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Development of metal filled epoxy inserts for injection moulding process

机译:用于注塑工艺的金属填充环氧树脂插入物

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In this study, aluminium filled epoxy (EA) mixed with brass (EAB) and copper fillers (EAC) were fabricated into moulding inserts for producing mechanical testing specimens of plastic material through injection moulding process. The moulding inserts consisted of cavity and core blocks which are CNC machined into specific dimensions of the tensile strength and Izod test specimens based on ASTM standards. Epoxy inserts were assembled into the mould base as fixed and moving halves which were mounted on the plastic injection moulding machine. Polypropylene was used as the specimen material and the simulated processing parameters from plastics flow analysis were obtained at 177 bar of injection pressure, melting temperature of 240.1°C and holding pressure of 149.6 bar. However the actual settings were different from simulation whereby, the injection pressure was higher by 41% and temperature was reduced by 10%. Injection speed was set at 50 mm/s and the total cycle time was between 48s to 63.54s. After demoulding, mechanical tests were conducted, in order to investigate the behaviour of specimens obtained from all inserts as compared to specimens produced from conventional metal moulds. Results indicated that EA moulded part produced higher yield tensile strength of 36.3 MPa and impact energy of 1.823J, compared to conventional metal moulded parts of 33.8 MPa and 0.002J. EAB and EAC inserts indicated high tensile modulus at 1640 - 1670 MPa and their moulded parts showed similar result for impact energy and strength with EA. This result confirmed that mould materials have different effect on the mechanical properties of the injected parts.
机译:在该研究中,将铝填充与黄铜(EAB)和铜填料(EAC)混合的铝填充环氧树脂(EA)成模制插入件,用于通过注塑方法生产塑料材料的机械测试标本。模塑插入件由空腔和芯块组成,该腔体和芯嵌段基于ASTM标准将CNC加工成抗拉强度和Izod试样的特定尺寸。将环氧树脂插入物组装成模具基座,以固定和移动的一半安装在塑料注塑机上。使用聚丙烯作为试样材料,并在177巴的注射压力下获得塑料流动分析的模拟处理参数,熔化温度为240.1℃,保持压力为149.6巴。然而,实际设置与模拟不同,在其中,注射压力较高41%,温度降低10%。注射速度设定为50 mm / s,总循环时间为48°至63.54s。在脱模之后,进行机械测试,以研究与由常规金属模具制备的标本相比,从所有插入件获得的样品的行为。结果表明,与33.8MPa和0.002J的常规金属模塑部件相比,EA模压部分产生了36.3MPa和抗冲击能量为1.823J的抗冲击能。 EAB和EAC插入显示在1640 - 1670 MPa下的高拉伸模量,其模塑部件显示出类似的效果和EA强度的结果。该结果证实,模具材料对注入部件的机械性能具有不同的影响。

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