求大神帮忙翻译一下 材料方面专业的英语翻译 剩两天了 求帮忙啊 不要机器翻译的
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求大神帮忙翻译一下 材料方面专业的英语翻译 剩两天了 求帮忙啊 不要机器翻译的
The S/N response data and diagram are given in Table 5 and Fig. 2, which were used to determine the optimal control factor settings to maximize the shear layer thickness. Table 5 presents the S/N response values at three levels and the effect of each factor on the S/N ratio. Figure 2 illustrates the effects of control factors by showing S/N values at three settings of levels for each factor. The factor settings corresponding to the greatest S/N ratio should be the optimum process conditions. Using the best levels of control factors should yield the maximum effective thickness of the shear layer. In Table 5, a higher value of the effect represents a greater influence of the control factor on the effective thickness. Hence, the table shows that the most influential factor is the filling time, followed by the mold temperature and the injection speed. In order to decide which level is better to obtain the maximum thickness of the shear layer, the S/N response values were compared at three setting levels for each factor. According to the S/N response table and diagram, the best combination for the process condition should be A3B3C1D2. The best levels of processing parameters that can maximize the shear layer are 7 s for the filling time, 310°C for the melt temperature, 65°C for the mold temperature, and 60% for the injection speed.
The S/N response data and diagram are given in Table 5 and Fig. 2, which were used to determine the optimal control factor settings to maximize the shear layer thickness. Table 5 presents the S/N response values at three levels and the effect of each factor on the S/N ratio. Figure 2 illustrates the effects of control factors by showing S/N values at three settings of levels for each factor. The factor settings corresponding to the greatest S/N ratio should be the optimum process conditions. Using the best levels of control factors should yield the maximum effective thickness of the shear layer. In Table 5, a higher value of the effect represents a greater influence of the control factor on the effective thickness. Hence, the table shows that the most influential factor is the filling time, followed by the mold temperature and the injection speed. In order to decide which level is better to obtain the maximum thickness of the shear layer, the S/N response values were compared at three setting levels for each factor. According to the S/N response table and diagram, the best combination for the process condition should be A3B3C1D2. The best levels of processing parameters that can maximize the shear layer are 7 s for the filling time, 310°C for the melt temperature, 65°C for the mold temperature, and 60% for the injection speed.
人工翻译,请放心采纳
信噪比响应数据和图表列于表5和图2,它们被用来确定最佳的控制因数设置以最大化剪切层的厚度.表5列出了在三个层面上的信噪比响应值,以及各个因素对信噪比的影响.图2示出了控制因素的影响,方法是针对每个因子在三个层面的设置下显示信噪比的值.对应于最大信噪比的因子设置应该就是最佳的工艺条件.采用最佳水平的控制因子应能产生最大有效厚度的剪切层.在表5中,影响较高的值代表了控制因素对有效厚度较大的影响.因此,该表表明,影响最大的因素是在填充时间,其次是模具温度和注塑速度.为了决定哪个水平对获得得最大剪切层厚度更有利,信噪比响应值与每个因子的三个设定水平进行了比较.据信噪比响应表和图,工艺条件的最佳组合应该是A3B3C1D2.可以最大化剪切层的工艺参数的最好水平如下:填充时间为7秒,熔体温度为310C,模具温度为65C,注塑速度为60%.
信噪比响应数据和图表列于表5和图2,它们被用来确定最佳的控制因数设置以最大化剪切层的厚度.表5列出了在三个层面上的信噪比响应值,以及各个因素对信噪比的影响.图2示出了控制因素的影响,方法是针对每个因子在三个层面的设置下显示信噪比的值.对应于最大信噪比的因子设置应该就是最佳的工艺条件.采用最佳水平的控制因子应能产生最大有效厚度的剪切层.在表5中,影响较高的值代表了控制因素对有效厚度较大的影响.因此,该表表明,影响最大的因素是在填充时间,其次是模具温度和注塑速度.为了决定哪个水平对获得得最大剪切层厚度更有利,信噪比响应值与每个因子的三个设定水平进行了比较.据信噪比响应表和图,工艺条件的最佳组合应该是A3B3C1D2.可以最大化剪切层的工艺参数的最好水平如下:填充时间为7秒,熔体温度为310C,模具温度为65C,注塑速度为60%.
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