中国激光, 2012, 39 (8): 0803001, 网络出版: 2012-06-07   

工件形状对激光相变硬化温度场和应力场的影响

Effects of the Shape of Workpiece on the Temperature and Stress Field Distribution during Laser Transformation Hardening
作者单位
中国石油大学机电工程学院, 山东 青岛 266555
摘要
利用Sysweld有限元软件建立三维有限元模型,采用三维高斯热源,考虑材料热物性能随温度的变化,对平板和回转体内壁进行了激光相变硬化数值模拟。分析了温度场、残余应力以及马氏体分布的异同,研究了工件形状对激光相变硬化温度场和残余应力的影响规律。结果表明,在表层方向上,平板模型和回转体内壁模型的热循环相似;截面方向上,内壁模型峰值温度高于平板模型。处理后相变区组织均主要以马氏体为主,其体积分数约为90%。相变区边缘及热影响区产生残余拉应力,相变区存在残余压应力;与内壁模型相比,平板模型相变区中心残余压应力数值较大。
Abstract
A three-dimesional (3-D) finite element model for the numerical simulation of laser transformation hardening on the plate and inner wall of revolving body is established by means of a finite element code-Sysweld, in which the change of thermal mechanical parameters with temperature is considered and the 3-D Gaussian heat source is adopted. The temperature field, martensite distribution and residual stress field are predicted. The influence of workpiece shape on the temperature and residual stress are studied. The results show that the thermal cycles of different points on the surface direction are similar for the two model while the peak temperature of different points of inner wall model in the section direction are higher than that of the plate model. After treatment martensite can be obtained as a main phase in the hardened zone with an about phase volume fraction of 90%. The tensile stress appears in the boundary of hardening zone and heat affected zone (HAZ) and the compressive stress exists in the hardening zone. Comparing with revolving body, the value of the compressive residual stress in the center of the surface of plate is higher.
参考文献

[1] 何强, 苏华礼, 刘宏昭 等. 高速主轴用40Cr钢的激光相变硬化工艺[J]. 中国激光, 2009, 36(8): 2192~2196

    He Qiang, Su Huali, Liu Hongzhao et al.. Research on 40Cr steel for high-speed spinde laser transformation hardening technics[J]. Chinese J. Lasers, 2009, 36(8): 2192~2196

[2] 叶云霞, 符永宏, 杨国成. 快速轴流CO2激光器激光相变硬化处理HT250的研究[J]. 中国激光, 2002, 29(10): 945~949

    Ye Yunxia, Fu Yonghong, Yang Guocheng et al.. Study on laser phase transformation hardening of HT250 by high speed axix flow CO2 laser[J]. Chinese J. Lasers, 2002, 29(10): 945~949

[3] 王扬, 邓宗全, 曲存景 等. 抽油泵整体泵筒激光表面淬火[J]. 哈尔滨工业大学学报, 1999, 31(4): 40~42

    Wang Yang, Deng Zongquan, Qu Cunjing et al.. Laser surface hardening for integral barrel tubing pumps[J]. J. Harbin Institute of Technology, 1999, 31(4): 40~42

[4] 刘富荣, 高谦, 王广生 等. 38CrMoAlA钢激光和渗氮复合处理研究[J]. 航空制造技术, 2003, (3): 65~67

    Liu Furong, Gao Qian, Wang Guangsheng et al.. Study on composite treatment of 38CrMoAlA steel by laser and nitriding[J]. Aeronautical Manufacturing Technology, 2003, (3): 65~67

[5] S. Neil. Bailey, Wenda Tan, Yung C. Shin. Predictive modeling and experimental results for residual stresses in laser hardening of AISI 4140 steel by a high power diode laser[J]. Surf. & Coat. Technol., 2009, 203(14-15): 2003~2012

[6] Rahul Patwa, Yung C. Shin. Predictive modeling of laser hardening of AISI5150H steels[J]. International Journal of Machine Tools and Manufacture, 2007, 47(2): 307~320

[7] G. Tani, A. Fortunato, A. Ascari et al.. Laser surface hardening of martensitic stainless steel hollow parts[J]. CIRP Annals、|Manufacturing Technology, 2010, 59(1): 207~210

[8] Chaowen Li, Yong Wang, Bin Han. Microstructure, hardness and stress in melted zone of 42CrMo steel by wide-band laser surface melting[J]. Opt. & Lasers in Engng, 2011, 49(4): 530~535

[9] 黎超文, 王勇, 韩涛 等. 轧辊搭接激光表面熔凝数值分析[J]. 中国激光, 2010, 37(7): 1861~1867

    Li Chaowen, Wang Yong, Han Tao et al.. Finite elements analysis of overlapping ratios of laser surface melting on roller[J]. Chinese J. Lasers, 2010, 37(7): 1861~1867

[10] 李亚娟, 李午申. X80管线钢环焊缝接头残余应力的数值模拟[J]. 焊接学报, 2010, 31(6): 97~100, 104

    Li Yajuan, Li Wushen. Numerical simulation on welding residual stresses of X80 pipeline girth weld joint[J]. Transactions of the China Welding Institution, 2010, 31(6): 97~100,104

[11] Sysweld. Engineering Guide of Training and Toolbox[M]. France: ESI Group, 2004

[12] M. F. Ashby. The transformation hardening of steel surfaces by laser beams-I. Hypo-eutectoid steels[J]. Acta Metall, 1984, 32(11): 1935~1940

张哲, 韩彬, 王勇, 王楠楠. 工件形状对激光相变硬化温度场和应力场的影响[J]. 中国激光, 2012, 39(8): 0803001. Zhang Zhe, Han Bin, Wang Yong, Wang Nannan. Effects of the Shape of Workpiece on the Temperature and Stress Field Distribution during Laser Transformation Hardening[J]. Chinese Journal of Lasers, 2012, 39(8): 0803001.

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