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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Corrosion rates of stainless steel under shear stress measured by a novel parallel-plate flow chamber.
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Corrosion rates of stainless steel under shear stress measured by a novel parallel-plate flow chamber.

机译:用新型平行板流室测量不锈钢在剪切应力下的腐蚀速率。

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A unique parallel-plate flow chamber has been engineered to assess the corrosion properties of implant materials in biological environments under shear flow. This parallel-plate flow chamber provides a novel approach to investigate hypotheses regarding cellular-material-mechanical-force interactions that influence the success or failure of implant devices. The results of the current study demonstrated that physiological stresses (0.5-50 dynes/cm2) from laminar flow from cell culture media did not significantly alter corrosion rates of stainless steel, providing baseline information for an extensive study of the cellular-material-mechanical-force interactions. Furthermore, this study demonstrated that this device is electrochemically stable and provides reproducible results within test parameters. In addition, the results were not significantly different from corrosion tests on bulk samples. Therefore, this system will be useful for investigating cell-material interactions under shear stress for implantalloys or other opaque materials. This information is currently lacking. The results of the present study also support further development of this test system to assess cellular responses to these materials under shear stresses.
机译:设计了独特的平行板流动室,以评估在剪切流作用下生物环境中植入物材料的腐蚀性能。该平行板流动腔室提供了一种新颖的方法来研究有关影响植入设备成败的细胞-材料-机械力相互作用的假设。目前的研究结果表明,细胞培养基层流产生的生理应力(0.5-50达因/厘米2)不会显着改变不锈钢的腐蚀速率,从而为广泛研究细胞材料-机械-力学提供了基础信息。强制互动。此外,这项研究表明,该装置具有电化学稳定性,并且在测试参数范围内可提供可重复的结果。此外,结果与散装样品的腐蚀测试没有显着差异。因此,该系统对于研究在剪切应力下用于植入合金或其他不透明材料的细胞-材料相互作用将是有用的。当前缺少此信息。本研究的结果也支持该测试系统的进一步开发,以评估在剪切应力下细胞对这些材料的反应。

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