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Effect of Ceramic and Nylon Fiber Content on Composite Silica Sol Slurry Properties and Bending Strength of Investment Casting Shell

机译:陶瓷和尼龙纤维含量对熔模铸造复合硅溶胶浆液性能和弯曲强度的影响

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摘要

In order to improve the performance of the investment casting shell, ceramic and nylon fiber was added to the silica sol slurry to study the effect of ceramic and nylon fiber on the liquidity of the silica sol slurry and the bending strength of the investment casting shell. Meanwhile, the fracture surface of shell sample was observed by SEM. The experiment results indicate that the movement viscosity of slurry increases with ceramic and nylon fiber content, increasing from 0 to 0.75 wt.%. The movement viscosity of ceramic fiber composite slurry is higher than nylon fiber composite slurry. The wet and high strength of shell firstly increases then decreases, with an increase of ceramic and nylon fiber content. When the ceramic and nylon fibers’ contents are 0.6 wt.%, the maximum wet strengths are 3.56 MPa and 3.84 Mpa respectively, increasing by approximately 38% and 43%. Moreover, the high strength of shell achieves its highest value, 5.08 Mpa, when the ceramic fiber content is 0.6 wt.%; however, when the nylon fiber content was more than 0.3%, the high strength of the nylon fiber reinforced shell was decreased sharply. Therefore, an addition of ceramic and nylon fiber to silica sol slurry distinctly influences the wet and high strength of investment casting shell.
机译:为了提高熔模铸造壳的性能,在硅溶胶浆液中添加了陶瓷和尼龙纤维,研究了陶瓷和尼龙纤维对硅溶胶浆液的流动性和熔模铸造壳的弯曲强度的影响。同时,通过SEM观察壳样品的断裂表面。实验结果表明,浆料的运动粘度随着陶瓷和尼龙纤维含量的增加而增加,从0到0.75 wt。%。陶瓷纤维复合浆料的运动粘度高于尼龙纤维复合浆料。随着陶瓷和尼龙纤维含量的增加,壳体的湿强度和高强度首先增加然后降低。当陶瓷纤维和尼龙纤维的含量为0.6 wt。%时,最大湿强度分别为3.56 MPa和3.84 Mpa,分别增加约38%和43%。此外,当陶瓷纤维含量为0.6重量%时,高强度的壳达到其最高值5.08MPa。然而,当尼龙纤维含量大于0.3%时,尼龙纤维增强壳的高强度急剧下降。因此,在硅溶胶浆液中添加陶瓷纤维和尼龙纤维会明显影响熔模铸造壳体的湿强度和高强度。

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