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排序方式: 共有187条查询结果,搜索用时 31 毫秒
1.
The corrosion behavior of Ti6Al4V alloy with solid NaCl deposit and water vapor at 450 °C has been investigated. Serious corrosion occurred. In order to improve the corrosion resistance, TiAlN and enamel coatings were prepared, and their effectiveness and corrosion resistance were evaluated. The results indicated that both coatings were effective in protecting the alloy against corrosion induced by NaCl deposit and water vapor at 450 °C. The protection mechanisms of these two coatings were also studied. 相似文献
2.
LI Yongliang KIM Sunkyu 《稀有金属(英文版)》2006,25(4):326-330
1. Introduction The search for a better wear resistant coating has resulted in the development of a class of hard, solid-lubricated coatings. The driving force behind the coating industry was the need to develop a proc-ess that will extend the life of steel machine parts, cutting tools, molding dies, and sliding parts. For example, in the stamping industry, severe abrasive wear and galling (cold metal welding) are expected. There is the need for an efficient application of lu-bricants both for… 相似文献
3.
B.D. Beake J.F. Smith G.S. Fox-Rabinovich J.L. Endrino 《Surface & coatings technology》2007,201(8):4585-4593
A novel laboratory technique, nano-impact testing, has been used to test Ti1−xAlxN (x = 0.5 and 0.67) PVD coated WC-Co inserts at 25-500 °C. Cutting tool life was studied under conditions of face milling of the structural AISI 1040 steel; the end milling of hardened 4340 steel (HRC 40) and TiAl6V4 alloy. A correlation was found between the results of the rapid nano-impact test and milling tests. When x = 0.67 improved resistance to fracture was found during milling operations and also in the nano-impact test of this coating compared to when x = 0.50. The coating protects the cutting tool surface against the chipping that is typical for cutting operations with intensive adhesive interaction with workpiece materials such as machining of Ti-based alloys. The results give encouragement that the elevated temperature nano-impact test can be used to predict the wear and fracture resistance of hard coatings during milling operations. At 500 °C nanoindentation shows there is a lower H/Er ratio for the PVD coatings compared to room temperature, consistent with reduced fracture observed at this temperature in the nano-impact test. 相似文献
4.
采用俄罗斯UVN 0.5D2I脉冲离子束辅助电弧离子镀沉积设备,在高速钢W18Cr4V基材上沉积TiAlN膜层。研究了膜层沉积之前N离子束轰击基材以及膜层沉积过程中N离子束辅助轰击对TiAlN膜层显微硬度的影响。结果表明:膜层沉积之前,N离子轰击得到高度洁净的表面,使基材的显微硬度由原来的900HV0.01提高到1230HV0.01。膜层沉积过程中,脉冲N离子束轰击,消除了膜层中的硬度"软点"及阴影效应,增加(Ti,Al)N相的含量,膜层的内部产生了压应力,这些因素显著提高了膜层的硬度,膜层的最高硬度为2530HV0.01。但轰击能量不能过高,否则会降低膜层的显微硬度。 相似文献
5.
Wear and dynamic properties of piezoelectric ultrasonic motor with frictional materials coated stator 总被引:2,自引:0,他引:2
Hyun-Phill Ko Sangsig Kim Jin-Sang Kim Hyun-Jai Kim Seok-Jin Yoon 《Materials Chemistry and Physics》2005,90(2-3):391-395
Piezoelectric ultrasonic motors have been studied, developed and utilized by researchers and companies all over the world. Ultrasonic motors (USM) produce rotational motion based on traveling waves made by the resonant vibrations of piezoceramic. These motors have been recently developed and utilized in practical applications. The dynamic properties and life of piezoelectric ultrasonic motors are strongly related to the frictional material Fused on the sliding surface. In this study, effects of frictional material properties on the performances of piezoelectric ultrasonic motors are investigated. It was possible to improve the torque of a traveling wave type ultrasonic motor by stator's coating. 相似文献
6.
目的 研究脉冲偏压频率对TiSiN/TiAlN纳米多层薄膜结构和性能的影响,优化工艺参数,以提高薄膜的性能.方法 采用脉冲偏压电弧离子镀,在M2高速钢和单晶硅基底上以不同脉冲偏压频率沉积TiSiN/TiAlN纳米多层薄膜,采用扫描电子显微镜(SEM)、能谱仪(EDS)、X射线衍射仪和纳米压痕仪,研究脉冲偏压频率对TiSiN/TiAlN纳米多层薄膜的表面形貌、元素成分、截面形貌、相结构和纳米硬度的影响.结果 TiSiN/TiAlN纳米多层薄膜表面的大颗粒直径主要集中在1μm以下,随着脉冲偏压频率的变化,大颗粒的数量为184~234,所占面积为40.686~63.87μm2;主要元素为Ti元素和N元素,所占原子比分别为48%和50%,Si和Al元素的含量较少;多层结构不明显,截面形貌可观察到柱状晶的细化,80 kHz时出现片状化结构;以(111)晶面为择优取向,晶粒尺寸在20 nm左右;纳米硬度为28.3~32.3 GPa,弹性模量为262.5~286.8 GPa.结论 50 kHz时,TiSiN/TiAlN纳米多层薄膜表面大颗粒的数量最少,为184个;70 kHz时大颗粒所占面积最小,为40.686μm2;晶粒尺寸在50~60 kHz时发生细化,60 kHz时,晶粒尺寸达到最小值19.366 nm,纳米硬度和弹性模量分别达到最大值32.3 GPa和308.6 GPa,脉冲偏压频率的最佳频率范围为50~70 kHz. 相似文献
7.
采用磁控溅射工艺在WC-8Co硬质合金基体表面制备了一层厚度分别为2.5μm、3μm和3.5μm的TiAlN涂层,并制备了不同Ti、Al比例的TiAlN涂层,利用摩擦磨损机考察了涂层的承载能力和摩擦学性能,通过扫描电子显微镜观察了磨损试件的表面形貌,通过摩擦系数和显微组织的演变来评价不同成分和不同厚度TiAlN涂层的摩擦学性能。结果表明,随着涂层厚度的增加,涂层的摩擦系数降低,涂层更不易被磨穿,表明在一定范围内增加涂层厚度有利于提高涂层的耐磨损性能;涂层的成分发生改变时,由于Ti、Al元素的共同作用,呈现不同的摩擦性能,当TiAl比例为50:50时,涂层的耐磨性最好。 相似文献
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10.
Surface integrity when machining age hardened Inconel 718 with coated carbide cutting tools 总被引:2,自引:0,他引:2
R. M. Arunachalam M. A. Mannan A. C. Spowage 《International Journal of Machine Tools and Manufacture》2004,44(14):1481-1491
Considerable attention has been given to the use of ceramic cutting tools for improving productivity in the machining of heat resistant super alloys (HRSA). However, because of their negative influence on the surface integrity, ceramic tools are generally avoided particularly for finishing applications. As a result the main high end manufacturers are more or less dependent on carbide cutting tools for finishing operations. Still the improper use of carbide cutting tools can also result in poor surface integrity. The objective of this investigation is to develop a set of guidelines, which will assist the selection of the appropriate cutting tools and conditions for generating favorable compressive residual stresses. This paper specifically deals with residual stresses and surface finish components of surface integrity when machining (facing) age hardened Inconel 718 using two grades of coated carbide cutting tools specifically developed for machining HRSAs. The cutting conditions were obtained from investigations based on optimum tool performance. The effect of insert shape, cutting edge preparation, type and nose radius on both residual stresses and surface finish was studied at this optimum cutting condition. This investigation, suggested that coated carbide cutting tool inserts of round shape, chamfered cutting edge preparation, negative type and small nose radius (0.8 mm) and coolant will generate primarily compressive residual stresses. 相似文献