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    • 4. 发明授权
    • Formation of glass flakes
    • 形成玻璃片
    • US08091385B2
    • 2012-01-10
    • US10598398
    • 2004-12-29
    • Charles Watkinson
    • Charles Watkinson
    • C03B37/00
    • C03B37/005C01P2002/02C01P2004/20C09C1/0018C09C2200/102C09C2200/301
    • A method for changing the width of particle thickness size distribution of flakes of material with the flakes being formed by a process that includes the steps of feeding a stream of molten material in a downwards direction into a rotating cup or disc and allowing the material to pass over the edge of the cup or disc in such a manner as to be forced into a gap between a pair of plates surrounding the cup or disc. The movement of material in the process used for forming the flakes is maintained in an angular direction and effected by a flow of air passing through the plates and either side of the material, so as to pull the stream of material in a manner for keeping it flat and, further, to pull the stream of material so that, as solidification of the material is effected, the sheet of material so formed is broken into flakes. The method for adjusting the width of particle thickness size distribution of the flakes of material so formed includes the step of varying the distance between the cup, or the disc, and the entrance to the gap between the plates until the desired particle size distribution is obtained.
    • 一种用于通过包括以下步骤的方法形成薄片的材料薄片的颗粒厚度尺寸分布的宽度的方法,所述方法包括以下步骤:将熔融材料流向下输送到旋转杯或圆盘中并允许材料通过 在杯或盘的边缘上以这样的方式被迫进入围绕杯或盘的一对板之间的间隙中。 在用于形成薄片的方法中的材料的运动保持在角度方向上,并且通过穿过板材和材料的任一侧的空气流进行,以便以保持它的方式拉动材料流 并且进一步拉动材料流,使得当材料的固化被实现时,如此形成的材料片被折成薄片。 用于调节如此形成的材料薄片的颗粒厚度尺寸分布的宽度的方法包括改变杯或盘之间的距离和板之间的间隙的入口的步骤,直到获得所需的粒度分布 。
    • 9. 发明授权
    • Method and apparatus for producing flake particles
    • 用于生产薄片颗粒的方法和装置
    • US4215084A
    • 1980-07-29
    • US902358
    • 1978-05-03
    • Robert E. Maringer
    • Robert E. Maringer
    • B01J2/24B22D11/01B22F9/00B22F9/08B22F9/10C03B19/10C03B37/005B01J2/02B22D23/08
    • B22F9/10B22F9/008B22F9/08C03B19/1015C03B19/109C03B37/005Y10S149/114
    • A method for producing flake particles by projecting a continuing stream of molten material upon the surface of a rotating generally circular, heat extracting drum, having a serrated edge with each serration comprising a radial surface and an angularly disposed connecting surface from the base of one radial surface to the peripheral extremity of the adjacent radial surface; and rotating the heat extracting drum at a speed relative to the size and shape of the serrations and relative to the rate of molten material projection to form a discrete flake particle on each angularly disposed surface; followed by removing each particle from the surface after each particle is at least partially solidified; and cooling the particles in a surrounding atmosphere.An apparatus for producing flake particles comprising means for projecting a stream of molten material upon a rotatable heat extracting drum member having a serrated generally circular peripheral edge, with each serration having a radial surface and an angular surface connecting the base of one radial surface with the peripheral extremity of the next radial surface; and a shaft supporting the heat extracting member for rotation at a controlled speed; with means responsive to the rate of projection of the molten material upon the serrated surface of the heat extracting member to control its speed of rotation relative to the rate of projection of molten material.
    • 一种用于通过将连续的熔融材料流投射到旋转的大致圆形的取热鼓的表面上来制造薄片颗粒的方法,该滚筒具有锯齿状边缘,每个锯齿包括径向表面和从一个径向的基部的角度设置的连接表面 表面到相邻径向表面的外围末端; 并且以相对于锯齿的尺寸和形状相对于熔融材料投影的速率相对于每个角度设置的表面上形成离散薄片颗粒的速度旋转所述提取鼓; 然后在每个颗粒至少部分固化之后从表面除去每个颗粒; 并在周围的气氛中冷却颗粒。 一种用于生产薄片颗粒的装置,包括用于将熔融材料流投影到具有锯齿状的大致圆形周边边缘的可旋转的提取鼓构件上的装置,每个锯齿具有径向表面和将一个径向表面的基部与 下一个径向表面的外围末端; 以及轴,支撑所述散热构件以受控的速度旋转; 具有响应于熔融材料在散热构件的锯齿状表面上的投影速度的装置,以相对于熔融材料的投影速度来控制其转速。