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The main products are: all kinds of industrial furnace regenerator with cordierite, mullite, high alumina, corundum honeycomb, and various materials and specifications of the regenerator the ball, and with regenerator tile block; all kinds of industrial furnace series×, corundum brick, clay brick, lightweight insulation materials, heat insulation brick light weight, low-iron mullite brick, silica brick, magnesia brick, aluminum MgO-C Bricks, magnesia-chrome brick, chrome Corundum bricks, a steel trough brick slipway and a variety of refractory materials such as sizing the outlet; all kinds of industrial furnaces with wear-resistant castables, low cement castable high-strength, impermeable material, gravity feed can be plastic, refractory clay, such as amorphous material; a variety of wear-resistant ceramic materials: ceramic lining, grinding balls, ceramic pipes, ceramic cylinder liner, piston, valves and other ceramics.

主要产品有:各种工业炉蓄热室用堇青石质、莫来石质、高铝质、刚玉质蜂窝体以及各种材质和规格的蓄热球,并配有蓄热体挡板砖;各种工业炉用系列高铝砖、刚玉砖、粘土砖、轻质保温材料、轻质隔热砖、低铁莫来石砖、硅砖、镁砖、铝镁碳砖、镁铬砖、铬刚玉砖、出钢槽滑道砖以及各种定径水口等耐火材料;各种工业炉用耐磨浇注料、低水泥高强浇注料、防渗料、自流料、可塑料、耐火泥等不定形材料;各种材质的耐磨陶瓷制品:陶瓷衬板、研磨球、陶瓷管道、陶瓷缸套、柱塞、陶瓷阀门等。

China and the world in the lead abrasion-resistant material and development of the industrial revolution in the process of wear-resistant materials on behalf of the international development trend of Sino-US Hauteur, you will surely bring new surprises and brilliant unprecedented!

在引领中国及世界耐磨材料工业革命与发展的过程中,代表国际耐磨材料发展潮流的中美豪特,必将为阁下带来新的史无前例的惊喜与辉煌!

The effect of heating temperature on abrasion resistance of high alloy wear-resistant cast iron was studied.

研究了加热温度对高合金耐磨铸铁耐磨性的影响。

Hypereutectic Al-Si alloy with the quality of low density, good heat stability and high wear-resistance, is an ideal wear-resistant and heat-resistant material.

中文摘要过共晶铝硅合金具有低密度、良好的热稳定性和高耐磨性,是一种理想的耐磨耐热材料。

The improvement of the frictional resistance is mainly due to the effect of carbon on residual austenite and the morphology of carbides, and an appropriate amount of residual austenite is helpful to improve the impact toughness and hardness of matrix; The spherical VC can hinder the initiation and propagation of crack and improve the frictional resistance.

碳含量对耐磨性的影响主要是通过对基体残余奥氏体量和碳化物形态表现出来的,适量的残余奥氏体使基体具有较好的冲击韧度及硬度;形态较为固整的VC颗粒,对裂纹的萌生及扩展起阻碍作用,从而使材料的耐磨性提高。

Finally, by studying on using saw blades with different matrices cutting different stones, a basic compatibility rule about matrices and stones was concluded, say, when cutting a hard, high quartz and high alkalifeldspar content and strong bonded stone, a high impact strength and low wear-resistance matrix should be chosen; otherwise, when cutting a soft, low quartz or no quartz content and weak bonded stone, a high bending strength, low impact strength and high wear-resistance matrix should be chosen.

最后,通过对不同性能结合剂的锯片切割不同石材的切削寿命和磨损状态分析,得出了锯片结合剂性能与岩石性质之间的一般性匹配原则:即对于坚硬的、高石英含量的花岗岩,宜选用高强度、高冲击韧性、低耐磨性和对金刚石具有良好粘结性能的结合剂;对于低硬度、无石英或低石英含量的易切削花岗岩,宜选用高强度、高耐磨性和低冲击韧性的结合剂。

The wearability is best in vanadium 0.2% test steel, three times than that of high manganese steel.

在本试验条件下含钒0.2%的试验钢耐磨性最好,是普通高锰钢耐磨性的2倍。

In order to enhance wear-resisting performance of the internal combustion engine piston ring,matrix microstructure and radial elastic force of the piston ring,the matching between piston ring and cylinder were analyzed.

为提高内燃机活塞环的耐磨性能,分析了活塞环的基体组织、径向弹力及活塞环与气缸套的匹配状况对其耐磨性的影响。试验表明活塞环的基体组织以细粒状珠光体或回火索氏体、石墨呈细小均匀分布为佳;活塞环的径向弹力大小应适宜,一般为

The microstructure of the coating and the mechanism of the wear resistance were analyzed. Compared with the coating using oxyacetylene flame process, results showed that the wear resistance of coating prepared by plasma spray welding process is higher than that of the coating using oxyacetylene flame process.

进而对涂层的微观组织和耐磨机理进行了分析和研究,并且与氧乙炔火焰喷焊技术所制备的涂层进行了对比测试分析,结果表明,利用等离子喷焊技术所制备的超厚涂层耐磨性能更为出色。

Through the failure analysis of tamping pick and abrasion contrast test, we select the fit pickax shoe wearable material; through the welding and performance test, we set about from selecting welding rod and establishing welded craft with reason to judge whether the welding between the pickax shoe wearable material which we have selected and the pickax body material or not?

通过对捣镐的失效分析和磨损对比试验,选择合适的镐靴耐磨材料;通过焊接及焊后的性能试验,从合理选择焊接材料和制定焊接工艺着手,判断所选镐靴耐磨材料与镐体材料之间的焊接是否可行?

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