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MEASUREMENT OF GAS EVOLUTION FROM PUNB BONDED SAND AS A FUNCTION OF TEMPERATURE

机译:测量凸出结合砂的气体逸出量与温度的关系

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摘要

Gas evolved from the thermal decomposition of the binder can greatly deteriorate the quality of sand castings. Binder gas models used in casting simulations require knowledge of the binder gas mass and molecular weight evolution, but available data are limited. In the present study, the mass and molecular weight of gas evolved from phenolic urethane no-bake (PUNB) bonded sand are measured as a function of temperature. Thermo gravimetric analysis is used to determine the changes in the binder mass with temperature. The binder is found to be fully pyrolyzed at temperatures above 710C (1310F), with its mass reduced by 82%. Up to 100℃/min (180℉/min), the binder decomposition does not appear to be a strong function of the heating rate. The evolved volume of the binder gas during heating and cooling is measured using a specially designed quartz manometer with a liquid metal as the working fluid. During heating at 2℃/min (3.6℉/min), the binder gas molecular weight is found to decrease in a complex manner from 375 g/mol at 115C (239F) to 33.3 g/mol at 898C (1648F). When the binder pyrolysis is complete above 710C (1310F), the binder gas is incondensable, but continues to decompose to lower molecular weight compounds until at least 1350C (2462F). If the binder is heated to a temperature not exceeding 510C (950F), the binder gas partially condenses during subsequent cooling; this condensation occurs below 165C (329F).
机译:粘合剂热分解产生的气体会大大降低砂型铸件的质量。铸造模拟中使用的粘结剂气体模型需要了解粘结剂气体的质量和分子量的变化,但是可用数据有限。在本研究中,测量了从酚醛聚氨酯未烘烤(PUNB)粘结砂中逸出的气体的质量和分子量与温度的关系。热重分析法用于确定粘合剂质量随温度的变化。发现该粘合剂在高于710C(1310F)的温度下被完全热解,其质量降低了82%。在最高100℃/ min(180℉/ min)的情况下,粘合剂分解似乎与加热速率无关。使用专门设计的石英压力计,以液态金属作为工作流体,测量加热和冷却过程中结合气的逸出量。在以2℃/ min(3.6℉/ min)加热的过程中,发现粘合剂气体的分子量以复杂的方式从115℃(239F)的375 g / mol降至898℃(1648F)的33.3 g / mol。当粘合剂在710°C(1310F)以上热解完成时,粘合剂气体不可冷凝,但会继续分解为低分子量化合物,直到至少1350°C(2462F)。如果将粘合剂加热到不超过510℃(950°F)的温度,则粘合剂气体在随后的冷却过程中会部分凝结;该冷凝在165C(329F)以下发生。

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