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    • 1. 发明申请
    • Automatic Ball Charging System For A Ball Mill Assembly
    • 球磨机组装自动球充电系统
    • US20140197257A1
    • 2014-07-17
    • US13804061
    • 2013-03-14
    • KNIGHT INDUSTRIAL EQUIPMENT INC.
    • Raymond J. FoucherChristopher S. LazenbyBrian M. PoppRobert C. Knight
    • B02C17/20
    • B02C17/205B02C17/16B02C17/183
    • The present invention is directed toward a material handling, processing and milling facility which utilizes ball milling as a means for material grinding, mixing or mechanical alloying of materials. The system includes an automatic ball charging, agitating and indexing assembly, constructed and arranged to deagglomerate and directly distribute a plurality of grinding balls to the facility. Additional components of the system include an open raceway, in mechanical engagement with the automatic ball charging, agitating and indexing assembly, a bucket elevator for receiving the grinding balls from the open raceway and elevating them to a gravity fed transport system, at least one transporting device for receiving the grinding balls from the bucket elevator; and a ball mill for receiving the grinding balls from the at least one transporting device.
    • 本发明涉及一种材料处理,加工和研磨设备,其利用球磨作为材料的研磨,混合或机械合金化的手段。 该系统包括自动球装料,搅拌和分度组件,其构造和布置成将多个研磨球解聚并直接分配到设施中。 系统的附加部件包括与自动球装料,搅拌和分度组件机械接合的开放式滚道,用于从打开的滚道接收研磨球并将其提升到重力输送系统的斗式提升机,至少一个输送 用于从斗式提升机接收研磨球的装置; 以及用于从所述至少一个输送装置接收研磨球的球磨机。
    • 4. 发明授权
    • Arrangement for registering the instant grinding charge volume of a
grinding drum
    • 用于记录研磨滚筒的即时研磨装料量的装置
    • US5360174A
    • 1994-11-01
    • US983563
    • 1993-04-07
    • Sture Persson
    • Sture Persson
    • B02C17/00B02C17/18B02C17/20B02C19/11B02C25/00B02C17/16G01D3/00
    • B02C17/205B02C17/1805
    • An arrangement for recording the instant volume of grinding charge in the mill drum of a rotary drum mill of the kind provided with an internal lifting device. In order to enable the volume of grinding charge to be used in a better way as a parameter for controlling mill operation, the lifting device is resilient and is provided with a load detecting device which, during each drum revolution, detects when the lifting device comes into engagement with, and is in engagement with the grinding charge present in the drum and leaves, or is caused to leave, engagement with the grinding charge. The arrangement also includes a tension sensing device which registers the tension on the load detector, this tension being contingent on the load to which the lifting device is subjected by the grinding charge.
    • PCT No.PCT / SE92 / 00439 Sec。 371日期:1993年4月7日 102(e)日期1993年4月7日PCT提交1992年6月16日PCT公布。 出版物WO93 / 00996 日期1993年1月21日。一种用于记录具有内部提升装置的旋转鼓式研磨机的研磨鼓的立磨量的装置。 为了能够以更好的方式使磨削量的量作为用于控制轧机操作的参数,提升装置是弹性的并且设置有负载检测装置,其在每个转鼓旋转期间检测何时提升装置到来 与滚筒和叶片中存在的研磨装料接合并与其接合,或者与研磨装料接合。 该装置还包括张力检测装置,其将张力记录在负载检测器上,该张力取决于提升装置受到研磨装料所承受的载荷。
    • 8. 发明申请
    • PHOSPHOR INK COMPOSITION
    • 磷酸盐成分
    • US20120286208A1
    • 2012-11-15
    • US13561104
    • 2012-07-30
    • Dennis MCKEANPan Man WONGWenbo MA
    • Dennis MCKEANPan Man WONGWenbo MA
    • C09K11/80B02C23/18C09D11/10B82Y30/00
    • C09K11/7774B02C17/205C09D11/00C09D11/101C09K11/7734H01L51/50
    • The present invention provides phosphor inks configured to achieve high efficiency in converting LED light from one wavelength to another. The phosphor ink composition for deposition on an LED device comprises a phosphor component having nano-phosphor particles on the order of 100 to 1000 nanometers, and a curable resin component. In particular, the nano-phosphor particles are uniformly dispersed throughout the ink composition. The nano-phosphor particles may be formed by a size reduction process carried out on larger phosphor particles on the order of 1 to 50 micrometers. Preferably, the size reduction process is based on solvent wet milling. Methods for preparing the phosphor inks based on forming the nano-phosphor particles from larger particles by solvent wet milling are also provided.
    • 本发明提供了构造成在将LED光从一个波长转换成另一个波长时实现高效率的荧光体墨。 用于在LED器件上沉积的荧光体油墨组合物包括具有约1000-1000纳米的纳米磷光体颗粒的荧光体组分和可固化树脂组分。 特别地,纳米磷光体颗粒均匀地分散在整个油墨组合物中。 纳米荧光体颗粒可以通过在1至50微米量级的较大荧光体颗粒上进行的尺寸减小方法形成。 优选地,尺寸减小过程基于溶剂湿磨。 还提供了通过溶剂湿磨从大颗粒形成纳米磷光体颗粒来制备荧光体油墨的方法。
    • 9. 发明授权
    • Apparatus for feeding grinding balls
    • 砂磨机设备
    • US5224659A
    • 1993-07-06
    • US839637
    • 1992-02-21
    • Thomas L. Gabardi
    • Thomas L. Gabardi
    • B02C17/20
    • B02C17/205
    • Apparatus for feeding balls to a grinding mill. The apparatus includes a downwardly inclined chute (12) adapted to receive balls from a bin or hopper, the chute for delivering the balls to the grinding mill and means (20) for sequentially feeding the balls, one-at-a-time, to the grinding mill. The feeding means includes a first actuator (22) and a second actuator (26). Each of the actuators preferably includes an extension arm (24 and 28 respectively) mounted for rotation along the longitudinal axis of the chute. The first actuator is for restraining balls from traveling down the chute and works in conjunction with the second actuator for isolating the lowermost ball in the chute to be fed next to the grinding mill. The second actuator is for releasing the isolated ball. The feeding means may include a computer controller (90) for operating each of the actuators at a predetermined time interval corresponding to the ball attrition rate of the grinding mill. A magnetic sensor (84) may be positioned inside the chute downstream from the actuators for sensing passage of the isolated ball through the chute for providing feedback to the controller.
    • 用于将球送入研磨机的装置。 该装置包括适于从料斗或料斗接收球的向下倾斜的斜槽(12),用于将球输送到研磨机的滑槽和用于将滚珠顺次地一次一个地送入到 研磨机。 进给装置包括第一致动器(22)和第二致动器(26)。 每个致动器优选地包括安装成沿着滑槽的纵向轴线旋转的延伸臂(24和28)。 第一致动器用于限制球沿着滑槽行进,并与第二致动器一起工作,用于隔离在铣床旁边供给的斜槽中的最下面的球。 第二个执行器用于释放孤立的球。 进给装置可以包括计算机控制器(90),用于以对应于研磨机的球磨损速率的预定时间间隔操作每个致动器。 磁传感器(84)可以位于致动器下游的滑槽内部,用于感测隔离球通过滑槽的通道,以向控制器提供反馈。