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Testing the permeability and corrosion resistance of micro-mechanically interlocked joints

机译:测试微机械互锁接头的渗透性和耐腐蚀性

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Micro-mechanical interlocking (MMI) can be applied to create new and interesting composite materials. We have employed laser structuring to achieve MMI between stainless steel and plastic with extremely high joint strength. However, the water permeability and corrosion resistance of the joint must be examined. For many industrially relevant applications it is important to keep water away from certain parts and to prevent the sample from corroding. A thorough study of the permeability of the interconnected samples at different temperatures and after employing different laser-structuring techniques is conducted. The permeability seems to be consistent with the Hagen–Poiseuille equation independent of the laser structuring technique and is orders of magnitudes larger than the diffusion rate through the plastic. Two different types of corrosion tests have been undertaken, and we show that care must be taken in order not to degrade the corrosion resistance of the sample to an unacceptable level.
机译:微机械互锁(MMI)可以用于创建新颖有趣的复合材料。我们采用激光结构化技术以达到不锈钢和塑料之间的MMI,并具有极高的结合强度。但是,必须检查接头的透水性和耐腐蚀性。对于许多与工业相关的应用,重要的是要使水远离某些部件并防止样品腐蚀。对互连样品在不同温度下以及采用不同的激光结构技术后的磁导率进行了透彻的研究。磁导率似乎与Hagen-Poiseuille方程一致,而与激光结构化技术无关,并且比通过塑料的扩散速率大几个数量级。已经进行了两种不同类型的腐蚀测试,并且我们表明必须小心,以免将样品的抗腐蚀性降低到不可接受的水平。

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