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    • 1. 发明申请
    • Shaft Bearing Support Assembly For Waterborne Equipment
    • 用于水性设备的轴承支撑组件
    • US20150071577A1
    • 2015-03-12
    • US14021050
    • 2013-09-09
    • Carl MoodyGary Hanson
    • Carl MoodyGary Hanson
    • F16C35/02F16C43/02F16C17/14
    • F16C43/02F16C17/14F16C25/02F16C32/067F16C32/0696Y10T29/49643
    • The present invention relates to a shaft bearing support assembly for waterborne equipment, including: at least one bearing; at least one tapered forcing ring; a housing; and at least one adjusting device. The outer circumference of each of the at least one bearing is surrounded by one tapered forcing ring which is arranged inside the housing. The at least one adjusting device communicates with each of the at least one tapered forcing ring. A force generated by the at least one adjusting device is transmitted to the at least one tapered forcing ring to longitudinally move the at least one tapered forcing ring, causing the at least one bearing to constrict radially and to adapt to a desired clearance over a diameter of a shaft.
    • 本发明涉及一种用于水性设备的轴承支撑组件,包括:至少一个轴承; 至少一个锥形强迫环; 房屋; 和至少一个调节装置。 所述至少一个轴承中的每一个的外圆周被设置在所述壳体内的一个锥形强迫环围绕。 所述至少一个调节装置与所述至少一个锥形迫使环中的每一个连通。 由所述至少一个调节装置产生的力被传递到所述至少一个锥形迫动环以纵向移动所述至少一个锥形迫使环,使所述至少一个轴承径向收缩并适应于直径上的期望间隙 的轴。
    • 2. 发明授权
    • Vitrified composite novaculite and process for producing same
    • 玻璃化复合材料及其制造方法
    • US4662897A
    • 1987-05-05
    • US828757
    • 1986-02-11
    • Charles AtkinsonCarl Moody
    • Charles AtkinsonCarl Moody
    • B24D3/18B24D18/00B24D3/00
    • B24D3/18B24D18/0009
    • A process for artificially producing a relatively high density, vitrified composite novaculite product of relatively homogenous, characteristics with a MOH hardness of between 7.0 and 8.0, and the artificial stone product thereby produced. First a supply of dry abrasive comprising at least 95% by weight silicon dioxide is supplied. This source preferably includes mixtures of 100 mesh novaculite powder and 200 mesh novaculite powder. The dry abrasive mixture is thereafter mixed with a wetting agent, such as a 16:1 mixture of liquid organic concentrate and water, a temporary binder, calcium stearate, and a high refractory frit. The resultant mixture is thoroughly blended to form a first intermediate mixture having a weight of approximately 64% of said dry abrasive, 5.72% of a temporary binder, 3.08% of the wetting agent approximately 1.98% calcium stearate, and approximately 24.3% frit. The intermediate mixture is then subjected to gyratory screening yielding a second intermediate mixture which is then blended with a ball clay to provide a final mixture, which, after final screening, is suitable for cold pressing and subsequent vitrification. Preferably the final mixture consists of approximately 91.56% of the second intermediate mixture and 8.5% of the tennessee ball clay. The final mixture may be pressed in the shape of the desired end product at five tons per square inch. Vitrification is achieved by firing the pressed parts in an electric furnace up gentle ramps to slowly approach cone 04, and a soak time of approximately 2 hours is preferred.
    • 一种人造生产相对均匀的,具有7.0-8.0的MOH硬度的特征的相对高密度,玻璃化的复合材料的方法以及由此产生的人造石制品。 首先提供包含至少95重量%二氧化硅的干磨料。 该来源优选包括100目无色粉末和200目无色粉末的混合物。 然后将干磨料混合物与润湿剂混合,例如液体有机浓缩物和水的16:1混合物,临时粘合剂,硬脂酸钙和高耐火玻璃料。 将所得混合物充分混合以形成重量约64%所述干磨料,5.72%临时粘合剂,3.08%润湿剂约1.98%硬脂酸钙和约24.3%玻璃料的第一中间体混合物。 然后将中间体混合物进行旋转筛选,产生第二中间体混合物,然后将其与球粘土混合以提供最终混合物,其在最终筛选之后适用于冷压和随后的玻璃化。 优选地,最终混合物由约91.56%的第二中间体混合物和8.5%的田纳西球粘土组成。 最终的混合物可以按每平方英寸5吨的期望的最终产品的形状压制。 玻璃化是通过在电炉中将压制部件轻轻地向上倾斜缓缓地进入锥体04而实现的,并且优选约2小时的浸泡时间。
    • 3. 发明授权
    • Shaft bearing support assembly for waterborne equipment
    • 用于水性设备的轴承支撑组件
    • US09243668B2
    • 2016-01-26
    • US14021050
    • 2013-09-09
    • Carl MoodyGary Hanson
    • Carl MoodyGary Hanson
    • F16C35/02F16C43/02F16C17/14F16C33/66F16C25/02F16C32/06
    • F16C43/02F16C17/14F16C25/02F16C32/067F16C32/0696Y10T29/49643
    • The present invention is directed to a shaft bearing support assembly for waterborne equipment, including: at least one bearing; at least one tapered forcing ring; a housing; and at least one adjusting device. The outer circumference of each of the at least one bearing is surrounded by one tapered forcing ring which is arranged inside the housing. The at least one adjusting device communicates with each of the at least one tapered forcing ring. A force generated by the at least one adjusting device is transmitted to the at least one tapered forcing ring to longitudinally move the at least one tapered forcing ring, causing the at least one bearing to constrict radially and to adapt to a desired clearance over a diameter of a shaft.
    • 本发明涉及一种用于水性设备的轴承支撑组件,包括:至少一个轴承; 至少一个锥形强迫环; 房屋; 和至少一个调节装置。 所述至少一个轴承中的每一个的外圆周被设置在所述壳体内的一个锥形强迫环围绕。 所述至少一个调节装置与所述至少一个锥形迫使环中的每一个连通。 由所述至少一个调节装置产生的力被传递到所述至少一个锥形迫动环以纵向移动所述至少一个锥形迫使环,使所述至少一个轴承径向收缩并适应于直径上的期望间隙 的轴。