贝氏体淬火等温温度对低碳硅锰钢组织转变及力学性能影响

来源 :塑性工程学报 | 被引量 : 0次 | 上传用户:jianyong1
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
通过I&Q&PB热处理工艺对实验钢进行不同淬火温度等温,采用场发扫描电镜(SEM)和X射线衍射仪(XRD)对组织进行观察,并分析实验钢的力学性能。结果表明,不同淬火温度下得到不同的组织和力学性能;淬火温度为380℃时,组织为板条贝氏体,随着淬火温度的升高,组织逐渐向粒状贝氏体转变,且粒状贝氏体存在两种形态,即铁素体基体上存在链状M/A岛和铁素体基体上分布着球状M/A组织;板条状贝氏体抗拉强度高达1 200MPa,但断后伸长率仅为18%,粒状贝氏体强度稍低,抗拉强度为940MPa~800MPa,但塑性较好,伸长率范围27%~30%,其强塑积≥24 000MPa·%,高于板条贝氏体。 The experimental steel was subjected to different quenching temperature isothermal treatment by I & Q & PB heat treatment process. The microstructure was observed by field scanning electron microscopy (SEM) and X-ray diffraction (XRD), and the mechanical properties of the experimental steel were analyzed. The results show that different microstructures and mechanical properties are obtained under different quenching temperatures. When the quenching temperature is 380 ℃, the microstructure is lath bainite. With the increase of quenching temperature, the microstructure changes gradually to granular bainite, The existence of two forms of martensite, ferrite matrix exists on the chain M / A island and ferrite matrix distribution of spherical M / A tissue; lath bainite tensile strength as high as 1 200MPa, but after the break The growth rate is only 18%, the granular bainite is slightly lower, the tensile strength is 940MPa ~ 800MPa, but the plasticity is good, the elongation range is 27% ~ 30%, and its strong plastic product is ≥24000MPa ·% Slab bainite.
其他文献
随着新课改不断深入,教育部门对初中数学教学提出了新的要求,即数学教师在教学中不仅要传授学生基础的理论知识,还要注重培养学生的数学思维能力和实践应用能力,促使其全面发
目的探讨儿童急性间质性肾炎(acute interstitial nephritis,AIN)的病因、临床表现和肾脏病理特点及其危险因素。方法回顾性收集解放军东部战区总医院2010年1月至2019年12月经肾穿刺活检术确诊为AIN儿童的病因、临床表现、实验室检查结果、治疗方法和预后等资料。采用Kaplan-Meier法评估AIN儿童的肾脏存活率。采用Cox回归模型分析AIN患儿基线时进展为终末期肾