细化晶粒。在热坯料和冲击挤压中,除了对子结构和织构进行强化之外,可以在模头附近施加强烈的热量,以沉淀溶液的形式进行出口淬火,以对T5回火进行压力热处理。同样,当金属扫过销钉后,搅拌摩擦的表面处理和焊接可提供强烈的热应变并具有额外的软化作用。与上述某些方法结合使用时,锻造可提供晶粒和分散态的纤维,以延缓裂纹的产生。半固态成型与此竞争。

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