欢迎来到图海文库! | 帮助中心 分享价值,成长自我!
图海文库
全部分类
  • 机械模具>
  • 机电控制>
  • 工艺夹具>
  • 车辆工程>
  • 化工环保>
  • 土木建筑>
  • 采矿通风>
  • CAD图纸>
  • 三维模型>
  • 数控编程>
  • 文档资料>
  • ImageVerifierCode 换一换
    首页 图海文库 > 资源分类 > DOC文档下载
    分享到微信 分享到微博 分享到QQ空间

    外文翻译-微观结构和化学成份对高强度钢力学性能的影响.doc

    • 资源ID:22468       资源大小:5.31MB        全文页数:31页
    • 资源格式: DOC        下载积分:10金币
    微信登录下载
    验证码下载 游客一键下载
    账号登录下载
    三方登录下载: QQ登录
    二维码
    微信扫一扫登录
    下载资源需要10金币
    邮箱地址:
    验证码: 获取验证码
    温馨提示:
    支付成功后,系统会自动生成账号(用户名为邮箱地址,密码是验证码),方便下次登录下载和查询订单;
    支付方式: 支付宝    微信支付   
    验证码:   换一换

     
    账号:
    密码:
    验证码:   换一换
      忘记密码?
        
    友情提示
    2、PDF文件下载后,可能会被浏览器默认打开,此种情况可以点击浏览器菜单,保存网页到桌面,就可以正常下载了。
    3、本站不支持迅雷下载,请使用电脑自带的IE浏览器,或者360浏览器、谷歌浏览器下载即可。
    4、本站资源下载后的文档和图纸-无水印,预览文档经过压缩,下载后原文更清晰。
    5、试题试卷类文档,如果标题没有明确说明有答案则都视为没有答案,请知晓。

    外文翻译-微观结构和化学成份对高强度钢力学性能的影响.doc

    1、Effect of microstructure and chemical composition on dynamic factor of high strength steelsJ. Qu*, W. Dabboussi, J. Nemes and S. YueThe high strain rate properties of high strength steels with various microstructures and static strength levels were studied by means of split Hopkinson bar apparatus i

    2、n shear punch mode. The as received cold rolled sheet steels were subjected to a variety of heat treatment conditions to produce several different microstructures, namely ferrite plus pearlite (FzP), ferrite plus bainite(FzB), ferrite plus martensite (FzM) and ferrite plus bainite and retained auste

    3、nite (FzBzRA). According to the variation of dynamic factor (ratio of dynamic to static strength) with static strength, two groups of microstructures with two distinct behaviours were identified, i.e. classic dual phase (ferrite plus martensite) and multiphase (including ferritepearlite, ferritebain

    4、ite, etc.). It was also observed that the general dependence of microstructure on the dynamic factor was strongly influenced by chemical composition in the case of ferrite plus martensite microstructures.Keywords: DP steel; TRIP steel; Hopkinson bar; Shear punch test; Dynamic factor; IntroductionHig

    5、h strength steels are being extensively applied to automobile body structures to improve crashworthiness without increasing weight. In particular, dual phase (DP) and transformation induced plasticity (TRIP) steels have received particular interest, as they exhibit an excellent combination of cold f

    6、ormability and strength, compared to conventional high strength low alloy (HSLA) steels.1,2 Dual phase steel is characterised by a matrix of ferrite with small islands of martensite. The hard martensite particles provide substantial strengthening while the ductile ferrite matrix gives good ductility

    7、. Therefore, the mixture acts somewhat like a particle reinforced composite and exhibits continuous yielding behaviour and a high work hardening rate. Transformation induced plasticity steel contains ferrite, bainite and retained austenite, and the relatively high ductility of this type of steel res

    8、ults from the transformation of metastable retained austenite to martensite under straining. High strength low alloy steel grades, which are low carbon grades with microalloying additions of Nb, Ti, and/or V, are also key materials fulfilling ultra light weight design requirement. The combination of

    9、 microalloying and thermomechanical processing allows the exploitation of different strengthening mechanisms.35 . To obtain an indication of crashworthiness of a material, high strain rate deformation performance, quantified by parameters such as dynamic strength and absorbed energy, is usually exam

    10、ined by Hopkinson bar testing.6,7 or drop weight crush testing.8,9 Strain rate sensitivity can be defined by the strain rate sensitivity coefficient (e.g. the m-value of the extended Hollomon equation10 or the C-value of the Johnson-Cook equation11), or by the dynamic factor, which is the ratio of t

    11、he material dynamic strength to static strength. Although there are some contradictory results in the literature, it is generally found that the dynamic factor decreases with increasing static strength level12,13. However, it seems that the dependence of microstructure on the general behaviour of dy

    12、namic factor with respect to static strength has not been clearly understood, and the effect of chemical composition has not been studied adequately. This investigation was undertaken to determine the effect of microstructure on the strain rate sensitivity of three steel compositions, which were ori

    13、ginally designed to be high strength DP, TRIP and HSLA steels respectively. Different types of microstructures with a wide range of static strength levels were obtained by various heat treatments on the as received cold rolled steels. The dynamic properties of these microstructures were then measure

    14、d by means of shear punch testing, using a split Hopkinson bar apparatus. The effect of chemistry was also studied by comparing the dynamic factor of certain microstructures generated from different steels.ExperimentalMaterialsThe materials used in this study were three cold rolled sheet steels with

    15、 a thickness of 1-7 mm, the compositions1 Schematic diagrams of various heat treatment schedulesof which were originally designed to be high strength DP, TRIP and HSLA steels respectively, as listed in Table 1. Steel A has a relatively high level of manganese plus some molybdenum to facilitate the f

    16、ormation of the dual phase microstructure. Steel B has a very high level of aluminium to enable the formation of retained austenite. Steel C is mainly strengthened by grain refining and precipitation hardening by a small addition of niobium. Each of these steels was heat treated to generate different types of microstructures, namely ferritezmartensite (FzM), ferritezpearlite (FzP), ferritezbainite (FzB), and ferritezbainitezretained austenite (FzBzRA), as listed in T


    注意事项

    本文(外文翻译-微观结构和化学成份对高强度钢力学性能的影响.doc)为本站会员主动上传,图海文库仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对上载内容本身不做任何修改或编辑。 若此文所含内容侵犯了您的版权或隐私,请立即通知图海文库(点击联系客服),我们立即给予删除!




    关于我们 - 网站声明 - 网站地图 - 资源地图 - 友情链接 - 网站客服 - 联系我们

    网站客服QQ:2356858848

      客服联系电话:18503783681

    copyright@ 2008-2022 thwenku.com网站版权所有

    ICP备案:豫ICP备2022023751号-1