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Cryogenic shear fracture tests of interlaminar organic insulation for a forced-flow superconducting coil

机译:强制流超导线圈的层间有机绝缘的低温剪切断裂试验

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Since a forced-flow superconducting coil consists of metallic conductors and organic insulation with relatively low mechanical strength, a knowledge of mechanical behavior and properties of the interlaminar insulation is of great importance. Shear fracture tests of interlaminar organic insulation under biaxial stresses were carried out at low temperature, by using test specimens made of stainless steel pieces bonded with impregnated organic insulation (glass-kapton-glass). Inclination of adhesive surface was varied to get combinations of the debonding stresses and to construct the critical curve of the debonding fracture. The test results show that the critical curve approximately agreed with the Mohr-Coulomb criterion and that shear fracture resistance of the bonding interface enhanced with the increase of compressive stress value.
机译:由于强制流超导线圈由金属导体和具有相对较低机械强度的有机绝缘体组成,因此了解层间绝缘体的机械性能和特性非常重要。使用由浸渍有有机绝缘材料(玻璃-kapton-玻璃)的不锈钢片制成的试样,在低温下进行了双轴应力下层间有机绝缘材料的剪切断裂试验。改变粘合剂表面的倾斜度以获得脱粘应力的组合并构建脱粘断裂的临界曲线。测试结果表明,临界曲线与Mohr-Coulomb准则大致吻合,并且随着压缩应力值的增加,粘结界面的抗剪切断裂性增强。

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