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Analysis of potential lubricants for in vitro wear testing

机译:分析潜在的润滑剂以进行体外磨损测试

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Objectives. A critical testing aspect for a reliable two-body wear simulation may be the lubricity condition. The main hypothesis tested in this study was that, over the experiment duration, the presence or absence of lubricants would provide to a composite similar wear rates to those observed under human saliva lubrication. Methods. Seventy specimens, fabricated from a minifill composite, were tested in a programmable logic controlled wear simulator with human saliva (HS), mucin-based artificial saliva (MC), carboxymethylcellulose-containing saliva (CM), deio-nized water (DW) or with no lubrication (UN). Wear depth was quantified at the end of 1000, 5000, 10,000 and 50,000 cycles and at each 50,000 through 250,000 cycles. Results. Over all the test period, UN led to the greatest wear. Initially, lubrication resulted in no significant differences among the wear rates. Subsequently, up to 50,000 cycles, depths of wear provided by HS and MC were still similar, being the lowest, whereas DW yielded greater wear than CM. Later, interposition of CM and HS resulted in equivalent wear. At 250,000 cycles, wear of the composite ranked as follows: MC < HS < CM < DW < UN. Regression analyses showed that for all lubricity conditions wear of the composite rose logarithmically with number of cycles. Significance. The role of the interposed lubricant was of importance for the wear testing. The present findings supported by studies on the lubricity ability of mucin-based artificial saliva, allowed to conclude that this preparation may be considered as a potential lubricant for in vitro wear test purposes.
机译:目标。可靠的两体磨损模拟的关键测试方面可能是润滑条件。在这项研究中测试的主要假设是,在整个实验过程中,润滑剂的存在或不存在将使复合材料的磨损率与人唾液润滑下的磨损率相似。方法。用微型填充复合材料制成的70个样品在可编程逻辑控制的磨损模拟器中进行了测试,其中包括人类唾液(HS),基于粘蛋白的人工唾液(MC),含羧甲基纤维素的唾液(CM),去离子水(DW)或无需润滑(UN)。磨损深度在1000、5000、10,000和50,000个循环的末尾以及每个50,000至250,000个循环中进行量化。结果。在整个测试期间,联合国导致了最大的磨损。最初,润滑导致磨损率之间没有显着差异。随后,直到50,000个循环,HS和MC提供的磨损深度仍然相似,是最低的,而DW产生的磨损深度比CM大。后来,插入CM和HS导致等效磨损。在250,000个循环中,复合材料的磨损等级如下:MC

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