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Effect of Thin Polymer Coatings on the Mechanical Properties of Steel Plates

机译:薄聚合物涂层对钢板力学性能的影响

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摘要

Abstract The influence of powder coatings based on an epoxide polyester mixture on the mechanical properties of the plates made of rolled sheet steel is studied. The influence of 100-μm-thick coatings on the mechanical properties of specimens 0.7–1.5 mm thick is considered. The bending and tensile tests performed at room and elevated temperatures show that the thin coatings weakly affect the mechanical properties of the plates. In particular, the stiffness of the coated plates during tension and bending remains almost the same despite the fact that the elastic modulus of the coated plates is always slightly lower than Young’s modulus of steel because of an increased specimen thickness determined with allowance for the presence of a coating. The influence of the coatings is substantial in compressive stability tests. Under supercritical deformation conditions, the bearing capacity of the coated plates decreases substantially, and their critical stability load on the loss of stability falls by 20–30% (depending on the substrate thickness). This effect can be explained by the influence of the residual thermal stresses that appear in the specimens during coating deposition.
机译:摘要研究了基于环氧化物聚酯混合物对由轧制板钢制成的板的机械性能的粉末涂层的影响。考虑了100μm-厚涂层对样品0.7-1.5mm厚的机械性能的影响。在房间和高温下进行的弯曲和拉伸试验表明,薄涂层弱影响了板的机械性能。特别地,尽管涂覆板的弹性模量总是略低于杨氏钢模量,所以涂层和弯曲期间的涂层板的刚度几乎相同仍然是几乎相同的。由于存在增加的标本厚度,所以涂层。涂层的影响在压缩稳定性试验中是显着的。在超临界变形条件下,涂层板的承载力基本上降低,并且它们对稳定性损失的关键稳定性负荷落下20-30%(取决于基板厚度)。这种效果可以通过在涂层沉积期间样品中出现的残留热应力的影响来解释。

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