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The High Temperature Deformation Behaviour of Bentonite Bonded Sands and Possibilities for their Influence - New Results

机译:膨润土粘结砂的高温变形行为及其影响的可能性-新结果

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The methods for testing of moulding materials are working mostly nearly at room temperature. Examples for these testing procedures are the different green strengths or the wet tensile strength. The results of these tests we can use for control of the behaviour of the green sand moulds in the steps mouldmaking, transport and partly also pouring. For testing of properties at higher temperature (hot compression strength, residual strength...) we often haven't suitable testing equipment or procedures. We haven't also no informations to specific sand related casting defects from the important steps of the casting production pouring, cooling, solidification and shake out. The paper shows results of investigations in the field of high temperature deformation behaviour of bentonite bonded sand systems. It analyzes the strengths and the deformation of different green sand mixtures (different binders and additives) in the temperature range between room temperature and 1000 °C. With the used testing equipment it's possible to show force - way - curves at different testing temperatures and to calculate the strengths. Images of the fracture behaviour of the samples give informations to the deformation and fracture type (more plastic or more brittle) of the different sand mixes. The investigations show, that the high temperature deformation behaviour and also the hot and the residual strengths are depend from the used sand mix. With these knowledge it's possible to influence the casting process, to avoid some casting defects and to have a better casting quality.
机译:模塑材料的测试方法几乎都在室温下工作。这些测试程序的示例是不同的生坯强度或湿拉伸强度。这些测试的结果可用于控制生砂模具在制模,运输以及部分浇铸过程中的行为。为了测试高温下的性能(热压缩强度,残余强度...),我们通常没有合适的测试设备或程序。我们也没有从铸件生产浇注,冷却,凝固和振摇的重要步骤获得与沙子相关的特定铸件缺陷的信息。本文显示了膨润土粘结砂系统高温变形行为领域的研究结果。它分析了室温至1000°C之间温度范围内不同生砂混合物(不同的粘结剂和添加剂)的强度和变形。使用所使用的测试设备,可以显示不同测试温度下的力-程-曲线,并计算强度。样品断裂行为的图像可提供有关不同砂混合料的变形和断裂类型(更塑性或更脆)的信息。研究表明,高温变形行为以及热强度和残余强度均取决于所用的混砂料。有了这些知识,就有可能影响铸造工艺,避免某些铸造缺陷并获得更好的铸造质量。

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