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    • 4. 发明授权
    • Aluminum nitride powder and a process for the preparation thereof
    • 氮化铝粉末及其制备方法
    • US4923691A
    • 1990-05-08
    • US364013
    • 1989-06-09
    • Dieter PetersGero HeymerChristian May
    • Dieter PetersGero HeymerChristian May
    • C01B21/072
    • C01B21/072C01P2002/60C01P2004/62C01P2006/12C01P2006/60
    • An aluminum nitride powder has a crystallite size of 40 to 150 nm, measured by powder diffractometry and evaluated by the method of Scherrer, a primary particle size of 0.1 to 0.5 .mu.m, a specific surface according to BET of 5 to 50 m.sup.2 /g and a degree of whiteness of more than 91%, measured using light of a 400 to 700 nm wavelength against barium sulfate analytical reagent as standard of whitness.To prepare this aluminum nitride powder, metallic aluminum and monoamminealuminum chloride [AlCl.sub.3 (NH.sub.3)] are first molten together in an inert gas atmosphere at temperatures above 125.degree. C. and allowed to react with one another with evolution of hydrogen. 8 to 20 g of ammonia are then introduced per hour per mol of monoamminealuminum chloride into the aluminum-containing monoamminealuminum chloride melt at temperatures between 250.degree. and 400.degree. C., aluminum nitride being precipitated as a solid until the conversion of the aluminum is complete. The temperature of the melt is finally raised to more than 400.degree. C.
    • 氮化铝粉末的微晶尺寸为40〜150nm,用粉末衍射法测定,用Scherrer法评价,一次粒径为0.1〜0.5μm,BET比表面积为5〜50m 2 / g 白度为91%以上,采用400〜700nm波长的光作为白度标准测定硫酸钡分析试剂。 为了制备这种氮化铝粉末,首先在惰性气体气氛中,在高于125℃的温度下将金属铝和一氯化铝[AlCl 3(NH 3)]熔融在一起,并使其彼此发生氢气反应。 然后在250-400℃的温度下将8至20g的氨每小时每摩尔氯化单铝酸铵引入含铝单胺氯化铝熔体中,将氮化铝作为固体沉淀直到铝的转化完全 。 熔体的温度最终升至400℃以上。
    • 6. 发明授权
    • Apparatus and method for determining a physical address from a virtual address by using a hierarchical mapping regulation with compressed nodes
    • 通过使用具有压缩节点的分层映射调节来从虚拟地址确定物理地址的设备和方法
    • US07124275B2
    • 2006-10-17
    • US10480081
    • 2002-05-14
    • Berndt GammelChristian MayRalph LedwaHolger Sedlak
    • Berndt GammelChristian MayRalph LedwaHolger Sedlak
    • G06F12/00
    • G06F12/1009G06F2212/651G06F2212/681
    • A method for determining a physical address from a virtual address, wherein a mapping regulation between the virtual address and the physical address is implemented as hierarchical tree structure with compressed nodes. First, a compression indicator included in the mapping regulation is read, and a portion of the virtual address associated with the considered node level is read. Using the compression indicator and the portion of the virtual address, an entry in the node list of the considered node is determined. The determined entry is read, whereupon the physical address can be determined directly, if the considered node level has been the hierarchically lowest node level. If higher node levels to be processed are present, the previous steps in determining the physical address for compressed nodes of lower hierarchy level are repeated until the hierarchically lowest node level is reached.
    • 一种用于从虚拟地址确定物理地址的方法,其中虚拟地址和物理地址之间的映射调节被实现为具有压缩节点的分层树结构。 首先,读取包含在映射规则中的压缩指示符,并且读取与所考虑的节点级别相关联的虚拟地址的一部分。 使用压缩指示符和虚拟地址的一部分,确定所考虑节点的节点列表中的条目。 读取确定的条目,从而可以直接确定物理地址,如果所考虑的节点级别是层次最低的节点级别。 如果存在要处理的较高节点级别,则重复确定较低层次级别的压缩节点的物理地址的先前步骤,直到达到分级最低节点级别。
    • 10. 发明授权
    • Foot cradle apparatus of a muscle training device
    • 一个肌肉训练装置的足底座装置
    • US08667863B2
    • 2014-03-11
    • US13045863
    • 2011-03-11
    • Christian May
    • Christian May
    • G05G1/60
    • A63B22/00A63B22/0046A63B23/00A63B23/0355B62M3/08G05G1/60Y10T74/20918Y10T74/217
    • A foot cradle apparatus of a muscle training device is provided, having a foot cradle with a tread and a side wall at least partially limiting the tread, and a fixation unit for fixing a human foot in the foot cradle. A foot fixation unit that is simple to handle and has small dimensions and a low weight is created in that the fixation unit is formed as a lockable, pivotable bracket, whose pivot bearing has a pivot axis oriented substantially parallel to the longitudinal axis of the foot cradle and is provided in a compact bearing unit which is connected fixedly at least indirectly to the foot cradle and which is attached to an inner side wall, close to the inner side of a patient's foot, of the foot cradle and is connected fixedly to the tread via the inner side wall.
    • 提供了一种肌肉训练装置的足底架装置,其具有脚踏架,其具有胎面和至少局部限制胎面的侧壁,以及用于将人脚固定在脚架中的固定单元。 产生易于处理并具有小尺寸和低重量的脚固定单元,其中固定单元形成为可锁定的可枢转支架,其枢转轴承具有基本上平行于脚的纵向轴线定向的枢转轴线 并且设置在紧凑的轴承单元中,所述紧凑的轴承单元至少间接地连接到所述脚托架,并且所述紧凑的轴承单元连接到所述脚托架的靠近患者的脚的内侧的内侧壁,并且固定地连接到所述支架 通过内侧壁胎面。