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采用大变形本构模型预测热轧AISI316不锈钢厚板的轧制力
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作者 曹金荣 《中国科技论文在线精品论文》 2024年第2期251-255,共5页
采用热扭转实验数据,建立了一个AISI316钢大变形本构模型。根据建立的本构模型,采用三维有限元法模拟计算了AISI316钢热轧过程,并对计算的轧制力与实测的轧制力进行了分析。结果表明,在压下率30%~50%之间,计算值比实测值低约7%,在压下率... 采用热扭转实验数据,建立了一个AISI316钢大变形本构模型。根据建立的本构模型,采用三维有限元法模拟计算了AISI316钢热轧过程,并对计算的轧制力与实测的轧制力进行了分析。结果表明,在压下率30%~50%之间,计算值比实测值低约7%,在压下率为65%时,计算值比实测值低约12%,在工业应用范围内,采用确定的AISI316钢大应变本构模型计算的轧制力具有较高的预测精度。 展开更多
关键词 金属材料 aisi316 热轧 轧制力 本构模型 有限元模拟
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AISI316不锈钢表面等离子渗硼及摩擦磨损性能的研究 被引量:5
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作者 尹研 李翠玲 +4 位作者 刘成松 吴海波 贾亚斌 郭莉莉 秦林 《表面技术》 EI CAS CSCD 北大核心 2015年第2期43-47,共5页
目的改善AISI316不锈钢的摩擦磨损性能。方法采用双辉等离子合金化技术,以块状Fe B化合物作为源极材料,在AISI316不锈钢表面制备含硼改性层,对渗层组织、成分、相结构和显微硬度进行分析,并研究改性层在干摩擦条件下的摩擦磨损性能。结... 目的改善AISI316不锈钢的摩擦磨损性能。方法采用双辉等离子合金化技术,以块状Fe B化合物作为源极材料,在AISI316不锈钢表面制备含硼改性层,对渗层组织、成分、相结构和显微硬度进行分析,并研究改性层在干摩擦条件下的摩擦磨损性能。结果经渗硼处理后,AISI316不锈钢表面形成了一层连续、致密、均匀的改性层,主要由Mo2B和Fe B相组成。改性层具有较高的硬度(964HV0.1),较基体硬度提高了约3倍,且耐磨性较基体有明显提高。结论通过在AISI316不锈钢表面制备渗硼改性层,可明显提高基体材料的硬度和摩擦磨损性能。 展开更多
关键词 aisi316不锈钢 等离子渗硼 耐磨性
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GTAW自激发超声工艺对AISI 316不锈钢堆焊层的有效性分析
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作者 金玉静 王大庆 陆皓 《热加工工艺》 北大核心 2024年第12期133-138,144,共7页
通过自行搭建GTAW自激发超声波焊接试验平台,研究了电弧自激发超声工艺对AISI316不锈钢堆焊层的有效性。结果表明,电弧图像和声压两方面的测试均反映出所搭建平台的工作性能和自激发超声波工艺的有效性,可在无需添加额外设备的情况下实... 通过自行搭建GTAW自激发超声波焊接试验平台,研究了电弧自激发超声工艺对AISI316不锈钢堆焊层的有效性。结果表明,电弧图像和声压两方面的测试均反映出所搭建平台的工作性能和自激发超声波工艺的有效性,可在无需添加额外设备的情况下实现焊缝的晶粒细化。当超声频率为60 kHz,振幅电流为10 A时,焊缝熔深可增深59.67%,熔宽可缩小30.14%。对于AISI 316不锈钢堆焊层工件熔池系统而言,40~60 kHz接近其固有频率,更有利于通过抑制枝晶生长获得细化的晶粒。 展开更多
关键词 GTAW 超声工艺 自激发 aisi316不锈钢 微观组织
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AISI316奥氏体不锈钢低温渗碳层的组织及耐蚀性 被引量:1
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作者 朱云峰 潘邻 +5 位作者 张良界 李朋 马飞 杨闽红 童幸生 王成虎 《材料保护》 CAS CSCD 北大核心 2013年第5期27-29,2,共3页
为了提高奥氏体不锈钢的表面硬度并保持其良好的耐蚀性,采用自主开发的低温渗碳工艺对AISI316奥氏体不锈钢进行渗碳处理。运用金相显微镜和显微硬度计表征了渗碳强化层组织,通过电化学试验检测了渗碳强化层的耐蚀性。结果表明:渗碳温度... 为了提高奥氏体不锈钢的表面硬度并保持其良好的耐蚀性,采用自主开发的低温渗碳工艺对AISI316奥氏体不锈钢进行渗碳处理。运用金相显微镜和显微硬度计表征了渗碳强化层组织,通过电化学试验检测了渗碳强化层的耐蚀性。结果表明:渗碳温度越高,渗碳强化层表面硬度越高,耐蚀性越差;经过470℃低温渗碳处理的AISI316奥氏体不锈钢表面硬度从原来的300 HV0.25 N增加到800~1 000 HV0.25 N,有效硬化层达36.1μm,而其耐蚀性保持不变。 展开更多
关键词 低温渗碳 aisi316奥氏体不锈钢 渗碳强化层 表面硬度 耐蚀性
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Investigation on Electron Beam Welded Copper to AISI 316 Stainless Steel Joints 被引量:2
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作者 El-Hebeary M R Megahed H Elziady N 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2002年第S1期90-91,共2页
Joints of copper and stainless steels are used in a er ospace applications. Production of these joints by fusion welding faces many dif ficulties. This may be due to the differences in their physical, metallurgical a ... Joints of copper and stainless steels are used in a er ospace applications. Production of these joints by fusion welding faces many dif ficulties. This may be due to the differences in their physical, metallurgical a nd mechanical properties. Electron Beam Welding (EBW) process has been found to be especially well suited in this area. Selection of the appropriate welding par ameters needs thorough investigations. These parameters include: preheat tempera ture (℃), welding current (I w), focusing current (I F), welding spee d (V), height between the gun and workpiece surface (H), scan width (S w) and shift distance (S). The present work aims firstly, setting the pr oper welding conditions to get sound joint between commercially pure copper (C10 200) and AISI 316 stainless steel plates 8 mm thickness. Secondly, investigate t he effect of Electron Beam (EB) shift, single-sided and double-sided welds on the mechanical, metallurgical and chemical properties of the weld bead. Due to t he high difference in thermal conductivity between copper and stainless steel, E lectron Beam (EB) was shifted towards copper with different values. These values were ranged from 0.3 to 0.9 mm in welding without preheating of copper plate an d from 0.1 to 0.4 mm with preheating. Number of joints were welded using variabl e EBW parameters in view to obtain the sound weld bead. These parameters are as follows: gradual reduction I w=51 to 49 mA, I F=845 mA, V=8 mm/sec , H=130 mm, S w=500 μm and S=0.4 mm. The investigation has shown t hat, the copper (C10200) plate must be preheated to get sound welded joint with AISI 316 stainless steel using the EBW process. The tensile fracture in all wel ded samples occurred in copper plate away from the weld bead. This reflects that the weld bead tensile strength is greater than the copper strength. The EB shif t has slight effect on hardness distribution through weld bead. The hardness val ue (H v) reduces in gradual manner from stainless steel hardness to copper one. The EB shift distance has no significant effect on the impact toughness. 展开更多
关键词 AISI Investigation on Electron Beam Welded Copper to AISI 316 Stainless steel JOINTS
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316奥氏体不锈钢低温气体渗碳层组织与强化性能 被引量:5
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作者 马飞 潘邻 +3 位作者 张良界 李朋 朱云峰 杨闽红 《材料热处理学报》 EI CAS CSCD 北大核心 2015年第6期216-221,共6页
采用自主研发的低温气体渗碳技术对AISI316奥氏体不锈钢进行处理,目的是增强耐磨性且不损害其耐蚀性。对低温气体渗碳层显微组织、硬度梯度、耐蚀性和耐磨性进行分析。结果表明:低温气体渗碳层硬度梯度变化与其组织和碳浓度有一定关系,... 采用自主研发的低温气体渗碳技术对AISI316奥氏体不锈钢进行处理,目的是增强耐磨性且不损害其耐蚀性。对低温气体渗碳层显微组织、硬度梯度、耐蚀性和耐磨性进行分析。结果表明:低温气体渗碳层硬度梯度变化与其组织和碳浓度有一定关系,随渗碳层深度的不同表现出不同的组织和性能。低温气体渗碳处理前后AISI316奥氏体不锈钢的磨损机制由粘着磨损转变成磨粒磨损,S相是提高耐磨性的主要因素,470℃时表现出较好的耐磨性,其耐蚀性基本保持不变。 展开更多
关键词 低温气体渗碳 aisi316奥氏体不锈钢 耐蚀 耐磨 S相
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Effect of heat input on microstructure and mechanical properties of dissimilar joints of AISI 316L steel and API X70 high-strength low-alloy steel 被引量:3
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作者 Ebrahim Mortazavi Reza Amini Najafabadi Amirhossein Meysami 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2017年第12期1248-1253,共6页
The microstructure and mechanical properties of dissimilar joints of AISI 316L austenitic stainless steel and API X70 high-strength low-alloy steel were investigated.For this purpose,gas tungsten arc welding(GTAW)wa... The microstructure and mechanical properties of dissimilar joints of AISI 316L austenitic stainless steel and API X70 high-strength low-alloy steel were investigated.For this purpose,gas tungsten arc welding(GTAW)was used in three different heat inputs,including 0.73,0.84,and 0.97 kJ/mm.The microstructural investigations of different zones including base metals,weld metal,heat-affected zones and interfaces were performed by optical microscopy and scanning electron microscopy.The mechanical properties were measured by microhardness,tensile and impact tests.It was found that with increasing heat input,the dendrite size and inter-dendritic spacing in the weld metal increased.Also,the amount of delta ferrite in the weld metal was reduced.Therefore,tensile strength and hardness were reduced and impact test energy was increased.The investigation of the interface between AISI 316L base metal and ER316L filler metal showed that increasing the heat input increases the size of austenite grains in the fusion boundary.A transition region was formed at the interface between API X70 steel and filler metals. 展开更多
关键词 Dissimilar joint AISI 316L steel API X70 high-strength low-alloy steel Transition region Heat input
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Microstructure evolution and mechanical properties of 316L austenitic stainless steel with aluminum addition by warm rolling
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作者 Xin GUO Pei-qing La +2 位作者 Heng Li Yu-peng Wei Xue-feng Lu 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2018年第10期1068-1077,共10页
Microstructure evolution and mechanical properties of 316L austenitic stainless steel with aluminum addition by warm rolling at 550 ℃ were investigated. It is found that sample is composed of an ashen austenite matri... Microstructure evolution and mechanical properties of 316L austenitic stainless steel with aluminum addition by warm rolling at 550 ℃ were investigated. It is found that sample is composed of an ashen austenite matrix, a gray black ferrite phase and a small number of NiCx. The average grain sizes are 21.62, 19.66 and 19.49 μm for samples with the rolling deformation of 30%, 50% and 70%, respectively. The yield strength and tensile strength of samples with solid solution time of 30 min and deformation of 70% are higher. The fracture modes are similar and belong to toughness fracture. The fracture surfaces of the samples are composed of relatively large equal-axis ductile dimples (5-15 μm) and fine scattered ones around the dimples (〈 5 μm). As the rolling deformation increases, the quantity of subgrain boundary increases and the 〈 101 〉 orientation is more prominent. {001 } 〈 110 〉 rotation-cube textures are present in ferrite phase of samples and weak Goss texture is formed in austenite pole images. 展开更多
关键词 AISI 316L austenitic stainless steel Warm rolling Tensile property Fracture mechanism Deformationtexture
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