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针对武钢热轧厂层流冷却系统能耗高,水压不稳,系统反应慢,供水泵工作效率低等缺陷,进行系统改造。提高了系统的控制精度和产品质量,节能降耗取得了明显的效果。 相似文献
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利用先进的Gleeble-2000热模拟试验机,对GCr15轴承钢某一轧制过程进行模拟试验,测定出GCr15轴承钢动态CCT曲线,并结合微观组织分析,制定合理的GCr15轴承钢轧后控制冷却工艺,以期达到提高GCr15轴承钢质量的最终目的。 相似文献
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Weiyan He Xia Guo Xiaobing Zhao Jinrong Liu 《International Journal of Applied Ceramic Technology》2021,18(3):880-888
Nanopowders of pure zirconia have been synthesized using citric acid (CA)-assisted lamellar liquid crystal template method. The microstructure of the zirconia powder prepared at the different mole ratios of CA to zirconium oxynitrate (ZN) was characterized by FT-IR, X-ray diffraction (XRD), laser particle size analyzer, Raman spectroscopy, and scanning electron microscope (SEM) methods. The phase structure of the sodium dodecyl sulfate (SDS)/C10H21OH/H2O system before and after adding mixing solution CA and ZN was determined by POM (Polarizing Optical Microscope). The results show that lamellar structure of the SDS/C10H21OH/H2O system after adding mixing solution CA and ZN is stable. The presence of CA inhibits agglomeration and growth of zirconia particle. The crystallite size of zirconia powders decreases and agglomerates lowly with addition of CA. Fourier transform infrared spectrometry (FI-IR) analyses reveal that the structure of chelating organic complex is maintained in zirconia structure at high-temperature calcination to cause oxygen vacancies which stabilizes the tetragonal phase of zirconia. The zirconia powders remained the single metastable tetragonal phase at the molar ratios of CA to ZN ranging from 1:3 to 5:1. The crystallite size of zirconia with spherical morphology varied from 32.2 to 20.1 nm with the increase of the molar ratio of CA to ZN in the range of 1:3 to 5:1. 相似文献
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随着矿井深度的增加,对锚杆支护强韧性的要求越来越高,为了应对这一情况,需要研发出更高强度的锚杆钢。利用锚杆钢研究了轧制工艺、冷却工艺与珠光体、铁素体相比例,析出相析出行为及力学性能的关系。研究结果表明,在中轧后、精轧前采用适当水冷+回复段处理的复合工艺可使晶粒更细小、组织更均匀。对超高强度锚杆钢进行热压缩变形试验,由热模拟试验结果确定相转变温度为Ac1=737 ℃、Ac3=886 ℃。最终筛选出入精轧温度为810 ℃、回复段温度为800 ℃时,可获得的晶粒尺寸达4 μm,珠光体体积分数为66.8%,铁素体体积分数为33.2%,珠光体片层间距达200 nm;另外调整V、Cr、N等析出以提高锚杆钢的强韧性,较低的回复温度有利于细小、弥散、V(C/N)析出相的析出,V(C/N)的析出可进一步改善锚杆钢的力学性能。由该控轧控冷工艺轧制的锚杆钢屈服强度为780 MPa、抗拉强度为930 MPa、硬度为291HV、伸长率为20%。 相似文献
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利用光学显微镜(OM)和TEM,研究了全层状TiAl合金的层片间距的影响因素及与各因素的关系。实验结果表明,全层状TiAl合金的层片间距与冷却速度和合金中铝含量有关,层片间距与冷却速度呈反比关系,并随着合金中铝含量的增加而增加。同时,以层片生长的台阶机制为基础,推导出了全层状TiAl合金在连续冷却过程中层片间距的数学表达式,推导结果与实验结果相符。 相似文献
8.
In this article, molybdenum particles were plasma sprayed on copper, zirconia, and glass substrates. The impact of the molten
particles was monitored using a fast two-color optical fiber pyrometer focused on a small spot on the substrate surface. The
apparent duration of the flattening process and the cooling speed, both determined from the pyrometer signals, were found
to depend on the substrate conditions and to vary with coating thickness. The substrate material and its roughness were also
found to influence the texture in the sprayed coatings. Furthermore, a transient thermal flow numerical model was used to
compute reliable thermal histories of the impinging particles and the underlying lamellae, the interfacial thermal resistance
being determined by comparison of experimental thermograms with computed ones. 相似文献
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The row‐nucleated lamellar crystalline structure of high‐density polyethylene (HDPE) films was prepared by applying elongation stress to HDPE melt during T‐die cast film extrusion and subsequently annealing the extruded films. This unusual crystalline structure was analyzed in terms of lamellar crystalline orientation, long‐period lamellar spacing, crystallite size, and degree of crystallinity. The contribution of melt‐extension represented by draw‐down‐ratio (DDR) to the overall orientation was found to be most noticeable than other processing variables. Meanwhile, the long‐period lamellar spacing, the crystallite size, and the degree of crystallinity were influenced predominantly by the annealing temperature. Finally, the processing (melt extension and annealing temperature) – structure (lamellar crystalline structure) – property (hard elasticity) relationship of HDPE films was investigated. © 2006 Wiley Periodicals, Inc. J Appl Polym Sci 103: 3326–3333, 2007 相似文献