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1.
在切向微动磨损试验机上对4种核电用包壳材料(Zr合金、Zr/Cr涂层、FeCrAl和ODS-FeCrAl)进行切向微动磨损试验,考察不同包壳材料的微动磨损特性.研究结果表明:不同包壳材料的摩擦因数、耗散能曲线和形变有显著差异;4种包壳材料在切向微动过程中均处于部分滑移区.通过分析磨痕微观形貌和磨痕轮廓,发现ODS-Fe...  相似文献   

2.
在往复滑动摩擦磨损试验台上以TA2纯钛为对摩材料,研究和比较了4种我国口腔临床常用牙科高分子修复材料在人工唾液介质中的摩擦磨损行为。结果表明在人工唾液介质中,3种成品树脂牙的摩擦因数、磨痕深度均较小,磨损表面主要呈现犁削效应;光固化树脂修补材料的摩擦因数大,耐磨性较差,磨损形貌以剥落为主,伴随犁削。  相似文献   

3.
采用SRV-IV微振动摩擦磨损试验机研究了航空发动机材料DD6镍基单晶高温合金的室温微动摩擦磨损特性.微动试验条件为:试验块与合金球水平垂直接触干摩擦,正向载荷为50~180 N,振幅为60 μm,频率为50 Hz,循环次数为1×105次.试验结果表明:随着正向载荷的增大,磨痕中心区域磨损特征由微凹坑转变为平坦的挤压层;微动摩擦系数大幅度降低60%,微动磨损体积减少88%;微动磨损主要形式为磨粒磨损、黏着磨损、氧化磨损以及造成表面材料脱落的疲劳磨损.  相似文献   

4.
以1Cr18Ni9Ti不锈钢材料为母材,采用焊条电弧焊方法制备焊件。在焊接检验合格的焊态试件上从焊缝区、熔合区和焊接热影响区金属中分别截取并制备微动磨损试验用试样。将制备好的焊接区不同位置金属试样在相同条件下进行微动磨损试验,研究焊接区金属微动磨损行为。研究结果表明,在选定的微动磨损试验参数下,微动处在完全滑移区;焊接区不同部位金属的微动磨痕形貌存在差异,具有不同的微动磨损行为。焊缝区金属磨痕最大深度差异不明显,但磨痕平面投影面积差异显著。焊接热影响区金属磨痕最大深度差异显著,而磨痕平面投影面积差异不明显。  相似文献   

5.
周前国 《机械》2010,37(3):72-74
利用微动磨损试验机,在载荷50N以及位移幅值为60μm、100μm、150μm的工况下,研究了690合金材料在常温下的微动磨损行为及其动力学特性,采用激光共焦扫描显微镜(LCSM)和扫描电子显微镜(SEM)观察磨痕微观形貌。结果表明,载荷和位移幅值对微动特征有很大的影响,微动运行完全处于滑移状态。在滑移区,滑移磨损严重、磨痕面积大。690合金材料的磨损机制主要表现为磨粒磨损与剥层的共同作用。  相似文献   

6.
TiAlZr合金微动磨损性能研究   总被引:1,自引:0,他引:1  
采用高精度液压式微动磨损试验机研究了TiA lZr合金在不同微动运行区域的微动磨损行为,建立了其运行工况微动图。试验结果表明:滑移区、混合区和部分滑移区的摩擦因数随循环次数变化呈现不同的规律,其中部分滑移区摩擦因数较低,磨损体积随着位移幅值的增大而增大;滑移区、混合区磨损体积随着法向载荷的增加而增大,而部分滑移区磨损体积随着法向载荷的增加而减小;滑移区磨屑堆积于中心区域,磨损以磨粒磨损和剥层机制为主;混合区磨损机制主要表现为粘着磨损与磨粒磨损并存;部分滑移区磨损轻微。  相似文献   

7.
压印连接是近年来新兴的连接方式,因其具有简单高效、低耗环保等优点,使得在应用连接方面越来越受到重视。疲劳破坏是机械构件失效的主要形式,疲劳过程中的微动磨损是造成零部件失效的主要原因之一。基于以上条件,对铝合金压印接头的疲劳性能进行了试验研究,结果显示疲劳失效部位主要集中在下板靠近压印点处,断口处发现大量微动磨屑,经能谱分析可以确定磨屑成分主要为氧化铝和金属铝;对疲劳失效断口和微动磨损区域进行了扫描电镜分析,发现压印接头的微动磨损部位主要分为两类,并对其进行了定义,一类定义为颈部微动磨损,另一类定义为环点板间微动磨损。分析发现颈部微动磨损所占比例随着外加载荷的大小而变化,且微动磨损是导致压印接头疲劳失效的重要因素。  相似文献   

8.
为研究TC4合金微动磨损过渡区摩擦行为特点,采用SRV-IV微动摩擦磨损试验机,对球/平面接触的GCr15钢球/合金TC4摩擦副在100 N法向载荷下进行微动磨损试验,得到TC4合金微动磨损过渡区的范围,分析不同状态下摩擦因数演变及磨痕表面形貌特点,研究磨损机制的变化。结果表明:微动状态下,摩擦因数在磨合阶段波动剧烈,达到稳定磨损阶段后趋于稳定,且稳定状态下的摩擦因数随着位移幅值的增加而增加;往复滑动状态下,不同位移幅值下的摩擦因数曲线近乎重合且波动剧烈;微动磨损过渡区的摩擦因数变化处于2种状态的转变阶段。微动状态下,磨痕表面轮廓线粗糙,损伤轻微,磨损机制以黏着磨损和疲劳剥层为主;往复滑动状态下,轮廓线更光滑且损伤严重,磨损机制以磨粒磨损及塑性变形为主;微动磨损过渡区轮廓线由粗糙变为光滑,磨损深度及宽度突增,磨损机制由黏着磨损转变为磨粒磨损。  相似文献   

9.
LZ50车轴钢转动微动摩擦学特性研究   总被引:2,自引:0,他引:2  
在新型转动微动磨损试验机上,进行LZ50车轴钢/GCr15钢在法向载荷为10N、转动角位移幅值为0.125°~0.5°的转动微动磨损试验。在摩擦动力学行为分析的基础上,结合磨痕的微观分析,研究材料的转动微动磨损机理。结果表明,LZ50车轴钢的微动运行区域仅呈现部分滑移区和滑移区,未观察到混合区。滑移区的摩擦因数明显高于部分滑移区;摩擦因数随着转动角位移幅值的增加而增大。车轴钢在部分滑移区损伤轻微,磨痕呈环状;而在滑移区,接触中心呈现材料塑性流动累积造成"隆起"特征,LZ50钢的转动微动磨损机制主要为磨粒磨损、剥层和氧化磨损。  相似文献   

10.
钛合金的微动磨损会加速裂纹的形成与扩展,导致其构件提前失效。利用摩擦磨损试验机考察TC4合金在300和500℃温度下的微动磨损行为,利用扫描电子显微镜和激光共聚焦显微镜对磨痕轮廓及磨痕表面进行分析,探讨在300和500℃温度下TC4合金在不同位移幅值作用下的微动磨损机制。实验结果表明:高温条件下,试样平均摩擦因数和磨损率随位移幅值的增加呈现先增大后减小的趋势;两种高温环境中,小位移幅值时,微动运行区域为部分滑移区,主要损伤机制为黏着磨损和氧化磨损;位移幅值为100μm时,微动运行区域为混合滑移区,主要磨损机制为氧化磨损、剥层磨损及塑性变形;大位移幅值时,微动运行区域为完全滑移区,主要磨损机制为磨粒磨损和疲劳磨损。对比300和500℃条件下磨损结果,表明温度越高TC4合金耐磨性能越好,这主要是由于摩擦生成的氧化物TiO2和Fe2O3对磨损表面具有保护作用。  相似文献   

11.
Mo离子注入提高TC4合金微动磨损抗力的研究   总被引:1,自引:0,他引:1  
对TC4合金进行了Mo离子注入表面改性处理,利用摩擦磨损试验机进行了点接触微动磨损试验,借助读数显微镜和表面粗糙度仪测量出有关参数,计算出试样的微动磨损体积。结果表明,Mo离子注入使试样表面硬度提高,微动磨损体积明显降低。在微动磨损初期,Mo离子注入具有较好的减摩效果。Mo离子注入带来的表面强化效应是基体合金的微动磨损抗力得以提高的主要原因。  相似文献   

12.
Fretting wear behavior of AZ91D and AM60B magnesium alloys   总被引:2,自引:0,他引:2  
Weijiu Huang  Bin Hou  Youxia Pang  Zhongrong Zhou 《Wear》2006,260(11-12):1173-1178
The fretting wear behavior of the AZ91D and AM60B magnesium alloys are investigated using a reciprocating fretting wear machine under dry conditions with different numbers of cycles, different normal loads, slip amplitudes and frequencies. The worn surfaces and wear debris were examined using scanning electron microscopy and optical microscopy in order to understand the predominant wear mechanisms of two magnesium alloys. The results indicate that the AZ91D alloy displays a lower friction coefficient and lower wear quantity than the AM60B alloy. The AZ91D shows a higher capability than AM60B in resisting crack nucleation and propagation. Both AZ91D and AM60B show similar friction and wear characteristics. The wear quantity increases with increasing normal load, but decreases with increasing frequency. The friction coefficient also decreases as the normal load is increased. Fretting frequency had little effect on the friction coefficient. In a long term, the fatigue wear and abrasive wear were the predominant wear mechanisms for AM60B and delamination wear, adhesive wear and abrasive wear for AZ91D.  相似文献   

13.
The influence of cold rolling on the fretting wear behavior and mechanism of Inconel 690 alloy at 320?°C in air was studied. The wear volume and worn surface were obtained and analyzed using laser scanning confocal microscopy, electron back-scattering diffraction, scanning electron microscopy, and energy-dispersive X-ray spectroscopy. The grinding surface and strain distribution were also studied by electron back-scattering diffraction to analyze the mechanism of fretting damage. The results indicated that with an increase in cold rolling reduction, the microhardness was increased. However, the friction coefficient and wear volume first increased and then decreased. The characteristics of fretting areas changed from a gross slip regime to a partial slip regime. Accordingly, the damage mechanism in the gross slip regime was a combination of oxidative wear, abrasive wear, and delamination, whereas the damage mechanism in the partial slip regime was mainly adhesive wear.  相似文献   

14.
采用液压高精度材料试验机考察了平面一球面接触的AZ91D镁合金摩擦副的微动磨损行为,分析了位移幅值、法向载荷和频率等参数对摩擦因数和磨损体积的影响,考察了不同实验条件下的磨斑形貌,并探讨了其磨损机理。结果表明:AZ91D镁合金的微动区域可分为部分滑移区、混合区和滑移区3个区域,粘着磨损、疲劳磨损和磨粒磨损分别是3个区域的主要磨损机制;磨损体积随着位移幅值和法向载荷的增加而增大,但却随着频率的增大而减小。在微动部分滑移区和混合区,摩擦因数随着位移增大迅速增加;在微动滑移区,摩擦因数随法向载荷的增大而减小,而位移幅值和频率对摩擦因数的影响较小。  相似文献   

15.
人牙釉质的磨损机制研究   总被引:6,自引:0,他引:6  
郑靖  周丹  周仲荣 《润滑与密封》2006,(5):12-14,24
以钛合金为对摩材料,考察了人牙釉质在人工唾液介质中的滑动磨损进程,结合微观分析,研究了牙釉质的磨损机制。结果表明:在摩擦过程中,随着釉质表面发生脆性剥落,磨损从两体接触磨损转变为三体磨粒磨损,磨损加剧;随着接触时间增长,硬质磨屑尺寸变小,磨损率降低,进入稳定磨损阶段。牙釉质磨损为机械磨损过程,釉质表面基本无摩擦化学作用。  相似文献   

16.
Effect of age on the friction and wear behaviors of human teeth   总被引:2,自引:1,他引:2  
Friction and wear behavior of human teeth at different ages against titanium alloy have been investigated using a reciprocating apparatus containing an artificial saliva solution. Human teeth at different ages of 8, 18, 35 and 55 years old were selected for tests. Both hardness and distribution of enamel rods on the occlusal surface, two of factors most important to tribological behavior of human teeth, are close to the age of teeth. It is found that not only the evolution of friction coefficient but also the wear behavior changes between teeth of different ages. Delamination and ploughing mechanisms are dominant for wear of human teeth, and more severe wear is observed for the primary and the permanent teeth at the old age accompanied by remarkable fluctuation in the friction coefficient. Compared with the primary teeth and the permanent teeth at the old age, the permanent teeth at the young and middle ages have better wear-resistance.  相似文献   

17.
Fretting wear of carburized titanium alloys was investigated on the universal multifunctional tester (UMT) with the ball-on-flat fretting style under bovine serum lubrication. The tangential load and friction coefficient during the fretting process were analyzed, and the evolution of fretting log during the fretting process was investigated to understand the wear mechanism of the titanium alloy and carburized titanium alloy. Furthermore, the wear scar was examined using a SEM and three-dimension surface profiler. It was found that the friction coefficient of the titanium alloy increased faster than that of carburized titanium alloy in the first stage under serum lubrication, and then remained steady with a similar value in the second stage. The Ft-D curve indicated that there was wear mechanism transition from gross slip to mixed stick and slip. Finally, it was observed that there was a slight damage of the titanium alloy and carburized titanium alloy showed excellent performance during the fretting wear process under serum lubrication. All of the results suggested that carburized titanium alloy was a potential candidate for the stem material in artificial joints.  相似文献   

18.
The fretting test was carried out using an SRV IV fretting test rig in order to investigate the fretting wear behavior and mechanism in Inconel 600 alloy at room temperature. The materials were rolled to different reductions before the test. The effect of cold rolling on the friction coefficient and wear volume was subsequently investigated. The surface and cross-sectional morphologies of the wear scar were studied by scanning electron microscopy (SEM), laser scanning confocal microscopy (LSCM), and electron back-scattering diffraction (EBSD). The results indicated that the cold rolling had a different effect on wear behavior in different slip regimes. In the stick regime, cold rolling strongly decreased the wear volume, although it did not affect the friction coefficient. The 25% rolled specimen had the minimum wear volume. The mechanisms of as-received and 50% rolled specimens were delamination and oxidation wear, whereas for the 25% rolled specimen, cracking was the main wear mechanism. In the gross slip regime, cold rolling had little effect on the friction coefficient or wear volume. The fretting wear process gave rise to a decrease in the Σ3 grain boundary, an increase in local misorientation, and a change in the crystal orientation.  相似文献   

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