首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >DETERMINATION OF SUPERPLASTIC MATERIAL PROPERTIES FOR PARENT MATERIAL AND FRICTION STIR WELDED JOINT OF AL-ALLOY AA6061-T6
【24h】

DETERMINATION OF SUPERPLASTIC MATERIAL PROPERTIES FOR PARENT MATERIAL AND FRICTION STIR WELDED JOINT OF AL-ALLOY AA6061-T6

机译:铝合金AA6061-T6母材和摩擦搅拌焊接粘接性的超塑性材料性能的测定

获取原文

摘要

Superplastic forming (SPF) takes the advantage of the metallurgical phenomenon of superplasticity (SP) to form complex and highly intricate bulk and sheet metal parts. SP refers to the extraordinary formability of certain metals and alloys, ceramics, composites (both metallic- and ceramic-based), dispersion strengthened materials, nanostructured materials and bulk metallic glasses, which allows them to suffer elongations of several hundred percent under the action of tensile forces. The superplastic forming characteristics of materials like aluminium, titanium and magnesium alloys have been clearly identified in order to produce complicated near-net shapes. These materials are used in the aeronautical manufacturing industry and automotive manufacturing industries due to the significant weight (by ~ 30%) and cost (by ~50%) saving that is possible. Some research work has proved superplastic forming of friction stir welded (FSW) joints also. The FSW joint efficiencies have been characterized by mechanical and metallurgical examination. Studies are also available on the behavior of FSW joints of similar and dissimilar metals. Information on the performance of friction stir welded joints during superplastic forming is rather limited, but it is important to achieve excellent properties in the friction stir welded joints also during superplastic forming. FSP (friction stir processing) - SPF (superplastic forming) is presently being promoted as a very viable near-net shape technology for making very large and complicated sheet metal products. To achieve this superplastic material parameters are much required in industry to develop new shapes. One has to understand the flow rule relationship and mechanics involved during sheet metal forming at high temperature to select the material and forming tool with selected process parameters. This paper deals with the determination of superplastic material properties of non-superplastic aluminum alloy AA6061-T6. The superplastic material properties like strain rate sensitivity index, flow stress and strain rate were determined for both the selected material and friction stir welded sheets at various tool rotation speeds. The superplastic free blow forming experiments were performed for various constant temperatures and pressure for the parent material. Similarly the superplastic free blow forming experiments were performed for the friction stir welded joint for various tool rotation speed at constant temperature. The methods were used to determine the material properties are straight line fit method and polynomial regression method. The superplastic forming height is significantly high in case of the FSW specimens at 2000 rpm, the initial forming rate is faster and the strain rate sensitivity index obtained is also higher when compared to the parent material properties. The strain rate sensitivity index obtained for friction stir welded specimen during superplastic forming was foundto have improved when compared to the parent material.
机译:超塑性成型(SPF)利用超塑性(SP)的冶金现象,以形成复杂和高度复杂的散装和金属板件。 SP是指某些金属和合金,陶瓷,复合材料(基于金属和陶瓷),分散的材料,纳米结构材料和散装金属玻璃的非凡的可成形性,这使得它们在动作下允许它们在几百百分点延长延长拉伸力。已经清楚地识别了铝,钛和镁合金等材料的超塑性形成特性,以产生复杂的近净形状。由于大量重量(〜30%)和成本(〜50%)节省,这些材料用于航空制造工业和汽车制造业的应用。一些研究工作已经证明了摩擦搅拌焊接(FSW)接头的超塑性成型。通过机械和冶金检查,以FSW联合效率为特征。研究也可用于类似于不同的金属的FSW关节的行为。超塑性成形期间摩擦搅拌接头性能的信息相当有限,但在超塑性形成期间也是在摩擦搅拌接头中实现优异的性质。 FSP(摩擦搅拌加工) - 目前促进了SPF(超塑性成型)作为制造非常大且复杂的金属板制品的非常可行的近净形状技术。为了实现这种超塑性材料,在工业中需要开发新形状。必须了解在高温下在金属板形成期间所涉及的流量规则关系和机制,以选择具有所选工艺参数的材料和成形工具。本文涉及非超塑性铝合金AA6061-T6的超塑性材料性能的测定。在各种工具转速下,针对所选材料和摩擦搅拌焊接片确定具有应变速率灵敏度指数,流量应力和应变速率等超塑性材料特性。对母材料的各种恒定温度和压力进行超塑性自由吹吹形成实验。类似地,在恒温下,对各种刀具转速进行摩擦搅拌焊接接头进行超塑性自由吹吹孔。该方法用于确定材料特性是直线拟合方法和多项式回归方法。在2000rpm的FSW样品的情况下,超塑性成型高度明显高,初始成形速率更快,与母体材料特性相比,所获得的应变率敏感性指数也更高。与母体材料相比,发现在超塑性形成期间用于摩擦搅拌焊接样品的应变速率敏感性指数。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号