首页> 外文会议>168th Technical Meeting of the Rubber Division, ACS(American Chemical Society) >Polyurethanes to be modified with Micromorphs - a polymeric additive displaying interesting features in widespread applications (Paper No. 29)
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Polyurethanes to be modified with Micromorphs - a polymeric additive displaying interesting features in widespread applications (Paper No. 29)

机译:用微晶型物改性的聚氨酯-一种聚合物添加剂,在广泛的应用中显示出有趣的功能(第29号论文)

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Polyurethanes are widely used in rubber industry, TPU and thermoplastic industry. Indeed, these polymers are unique, as simply by exchanging the monomers or by adjusting the amount of a specific monomer in a given combination, the final properties of the finished material can be adjusted in a wide range. This system flexibility allows for manufacturing and application of diverse material like i.e. millable polyurethanes, cast polyurethane elastomers, TPU, PU, solid and PU sponge from a range of available monomers. Nevertheless, there are inherent disadvantages of these polymers, as well. While abrasion resistance clearly is an advantage of polyurethanes, insufficient hydrolytic stability is ranking high among their disadvantages. Micromorphs® are very small, stable, crosslinked, spherical particles, of around 100 nm. Since they are crosslinked they maintain their morphology when heated well above their glass transition temperature. Simply by changing the ratio of monomers during polymerization polar or non polar, rubber like or plastics like behaviour of this particles is achievable. Due to their chemical composition these particles are stable against hydrolysis and depending on the amount of hard or soft monomers they can i.e. increase or reduce elasticity or hardness or change the rheology. Since these particles maintain their geometrical stability even at high temperatures they can be worked into any organic matrix by dispersive mixing. establishing a very large contact surface towards matrix or filler additives, thus changing and improving material performance ranging from millable polyurethanes to cold cast polyurethane systems and to TPU's. These particles neither take up fillers nor are they fillers. This paper gives an overview on the effect of these particles in a variety of polyurethane matrices.
机译:聚氨酯广泛用于橡胶工业,TPU和热塑性工业。实际上,这些聚合物是独特的,如简单地通过交换单体或通过调节给定组合中特定单体的量,就可以在很宽的范围内调节最终材料的最终性能。这种系统的灵活性允许制造和应用多种材料,例如可铣削聚氨酯,浇铸聚氨酯弹性体,TPU,PU,固体和PU海绵,这些材料来自多种可用的单体。然而,这些聚合物也存在固有的缺点。虽然耐磨性显然是聚氨酯的优点,但是不足的水解稳定性在其缺点中排在很高的位置。 Micromorphs®是非常小的,稳定的,交联的球形颗粒,大约100 nm。由于它们是交联的,当加热到远高于其玻璃化转变温度时,它们可以保持其形态。简单地通过在聚合过程中改变极性或非极性单体的比例,就可以实现这种颗粒的橡胶状或塑料状行为。由于它们的化学组成,这些颗粒对水解是稳定的,并且取决于硬或软单体的量,它们可以增加或降低弹性或硬度或改变流变性。由于这些颗粒即使在高温下也能保持其几何稳定性,因此可以通过分散混合将其加工成任何有机基质。建立与基质或填料添加剂的非常大的接触表面,从而改变和改善从可研磨聚氨酯到冷铸聚氨酯体系以及TPU的材料性能。这些颗粒既不吸收填料也不是填料。本文概述了这些颗粒在各种聚氨酯基质中的作用。

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