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D. Umbrello L. Filice S. Rizzuti F. Micari 《International Journal of Machine Tools and Manufacture》2007,47(11):1738-1743
The use of numerical simulations for investigating machining processes is remarkably increasing because of the simulation cost is lower than the experiments and the possibility to analyze local variables such as pressures, strains, and temperatures is allowable. Process simulation is very hard from a computational point of view, since it frequently requires remeshing phases and very small time steps. As a consequence, the simulated cutting time is usually of the order of few milliseconds and no steady cutting conditions are generally achieved, at least as far as thermal conditions are concerned. Therefore, nowadays numerical prediction of cutting temperatures cannot be considered fully reliable. In the paper this issue was taken into account: a mixed Lagrangian-Eulerian numerical approach was utilized and the global heat transfer (film) coefficient at the tool-chip interface was derived through an inverse approach. Finally, the dependence of the film coefficient on pressure and temperature on the rake face was investigated. 相似文献
84.
L. Filice F. Micari S. Rizzuti D. Umbrello 《International Journal of Machine Tools and Manufacture》2007,47(3-4):709-714
Despite the development of high performance finite element-based codes, the simulation of machining still represents a very hard task due to the geometric complexity of the real chip-tool systems and the high cutting speed that requires very long simulation times. For these reasons, many aspects related to machining are not very clear and so easy to simulate. In this paper a rigorous investigation on the role played by the implemented friction model within a 2D simulation of orthogonal cutting was carried out, taking into account different models proposed by the researchers in the last years. The main simulation results were compared with experimental measurements in order to verify if it is possible to identify the best model. Once the comparison with mechanical variables was completed, a subsequent study on temperature predictions utilizing the above friction models was executed as well. The results of this integrated numerical and experimental work are carefully reported in the paper. 相似文献
85.
金刚石颗粒在锯切石材过程中磨损形态的研究 总被引:1,自引:1,他引:1
本文分析和归纳了锯切花岗石过程中金刚石颗粒的五种磨损形态和三个磨损阶段,探讨了金铡石颗粒磨损形态对金刚石锯片锯切性能的影响。 相似文献
86.
壳聚糖是制备纸张防油剂潜在的理想材料,但其价格高昂、吸湿性强,需通过改性赋予其"一剂多效"功能(如在防油的同时兼顾防水、抗菌或水蒸气阻隔等功能),以提高其工业应用价值.结合壳聚糖的防油机理,总结了壳聚糖基防油剂防油性能的影响因素,综述了近年来防水型、抗菌型和水蒸气阻隔型壳聚糖基防油剂的研究现状,并对壳聚糖基防油剂的未来发展方向进行了展望. 相似文献
87.
88.
Conductive Papers Containing Metallized Polyester Fibers for Electromagnetic Interference Shielding 总被引:7,自引:0,他引:7
Conductive papers were developed for preventing or reducing electromagnetic interference (EMI), and their shielding efficiency was evaluated. This type of conductive paper consists of wood pulp, synthetic pulp and metallized polyester fibers (0.5–2.0 mm long and 14 m in diameter) whose surfaces are coated with nickel alone (Ni-PET) or copper and nickel double layers (Ni-Cu-PET) by electroless plating. In this report, the effect of the characteristics of these metallized fibers, such as their conductivity, geometry and the concentration of fibers in paper, which lead to high efficiency for shielding effectiveness is discussed. For instance, one of the conductive papers (80 g/m2) which was prepared by mixing 40% Ni-Cu-PET and 60% synthetic polyethylene pulp showed over 40 dB shielding effectiveness between 10 MHz and 1 GHz. 相似文献
89.
Al2O3/TiB2/SiCW陶瓷刀具加工镍基合金时的磨损机理研究 总被引:5,自引:0,他引:5
研究了Al2O3/TiB2/SiCW陶瓷刀具加工Inconel718镍基合金时的切削性能和磨损机理。结果表明;在低速切削条件下,Al2O3/TiB2/SiCW和硬质合金刀具的抗后刀面磨损的能力相差不大;而在高速切削条件下,前者的抗后刀面磨能力远高于后者。 相似文献
90.
在黄麦岭磷矿露天开采的掘沟爆破中,根据掏槽法的机理,使用大孔径深孔掏槽,采用多排微差挤压爆破,一次形成开采所需的双壁沟,提高了掘沟效率,扩大了掏槽法的应用范围。 相似文献