1) Pre-formation pressure gauges
义齿预成型压力器
2) molding technique parameter
预拉伸成型压力
3) pre-press forming
预压成型
1.
In order to obtain foam glass with high performance, the density, average and the maximum pore diameter, the biggest bubble and their proportion of sintering formed foam glass are tested by experimental study on wrapping and modification of foam glass admixture, adding graphite foaming agent and pre-press forming.
通过对泡沫玻璃混合料包覆改性、添加石墨发泡剂以及预压成型的实验研究,对烧结成型的泡沫玻璃密度、平均孔径、最大孔径和最大孔径气泡所占比例进行测试,以期获得高性能的泡沫玻璃。
4) forming pressure
成型压力
1.
The influence of powder grain size and forming pressure upon the performance of W-Cu composites are discussed in this article.
研究了粉末粒度、成型压力及铜的损耗对钨铜复合材料制备的影响。
2.
The influence of powder grain size and forming pressure are discussed for the performance of W-Cu composites.
着重研究了粉末粒度与成型压力对钨铜材料烧结致密度的影响。
3.
Carbon fiber reinforced sulphoaluminate cement composites(CFSC) was fabricated by press moulding;the influence of forming pressure on smart properties of CFSC was studied.
采用压制成型方法,制备了碳纤维硫铝酸盐水泥基复合材料(carbon fiber rein-forced sulphoaluminate cement composites,简称CFSC),研究了成型压力对CFSC压阻效应和温阻效应的影响。
5) molding pressure
成型压力
1.
Influence of molding pressure and dunking time on the sulfate attack resistant nature of concrete
成型压力和浸泡时间对混凝土抗硫酸盐侵蚀性能的影响
2.
The effect of adding nano α-Al_2O_3 powder and molding pressure on microstructure and properties of micron-sized alumina ceramic was investigated.
为了解决氧化铝陶瓷脆性大、均匀性差等问题,我们在微米氧化铝粉体中添加一定比例的纳米-αAl2O3粉,研究纳米-αAl2O3粉的添加和成型压力对微米氧化铝陶瓷显微结构和性能的影响。
3.
During the process of the consolidation molding consolidation, this paper adopts three schemes to make kinds of samples, while it gives and studies the molding temperature as well as adopts the molding pressure, analyzing the relationship between the molding pressure and the molding thickness.
模塑成型的复合固化中,采用了三个方案复合出几种试样,并对试样的成型温度,成型压力的确定给予了探讨,同时分析了成型压力与成型厚度之间的关系。
6) pressure forming
压力成型
1.
It has been found the oxidation resistance of casting forming Sialon/SiC is the best,the pressure forming Si3N4/SiC is the worst,and the pressure forming Sialon/SiC is the middle one.
结果表明,浇注成型Sialon/SiC试样抗氧化性能最好,压力成型Sialon/SiC试样次之,压力成型Si3N4/SiC最差,并得到其氧化动力学方程。
补充资料:差动变压器式压力传感器
由弹性敏感元件和差动变压器构成的压力传感器。它的弹性敏感元件作为受力机构,把被测压力转换成位移,再用差动变压器把位移转换为与被测压力成一定关系的电信号。差动变压器属于电感式传感器,所以差动变压器式压力传感器又称电感式压力传感器。利用弹性敏感元件的不同形式可制成多种用途的差动变压器式压力传感器。图a中是3种差动变压器式压力传感器的结构示意图。图a中的弹性敏感元件为弹簧管(见波登管),它的自由端与差动变压器的衔铁相连。当压力作用使弹簧管自由端移动时,衔铁随之移动,使差动变压器次级线圈的输出电压发生变化,再通过标定换算即能测出压力。图b中的弹性敏感元件为膜盒。在无压力作用时,接于膜盒自由面中心的衔铁位于差动变压器的中部,使输出电压为零。当压力输入膜盒后,自由面产生一正比于被测压力的位移,并带动衔铁在差动变压器的线圈中移动,从而使差动变压器有一正比于压力的电压输出。这种传感器适于测量微压力,可测量-4×104~6×104巴的压力,输出电压可达50毫伏。图c的弹性敏感元件为膜片。当高压流和低压流分别通过高压阀和低压阀进入高压室和低压室时,膜片在压力差作用下变形,向低压室移动,使连接其上的拉杆带动衔铁移动,从而使差动变压器输出与压差成一定关系的电压信号。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条