首页> 外文OA文献 >Study of the Addition of a Thermoplastic Vulcanizate to a HDPE Composite Highly Filled with Magnesium Hydroxide and Its Effect on the Tensile and Flame Retardant Properties
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Study of the Addition of a Thermoplastic Vulcanizate to a HDPE Composite Highly Filled with Magnesium Hydroxide and Its Effect on the Tensile and Flame Retardant Properties

机译:将热塑性硫化酸盐加入高氢氧化镁的HDPE复合物的研究及其对拉伸和阻燃性能的影响

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摘要

A work was carried out in order to obtain a TPV based on HDPE and EPDM, studying the effect of three different peroxides. The effect of one mono- and two bifunctional peroxides was studied. In general, at equal wt% of peroxide, the bifunctional peroxides produced greater gel content, higher tensile stress, and higher elongation at break. Thereafter, the work was focused on studying the effect of this TPV, as well as a commercial TPO, on the tensile and flame retardant properties of composites based on blends of HDPE and a thermoplastic elastomer (either TPV or TPO), plus 130 phr of magnesium hydroxide (MH). The composites without the rubbery phase, but with 130 phr of MH, were highly brittle and fragile. The composites with the rubbery phase, on the other hand, (either TPO or TPV), were tougher and presented relatively much higher tensile properties. With regard to flame retardancy, the formulations containing the TPV showed better flame retardancy and passed as V-1 in the UL-94V. With respect to the cone calorimeter, those with TPO or TPV all generated a total of 80 MJ of heat energy. The compositions with TPV, however, generated this amount of heat over a larger period of time, i.e., showing less heat generated per second. In addition, the compositions with TPV presented a markedly lower pHRR, by an average of 15%. Thermogravimetric analysis (TGA) showed that the MH in the samples with a 40 wt% rubbery phase starts decomposing at 315°C. However, as the temperature increases, the MH in the TPV composite apparently decomposes at a slower rate than that in the TPO composite.
机译:进行一项工作,以获得基于HDPE和EPDM的TPV,研究三种不同过氧化物的效果。研究了一种单一和两种双官能过氧化物的效果。通常,在过氧化物的相等Wt%,双官能过氧化物产生了更大的凝胶含量,较高的拉伸应力,并且在断裂时更高的伸长率。此后,基于HDPE和热塑性弹性体(TPV或TPO)的共混物,加上130phr的复合材料的拉伸和阻燃性能,对该TPV以及商业TPO的效果集中于研究该TPV和商业TPO的效果。氢氧化镁(MH)。没有橡胶相的复合材料,但用130phr的MH,非常脆弱,脆弱。另一方面,具有橡胶相的复合材料(TPO或TPV)更加难以呈现相对较高的拉伸性能。关于阻燃性,含有TPV的制剂显示出更好的阻燃性并在UL-94V中通过V-1。关于锥形量热仪,具有TPO或TPV的那些全部产生80 MJ的热能。然而,具有TPV的组合物在较大的一段时间内产生此热量,即,显示每秒产生的较少的热量。此外,具有TPV的组合物呈现出明显低的PHRR,平均为15%。热重分析(TGA)表明,样品中的MH,具有40wt%的橡胶相的橡胶相开始在315℃下分解。然而,随着温度升高,TPV复合材料中的MH显然以比TPO复合材料更慢的速率分解。

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