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首页> 外文期刊>Journal of Materials Research >Cracking of porcelain coatings bonded to metal substrates of different modulus and hardness
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Cracking of porcelain coatings bonded to metal substrates of different modulus and hardness

机译:粘结到不同模量和硬度的金属基材上的瓷器涂层开裂

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A preceding study of contact damage in a bilayer system consisting of a porcelain coating on a stiff Pd-alloy substrate is here expanded to investigate the role of substrate modulus and hardness. Bilayers are made by fusing the same dental porcelain onto Co-, Pd, and Au-alloy metal bases. Indentations are made on the porcelain surfaces using spheres of radii 2.38 and 3.98 mm. Critical loads to initiate cone fracture at the top surface of the porcelain and yield in the substrate below the contact are measured as a function of porcelain thickness. Radial cracks form at the lower surface of the coating once the substrate yield is well developed. By virtue of its controlling role in the metal yield process, substrate hardness is revealed to be a key material parameter-substrate modulus plays a secondary role. A simple elasticity- based analysis for predetermining critical loads for a given brittle/plastic bilayer system is presented.
机译:在此之前的研究中,对在硬质Pd合金基材上的瓷质涂层组成的双层体系中的接触损伤进行了研究,以研究基材模量和硬度的作用。通过将相同的牙科瓷器融合到Co,Pd和Au合金金属基底上来制成双层。使用半径为2.38和3.98 mm的球体在瓷器表面上压痕。测量在瓷器顶面上引发圆锥破裂和接触以下的基底中的屈服的临界载荷,其是瓷器厚度的函数。一旦充分提高了基材的产量,便会在涂层的下表面形成径向裂纹。凭借其在金属屈服过程中的控制作用,显示出基材硬度是关键的材料参数-基材模量起次要作用。提出了一种基于弹性的简单分析方法,可以为给定的脆性/塑料双层系统确定临界载荷。

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