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Effect of Nano-CaCO3 on Properties of PP/TLCP/CaCO3 in-situHybrid Materials

机译:纳米CaCO3对PP / TLCP / CaCO3原位复合材料性能的影响

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摘要

In this thesis, to reinforce and soften PPplastics, thermotropic liquid crystalline polymer (TLCP) and nano-CaCO3 were used. The PP/TLCP/CaCO3 in-situ hybrid materials were prepared in a twin-screw extruder respectively by one-step and two-step method. The effect of nano-CaCO3 adding method on PP/TLCP/CaCO3 in-situ hybrid materials was investigated. Polarization optical microscope (POM) and differential scanning calorimeter (DSC) measurements showed that: nano-CaCO3 play an important role in PP/TLCP system heterogeneous nucleation, and CaCO3 particles can increase the crystal growth rate of PP matrix more than the contribution of the improvement of crystallinity. Field emission scanning electron microscope (FESEM) observation revealed that the nano-CaCO3 enriched in the PP matrix though one-step method, which helped to promote the TLCP forming fibrils, therefore the tensile strength of one-step preparation sample was higher relatively. Mechanical measurements revealed that under the condition of the same proportion of PP/TLCP/CaCO3/PP-g-MAH=85/5/4/6, the mechanical properties of the hybrid materials prepared by one-step method were better than which of two-step method, the tensile strength of the one-step sample was 36.62 MPa, increased 2.95% more than which of two-step sample, the elongation at break of one-step method sample was 35.12%, increased 76.4%: the impact strength was 3.86 kJ/m~2, and increased 4.9%.
机译:在本文中,为了增强和软化PP塑料,使用了热致液晶聚合物(TLCP)和纳米CaCO3。 PP / TLCP / CaCO3原位杂化材料分别在双螺杆挤出机中通过一步法和两步法制备。研究了纳米CaCO3添加方法对PP / TLCP / CaCO3原位杂化材料的影响。偏光光学显微镜(POM)和差示扫描量热仪(DSC)测量表明:纳米CaCO3在PP / TLCP系统非均相成核中起重要作用,并且CaCO3颗粒可以增加PP基体的晶体生长速率,这对结晶度的提高。场发射扫描电子显微镜(FESEM)观察表明,纳米CaCO3通过一步法富集在PP基体中,有助于促进TLCP形成原纤维,因此一步制备样品的拉伸强度相对较高。力学测试表明,在相同比例的PP / TLCP / CaCO3 / PP-g-MAH = 85/5/4/6的条件下,一步法制得的杂化材料的力学性能优于单步法制备的杂化材料。两步法的抗拉强度为36.62 MPa,比两步法的抗拉强度提高了2.95%,一步法样品的断裂伸长率为35.12%,提高了76.4%:强度为3.86 kJ / m〜2,提高了4.9%。

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