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Investigation of Surface Damage in Forming of High Strength and Galvanized Steel Sheets 被引量:4
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作者 Zhongqi Yu Yingke Hou +2 位作者 Haomin Jiang Xinping Chen Weigang Zhang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2009年第3期389-394,共6页
Powdering/exfoliating of coatings and scratching galvanized steels and high strength steels (HSS), are the main forms of surface damage in the forming of which result in increased die maintenance cost and scrap rate... Powdering/exfoliating of coatings and scratching galvanized steels and high strength steels (HSS), are the main forms of surface damage in the forming of which result in increased die maintenance cost and scrap rate. In this study, a special rectangular box was developed to investigate the behavior and characteristics of surface damage in sheet metal forming (SMF) processes. U-channel forming tests were conducted to study the effect of tool hardness on surface damage in the forming of high strength steels and galvanized steels (hot-dip galvanized and galvannealed steels). Experimental results indicate that sheet deformation mode influences the severity of surface damage in SMF and surface damage occurs easily at the regions where sheet specimen deforms under the action of compressive stress. Die corner is the position where surface damage initiates. For HSS sheet, surface damage is of major interest due to high forming pressure. The HSS and hot-dip galvanized steels show improved ability of damage-resistance with increased hardness of the forming tool. However, for galvannealed steel it is not the forming tool with the highest hardness value that performs best. 展开更多
关键词 Surface damage sheet metal forming high strength steel Galvanized steel
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Research on the design of cold rolled ultra high strength sheet steel
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作者 Zhu Xiaodong Li Xufei Zhang Yulong 《Baosteel Technical Research》 CAS 2008年第4期3-7,共5页
This study researches cold rolled ultra high strength martensitic steel processed by water quenching. It is found that both the quenching and overageing temperatures greatly influence the mechanical properties of mart... This study researches cold rolled ultra high strength martensitic steel processed by water quenching. It is found that both the quenching and overageing temperatures greatly influence the mechanical properties of martensitic steel. A tensile strength of 1500 MPa can be obtained from 0.2% C-1.8% Mn steel by soaking at 840℃,quenching at 700℃ and overageing at 200℃ for several minutes. The continuous cooling transformation (CCT) diagram reveals that full martensite can be obtained at a cooling rate of 100℃/s or higher; and at a cooling rate of 3 - 10℃/s,austenite barely decomposes at 700℃. For steel with 0.2% carbon and less manganese, austenite decomposition occurs before it is cooled to 700℃ at a cooling rate of 3 - 10℃/s, which leads to lower tensile strength. It is possible to reduce the manganese content of the 1500 MPa martensitic steel by increasing the quenching temperature. To increase the quenching temperature,the control of flatness during water quenching becomes a major concern. 展开更多
关键词 cold rolled steel ultra high strength sheet steel martensitic steel
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Delayed fracture of tensile strength 980 MPa grade steels for automotive applications
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作者 ZHOU Qingjun HUANG Fa WANG Li 《Baosteel Technical Research》 CAS 2016年第1期38-43,共6页
Three different types of tensile strength (TS) 980 MPa grade advanced high-strength steels used in automotive applications, namely, 980MS ( martensite steel ), 980DP ( dual phase ) and 980QP ( quenching and par... Three different types of tensile strength (TS) 980 MPa grade advanced high-strength steels used in automotive applications, namely, 980MS ( martensite steel ), 980DP ( dual phase ) and 980QP ( quenching and partitioning) steels were examined. The delayed fracture resistance of the steels was evaluated using a U-bend test, slow strain rate test(SSRT) and a constant load tensile test. The results indicated that all the steels could pass the 300 h HC1 solution immersion test and none of the U-bend specimens was fractured in the test. However,the steels exhibited different susceptibilities to delayed fracture under SSRT and the constant load tensile tests. 980DP exhibited the highest resistance to delayed fracture among all the samples, while 980MS was found to be the most susceptible to delayed fracture. 展开更多
关键词 advanced high-strength steel auto sheet delayed fracture HYDROGEN
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Experimental Investigation of the Effect of the Material Damage Induced in Sheet Metal Forming Process on the Service Performance of 22MnB5 Steel 被引量:7
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作者 ZHUANG Weimin XIE Dongxuan CHEN Yanhong 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2016年第4期747-755,共9页
The use of ultra-high strength steels through sheet metal forming process offers a practical solution to the lightweight design of vehicles.However,sheet metal forming process not only produces desirable changes in ma... The use of ultra-high strength steels through sheet metal forming process offers a practical solution to the lightweight design of vehicles.However,sheet metal forming process not only produces desirable changes in material properties but also causes material damage that may adversely influence the service performance of the material formed.Thus,an investigation is conducted to experimentally quantify such influence for a commonly used steel(the 22MnB5 steel) based on the hot and cold forming processes.For each process,a number of samples are used to conduct a uniaxial tensile test to simulate the forming process.After that,some of the samples are trimmed into a standard shape and then uniaxially extended until fracture to simulate the service stage.Finally,a microstructure test is conducted to analyze the microdefects of the remaining samples.Based on the results of the first two tests,the effect of material damage on the service performance of 22MnB5 steel is analyzed.It is found that the material damages of both the hot and cold forming processes cause reductions in the service performance,such as the failure strain,the ultimate stress,the capacity of energy absorption and the ratio of residual strain.The reductions are generally lower and non-linear in the former process but higher and linear in the latter process.Additionally,it is found from the microstructure analysis that the difference in the reductions of the service performance of 22MnB5 by the two forming processes is driven by the difference in the micro damage mechanisms of the two processes.The findings of this research provide a useful reference in terms of the selection of sheet metal forming processes and the determination of forming parameters for 22MnB5. 展开更多
关键词 material damage sheet metal forming ultra-high strength steel 22MnB5 steel
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The production and practice of cold-rolled steel sheets for automobile
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作者 ZHU Guosen,XU Haiwei,LIU Li,CHEN Lianfeng and CHEN Bin Shougang Research Institute of Technology,Beijing 100043,China 《Baosteel Technical Research》 CAS 2010年第S1期50-,共1页
Shougang Group has carried out a strategic structure adjustment in order to realize the promise of Chinese people to the Olympic Games.Automotive sheets are chosen as a type of strategic product and an engine to upgra... Shougang Group has carried out a strategic structure adjustment in order to realize the promise of Chinese people to the Olympic Games.Automotive sheets are chosen as a type of strategic product and an engine to upgrade enterprise management,technology and operation to reach the top international level during the transition from long products to steel sheets in Shougang Group.Since 2006,Shougang Group has made an elaborate preparation on steel sheet culture,production line construction,technology import,pilot plant and talent reserve.It lays the foundation for the development of automotive sheets.The developing history of cold rolled automotive sheets is reviewed and the research and development of cold rolled automotive sheets, tackling key problem of defect on surface and the latest progress of automotive sheets construction are described in this paper.The main contents were given as follows:①The products of automotive sheets realize zero breakthrough in Shougang Group.Monthly output was 300 ton in January,2009 and it increased to 48 000 ton in June,2010.The ratio of IF steel sheets increases to 70%from 40%.The proportion of outside panel in automotive sheets occupys more than 15%.②A high emulational pilot plant is used as a product developing platform to develop successfully automotive sheets with 1 000 MPa and below.It guarantees that the industrial development of DP and TRIP sheets gets success at a time.It covers continuous annealing sheets with tensile strength≤780 MPa and galvanizing sheets with tensile strength≤590 MPa.③Individual design is used to meet special requirement of customer.Shougang owns 23 inner brands of LCAK and IF steels.It insures that the grades of yield strength cover whole range from 120 to 270 MPa.It keeps the stabilization of steel performance by means of chemical composition control and high accuracy rolling technology.For example,the strength of soft steel fluctuates within±15 MPa.④The steel sheets with surface grade O5 are produced steadily by solving forming striation of IF steel,grain coarse on surface,edge curling skin and mountains - and - waters painting defects.⑤The safeguard mechanism on quality of products is improved steadily and the output of automotive sheets and outside panel increases greatly by building consistency quality management system、information - system and customer service system. 展开更多
关键词 IF steel O5 steel sheets high strength steel consistency quality management system automotive sheets
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Feasibility of 0.02% Nb-Based Microalloyed Steel for the Application of One-Step Quenching and Partitioning Heat Treatment
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作者 Basem Tarek Eman EL-Shenawy +1 位作者 Ahmed El-Sabbagh Mohamed A. Taha 《Materials Sciences and Applications》 2021年第8期374-387,共14页
To attain an enhanced combination of mechanical properties for low alloyed steel, the current study has been made to fulfill that growing need in the industry. Its results are introduced within this paper. One step Qu... To attain an enhanced combination of mechanical properties for low alloyed steel, the current study has been made to fulfill that growing need in the industry. Its results are introduced within this paper. One step Quenching and Partitioning (Q&P) heat treatment has been applied on Niobium-based microalloyed steel alloy with 0.2 %C, in the form of 2 mm thickness sheets. The target of this study is to investigate the viability of applying that significantly recommended, results-wise, heat treatment on the highly well-suited alloy steel samples, to achieve the main target of enhanced properties. A single temperature of 275&deg;C was used as quenching and Partitioning temperature. Four Partitioning periods (30, 200, 500, and 1000 Seconds) were used for soaking at the same temperature. The results were analyzed in the light of microstructural investigation and mechanical testing. All applied cycles did not enhance the strength but moderately improved the ductility and toughness, mainly caused by the slightly high soaking temperature used. Niobium impact of grain refining was apparent through all cycles. The cycle of 500 Seconds Partitioning time obtained optimum values at that particular temperature. The 1000 Seconds Cycle obtained the worst combination of properties. A set of recommendations are set. More research is required at this point, where a lower Partitioning temperature is advised. In the light of the applied combination of parameters, the Partitioning period at such temperature is advised to be between 500 and 1000 Seconds. A high probability that periods closer to 500 than 1000 Seconds will produce better results. More research is needed between those two values of Partitioning time to precisely determine the optimum time at that temperature on that specific alloy. 展开更多
关键词 Nb-Based Microalloyed steel Advanced high strength steel Quenching and Partitioning Retained Austenite Martensite Transformation automotive Applications
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Recent development of UHSS and its hot-dip galvanizing processes in Baosteel
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作者 JIN Xinyan WANG Li 《Baosteel Technical Research》 CAS 2023年第1期2-10,共9页
Baosteel has excelled in automotive steel sheets in the past three decades.It has made a significant contribution to the development of China’s automotive industry by producing a wide range of high-quality steel prod... Baosteel has excelled in automotive steel sheets in the past three decades.It has made a significant contribution to the development of China’s automotive industry by producing a wide range of high-quality steel products.Some milestones achieved by Baosteel automotive steel sheet were briefly reviewed.The current challenges in producing ultra-high strength steel(UHSS),especially hot-dip galvanized UHSS,were summarized.The most current advancements in UHSS and the corresponding hot-dip galvanizing processes were discussed.The galvanizability of Si-Mn-added QP steel and DP steel, Mn-added TWIP steel, and Al-added low-density steel has been improved by different techniques in Baosteel. 展开更多
关键词 ultra-high strength steel(UHSS) hot-dip galvanizing automotive steel sheet BAOsteel
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基于应变的应变硬化指数演化行为研究
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作者 崔学习 关铂镔 +3 位作者 周兵营 吴向东 万敏 韩非 《塑性工程学报》 CAS CSCD 北大核心 2024年第8期164-170,共7页
为准确描述变形过程中双相高强钢板的应力应变关系,针对3种双相高强钢板应变硬化指数的演化行为进行了试验研究与理论模型预测。借助单向拉伸试验机和自主研发的DIC应变测量系统,获得了3种材料的真实应力-真实应变曲线,基于经典的Hollo... 为准确描述变形过程中双相高强钢板的应力应变关系,针对3种双相高强钢板应变硬化指数的演化行为进行了试验研究与理论模型预测。借助单向拉伸试验机和自主研发的DIC应变测量系统,获得了3种材料的真实应力-真实应变曲线,基于经典的Hollomon流动应力模型,得到了其应变硬化指数的演化历程,发现3种材料应变硬化指数与真实应变呈非线性变化关系。为了更好地预测应变硬化指数的演化行为,提出了可以描述其值变化的非线性数学模型,并结合经典的Hollomon流动应力模型,提出了基于n值变化的修正的Hollomon-n流动应力模型,最后通过3种材料的真实应力-真实应变曲线验证了所提出模型的有效性。 展开更多
关键词 双相高强钢板 应变硬化指数 数字图像相关法 应变演化 流动应力模型
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汽车用钢的发展与低熵化先进高强钢设计
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作者 刘仁东 吴萌 +2 位作者 胡智评 徐鑫 林春青 《鞍钢技术》 CAS 2024年第3期1-8,共8页
介绍了汽车用钢的发展历史与推动汽车用钢发展的历史性事件,展望了未来汽车用钢在“双碳”背景下的发展方向。同时,介绍了汽车用先进高强钢的发展与分类,阐述汽车钢从软钢、低碳钢、高强钢到先进高强钢的发展过程,详细阐述第一代到第三... 介绍了汽车用钢的发展历史与推动汽车用钢发展的历史性事件,展望了未来汽车用钢在“双碳”背景下的发展方向。同时,介绍了汽车用先进高强钢的发展与分类,阐述汽车钢从软钢、低碳钢、高强钢到先进高强钢的发展过程,详细阐述第一代到第三代先进高强钢迭代升级过程中成本、合金、组态与性能等方面的设计思路。最后,提出创新性的低熵化设计理念,并介绍所设计的覆盖四类双相钢产品的低熵化产品,包含成分与工艺的设计思路。提出“组态异构”的低熵化设计,以用户切实的应用需求为导向,深入分析产品性能特征,结合钢铁材料的物理冶金机理与生产制造阶段装备及工艺特征,从设计端对产品进行减量化、单一化、归一化的梯度低熵化设计,实现产品低成本高性能生产制造思路。 展开更多
关键词 汽车钢 先进高强钢 低熵化设计 成分归一化 跨强度级别
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低碳视野下无镀层热成形钢的激光拼焊研究
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作者 王舟 李昭 +2 位作者 庞佳琛 陈震 王建锋 《汽车工艺与材料》 2024年第6期36-43,共8页
研究了低碳足迹的无镀层热成形钢激光拼焊及其与铝硅镀层热成形钢之间的激光拼焊,结果表明:无镀层热成形钢可在没有预剥离或填丝的条件下与自身或铝硅镀层热成形钢焊接获得高质量的激光拼焊焊缝,在单向拉伸试验中,拉伸断裂均发生在远离... 研究了低碳足迹的无镀层热成形钢激光拼焊及其与铝硅镀层热成形钢之间的激光拼焊,结果表明:无镀层热成形钢可在没有预剥离或填丝的条件下与自身或铝硅镀层热成形钢焊接获得高质量的激光拼焊焊缝,在单向拉伸试验中,拉伸断裂均发生在远离焊缝位置;在缺口冲击试验中,无镀层钢与铝硅镀层钢之间的焊缝冲击功维持在基材冲击功的86%。无镀层钢与铝硅镀层钢之间焊缝的微观组织主要为马氏体和少量因铝硅熔入焊缝形成的铁素体。焊缝硬度与铝硅镀层钢基材相当,未发现软区。最后,结合热力学及相转变动力学计算,分析了无镀层钢与铝硅镀层钢之间获得高质量激光拼焊焊缝的机理:无镀层热成形钢稀释了熔入焊缝中铝硅的浓度,避免因高温形成大量富铝硅的脆性铁素体;无镀层钢中添加的合金元素Cr可以提高焊缝的淬透性,在热冲压冷却过程中获得全马氏体微观组织,保证焊缝强度。 展开更多
关键词 热成形钢 汽车用高强钢 激光拼焊 微观组织
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冷轧CP980辊压梯形管焊缝开裂原因分析与工艺优化
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作者 贾亚飞 刘自权 马子洋 《福建冶金》 2024年第2期27-31,共5页
针对冷轧高强复相钢CP980在辊压钢管的焊缝开裂问题,通过分析组织、显微硬度和受力情况以及焊缝处组织及硬度,结果表明:冷轧CP980辊压梯形管焊缝开裂的主要原因为焊接速度、焊接电流参数选择不当,焊缝的淬硬组织在焊接内应力的作用下产... 针对冷轧高强复相钢CP980在辊压钢管的焊缝开裂问题,通过分析组织、显微硬度和受力情况以及焊缝处组织及硬度,结果表明:冷轧CP980辊压梯形管焊缝开裂的主要原因为焊接速度、焊接电流参数选择不当,焊缝的淬硬组织在焊接内应力的作用下产生微裂纹,而焊缝受力不均加剧了裂纹的进一步扩展;通过降低焊接速度,提高焊接电流,改善焊缝的质量,同时减小梯形钢管成形过程中的约束力,梯形钢管的焊缝开裂问题得到有效解决。 展开更多
关键词 汽车板 高强复相钢 钢管 焊缝组织
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600MPa级车轮用高强钢的成形性能评价研究
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作者 耿聪 张柳鑫 邓偲瀛 《重型机械》 2024年第3期70-75,共6页
高强钢是影响汽车轻量化进程的关键材料,可以实现在降低汽车重量的同时提高碰撞安全性,现已广泛应用于汽车的结构件中。讨论了3种600 MPa级汽车用高强钢的成形性。通过杯突值IE和LDR值来评价其成形性,比较了3种高强钢的力学性能以及成... 高强钢是影响汽车轻量化进程的关键材料,可以实现在降低汽车重量的同时提高碰撞安全性,现已广泛应用于汽车的结构件中。讨论了3种600 MPa级汽车用高强钢的成形性。通过杯突值IE和LDR值来评价其成形性,比较了3种高强钢的力学性能以及成形性能,提供了一种考虑板料的各向异性,同时用最大主应变来判断破裂的数值模拟方法,通过试验与仿真的对比验证了此种方法具有可行性,并预测了3种材料的LDR值。 展开更多
关键词 汽车用高强钢 各向异性 板成形性能 数值模拟
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1000 MPa级高强贝氏体钢的研制
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作者 贾亚飞 刘自权 +1 位作者 刘鹏 马子洋 《江西冶金》 2024年第1期65-70,共6页
针对汽车轻量化发展需求,河钢集团邯钢公司成功研制出1000 MPa级高强贝氏体钢。本文考察了退火模拟实验中各关键工艺参数对实验钢性能的影响,根据退火规律制定工艺方案,并应用于工业化生产。结果表明,贝氏体含量随着快冷完结温度升高而... 针对汽车轻量化发展需求,河钢集团邯钢公司成功研制出1000 MPa级高强贝氏体钢。本文考察了退火模拟实验中各关键工艺参数对实验钢性能的影响,根据退火规律制定工艺方案,并应用于工业化生产。结果表明,贝氏体含量随着快冷完结温度升高而逐渐增多;当快冷完结温度为400℃时,实验钢的强度随均热温度和缓慢冷却完结温度的降低而减小。通过工业试制成功开发出屈强比大于0.8的1000 MPa级贝氏体钢,其成形极限实验结果表明,在单向拉伸情况下,此材料最大主应变和最大次应变分别为0.29和-0.07,其成形极限危险点(FLD_(0))的应变值为0.13;在等双向胀形情况下,主次应变为0.36。 展开更多
关键词 汽车板 高强贝氏体钢 力学性能 退火工艺
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汽车用高强度双相钢的化学成分和退火温度研究
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作者 李春诚 陈宇 +2 位作者 杨波 李科龙 姜乐朋 《金属加工(热加工)》 2024年第4期19-23,共5页
实验室条件下设计了两种不同成分的汽车用高强度双相钢,通过微观组织和力学性能对比分析,确定适合现有退火生产线的成分,并采用奥钢联VAI退火热模拟试验机研究了退火温度对组织和性能的影响。试验结果表明:两种化学成分的试验钢均满足... 实验室条件下设计了两种不同成分的汽车用高强度双相钢,通过微观组织和力学性能对比分析,确定适合现有退火生产线的成分,并采用奥钢联VAI退火热模拟试验机研究了退火温度对组织和性能的影响。试验结果表明:两种化学成分的试验钢均满足汽车用高强度双相钢的微观组织和力学性能要求,只添加Cr的试验钢可以代替复合添加Cr、Mo的试验钢;随着连续退火温度的升高,只加Cr试验钢的铁素体含量逐渐降低,马氏体含量呈先增加后降低的趋势,屈服强度逐渐上升,抗拉强度和断后伸长率先上升后降低;退火温度为820℃时,试验钢具有优良的综合力学性能,强塑积达到20.04GPa·%。 展开更多
关键词 高强度 双相钢 汽车钢 退火温度
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高强汽车钢热轧卷翘皮缺陷原因分析与控制
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作者 牟海鹏 《河北冶金》 2024年第3期51-56,共6页
针对高强汽车钢的轧制过程中,带钢表面频繁出现翘皮缺陷导致的产品降级、经济利益损失大的问题,进行了现场跟踪与验证性研究。通过对铸坯缺陷试样酸侵检验、金相显微镜和扫描电子显微镜的微观结构分析,确认了“翘皮”缺陷的主要成因是... 针对高强汽车钢的轧制过程中,带钢表面频繁出现翘皮缺陷导致的产品降级、经济利益损失大的问题,进行了现场跟踪与验证性研究。通过对铸坯缺陷试样酸侵检验、金相显微镜和扫描电子显微镜的微观结构分析,确认了“翘皮”缺陷的主要成因是铸坯角部存在着不易察觉的微裂纹。为了进一步挖掘问题根源,对连铸工艺控制情况进行了全流程的深度剖析,发现在浇注过程中,化学成分控制不精准,结晶器振动参数和SEN插入深度的设定不合理,同时还暴露出设备方面的问题,如设备精度不符,加剧了铸坯角部裂纹的形成。基于以上分析,通过收窄裂纹敏感性元素控制水平;将结晶器负滑脱时间从0.15 s降低到0.13~0.14 s;采用析晶能力强的保护渣;降低SEN的插入深度和中包过热度;同时生产高强钢前对扇形段的对弧和辊缝精度进行跟踪确认,保证设备精度合格率100%等一系列控制措施,高强汽车钢翘皮缺陷率由原来的2.02%降至0.36%。 展开更多
关键词 高强汽车钢 翘皮 角裂 结晶器 保护渣 过热度
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Recent progress in the development and application of the new Gen.AHSS at Baosteel 被引量:8
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作者 ZHONG Yong WANG Li ZHANG Yulong 《Baosteel Technical Research》 CAS 2018年第4期9-20,共12页
In recent years,despite the global economic recession and steel oversupply,the demand for high strength steel( HSS) and advanced high strength steel( AHSS) sheets has robustly increased. To supply the materials needed... In recent years,despite the global economic recession and steel oversupply,the demand for high strength steel( HSS) and advanced high strength steel( AHSS) sheets has robustly increased. To supply the materials needed for automotive manufacturing,various AHSS products and application technologies have been developed by Baosteel,including the 1st,2nd,and 3rd Gen. AHSS,which makes Baosteel the world’s first steel maker to commercially provide all three generations of AHSS. Recently,the new Gen.( the 2nd and 3rd Gen. combined)AHSS products,which feature ultra-high strength and enhanced ductility,have drawn great attention from both steel makers and the automotive industry as these products can be used to produce auto parts with complicated shapes by cold forming and have great potential for manufacturing car bodies that are lighter in weight and have higher crash resistance. In this article,the concepts,properties,and applications of Baosteel’s new Gen. AHSS products,including quenching and partitioning( QP) steels,twinning-induced-plasticity( TWIP) steels,and Medium-Mn( Mn-TRIP)steels,are described and reviewed. Moreover,the progress of the Baosteel light-weight steel car body( BCB) was reported. 展开更多
关键词 automotive steels new Gen.advanced high strength steel austenite forming materials solutions
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基于AUTOFORM的板料高强度钢零件回弹补偿研究及应用
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作者 曹建华 《内燃机与配件》 2021年第6期10-11,共2页
白车身零部件在冲压成型后都存在回弹,严重影响冲压件的产品质量。传统的修正回弹方法是根据实际产品测量数据,然后修正模具,再重新试模和修正,直到符合品质要求,如此反弹调试,消耗大量的时间及人力物力。因此,精确仿真回弹量以及有效... 白车身零部件在冲压成型后都存在回弹,严重影响冲压件的产品质量。传统的修正回弹方法是根据实际产品测量数据,然后修正模具,再重新试模和修正,直到符合品质要求,如此反弹调试,消耗大量的时间及人力物力。因此,精确仿真回弹量以及有效控制回弹已经成为白车身冲压领域最为关注的问题。本文利用专业分析软件,采用AUTOFORM软件对某高强度防撞梁进行了成形性、回弹分析及自动补偿计算,在实际生产中取得了显著的效果。 展开更多
关键词 AUTOforM 回弹补偿 数值模拟 板料成形 高强钢
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河钢唐钢先进高强钢在车身上的应用研究 被引量:1
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作者 孙扩 许瑞 《山西冶金》 CAS 2023年第5期141-143,共3页
随着“碳达峰、碳中和”成为全球共识,双碳目标倒逼着汽车制造商探索新材料和新的技术路径,以实现节能减排,并且既能有效实现轻量化又能保证结构安全的先进高强钢的应用也日趋增多。河钢唐钢作为一家知名的汽车板制造商,创新的先进高强... 随着“碳达峰、碳中和”成为全球共识,双碳目标倒逼着汽车制造商探索新材料和新的技术路径,以实现节能减排,并且既能有效实现轻量化又能保证结构安全的先进高强钢的应用也日趋增多。河钢唐钢作为一家知名的汽车板制造商,创新的先进高强钢产品和技术逐渐成为汽车零部件生产商重视的减排利器。基于此,结合河钢唐钢先进高强钢的开发成果,着重介绍河钢唐钢先进高强钢如双相钢(DP)、复相钢(CP)、淬火配分钢(QP)的成分及其组织特点,并阐述各钢种在车身上的应用现状。 展开更多
关键词 汽车板 轻量化 先进高强钢 车身
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应用体积元模型汽车零件加工过程边部裂纹分析
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作者 陈晓静 黑中垒 王敏 《机械设计与制造》 北大核心 2023年第11期93-96,共4页
边部裂纹导致的失效在汽车零件加工过程中最容易发生,这将直接影响到车辆的安全与可靠性。针对车身常用的高强钢材料加工过程进行分析,对材料断裂过程进行分析;对比分析不同材料加工间隙与断口光亮带之间关系,分析边部裂纹产生机理,并... 边部裂纹导致的失效在汽车零件加工过程中最容易发生,这将直接影响到车辆的安全与可靠性。针对车身常用的高强钢材料加工过程进行分析,对材料断裂过程进行分析;对比分析不同材料加工间隙与断口光亮带之间关系,分析边部裂纹产生机理,并对断口形貌和组织进行对比分析;基于ABAQUS建立材料内部组织的体积元模型,选取与加工过程组织变化保持一致的单拉工况开展分析;获取在此工况下的应力、塑性应变等的分布情况;对比失效时,模型仿真与试验测试结果的裂纹方向,以验证模拟分析的准确性。分析结果表明:所研究的双相钢材料强度级别高,但由于延展性较差,光亮面所占比率较低,相比于其他材料,冲压成形性较差;裂纹走向呈阶梯状,发生了沿晶断裂与穿晶断裂,裂纹尖端存在微孔洞;单轴拉伸下材料主要以马氏体尖角处产生的微缩孔洞和剪切失效;材料基体组织铁素体的塑性应变加大,并且随着拉伸的进行而增大,表现出明显的加工硬化,与硬相组织间的硬度差缩小,材料的整体应力集中呈现减弱;有限元模拟和试验测试结果的失效过程及最终形貌保持一致,表明有限元模型的准确性,为此类研究提供参考。 展开更多
关键词 汽车零件 高强钢 边部裂纹 断裂失效 组织 体积单元模型
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冷轧高强度汽车板工艺及设备优化探讨
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作者 王永恒 《山西冶金》 CAS 2023年第12期264-265,268,共3页
随着汽车逐渐朝轻量化趋势发展,市场对汽车用钢提出更高的要求,既要表面质量优,又要强度更高。目前,生产高强度汽车板方面存在炉辊结瘤、热瓢曲和高强钢面板切边边浪等难点,制约着汽车面板高速生产。基于此,提出了针对性的解决方法及优... 随着汽车逐渐朝轻量化趋势发展,市场对汽车用钢提出更高的要求,既要表面质量优,又要强度更高。目前,生产高强度汽车板方面存在炉辊结瘤、热瓢曲和高强钢面板切边边浪等难点,制约着汽车面板高速生产。基于此,提出了针对性的解决方法及优化方案。通过优化清洗工艺、优化高强钢和面板生产顺序,有效解决面板亮点麻点缺陷。从生产工艺和生产组织两个方面进行优化,解决飘曲问题。通过调整无驱动剪切的切边张力、优化切边间隙值、优化间隙值标定和减少包角辊设备震动等方案,有效减少边浪的产生。实践应用表明,产品质量和成材率大幅提高,实现了汽车面板大批量生产。 展开更多
关键词 汽车板 高强钢 退火炉 连退机组
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