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1.
熔覆层性能难以满足特定的工艺要求,已成为限制激光熔覆发展的关键因素之一.鉴于此,在45号钢基体上制备出原位生成NbC增强YCF102熔覆层,并进行了热力学分析.通过XRD,SEM和EDS对其微观形貌及组成成分进行了分析,对其显微硬度及耐磨性进行了研究.结果表明:激光功率的改变对激光熔覆过程中原位反应的反应程度有显著影响,过大或者过小的激光功率均会对原位反应的发生起到抑制作用;YCF102熔覆层中原位生成的NbC颗粒的主要形态为四边形和花瓣形;当激光功率为525W时,原位生成NbC增强YCF102熔覆层具有较高的显微硬度及良好的耐磨性.  相似文献   
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(CoCrFeNi)95Nb5 high entropy alloy(HEA)coatings were successfully fabricated on a substrate of Q235 steel by laser cladding technology.These(CoCrFeNi)95Nb5 HEA coatings possess excellent properties,particularly corrosion resistance,which is clearly superior to that of some typical bulk HEA and common engineering alloys.In order to obtain appropriate laser cladding preparation process parameters,the effects of laser energy density on the microstructure,microhardness,and corrosion resistance of(CoCrFeNi)95Nb5 HEA coating were closely studied.Results showed that as the laser energy density increases,precipitation of the Laves phase in(CoCrFeNi)95Nb5 HEA coating gradually decreases,and diffusion of the Fe element in the substrate intensifies,affecting the integrity of the(CoCrFeNi)95Nb5 HEA.This decreases the microhardness of(CoCrFeNi)95Nb5 HEA coatings.Moreover,the relative content of Cr2O3,Cr(OH)3,and Nb2O5 in the surface passive film of the coating decreases with increasing energy density,causing corrosion resistance to decrease.This study demonstrates the controllability of a high-performance HEA coating using laser cladding technology,which has significance for the laser cladding preparation of other CoCrFeNi-system HEA coatings.  相似文献   
4.
采用辉光离子渗N技术对奥氏体不锈钢球阀进行表面氮化处理,改变其表面结构,提高表面耐磨性.选取三组离子渗N的温度,分别为400、440、480 ℃,渗N时间设置为12 h.采用扫描电镜、光学显微镜、X射线衍射仪、维氏显微硬度计和材料表面综合测试仪对渗N改性层的表面形貌、截面形貌、显微硬度和耐磨性进行测试.结果表明:离子渗N技术可以大幅提高奥氏体不锈钢的硬度和耐磨性.渗N温度为400 ℃时,渗N改性层最薄,耐磨性最差,480 ℃时渗N改性层最厚、耐磨性最好.  相似文献   
5.
Microstructure, mechanical properties and wear resistance in an ultrafine-grained Al–Mg–Si alloy fabricated utilizing a combination of equal channel angular pressing (ECAP) and dynamic aging were investigated in this paper. The results indicated that the grain size of the ECAP alloy was significantly refined, i.e., to ~239 nm after three ECAP passes. Meanwhile, the yield and tensile strength of the ECAPed material reached 340 MPa and 445 MPa, respectively, while maintaining a significant uniform elongation of 14%. Wear resistance results demonstrated that the wear rate, wear depth and width of the ECAPed material decreased in comparison with the solution-treated (SST) and peak-aged (T6) conditions under a load range of 5–25 N. The adhesive wear that occurs in the undeformed specimens at 10 N does not appear in the ECAPed specimen at the same load, indicating that the ECAPed specimen delay the appearance of more serious wear mechanisms under certain loads. The cooperative interaction of high density nano-scale β" precipitates and dislocations resulted in a combination of super-high strength and good work hardening ability which suppressed the extension of cracks between the friction layer and the plastic deformation zone. As a consequence, the combination of ECAP and dynamic aging brings a significant improvement for antifriction performance of the 6061 aluminum alloy.  相似文献   
6.
对连续刚构铁路桥箱梁温度场及桥梁线形进行长期、连续监测,通过主梁跨中下挠的理论与实测对比揭示了连续刚构铁路桥收缩徐变效应。对比了国内外常用收缩徐变估算模型,选择CEB-FIP徐变模型对黄河特大连续刚构桥进行了有限元分析。采用实测温度数据,以箱梁内测温度、外侧温度、顶底板温度梯度、左右侧温度梯度作为箱梁温度场的评判指标,对箱梁1年内的四季温度场分布进行分析。在基于相同温度场的条件下,通过理论值与实测值对比,发现分析成果与实测结果较吻合,说明混凝土的收缩徐变是引起连续刚构铁路桥跨中下挠的主要原因,对比结果还说明通过改善箱梁顶底板应力差能够改善收缩徐变长期效应。  相似文献   
7.
随着经济的持续高速增长,各行业用电需求增大。在加快特高压骨干电网建设的同时,提高现有电网的输电能力、输电质量成为重中之重。金具是海上换流站的重要组成部分,海洋环境的特殊性,对金具提出了更高的耐腐蚀性能要求。为了探究海洋环境对金具的腐蚀性,选用ZL101A和ZL102两种典型的铝合金金具,采用5种辅助防腐蚀工艺获得5种耐腐蚀样本,并模拟海上工况对其分别进行盐雾腐蚀试验,得出最优防腐蚀工艺。研究表明:ZL101A和ZL102两种铝合金具有一定的耐腐蚀性能,ZL101A铝合金的耐腐蚀性能强于ZL102铝合金的;抛丸处理的防腐措施在ZL101A铝合金样本中的防腐蚀表现要强于ZL102铝合金样本的;阳极氧化在两种材质中防腐蚀表现均为优异,是最优异的防腐蚀工艺。  相似文献   
8.
In view of the special requirements for strength, heat resistance and corrosion resistance of Al-Zn-Mg-Cu alloy for oil drilling, the Al-6.2 Zn-2.5 Mg-1.6 Cu alloy was prepared by increasing Cu content on basis of Russian Series 1953 alloy. The effect of heat treatment on the microstructures and properties of the alloy was characterized by optical microscope(OM), scanning electron microscope(SEM) and transmission electron microscope(TEM), and investigated by tensile test at room temperature, thermal exposure test and corrosion test. The results show that the strength after T6 aging treatment exhibit a decrease trend as an increase of the solution temperature from465 °C to 480 °C. After the solution treated by the rate of 470 °C/1 h, second phases dissolve into the matrix very well and the strength property reaches optimum. The alloy has better comprehensive properties treated by a solution treatment of 470 °C/1 h and then followed by an aging treatment of 120 °C/24 h + 170 °C/1 h + 120 °C/24 h. Under the aging state, the precipitated phases inside the grains are suitable in size, while on the grain boundary distribute discontinuously and the precipitate-free zone is obvious. Besides, the alloy still maintain high tensile properties. The yield strength, tensile strength and elongation are 650 MPa, 686 MPa,12.0%, respectively. The yield strength retention after heat exposure is 92%. The alloy has good corrosion resistance and the exfoliation corrosion degree. The average corrosion rate in the H_2S and CO_2 environment is 0.0024 mm/a, which is far less than the required 0.12 mm/a. It is insensitive to H_2S and CO_2 environments.  相似文献   
9.
为了研究丹江口水库和汉江抗生素抗性基因(Antibiotic Resistance Genes, ARGs)的污染现状与分布规律, 采用高通量测序的方法, 于2014年春季和秋季分别对丹江口水库及汉江沿程的ARGs多样性进行检测。分别在春秋两季样本中检测出21和19类ARGs, 其中9类ARGs是水体ARGs的主要组成部分。杆菌肽类ARGs是水体中最主要的ARGs, 而β-内酰胺类ARGs在春季丹江口水库陶岔采样点中占比最高。秋季水体各采样点的ARGs组成结构差异比春季小, 通过NMDS和ANOSIM分析发现ARGs的组成存在显著的季节差异, 甲氧苄氨嘧啶类、多粘菌素类和多重耐药类ARGs是具有显著季节差异的ARGs种类。由相关性分析发现13类具有互相显著强相关关系的ARGs, 其中相关性最强的ARGs很可能共存于一种微生物中。此外, 四环素类和氨基糖苷类ARGs可能作为预测水源区中与其共存ARGs相对丰度的指示种类。研究结果可为饮用水源区的水质保护和ARGs 污染防治与管理提供科学依据。  相似文献   
10.
FGH96 is a powder metallurgy nickel based superally used for turbine disk of aero-engines. In the present study FGH96 alloy with four different γ' precipitate microstructures were produced via solution heat-treatment with different cooling rates, and the maximum cooling rate reached 400°C/min which was a super cooling rate for Nickel-based superalloy. The creep tests were conducted for PM FGH96 alloy under the testing condition of 704°C and 690 MPa. The relationship between the creep properties and the distribution of γ' precipitate was established. The creep mechanism was analyzed by using TEM and ACTEM, and the dislocation movement was studied at the atomic scale. The creep strain rate was calculated through a physically based crystal slip model established based on crystal plasticity. The calculated results were consistent with the test ones, illustrating the validity of the model. The fracture mechanism was also investigated, and the results showed that the creep cracks generated on the surface due to the oxidation. It was observed that the cracks propagated in different ways depending on the different average diameters of γ' precipitate. With the decrease of the average γ' precipitate size,the critical shearing stress increased and the resistance of the dislocation slipping increased. The fracture mechanism for the primary stage transformed from intragranular to intergranular due to the change of dislocation slipping.  相似文献   
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