金属结合剂金刚石磨具具有强度高、耐磨性好、组织致密和使用寿命长等优点,被广泛运用于硬质合金、石材、陶瓷、玻璃等难加工材料的磨削过程[1-2]的英语翻译

金属结合剂金刚石磨具具有强度高、耐磨性好、组织致密和使用寿命长等优点,

金属结合剂金刚石磨具具有强度高、耐磨性好、组织致密和使用寿命长等优点,被广泛运用于硬质合金、石材、陶瓷、玻璃等难加工材料的磨削过程[1-2]。然而,采用热压烧结方法制备的传统金属结合剂金刚石砂轮缺点也十分明显,如砂轮致密程度高、自锐性差、磨屑不易排出、易堵塞、修型整形较为困难等,这些都会导致砂轮的磨削效率变低。本文尝试将传统陶瓷结合剂的孔隙结构引入到金属结合剂金刚石磨具中,制备多孔金属结合剂金刚石磨具,使其自锐性更为优良、能在一定程度内改善磨削产生的磨削力、有效地降低磨削热和磨削温度。本文拟采用普通热压烧结法制备铜-镍-锡基金刚石砂轮。通过研究两种造孔剂混合使用时的造孔效果,通过试验最终优选出较为合适的两种造孔剂的掺杂比例与烧结工艺,尝试制造出孔隙率较高的金属结合剂金刚石砂轮,有效提高砂轮的自锐性,并增大砂轮内部的孔隙占比,扩大金刚石砂轮的容屑排屑空间,从而提高金属结合剂金刚石砂轮的使用性能。通过单独改变金属结合剂中两种造孔剂(碳酸氢钠、陶瓷空心球)的掺杂比例、添加量,安排试验制备得到单一变量的金属结合剂试条若干组,研究得出孔隙率与造孔剂添加量、造孔剂种类两者之间的对应关系;同时研究造孔剂种类、添加量对金属结合剂试条硬度、强度等一系列性能的影响。结合工厂制备金属结合剂金刚石砂轮的实际需求,设计出适用于生产工作的工艺流程,核算制备砂轮的物料成本。
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结果 (英语) 1: [复制]
复制成功!
Metal bond diamond abrasives have the advantages of high strength, good wear resistance, dense organization and long service life. They are widely used in the grinding process of hard materials such as cemented carbide, stone, ceramics, and glass [1-2] . However, the shortcomings of the traditional metal bond diamond grinding wheel prepared by hot pressing sintering method are also very obvious, such as high density of the grinding wheel, poor self-sharpness, difficult discharge of abrasive debris, easy clogging, difficult shaping and shaping, etc. Grinding efficiency becomes lower. This paper attempts to introduce the pore structure of the traditional ceramic bond into the metal bond diamond abrasive tool to prepare the porous metal bond diamond abrasive tool, which makes the self-sharpness more excellent and can improve the grinding caused by grinding to a certain extent. Force, effectively reduce grinding heat and grinding temperature. <br>This paper intends to prepare copper-nickel-tin based diamond grinding wheels by ordinary hot pressing sintering method. By studying the pore-forming effect when two pore-forming agents are used in combination, the experiment finally selects the more appropriate doping ratio and sintering process of the two pore-forming agents, and attempts to manufacture a metal-bonded diamond grinding wheel with a higher porosity. Effectively improve the self-sharpening of the grinding wheel, increase the proportion of pores inside the grinding wheel, expand the chip-containing and chip-removing space of the diamond grinding wheel, and thus improve the performance of the metal-bonded diamond grinding wheel. By individually changing the doping ratio and addition amount of the two pore-forming agents (sodium bicarbonate, ceramic hollow spheres) in the metal binder, arrange the test to prepare several groups of single-variable metal binder test strips. Corresponding relationship between the amount of pore-forming agent added and the type of pore-forming agent; at the same time, the effects of the type and amount of pore-forming agent on the hardness and strength of metal bond test strips were studied. Combined with the actual needs of the factory to prepare the metal bond diamond grinding wheel, a process flow suitable for production work was designed, and the material cost of preparing the grinding wheel was calculated.
正在翻译中..
结果 (英语) 2:[复制]
复制成功!
Metal binder diamond abrasives have the advantages of high strength, good wear resistance, tight organization and long service life, and are widely used in the grinding process of hard-to-process materials such as carbide, stone, ceramics, glass. However, the shortcomings of the traditional metal binder diamond grinding wheel prepared by the hot-pressing sintering method are also very obvious, such as high degree of grinding wheel density, poor self-sharpness, difficult to discharge, easy to clog, repair shaping is more difficult, which will lead to the grinding efficiency of the grinding wheel is lower. In this paper, we try to introduce the pore structure of traditional ceramic binding agent into the metal binder diamond abrasive, and prepare the multiporous metal binder diamond abrasive, so that its self-sharpness is better, can improve the grinding force produced by grinding to a certain extent, and effectively reduce the grinding heat and grinding temperature.<br>In this paper, it is proposed to use the ordinary hot sintering method to prepare copper-nickel-tin-based diamond grinding wheel. By studying the hole-making effect of the mixing of two perforators, and by testing the doping ratio and sintering process of the two more suitable perforators, the diamond grinding wheel, which has a higher porosity, is tried to effectively improve the self-sharpness of the grinding wheel, and increases the proportion of pores inside the grinding wheel, and the chip drain space of the diamond grinding wheel is expanded, thereby improving the performance of the metal binding agent diamond grinding wheel. By individually changing the doping ratio and addition of two kinds of metal binding agent (sodium bicarbonate, ceramic hollow ball), arrange the test preparation to obtain a single variable of the metal binding agent test strip several groups, the study results in the correspondence between the porosity rate and the perforator addition, the type of perforator, the effect of the type of perforator, the addition of the metal binding agent test bar hardness, strength and so on. Combined with the actual demand of the factory to prepare the metal binder diamond grinding wheel, the process suitable for production work is designed to account for the material cost of preparing the grinding wheel.
正在翻译中..
结果 (英语) 3:[复制]
复制成功!
Metal bonded diamond grinding tools have the advantages of high strength, good wear resistance, compact structure and long service life, which are widely used in the grinding process of hard to process materials such as hard alloy, stone, ceramics, glass and so on [1-2]. However, the disadvantages of the traditional metal bonded diamond wheel made by hot pressing sintering method are also very obvious, such as the high density of the wheel, the poor self sharpening, the difficult to discharge the debris, the easy to block, the more difficult to repair and reshape, etc., which will lead to the grinding efficiency of the wheel become low. In this paper, we try to introduce the pore structure of traditional ceramic bond into the metal bond diamond grinding tool to prepare porous metal bond diamond grinding tool, so that its self sharpness is better, the grinding force produced by grinding can be improved to a certain extent, and the grinding heat and grinding temperature can be effectively reduced.<br>In this paper, the common hot pressing sintering method is used to prepare Cu Ni Sn based diamond grinding wheel. Through the study of the pore forming effect of two kinds of pore forming agents when they are used together, the appropriate doping proportion and sintering process of the two kinds of pore forming agents are finally selected through the test, and the metal bonded diamond wheel with high porosity is tried to be manufactured, which can effectively improve the self sharpening of the wheel, increase the proportion of pores in the wheel, expand the space of chip holding and chip discharging of the diamond wheel, so as to improve the gold content The utility model belongs to the use performance of bond diamond grinding wheel. By changing the doping ratio and addition amount of two kinds of pore formers (sodium bicarbonate and ceramic hollow ball) in the metal bond separately, several groups of metal bond test strips with single variable were prepared by arranging the test, and the corresponding relationship between porosity, the addition amount of pore formers and the type of pore formers was studied. At the same time, the effect of the type and addition amount of pore formers on the hardness of metal bond test strips was studied , strength and so on. According to the actual demand of manufacturing metal bonded diamond wheel in factory, the technological process suitable for production is designed, and the material cost of manufacturing wheel is calculated.<br>
正在翻译中..
 
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