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Optimization of extrusion process parameter in manufacture of ilmenite TiO

机译:钛铁矿制造中挤出工艺参数的优化

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摘要

The production of pencil lead with the inclusion of ilmenite for strength improvement and product wear control especially during production was investigated. A Response Surface Methodology (RSM) based on three numeric factors and two center points thus generating sixteen runs was used as tool for the optimization of production process parameters. The major raw materials which are graphite clay and ilmenite were characterized using X-ray fluorescence technique while the surface morphology was studied using scanning Electronic microscopy. The studied input variables were ram pressure, moisture content and die dead angle. Also, an experimental investigation of fracture force and wear rate of pencil lead were carried out. To obtain the optimum values of the properties being investigated, a tribometer and Micro Universal Testing Machine (MUTEM 4) were used for measurements, and response table was generated. The response surface plots showed that all three input variable had considerable impact on the responses. Results showed that the graphite used is made up majorly of carbon and ilmenite (TiO2). The control factor levels were applied to optimize the desired mechanical properties of reengineered pencil lead using the RSM. Results also showed that with a die angle of 55.3850oram pressure of 5.716Mpa and moisture content of 22.735, the optimal fracture force is 2.6055N, and optimal wear rate is 0.445 mm/l. These results were validated with those of industrially manufactured ones whose values are 2.95N and 0.35 mm/l respectively. It was concluded that ilmenite can serve as a good additive to pencil lead production.
机译:研究了铅笔引线,其中包含ILMENITE进行强度改善和产品磨损控制,特别是在生产过程中。基于三个数字因子和两个中心点的响应表面方法(RSM)用作优化生产过程参数的工具。使用X射线荧光技术表征是石墨粘土和钛铁矿的主要原料,而使用扫描电子显微镜研究表面形态。研究的输入变量是RAM压力,含水量和模具死角。此外,进行了铅笔铅的断裂力和磨损率的实验研究。为了获得所研究的性质的最佳值,使用摩擦计和微观的通用测试机(慕容摩擦4)进行测量,并产生响应表。响应表面图表明,所有三个输入变量对响应具有相当大的影响。结果表明,使用的石墨是主要的碳和钛铁矿(TiO 2)。应用控制系数水平以利用RSM优化Reangineed铅笔铅的所需机械性能。结果还表明,55.3850oram压力为5.716MPa和22.735的水分含量,最佳断裂力为2.6055N,最佳磨损率为0.445毫米/升。这些结果与工业制造的结果验证,其值分别为2.95N和0.35毫米/升。得出的结论是,Ilmenite可以作为铅笔铅生产的良好添加剂。

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