A Welding Temperature Determination Method of Low Carbon Steel and Stainless Steel Welded Joint by Rotary Friction Welding Process

Ngon Dang Thien, D. L. Quang, Toan Phan Van, Tuan Tao Anh
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引用次数: 3

Abstract

The heat transfer mechanism of rotary friction welding process, which apply to carbon steel and stainless steel joining, is under unsteady state temperature distribution. In order to solve the problem, we propose a heat determination method with two main steps: (i) welding temperature finding in steady state temperature distribution, (ii) unsteady state heat transfer solution finding and welding process simulating by ANSYS software. The pair of dissimilar material work pieces AISI 1020 - AISI 304 are investigated in the study. The results from theory computation and simulation show that the interface welding temperature is 1169.9oC. With this temperature, the parameters as friction speed (n), friction pressure (P1), and friction time (t1) are determined. Then, the welding process determination is established successfully.
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低碳钢与不锈钢旋转摩擦焊接接头焊接温度的测定方法
碳钢与不锈钢连接的旋转摩擦焊传热机制处于非稳态温度分布状态。为了解决这一问题,我们提出了一种热确定方法,主要分为两个步骤:(i)在稳态温度分布下寻找焊接温度,(ii)非稳态传热解的寻找和焊接过程的ANSYS软件模拟。对不同材料的工件AISI 1020 - AISI 304进行了研究。理论计算和仿真结果表明,界面焊接温度为1169.9℃。在此温度下,确定摩擦速度n、摩擦压力P1、摩擦时间t1等参数。然后,成功地建立了焊接工艺的确定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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