网站首页期刊简介编委会过刊目录投稿指南广告合作征订与发行联系我们English
温成形界面粉末润滑的摩擦特性与表面膜分析
英文标题:Frictional characteristic and surface film analysis on powder lubrication of warm forming interface
作者:刘付春1 昌晶晶2 王伟2 顾伟2 
单位:1.安徽江淮汽车股份有限公司 安徽 合肥 230009 2. 合肥工业大学 摩擦学研究所 安徽 合肥 230009 
关键词:温成形 粉末润滑 摩擦系数 表面膜 表面评价 
分类号:
出版年,卷(期):页码:2016,41(1):111-115
摘要:

在温成形过程中,由于需要达到一定的温度且压力较大,传统的油脂已不能实现有效润滑甚至失去润滑能力,而固体粉末润滑的优点显得十分突出,固体粉末的静态承载特性和环境适应性使其在温成形中广泛应用。本文采用环境可控多功能摩擦磨损试验机,在一定温度条件下进行粉末润滑特性试验来研究载荷、转速对粉末润滑特性的影响,并对摩擦系数、润滑膜表面状况作出分析评价。结果表明:粉末润滑在低载荷情况下,能正常工作,磨损不严重;适当增加载荷,摩擦系数会降低,但表面磨损会加重;适当增加转速可以有良好的减摩效果;同等载荷的情况下,提高转速会加速磨损。

In the warm forming process, the traditional oil and grease have been unable to achieve effective lubrication and even lost the ability of lubrication because of the requirements of high temperature and large pressure. However, the advantage of powder lubrication is obvious, and it is widely used in the warm forming based on static load characteristics and environmental adaptability. The experiment of power lubricating characteristics at a certain temperature was carry out to research the influence of load and rotate speed on powder lubricating characteristics by the multi-function environment controllable friction and wear testing machine. Then the coefficient of friction and condition of lubricating film surface were analyzed and evaluated. The results show that the powder lubrication can work normally under low load condition, and the sample does not wear seriously. The friction coefficient decreases with the load increases properly, so the sample has a sharp worn surface. A good anti-friction effect is realized by proper increasing of the speed. Under the equal load, improving rotate speed can accelerate the wear.

基金项目:
国家自然科学基金资助项目(51475135);博士后基金一等资助项目(2014M550339);清华大学摩擦学国家重点实验室开放基金重点项目(SKLTKF13A02)
作者简介:
刘付春(1975-),男, 硕士,工程师
参考文献:

[1]龙军峰,赵阳,吕琳,等.Docol 1200M超高强钢板温成形性能研究[J].锻压技术, 2014, 39(2):37-40.

Long J F,Zhao Y,Lv L,et al. Research on warm forming property of Docol 1200M ultra high strength steel[J]. Forging & Stamping Technology,2014,39(2):37-40.

[2]王芳芳,申昱,孔啸,等.螺母板温成形条件[J]塑性工程学报,2013,20(2):10-13.

Wang F F,Shen Y,Kong X, et al. Research on conditions of nut plate warm forming[J]. Journal of Plasticity Engineering, 2013,20(2):10-13.

[3]申庆援,单垄垄,张晓斌,等.钛合金螺母浮动式精密温成形工艺研究[J].锻压技术, 2014, 39(2):74-78.

Shen Q Y,Shan L L,Zhang X B,et al. Research of precision warm-forming by floating-die for titanium alloy nut[J]. Forging & Stamping Technology, 2014,39(2):74-78.

[4]海万秀,曾俊菱,任书芳,等.有限氧化物粉末润滑下Ti3SiC2自配副在空气中的摩擦系数-温度特性[J].摩擦学学报,2014,34(3):248-255.

Hai W X,Zeng J L,Ren S F,et al. Friction coefficients of self-mated Ti3SiC2 under lubrication of oxide powders without supply at elevated temperature in air[J]. Tribology Letters, 2014,34(3):248-255.

[5]王海,王廷和,王进,等.AZ31B镁合金板料工具转动渐进成形不同润滑方式的比较[J].锻压技术,2014,39(2):27-30.

Wang H,Wang T H,Wang J, et al. Comparison of different lubrication methods of rotational incremental sheet forming for AZ31B magnesium alloy sheet[J].Forging & Stamping Technology, 2014,39(2):27-30.

[6]Wang W, Liu X J, Xie T ,et al. Effects of sliding velocity and normal load on tribological characteristics in powder lubrication[J]. Tribology Letters,2011, 43(2):213-219.

[7]Wang W, Liu X J, Liu K.Micro damage forms and mechanism analysis of a powder layer under particulate lubrication[J].Tribology,2012,32(3):258-263.

[8]Kuniaki Dohdai,Christine Boher,Farhad Rezaiaria, et al. Tribology in metal forming at elevated temperatures[J].Friction,2015,3(1):1-27.

[9]Tomala A, Hernandez S, Rodriguez Ripoll M, et al. Tribological performance of some solid lubricants for hot forming through laboratory simulative tests[J]. Tribol. Int.,2014,74: 164-173.

[10]Hong Seok Kim. A combined FEA and design of experiments approach for the design and analysis of warm forming of aluminum sheet alloys[J].The International Journal of Advanced Manufacturing Technology,2010, 51:1-14.

服务与反馈:
文章下载】【加入收藏
《锻压技术》编辑部版权所有

中国机械工业联合会主管  中国机械总院集团北京机电研究所有限公司 中国机械工程学会主办
联系地址:北京市海淀区学清路18号 邮编:100083
电话:+86-010-82415085 传真:+86-010-62920652
E-mail: fst@263.net(稿件) dyjsjournal@163.com(广告)
京ICP备07007000号-9