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机电一体化磨料水切割技术的新进展
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《机电一体化》 1995年第1期30-31,共2页
含磨料的喷水可以切割任何材料,如铝材、钢材、钛、高镍合金以及玻璃、大理石等脆性材料,甚至一些新型强化复合材料、蜂窝状材料、夹心材料和特种陶瓷等.
关键词 机电一体化 磨料水切割 切割系统 Ingersoll-Rand公司 切割 磨料传输系统
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水喷磨料切割系统的设计与应用 被引量:2
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作者 Burnh.,C 马泽民 《国外金属加工》 1991年第3期11-16,共6页
关键词 磨料切割 设计 应用
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激光切割与类似工艺的比较
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作者 徐达 《科学技术创新》 2017年第22期22-23,共2页
激光切割是一种现代化的切割技术,主要是借助特殊的激光光束来对材料进行切割,这种光束的功率与密度都相对比较大,在切割中,材料受到激光的影响,会出现被加热的情况,其在加热之后,温度会逐渐提升,最终可达到汽化温度,产生蒸发现象,形成... 激光切割是一种现代化的切割技术,主要是借助特殊的激光光束来对材料进行切割,这种光束的功率与密度都相对比较大,在切割中,材料受到激光的影响,会出现被加热的情况,其在加热之后,温度会逐渐提升,最终可达到汽化温度,产生蒸发现象,形成新的孔洞,光线在被移动之后,孔洞的大小会出现变化,其宽度逐渐缩小,形成切缝,完成切割任务。在运用激光这种切割技术的同时,还可以以其他相似的工艺来进行代替,本文根据对激光切割技术的了解,对其与其他的切割技术进行比较研究。 展开更多
关键词 激光切割 细等离子束切割 磨料高压切割 工艺比较
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轨道客车钣金件生产先进工艺及装备
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作者 郑勇福 《金属加工(冷加工)》 2016年第S1期194-197,共4页
轨道客车制造工艺技术的提升对钣金件质量要求提高,结构也越来越复杂,要求我们的钣金制造工艺需要进一步提高水平。本文着重介绍钣金件生产新工艺和先进工艺及设备,提供提高钣金件质量和精度的新途径。
关键词 钣金件 数控激光切割 磨料水切割 数控折弯成形 数控步冲压力机成形 喷丸成形 滚弯成形
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Portable mixed abrasive water jet equipment for rescue in high gas mine shaft 被引量:7
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作者 ZENG Rui DU Chang-long +1 位作者 XU Rui ZHAO Jing 《Journal of Coal Science & Engineering(China)》 2011年第2期207-211,共5页
In order to rescue a trapped miner and clean out roadways quickly in a high gas mine shaft after a mining mishap, a special portable cold-cutting equipment is needed, the main technology parameters were calculated acc... In order to rescue a trapped miner and clean out roadways quickly in a high gas mine shaft after a mining mishap, a special portable cold-cutting equipment is needed, the main technology parameters were calculated according to the advanced cold-cutting technology of high pressure abrasive water jet and the portable mixed abrasive water jet equipment (PAWE) was designed to meet the needs of emergency rescue in high gas mine shafts. Tested the PAWE in a high gas environment, and the result shows that the maximum cutting depth of solid iron pipe is 18 mm and the recoilforce of the sprayer is 28.9 N under the conditions that actual cutting pressure is 29 MPa, starting target distance is 10 ram, cutting speed is 180 mm/min and concentration of abrasive is 32%. The course of the experiment in the high gas environment was smooth and continuous, without any explosion. The PAWE is easy to move and operate, but the nozzle which was worn badly in the sprayer should be changed every 8 minutes. 展开更多
关键词 PORTABLE ABRASIVE water jet emergency rescue GAS
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Universal Method for the Prediction of Abrasive Waterjet Performance in Mining 被引量:3
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作者 Eugene Averin 《Engineering》 SCIE EI 2017年第6期888-891,共4页
Abrasive waterjets (AWJs) can be used in extreme mining conditions for hard rock destruction, due to their ability to effectively cut difficult-to-machine materials with an absence of dust formation. They can also b... Abrasive waterjets (AWJs) can be used in extreme mining conditions for hard rock destruction, due to their ability to effectively cut difficult-to-machine materials with an absence of dust formation. They can also be used for explosion, intrinsic, and fire safety. Every destructible material can be considered as either ductile or brittle in terms of its fracture mechanics. Thus, there is a need for a method to predict the efficiency of cutting with AWJs that is highly accurate irrespective of material. This problem can be solved using the energy conservation approach, which states the proportionality between the material removal volume and the kinetic energy of AWJs. This paper describes a method based on this approach, along with recommendations on reaching the most effective level of destruction. Recommendations are provided regarding rational ranges of values for the relation of abrasive flow rate to water flow rate, standoff distance, and size of abrasive particles. I also provide a parameter to establish the threshold conditions for a material's destruction initiation based on the temporary-structural approach of fracture mechanics. 展开更多
关键词 Abrasive waterjet Energy conservation approach Depth of cut Fracture mechanics Threshold velocity MINING
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Performance of recycling abrasives in rock cutting by abrasive water jet 被引量:2
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作者 Gokhan Aydin 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第3期1055-1061,共7页
Rock cutting performance of recycling abrasives was investigated in terms of cutting depth, kerf width, kerf taper angle and surface roughness. Gravity separation technique was employed to separate the abrasives and t... Rock cutting performance of recycling abrasives was investigated in terms of cutting depth, kerf width, kerf taper angle and surface roughness. Gravity separation technique was employed to separate the abrasives and the rock particles. The recycling abrasive particles were then dried and sieved for determination of their disintegration behaviors. Before each cutting with recycling abrasives, the abrasive particles less than 106 ?m were screened out. It is revealed that a considerable amount of used abrasives can be effectively reused in the rock cutting. The reusabilities of abrasives are determined as 81.77%, 57.50%, 34.37% and 17.72% after the first, second, third and fourth cuttings, respectively. Additionally, it is determined that recycling must be restricted three times due to the excessive disintegration of abrasives with further recycling. Moreover, it is concluded that cutting depth, kerf width and surface roughness decreases with recycling. No clear trend is found between the kerf taper angle and recycling. Particle size distribution is determined as an important parameter for improving the cutting performance of recycling abrasives. 展开更多
关键词 abrasive water jet rock abrasive recycling
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