首页> 外文期刊>International Journal of Metalcasting: Leading the Transfer of Research and Technology for the Global Metalcasting Industry >Study on the Strength of Short Carbon Fiber-Reinforced Silicon Sol Shells for the Investment Casting Process
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Study on the Strength of Short Carbon Fiber-Reinforced Silicon Sol Shells for the Investment Casting Process

机译:用于投资铸造过程的短碳纤维增强硅溶胶壳体的力量研究

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摘要

Short carbon fibers are used to improve the performance of investment casting shells by mixing short-cut carbon fibers with the silica sol slurries. The influence of fiber length and content on the flexural strength and deformation under weight of fiber-reinforced shells at elevated and normal temperatures and after firing was investigated. The fractures of the shells were observed by SEM. When the carbon fiber content increased from 0.2 to 1%, the bending strength of the shell at room temperature increased significantly compared to the specimens without fibers. The Green strength of the shell reached up to 3.180 MPa, for a carbon fiber content of 0.6% and a length of 4 mm, which was 38.5% higher than that of the specimen without fibers. When the fiber content was 1%, the flexural strength of the specimen at normal temperature was 22.45% higher than that of the unreinforced specimens, and the deformation underweight at elevated temperature was reduced about 14.32%. The strength of the composite shell was increased by 24.22% after roasting after the carbon fiber reinforcing. The SEM observation and analysis revealed that the failure of the fiber-reinforced silica sol shell has a strong influence on the tensile fracture and debonding of the carbon fibers.
机译:短碳纤维用于通过用二氧化硅溶胶浆料混合短切碳纤维来改善投资铸造壳的性能。研究了纤维长度和含量对升高和正常温度和烧制后纤维增强壳重量弯曲强度和变形的影响。通过SEM观察壳的骨折。当碳纤维含量从0.2升高到1%时,与没有纤维的样品相比,室温下壳体的弯曲强度显着增加。壳的绿色强度达到高达3.180MPa,碳纤维含量为0.6%,长度为4毫米,比没有纤维的样品高出38.5%。当纤维含量为1%时,正常温度下试样的弯曲强度高于未原版的22.45%,并且升高温度下的变形减少约14.32%。碳纤维增强后焙烧后复合壳的强度增加了24.22%。 SEM观察和分析表明,纤维增强二氧化硅溶胶壳的失效对碳纤维的拉伸骨折和剥离有很大影响。

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