Utilization of Recycled Thermoplastic Nylon Combined with Virgin Nylon and the Effect on its Mechanical Properties as a Denture Base Material

H. Tamin, Siti Wahyuni, I. D. Nasution
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Abstract

The injection molding process of thermoplastic nylon produces nylon residues in the form of sprue. Nylon residues are non-biodegradable which causes serious ecological problems, hence recycling becomes a necessity. However, recycled nylon is subjected to thermal, oxidative, and mechanical degradation during process which may decrease the mechanical properties of recycled nylon. In order to overcome the decreased mechanical properties of recycled nylon, modification by combining recycled nylon with virgin nylon is considered. Aim: This study aimed to determine the effect of adding virgin nylon into recycled nylon on the modulus of elasticity and compressive yield strength. Settings and Design: Experimental laboratory research. Methods and Materials: A total of 45 samples were used. Samples were divided into 3 groups which include 100% virgin nylon as control (A), 100% recycled nylon (B) and combination of 60% virgin nylon with 40% recycled nylon (C). The samples were tested using Universal Testing Machine (Tensilon RTF, Japan) with three point bending test and compression test with the speed of 5mm/min with ultimate load. Statistical analysis used: The obtained results were analyzed using Univarian test, One-way ANOVA test and Turkey’s Honestly Significant Different test. Result: There was statistical significance in adding virgin nylon into recycled nylon on its mechanical properties, namely modulus of elasticity and compressive yield strength (p<0.05). Conclusion: The combination of 60% virgin nylon with 40% recycled nylon has better elastic modulus and compressive yield strength values compared to 100% recycled nylon.
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再生热塑性尼龙复合原生尼龙作为义齿基托材料的应用及对其力学性能的影响
热塑性尼龙的注射成型过程中会以浇口的形式产生尼龙残留物。尼龙残留物是不可生物降解的,造成了严重的生态问题,因此回收成为必要。然而,再生尼龙在加工过程中受到热、氧化和机械降解,这可能会降低再生尼龙的机械性能。为了克服再生尼龙力学性能下降的问题,考虑将再生尼龙与原尼龙结合进行改性。目的:研究再生尼龙中加入原尼龙对其弹性模量和抗压屈服强度的影响。设置和设计:实验实验室研究。方法与材料:共使用45份样本。将样品分为3组,分别为100%初榨尼龙作为对照(A)、100%再生尼龙(B)和60%初榨尼龙与40%再生尼龙的组合(C)。样品在万能试验机(日本Tensilon RTF)上进行三点弯曲试验和极限载荷下5mm/min速度的压缩试验。采用统计分析:所得结果采用Univarian检验、One-way ANOVA检验和Turkey’s honest Significant difference检验进行分析。结果:再生尼龙中加入原尼龙对其力学性能弹性模量和抗压屈服强度的影响有统计学意义(p<0.05)。结论:60%原尼龙与40%再生尼龙的组合比100%再生尼龙具有更好的弹性模量和抗压屈服强度值。
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