1) Al2O3-C slide plate

Al2O3-C滑板
1.
Al-Si metal bonded Al2O3-C slide plate materials newly developed and characterized by low carbon content and low firing temperature,exhibit higher hot strength,better thermal shock resistance and better oxidation resistance than conventional Al2O3-C and Al2O3-ZrO2-C plates which are fired at much higher temperature.
自主研制开发了节能型低碳金属Al-Si结合Al2O3-C滑板,其工艺特点是低温烧成,产品特性是低碳,与常用的Al2O3-C和Al2O3-ZrO2-C滑板相比,具有较高的热态强度,较好的抗热震性和抗氧化性。
2.
The Al/Si metal bonded Al2O3-C slide plate after used are analysed by XRD, SEM, EDS and chemical analysis.
用XRD、SEM、EDS和化学分析法对金属Al/Si结合Al2O3-C滑板用后的残砖进行了分析,用后滑板的结构可分为原砖带和工作带两部分。
2) unburned Al2O3-Al-C slide gate plate

不烧Al2O3-Al-C滑板
1.
The middle-temperature performance and microstructure of unburned Al2O3-Al-C slide gate plate with aluminum fiber introduction were studied through experiment.
通过实验研究了金属铝纤维引入对不烧Al2O3-Al-C滑板中温性能和显微结构影响。
3) unburned Al2O3-AlC slide gate plate

不烧Al2O3-Al-C质滑板
1.
Effect of four kinds of carbon sources,namely,amorphous graphite,flake graphite,carbon black and pitch on cold modulus of rupture of unburned Al2O3-AlC slide gate plate treated in coke bed at 1 100 and 1 600 ℃ was investigated by means of scanning electron microscope(SEM) and energy dispersive spectrometer(EDS).
研究土状石墨、鳞片石墨、炭黑和高温沥青4种炭素材料对不烧Al2O3-Al-C质滑板热处理后强度的影响,借助X射线衍射仪、扫描电镜和能谱仪等分析了试样的物相变化和微观结构。
4) Cu/C pantograph slide

Cu/C受电弓滑板
1.
In order to solve the interface problem in Cu/C pantograph slide manufacture and improve the comprehensive properties of the slide graphite powders were coated by the method of electroless copper plating.
用化学镀的方法在石墨粉表面镀覆铜层,以解决Cu/C受电弓滑板制造中的界面问题并提高其综合性能。
5) Alumina-zirconia-carbon

Al2O3-ZrO2-C
6) Al 2 O 3-SiC-C

Al2O3-SiC-C
补充资料:滑板滑雪
源于20世纪60年代中期的美国,其产生与冲浪运动有关。1993年起举办世界锦标赛,1998年被列入第18届冬奥会,设男、女大回转和滑道技巧比赛项目。
①大回转 场地长936米,平均坡度18.21度,坡高290米。大回转用靴与滑雪靴相似,但更有弹性。滑板坚硬、狭窄,以利于转向和高速滑行。以滑行速度评定名次。主要技术动作有左右回转。
②滑道技巧 场地为u形滑道,长120米,宽15米,深3.5米,平均坡度18度。滑板稍软,较宽,靴底较厚。比赛时运动员在u形滑道内边滑行边利用滑道做各种旋转和跳跃动作,裁判员根据完成的动作难度和效果评分。主要动作有跃起抓板、跃起非抓板、倒立、跃起倒立、旋转等。
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