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首页> 外文期刊>Journal of Cellular Plastics >Temperature and Mold Size Effects on Physical and Mechanical Properties of a Polyurethane Foam
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Temperature and Mold Size Effects on Physical and Mechanical Properties of a Polyurethane Foam

机译:温度和模具尺寸对聚氨酯泡沫物理机械性能的影响

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Rigid polyurethane foams are used as thermal or vibration insulators and energy absorption material,and are often molded directly in place,where a smooth,thin skin forms between the mold and the cellular structure.Density gradients and the presence of a skin are known to affect the mechanical properties of the foam.We investigate the effect of processing temperature (25,40,65,and 85deg C) and mold size (aluminum cylinders with diameters of 29,41,and 51mm) on the average density and density gradients (radial and vertical) of a free-rise,water blown,rigid polyurethane foam system,and measure the effects on compressive modulus of elasticity and collapse stress.In general,both average density and radial density gradients decrease with increasing processing temperature and larger mold sizes.A reduction in average foam density corresponds with decreases in the elastic modulus and compressive strength.These mechanical properties are compared to reference samples extracted from very large batches of foam with a uniform density of 0.10g/cc,where normalization of the compressive data shows the elastic modulus to exhibit the strongest dependence on processing temperature and mold size.
机译:硬质聚氨酯泡沫用作绝热或振动绝缘体和能量吸收材料,通常直接模制就位,在模具和孔结构之间形成光滑而薄的表皮。已知密度梯度和表皮的存在会对其产生影响。我们研究了加工温度(25、40、65和85摄氏度)和模具尺寸(直径为29、41和51mm的铝制圆柱体)对平均密度和密度梯度(径向)的影响。垂直,垂直)的自由发泡,硬质聚氨酯泡沫体系,并测量其对压缩弹性模量和坍塌应力的影响。通常,平均密度和径向密度梯度均随加工温度的升高和模具尺寸的增大而减小。平均泡沫密度的降低与弹性模量和抗压强度的降低相对应。将这些机械性能与从非常大的batc中提取的参考样品进行比较泡沫的均匀密度为0.10g / cc,其中压缩数据的归一化显示弹性模量表现出对加工温度和模具尺寸的最强依赖性。

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