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Creep behaviour of closed cell aluminium foams from stress relaxation tests

机译:闭孔铝泡沫的蠕变行为来自应力松弛测试

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Creep behaviour of closed cell aluminium foams and transitions from power law to power law breakdown (PLB) creep regimes are investigated from results of stress relaxation tests (SRT) carried out on Alporas foams with densities between 0.20 to 0.32 g/cm3. Tests were carried out at temperatures between 200°C and 300°C and stress relaxation was measured from the collapse stress under compression of the foams. Under similar foam density, temperature and stress conditions, the values of strain rate calculated from SRT tests were of the same order of magnitude than those previously reported in the literature from conventional constant load creep tests. Under stress values close to the collapse stress, the creep mechanism seems to follow a PLB regime, with values of the power law exponent n=10-17, much higher than those corresponding to the power law creep in the solid material (n=4.4-6.5) and with activation energy values close to Q = 150 KJ/mol. Having in mind the limitations of available creep models for closed cell foams and the need for additional experimental results, the use of SRT testing would offer advantages for the assessment of the high temperature behaviour of aluminium foams, due to its lower testing times and reduced experimental effort.
机译:从在施力释放试验(SRT)的结果中,研究了闭孔铝泡沫和从电力法的转变的蠕变行为,从施扑泡沫泡沫的应力松弛试验(SRT)的结果,密度为0.20-0.32g / cm 3。在200℃至300℃之间进行测试,并在泡沫的压缩下从坍塌应力测量应力松弛。在类似的泡沫密度,温度和胁迫条件下,由SRT试验计算的应变率的值与来自传统恒定载荷蠕变试验的文献中先前报道的那些值相同。在接近崩塌应力的应力值下,蠕变机制似乎遵循PLB制度,电力法指数n = 10-17的值,远高于与固体材料中的电力法蠕变相对应的值(n = 4.4 -6.5)和接近Q = 150 kJ / mol的激活能量值。考虑到闭孔泡沫的可用蠕变模型的局限性和需要额外的实验结果,因此使用SRT测试将提供评估铝泡沫的高温行为的优势,因为其降低的测试时间和降低的实验性努力。

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