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This invention discloses a preparation method for anti-corrosion rare earth magnet material characterizing that it takes the optimized grain-boundary phase design as the starting point on the basis of a dual alloy method to select Nd base alloy with high crystal forming ability as the assist alloy and reduces the temperature of the press mold blank in a quartz container to room temperature from over grain-boundary phase melting point with the water extraction way to get enough cooling rate and guarantee the non-grain-boundary phase, compared with the material of the same composition prepared by ordinary method, the weightlessness of this invented material reduces over 30% after testing the weightlessness of the material by laying it for 96 hours under 121deg.C, 2 atmosphere and 100% humid environment to show the advanced performance of anti-corrosion.

本发明公开了一种耐腐蚀稀土永磁材料的制备方法,其特征是它在双合金法制备工艺的基础上,以优化晶界相设计为出发点,选取具有较高非晶形成能力的Nd基合金为辅合金,并在烧结回火时将置于耐高温石英容器中的压型坯件,从晶界相熔点以上以水淬冷却的方式降温至室温,以达到足够的冷却速率,确保得到非晶晶界相,根据本发明制得的耐腐蚀稀土永磁材料,通过测量在121℃、2个大气压以及100%湿度环境下放置96小时后材料的失重情况,结果显示本发明得到的材料与常规方法制备的相同成分的稀土永磁材料相比失重减少了30%以上,充分证明其具备了更优越的耐腐蚀性能。可广泛应用于电子、汽车、计算机、电力、机械、能源、环保、国防、医疗器械等领域。

In this paper, the FIR low-pass digital filtering method is first introduced for reducing the effects of noise signals in the experiment of velocity measurement of high-temperature flue gas flowing in pipe. The experimental results indicated that, only one peak presents in the cross-correlation graph, which is in good agreement with theoretical analysis result. Secondly, the temperature and pressure pulse signals of the high-temperature flue gas, obtained by thermocouple and pressure sensor, are introduced to explain the applicability of sensor characteristics.

本文介绍在测量管内流动的高温烟气流速的实验中采用FIR低通数字滤波器滤波方法可以排除干扰信号的影响的研究,实验结果证明,经过滤波处理后的信号互相关函数的图形不会出现大小相当的多个峰值,符合理论分析的结果;其次,本文还介绍了用热电偶和压力传感器采集的烟气温度和压力脉动信号,分析了传感器特性对相关测速的适应性。

The establishment and initiatory application of this new measurement method shows that it is feasible to study elastic velocities and equation of state of widely earth's interior materials in advance under high pressure and high temperature.

新的弹性波速测量方法的建立和初步的应用研究,表明在高温高压条件下进一步广泛地开展对地球深部物质的弹性波波速及状态方程的研究成为可能。

The research is based on brightness temperature approach method and continuous temperature measurement method. The experiment results show that the methods are effective in measuring true temperature and emissivity. The study of the project plays an important role in improving and applying the technique of radiation thermometry theory.

从仿真及对实测数据的处理结果来看,两种方法为高温及超高温度下,某类目标真实温度及物体的光谱发射率的测量提供了行之有效的方法,该课题的研究具有重要的理论意义和实用价值。

Friction and wear behavior of CrNiMo steel against H96 brass in different atmosphere s like oxygen and carbon dioxide were investigated on the MMS-1G tribometer under high speed and dry sliding.

采用MMS-1G型高温高速摩擦磨损试验机研究了在氧气和二氧化碳2种气氛环境中CrNiMo钢/H96黄铜摩擦副的高速干滑动摩擦磨损特性,采用扫描电子显微镜和X射线光电子能谱仪对CrNiMo钢销试样的磨损表面形貌及其元素的化学状态进行分析,结合摩擦表面宏观温度的测量,分析了不同气氛环境中pv值对摩擦副摩擦磨损特性的影响。

The studies on the compositions, origins and elastic properties of the southern Tibetan lower crust include the following 4 aspects: the petrological and geochemical festures and ages of granulitic facie rocks located in Higher Himalayas; dehydration melting experiments on the biotite-plagioclase gniess collected from Higher Himalayas at high temperature and high pressure to model the formation of the granulites; measurements of wave velocities of the lower crustal rock in situ; analysis of origin of intracrust low wave velocity layers beneath southern Tibet.

以西藏南部下地壳物质组成,成因及其弹性性质为研究目标进行了4个方面的相关研究:高喜马拉雅地区麻粒岩相岩石的岩石学,地球化学和年代学研究;麻粒岩相岩石成因的高温高压实验;原位条件下岩石的弹性波速测量;西藏高原壳内低速层的成因分析与模拟。

By measuring and evaluating the extreme thermal environment in hyperthermal coal mine,the differences between the actual thermal environments in hyperthermal coal mine,current standards and research results of heat tolerance parameter area were analyzed,.

本文从高温高湿热环境的评价指标出发,对极端环境下人体的耐受力进行实验研究,通过对高热害煤矿的极端热环境进行测量与评价,分析了高热害巷道环境现状、使用的标准和人体耐受力参数区域研究结果的差异,指出了高热害煤矿巷道环境标准调整的必要性,并对下一步的研究工作提出展望。

The; of down-lead of 200 A binary electric current that the design made intensity of central field magnetic induction be 3 T is opposite through the experiment of the thermal resistance of interior of the leakage heat of voltaic down-lead, heat exchanger and line of high temperature superconduction and cupreous matrix solder resistor undertook metrical, studied refrigeration engine trouble or the transient state temperature of down-lead of the electric current below power cut condition changes.

设计制作了中心场磁感应强度为3 T的200 A二元电流引线;通过实验对电流引线的漏热、换热器内部的热阻以及高温超导线和铜基体的焊接电阻进行了测量,并探究了制冷机故障或者停电状态下电流引线的瞬态温度变化。

According to the property of EBB, scanning electron beam was considered as plane heat source instead of spot heat source in this paper. Aiming at the problems to measure the real-time temperature and residual stress of radiator difficultly at high temperature, the two-dimensional finite element models were established. Based on the thermal elastic-plasticity, the temperature fields and stress fields of EBB 6139T and 6204T radiator by two kinds of process were simulated by the software of ANSYS. It is of great value and significance to guide actual production.

本文根据电子束钎焊的特点,将电子束点热源转化为扫描加热时的面热源,针对散热器高温下温度实时测量和残余应力实测困难这一问题,建立了二维有限元模型,以热—弹塑性理论为基础,利用ANSYS软件对6139T和6204T散热器分别按两种电子束钎焊工艺钎焊的温度场和应力场进行了数值模拟,对于指导实际的生产具有重要的价值和意义。

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