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Studies of the physical, yield and failure behavior of aliphatic polyketones.

机译:研究脂肪族聚酮的物理,产率和破坏行为。

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This thesis describes an investigation into the multiaxial yield and failure behavior of an aliphatic polyketone terpolymer. The behavior is studied as a function of: stress state, strain rate, temperature, and sample processing conditions. Results of this work include: elucidation of the behavior of a recently commercialized polymer, increased understanding of the effects listed above, insight into the effects of processing conditions on the morphology of the polyketone, and a description of yield strength of this material as a function of stress state, temperature, and strain rate.; The first portion of work focuses on the behavior of a set of samples that are extruded under “common” processing conditions. Following this reference set of tests, the effect of testing this material at different temperatures is studied. A total of four different temperatures are examined. In addition, the effect of altering strain rate is examined. Testing is performed under pseudo-strain rate control at constant nominal octahedral shear strain rate for each failure envelope. A total of three different rates are studied.; An extension of the first portion of work involves modeling the yield envelope. This is done by combining two approaches: continuum level and molecular level. The use of both methods allows the description of the yield envelope as a function of stress state, strain rate and temperature.; The second portion of work involves the effects of processing conditions. For this work, additional samples are extruded with different shear and thermal histories than the “standard” material. One set of samples is processed with shear rates higher and lower than the standard. A second set is processed at higher and lower cooling rates than the standard.; In order to understand the structural cause for changes in behavior with processing conditions, morphological characterization is performed on these samples. In particular, the effect on spherulitic structure is important. Residual stresses are also determined to be important to the behavior of the samples.; Finally, an investigation into the crystalline structure of a family of aliphatic polyketones is performed. The effects of side group concentration and size are described.
机译:本文描述了对脂族聚酮三元共聚物的多轴屈服和破坏行为的研究。根据行为来研究行为:应力状态,应变速率,温度和样品处理条件。这项工作的结果包括:阐明一种最近商业化的聚合物的行为,对上述效果的更多理解,对加工条件对聚酮形态的影响的深入了解以及对该材料的屈服强度随函数的描述应力状态,温度和应变率。第一部分工作重点是在“常规”处理条件下挤出的一组样品的行为。遵循此参考测试集,研究了在不同温度下测试此材料的效果。总共检查了四个不同的温度。另外,研究了改变应变率的效果。对于每个破坏包络线,在伪应变率控制下以恒定的名义八面体剪切应变率进行测试。共研究了三种不同的比率。第一部分工作的扩展涉及对产量范围进行建模。这是通过结合两种方法完成的:连续体水平和分子水平。两种方法的使用都可以将屈服包络描述为应力状态,应变速率和温度的函数。工作的第二部分涉及加工条件的影响。对于这项工作,与“标准”材料相比,具有不同剪切和热历史的其他样品被挤出。一组样品以高于和低于标准的剪切速率进行处理。第二套在高于和低于标准的冷却速率下进行处理。为了了解行为随加工条件变化的结构原因,对这些样品进行了形态表征。特别地,对球状结构的影响是重要的。还确定残余应力对样品的行为很重要。最后,对脂族聚酮家族的晶体结构进行了研究。描述了侧基浓度和大小的影响。

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