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Friction and Wear Properties of High-velocity Oxygen Fuel Sprayed WC-17Co Coating under Rotational Fretting Conditions
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作者 LUO Jun CAI Zhenbing +2 位作者 MO Jiliang PENG Jinfang ZHU Minhao 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2016年第3期515-521,共7页
Rotational fretting which exist in many engineering applications has incurred enormous economic loss. Thus, accessible methods are urgently needed to alleviate or eliminate damage by rotational fretting. Surface engin... Rotational fretting which exist in many engineering applications has incurred enormous economic loss. Thus, accessible methods are urgently needed to alleviate or eliminate damage by rotational fretting. Surface engineering is an effective approach that is successfully adopted to enhance the ability of components to resist the fretting damage. In this paper, using a high-velocity oxygen fuel sprayed(HVOF) technique WC-17 Co coating is deposited on an LZ50 steel surface to study its properties through Vickers hardness testing, scanning electric microscope(SEM), energy dispersive X-ray spectroscopy(EDX), and X-ray diffractrometry(XRD). Rotational fretting wear tests are conducted under normal load varied from 10 N to 50 N, and angular displacement amplitudes vary from 0.125° to 1°. Wear scars are examined using SEM, EDX, optical microscopy(OM), and surface topography. The experimental results reveal that the WC-17 Co coating adjusted the boundary between the partial slip regime(PSR) and the slip regime(SR) to the direction of smaller amplitude displacement. As a result, the coefficients of friction are consistently lower than the substrate's coefficients of friction both in the PSR and SR. The damage to the coating in the PSR is very slight. In the SR, the coating exhibits higher debris removal efficiency and load-carrying capacity. The bulge is not found for the coating due to the coating's higher hardness to restrain plastic flow. This research could provide experimental bases for promoting industrial application of WC-17 Co coating in prevention of rotational fretting wear. 展开更多
关键词 fretting wear rotational fretting wc-17Co coating LZ50 steel HVOF
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等离子熔-喷WC-17%Co涂层工艺参数对外观形貌的影响 被引量:9
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作者 赵敏海 刘爱国 +1 位作者 郭面焕 刘德建 《焊接学报》 EI CAS CSCD 北大核心 2005年第11期39-42,共4页
等离子熔-喷技术同时具备等离子喷涂、熔焊技术的综合特点,可以实现各种陶瓷材料涂层与基体的冶金结合。Co基WC具有硬度高、耐磨损、耐腐蚀、耐高温等一系列优点。采用等离子熔-喷技术在Q235钢基体表面制备WC-17%Co涂层,通过研究等离子... 等离子熔-喷技术同时具备等离子喷涂、熔焊技术的综合特点,可以实现各种陶瓷材料涂层与基体的冶金结合。Co基WC具有硬度高、耐磨损、耐腐蚀、耐高温等一系列优点。采用等离子熔-喷技术在Q235钢基体表面制备WC-17%Co涂层,通过研究等离子熔-喷工艺参数(等离子熔枪和喷枪角度、熔枪和喷枪与基材表面的距离、熔-喷速度、喷涂送粉量)对涂层外观形貌的影响,获得最佳的工艺参数,制备出外观形貌良好、无缺陷的熔-喷涂层。 展开更多
关键词 等离子熔-喷 wc-17%co涂层 工艺参数 涂层外观形貌
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等离子熔-喷WC-17%Co涂层的组织结构(I) 被引量:1
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作者 郭面焕 刘爱国 +1 位作者 赵敏海 曲军章 《焊接学报》 EI CAS CSCD 北大核心 2006年第5期5-8,共4页
采用等离子熔-喷技术,在Q235钢表面制作了WC-17%Co金属陶瓷涂层,实现了涂层与基体为冶金结合的高结合强度涂层结构,从而解决了陶瓷涂层结合强度低的关键性难题。采用光学显微镜、SEM、TEM及EDS等方法,对熔-喷涂层接头形貌进行了分析研... 采用等离子熔-喷技术,在Q235钢表面制作了WC-17%Co金属陶瓷涂层,实现了涂层与基体为冶金结合的高结合强度涂层结构,从而解决了陶瓷涂层结合强度低的关键性难题。采用光学显微镜、SEM、TEM及EDS等方法,对熔-喷涂层接头形貌进行了分析研究。试验结果表明,熔-喷接头具有类似焊接接头的特征,是由涂层、熔合区、扩散区、热影响区所组成。熔-喷涂层与常规的喷涂涂层组织结构大不相同,组织结构比较复杂,主要由M6C(Fe3W3C或Co3W3C)、WC、γ-Fe、Co3O4、γ-Co、FeW3C、Fe2W和W2C等相组成,而且有规律地分布在涂层中的不同区域,根据组织结构的不同,涂层可分为表面层、中间冶金反应层和底层三个区域。 展开更多
关键词 等离子熔-喷 wc-17%co涂层 涂层组织结构
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WC-17%Co等离子喷涂层组织结构及磨损性能研究 被引量:5
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作者 李行志 胡树兵 《湖北汽车工业学院学报》 2005年第3期35-37,共3页
研究了等离子喷涂WC-17%Co涂层的显微结构、相组成、平均硬度和磨损形貌、耐磨性能。结果表明:涂层硬度较高,喷涂层发生了物相转变。涂层具有很高的耐磨性能,磨损机制以剥落磨损为主。
关键词 等离子喷涂 wc-17%co涂层 组织结构 耐磨性
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超音速火焰喷涂两种WC-17%Co涂层的组织和性能研究 被引量:2
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作者 国洪建 梁补女 林小军 《兰州工业学院学报》 2014年第2期21-25,共5页
采用超音速火焰喷涂法制备纳米和普通WC-17%Co涂层,借助于SN-3400型扫描电镜(SEM)、D8型X射线衍射仪(XRD)、HXD-1000TM型显微硬度计、SHT4605型拉伸试验机和TRB型球盘磨损试验机对涂层组织结构、相组成、显微硬度、结合强度及耐... 采用超音速火焰喷涂法制备纳米和普通WC-17%Co涂层,借助于SN-3400型扫描电镜(SEM)、D8型X射线衍射仪(XRD)、HXD-1000TM型显微硬度计、SHT4605型拉伸试验机和TRB型球盘磨损试验机对涂层组织结构、相组成、显微硬度、结合强度及耐磨性能进行了分析,结果表明,两种WC-17%Co涂层形成过程中WC发生了分解,并形成了W2C、W和CoxWyCz(Co3W3C、Co3W9C4)等一些新相,纳米涂层的组织形态明显好于普通涂层,组织晶粒细小,WC晶粒保持在120~150nm的纳米尺度范围;纳米涂层的显微硬度、结合强度和耐磨性都高于普通涂层,相比之下,纳米涂层的显微硬度、结合强度比普通涂层高出近30%,在相同的试验条件下普通涂层的磨损体积是纳米涂层的2倍. 展开更多
关键词 超音速火焰喷涂 wc-17%co 纳米涂层 显微硬度 耐磨性
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Q235钢基表面超音速火焰喷涂WC-12%Co涂层磨粒磨损性能研究
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作者 刘长华 白鑫 +2 位作者 孙国栋 王玉伟 纪岗昌 《广西轻工业》 2009年第2期18-19,共2页
采用超音速火焰喷涂技术在Q235钢基体上制备了WC-12%Co涂层,并用MLS-225型湿式橡胶轮磨损试验机测试了涂层的抗磨粒磨损性能。结果表明:在相同的实验条件下,WC-12%Co涂层的耐磨性比Q235钢高10倍,这表明WC-12Co涂层具有优异的耐磨粒磨损... 采用超音速火焰喷涂技术在Q235钢基体上制备了WC-12%Co涂层,并用MLS-225型湿式橡胶轮磨损试验机测试了涂层的抗磨粒磨损性能。结果表明:在相同的实验条件下,WC-12%Co涂层的耐磨性比Q235钢高10倍,这表明WC-12Co涂层具有优异的耐磨粒磨损性能。 展开更多
关键词 超音速火焰喷涂 wc-17%co 磨粒磨损
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电热爆炸定向喷涂WC-Co涂层实验研究 被引量:4
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作者 蒲泽林 刘宗德 +4 位作者 陆辛 杨昆 刘东雨 毛雪平 徐亮 《材料科学与工艺》 EI CAS CSCD 北大核心 2006年第1期78-80,87,共4页
采用电热爆炸定向喷涂技术在45钢基体上制备了WC-17%Co硬质合金涂层.利用扫描电镜和能谱仪对涂层显微组织进行了分析,借助纳米硬度计测定了涂层的硬度和弹性模量.研究结果表明:涂层组织细小均匀,涂层致密,孔隙率低;涂层与基体结合良好,... 采用电热爆炸定向喷涂技术在45钢基体上制备了WC-17%Co硬质合金涂层.利用扫描电镜和能谱仪对涂层显微组织进行了分析,借助纳米硬度计测定了涂层的硬度和弹性模量.研究结果表明:涂层组织细小均匀,涂层致密,孔隙率低;涂层与基体结合良好,界面附近存在元素扩散现象,涂层与基体为冶金结合;涂层弹性模量在210GPa-250GPa之间;涂层硬度达到17.1GPa,为原始硬质合金硬度的1.3倍左右,远远高于其他传统喷涂层硬度. 展开更多
关键词 电热爆炸定向喷涂 wc-17%co涂层 冶金结合 弹性模量 硬度
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Effects of pretreatment and HVOF sprayed cermet coating on fatigue properties of TC21 titanium alloy 被引量:4
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作者 DU DongXing LIU DaoXin +1 位作者 MENG BaoLi ZHANG XiaoHua 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第4期1029-1037,共9页
The effects of grit blasting (GB),shot peening (SP) pretreatment and high velocity oxygen fuel(HVOF) sprayed WC-17Co cermet coating on the fatigue properties of the novel ultra-high strength TC21 titanium alloy were i... The effects of grit blasting (GB),shot peening (SP) pretreatment and high velocity oxygen fuel(HVOF) sprayed WC-17Co cermet coating on the fatigue properties of the novel ultra-high strength TC21 titanium alloy were investigated with a rotating bending fatigue test machine.The basic properties and surface integrity of the coating were investigated by using X-ray diffraction (XRD),surface roughness meter,microscopic hardness tester,scanning electron microscopy (SEM) and X-ray stress test instruments.The results showed that the residual compressive stress could be introduced into the surface of TC21 alloy by GB and SP pretreatment,and that HVOF sprayed WC-17Co coating was compactly bonded with TC21 alloy substrate and it significantly improved the surface hardness of the substrate.However,there was a certain residual tensile stress in the sublayer of the coating.SP could significantly increase fatigue resistance of TC21 alloy due to the surface residual compressive stress.There was no significant effect on fatigue resistance by GB treatment due to the offset between the influence of surface residual compressive stress and the surface notch effect.The fatigue resistance of TC21 alloy was significantly reduced by HVOF WC-17Co coating prepared with GB pretreatment.This could be attributed to the relaxation of surface residual compressive stress during the HVOF heating process,pore defects and residual tensile stress distribution in the WC-17Co coating with low toughness,and the surface notch induced by GB.The fatigue resistance of TC21 alloy was slightly reduced by HVOF WC-17Co coating prepared with SP pretreatment.This was attributed to the offset between the advantage effect by SP and disadvantageous effect of WC-17Co coating and high temperature factor during the HVOF process. 展开更多
关键词 TC21 titanium alloy HVOF grit blasting shot peening cermet coating wc-17Co fatigue properties
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表面强化及改质技术
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《机械制造文摘(焊接分册)》 2007年第2期47-48,共2页
同步送粉等离子束表面冶金合金化涂层的凝固组织特性及形成机理;激光熔覆Co+Cr3C2复合涂层的组织与性能;等离子熔-喷WC-17%Co涂层的组织结构(Ⅰ);激光熔铸多壁纳米碳管增强铝基复合材料;激光熔覆制备Fe-Al金属间化合物覆层.
关键词 改质技术 表面强化 FE-AL金属间化合物 等离子束表面冶金 wc-17%co涂层 铝基复合材料 多壁纳米碳管 复合涂层
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