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101.
油松作为一种植根于黄土地区的常见植物,在提高黄土强度方面起重要作用。为了弄清油松根系在黄土地区的固土效应,本文采用离散单元法(Distinct Element Method)模拟根系拉拔试验,分析了法向压力、根系埋深、含水率对根-黄土界面摩擦力学特性的影响。结果表明:拉拔试验中,根-黄土界面峰值强度、残余强度随着法向力的增大而增大;峰值强度、残余强度随着根系埋深的增加而增大;随着含水率的降低,根-黄土界面峰值强度、残余强度呈增大的趋势。  相似文献   
102.
碳化硅陶瓷磨损特性的研究   总被引:2,自引:0,他引:2  
  相似文献   
103.
摩擦材料研究进展   总被引:2,自引:0,他引:2  
对摩擦材料国内外发展现状进行了综述,简要叙述了摩擦材料的发展历史,以及各种摩擦材料的性能以及应用,阐述了它们的优缺点,说明了纤维在摩擦材料中的重要作用。同时指出陶瓷基复合摩擦材料是今后发展的趋势。  相似文献   
104.
摩擦系数、磨损率和冲击强度是聚合物基摩擦材料的重要性能指标。本文试验研究基体含量对摩擦系数、磨损率的影响和增强体含量对冲击强度的影响,从理论方面分析增强体对摩擦磨损性能的影响。试验结果表明,在进行聚合物基摩擦材料的配方设计时,要根据所选用酚醛树脂和增强纤维的种类合理控制用量,可达到较好的摩擦磨损性能和冲击韧性。  相似文献   
105.
UHMWPE/蒙脱土纳米复合材料滑动轴承的研制   总被引:5,自引:0,他引:5  
采用蒙脱土(MMT)层间聚合改性和熔体插层方法制备了超高分子量聚乙烯(UHMWPE)/MMT纳米复合材料,并将复合材料注射成型为纯复合材料和复合型两类滑动轴承。研究了UHMWPE/MMT纳米复合材料的摩擦性能,结果表明,这是一种性能优异、成型简便的摩擦磨损材料。提出了该材料滑动轴承设计的基本要求,为实际应用提供了理论依据。  相似文献   
106.
The steel/steel boundary friction properties of soybean oil (SBO) and high-oleic soybean oil (HOSBO) are compared. HOSBO is significantly more saturated than SBO and more oxidatively stable. Changes in degree of unsaturation affect lateral interactions of adsorbate molecules, which in turn affects their adsorption and, hence, their boundary lubrication properties. To investigate this possibility, the free energies of adsorption (ΔG ads) of SBO, HOSBO, and methyl laurate (ML) were determined from the analysis of friction-derived adsorption isotherms using the Langmuir and Temkin adsorption models. The results showed a stronger adsorption for the vegetable oils than for ML, an indication of multiple interactions between the ester groups of the triglycerides and the steel surface. The result also showed no difference in the ΔG ads values of SBO and HOSBO obtained using either the Langmuir or Temkin models. This was interpreted as an indication of the lack of appreciable net lateral interaction between triglyceride adsorbates.  相似文献   
107.
氮化硅陶瓷高温摩擦学性能   总被引:1,自引:0,他引:1  
本文研究热压氮化硅陶瓷与3Cr2W8V钢组成的销-盘摩擦副,在空气中非润滑条件下,400~800℃不同载荷(49~343N)的摩擦磨损性能;测定了磨擦系数和Si3N4销的磨损因子;通过对Si3N4磨损面的SEM形貌观察、X射线相结构分析,探讨了陶瓷销的磨损机理  相似文献   
108.
高科技纤维在摩擦制动材料中的应用   总被引:1,自引:0,他引:1  
本文介绍了一些高科技纤维在聚俣物基摩擦材料中的使用情况,指出在摩擦材料中使用高科技纤维已成为摩擦材料的一个发展趋势,但需要大大提高高科技纤维的性价比和使用纤维混杂技术。  相似文献   
109.
Witold Brostow  Maggie Keselman 《Polymer》2005,46(14):5058-5064
Friction and wear resistance are two vital tribological properties of polymer-based materials but optimization of both is rarely attempted. We have investigated blends of 70 wt% poly(vinylidene fluoride) (PVDF)+30% ultra high molecular weight polyethylene, the latter either un-irradiated or else γ-irradiated. Each sample contained varying amounts of carbon black (CB) and also had a varied degree of crosslinking and irradiation dose. We have determined static and dynamic friction, scratch resistance, and sliding wear in multiple scratching tests. Effects of the irradiation dose and CB concentration have been quantified. The electric conductivity threshold is reflected in a drop of static friction; formation of a continuous phase of the lubricant affects tribology as well as electrical properties—both for irradiated and for un-irradiated samples. The scratch resistance as represented by the residual (healing) depth is affected by crosslinking, by the stage at which irradiation is applied (before or after blending) and by CB addition. Crosslinking by moderate amounts of irradiation provides shallower residual depths while higher doses cause adverse results. Similarly, the CB lubricant can either improve or worsen the scratch resistance. A combination of both approaches produces either better or else worse results than crosslinking alone. Lower friction seems accompanied by higher scratch resistance. A combination of a specific irradiation dose and an optimized CB concentration lowers the sliding wear significantly. Strain hardening in sliding wear determination takes place for all materials studied, irrespective of the extent or radiation-induced crosslinking and of the presence and concentration of carbon black.  相似文献   
110.
ABSTRACT

Understanding the cut and chip (CC) effect in rubber is important for successful product development for tires used in off-road or poor road conditions and for other demanding applications of rubber. This research describes a laboratory testing method for characterising the CC fracture behaviour of rubber using a device that controls and records multiple applied loads and displacements during cyclic impact to the surface of a solid rubber specimen to mimic and quantify the CC damage experienced by tire tread compounds. To study the capabilities of the instrument, three model compounds were studied that are based on carbon black reinforced compounds of common elastomers used in tire treads: natural rubber (NR), styrene-butadiene rubber (SBR), and butadiene rubber (BR). These polymers have well-established CC tendencies in field performance of tire treads, with NR exhibiting the best CC resistance followed by SBR and finally BR. The same trend was found with the rubber impact testing approach that allowed the CC behaviour to be quantified using a new physical parameter which is the CC propensity (P). The relative ranking for CC resistance for the three compounds followed the fatigue crack growth resistances of the materials but was exactly opposite to the ranking of DIN abrasion resistance. This provides evidence that CC damage from impact by mm-scale asperities and abrasion of rubber against μm-scale asperities exhibit distinct characteristics in rubber.  相似文献   
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