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首页> 外文期刊>Materiale Plastice >Determining the Influence of the Processing Temperature by Injection and of the Subsequent Pressure on the Surface's Hardness and Indentation Modulus of the Products Made of HDPE, PMMA, PC plus ABS through Nanoindentation - G-Series Basic Hardness Modulus at a Depth Method
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Determining the Influence of the Processing Temperature by Injection and of the Subsequent Pressure on the Surface's Hardness and Indentation Modulus of the Products Made of HDPE, PMMA, PC plus ABS through Nanoindentation - G-Series Basic Hardness Modulus at a Depth Method

机译:通过喷射和随后的压力测定加工温度的影响,随后通过HDPE,PMMA,PC PLUS ABS通过纳米肾脏 - G系列基本硬度模量进行的产品的硬度和压痕模量的缩进模量

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The first part of the paper presents the influence of the processing temperature by injection of HDPE, of PMMA, and PC+ABS blend on the indentation hardness and on the indentation modulus, when other factors that can influence the injection remain unchanged. The second part of the paper presents the influence of subsequent pressure by injection of HDPE, PMMA, and PC+ABS blend on the indentation hardness and on the indentation modulus, when the other factors remain unchanged. The HDPE samples were obtained at the following injection temperatures: 180, 190, 200, 210, and 220 degrees C, and at the following subsequent pressures: 800 bar, 900 bar, 1000 bar, 1100 bar, and 1200 bar. The PMMA samples were obtained at the following injection temperatures: 220, 230, 240, 250, and 260 degrees C, and at the following subsequent pressures: 450, 550, 650, 750, and 850 bar. The PC+ABS samples were obtained at the following injection temperatures: 230, 240, 250, 260, and 270 degrees C, and at the following subsequent pressures: 500 bar, 600 bar, 700, 800, and 900 bar. The G-Series Basic Hardness Modulus at a Depth method was used to obtain the indentation hardness and the indentation modulus. It was observed that by increasing the processing temperature and subsequent pressure, in the case of HDPE, leads to an increase in indentation hardness and in indentation modulus. It was observed that increasing the processing temperature by injection in the case of PMMA, from 220 to 250 C, leads to a slight increase in indentation hardness and in indentation modulus, whereas increasing the subsequent pressure of PMMA, from 450 bar to 850 bar, leads to a slight decrease in indentation hardness and in the indentation modulus. Increasing the processing temperature by injection in the case of PC+ABS, from 230 to 250 degrees C, leads to a slight increase in indentation hardness and in indentation modulus. By further increasing the processing temperature by injection, from 250 to 270 degrees C, leads to a decrease in indentation hardness and in the indentation modulus. Alternatively, increasing the subsequent pressure from 500 bar to 900 bar leads to not only a decrease in indentation hardness but also to a decrease in the indentation modulus.
机译:本文的第一部分通过注射HDPE,PMMA和PC + ABS混合物对压痕硬度和压痕模量的影响,当能够影响注射的其他因素保持不变时,对压痕模量进行了影响。当其他因素保持不变时,本文的第二部分通过注射了HDPE,PMMA和PC + ABS混合物,对压痕硬度和压痕模量进行了影响。在下列注射温度下获得HDPE样品:180,190,200,210和220℃,并在后续压力下:800巴,900巴,1000巴,1100巴和1200巴。在下列注射温度下获得PMMA样品:220,230,240,250和260℃,并在后续压力下限:450,550,650,750和850巴。在下列注射温度下获得PC + ABS样品:230,240,250,260和270℃,并在后续的后续压力下:500巴,600巴,700,800和900巴。深度方法的G系列基本硬度模量用于获得压痕硬度和压痕模量。观察到通过增加加工温度和随后的压力,在HDPE的情况下,导致压痕硬度和压痕模量的增加。观察到通过注射在PMMA的情况下增加加工温度,从220-250℃导致压痕硬度和压痕模量轻微增加,而增加PMMA的后续压力,从450 BAR到850巴,导致压痕硬度和压痕模量轻微降低。通过注射在PC + ABS的情况下通过注射增加加工温度,从230至250摄氏度,导致压痕硬度和压痕模量轻微增加。通过进一步通过注射进一步提高加工温度,从250至270摄氏度,导致压痕硬度和压痕模量的降低。或者,将随后的500巴至900巴的增加,不仅导致压痕硬度的降低,而且导致压痕模量的降低。

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