共查询到20条相似文献,搜索用时 78 毫秒
1.
2.
3.
根据中厚板控制轧制的基本原理,结合鞍钢半连轧厂控轧20g、16MnR、16Mnq中厚板的生产实际,阐述了工艺参数对控制轧制的影响,并进一步探讨了在现有条件下,该厂控轧中厚板的最佳工艺制度。 相似文献
4.
1 低碳贝氏体的出现在控轧的早期 ,主要使提高钢材的强度和获得较细的晶粒 ,继而在高强度的基础上 ,对韧性也有了相应的要求。目前已经转向更高强度、更好的韧性和较厚的厚度 ,同时要求不恶化焊接性能。天然气输送用的管线钢要求较高的横向冲击贮存能。落锤剪切实验 (DWTT)中的断裂出现转变温度 ,代表了抑制原始裂纹的能力。所以除了代表抑制原始裂纹出现能力大小的使用温度下的横向冲击功之外 ,对它也提出了一项要求。提高再结晶温度以下的总的热轧变形量能够改进这种提高韧性方法的效果。临界温度范围内的精轧既可以提高强度 ,又能降低… 相似文献
5.
控制轧制和控制冷却工艺的研究 总被引:3,自引:0,他引:3
控轧与控冷工艺是一项节约合金,简化工序,节约能源的先进轧钢技术,通过对控轧与控冷工艺的具体分析提出,控轧与控冷工艺能充分挖掘钢材的潜力,大幅度提高钢材的综合性能,通过对控轧控冷工艺在中厚板及带钢生产中应用的分析,说明控轧控冷工艺能给冶金工业及社会带来的巨大的经济效益。 相似文献
6.
7.
8.
9.
10.
11.
12.
控轧控冷工艺对低碳铌微合金钢组织和性能的影响 总被引:5,自引:0,他引:5
用Gleeble-1500热模拟实验机测定了低碳铌微合金钢变形后的连续冷却转变曲线(CCT曲线),并在实验室对该实验钢采用不同的工艺进行了控制轧制和控制冷却的实验.研究了工艺参数对实验钢力学性能和微观组织的影响,分析了低碳铌微合金钢的强韧化机制.热模拟实验结果表明,实验钢在较宽的冷却速度范围(0.5~30 ℃/s)内可以获得贝氏体组织.控轧控冷的实验结果表明,实验钢的组织主要为铁素体和贝氏体.随着终轧温度的降低,组织得到细化,强度提高,但屈强比也随之增加;降低卷取温度使组织中的贝氏体含量略有增加,强度有所提高.初步探讨了贝氏体对实验钢性能的影响,为制定合适的生产工艺制度提供了依据. 相似文献
13.
14.
15.
介绍了含铌微合金带钢在精轧过程中的再结晶行为。在不同条件下,含铌钢将发生静态再结晶、动态再结晶和亚动态再结晶,而且沉淀的析出对再结晶有不同程度的影响。 相似文献
16.
DU Lin-xiu ZHANG Zhong-ping SHE Guang-fu LIU Xiang-hua WANG Guo-dong 《钢铁研究学报(英文版)》2006,13(3):31-35,50
The dynamic recrystallization and static recrystallization in a low carbon steel were investigated through single-pass and double-pass experiments. The results indicate that as the deformation temperature increases and the strain rate decreases, the shape of the stress-strain curve is changed from dynamic recovery shape to dynamic recrystallization shape. The austenite could not recrystallize within a few seconds after deformation at temperature below 900 ℃. According to the change in microstructure during deformation, the controlled rolling of low carbon steel can be divided into four stages: dynamic recrystallization, dynamic recovery, strain-induced ferrite transformation, and rolling in two-phase region. According to the microstructure after deformation, the controlled rolling of low carbon steel can be divided into five regions: non-recrystallized austenite, partly-recrystallized austenite, fully-recrystallized austenite, austenite to ferrite transformation, and dual phase. 相似文献
17.
18.
Controlled Rolling and Controlled Cooling Technology of Ultra-High Strength Steel with 700 Mpa Grade 总被引:1,自引:0,他引:1
With Gleeble-1500 system, the influences of rolling temperature, finishing tempera ture and cooling rate on the mechanical properties of two ultra-high strength steels were analyzed. The microstructure of the hot rolled specimens was observed by optical microscope, TEM and SEM. The TRIP of HSLA steels was studied. The results show that the yield stress of 700 MPa can be reached for two steels. The controlled rolling and controlled cooling technology has different effects on two sleds, but it is rational to adopt finishing temperature 800℃ for both of them. The microstructure of the steels is mainly bainite, and the influence factors ofmechanical properties are the size of bainite, and the size, distribution, composition and morphology of secondary phases. The deformation of high molybdenum steels at a high temperature with a high cooling rate would promote TRIP. 相似文献
19.