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    • 1. 发明申请
    • DENSITY SEPARATION SYSTEM, METHOD, AND APPARATUS FOR CONSTRUCTION DEBRIS
    • 密度分离系统,方法和装置设计
    • WO0044501A9
    • 2002-03-28
    • PCT/US0002571
    • 2000-02-01
    • KRAUSE MFG INCKRAUSE HERBERT K
    • KRAUSE HERBERT K
    • B03B5/28B03B5/42B03B9/06B03B11/00B03B5/52
    • B03B9/065B03B5/28B03B5/42B03B11/00B03B2005/405Y02W30/524Y02W30/58
    • A system for separating construction debris into low density debris (152) and high density debris (112). The construction debris is delivered into a rotating drum (73) having front and rear discharge openings (54 and 52, resp.). The lower portion of the drum is filled with water, and the debris is deposited onto the water, with the low density debris floating at the surface and the high density debris descending to the bottom of the drum. A plurality of high velocity water jets (136, 134) are positioned forwardly of the debris receiving location to create a turbulent high velocity water flow at an upper zone of the water in the drum to move the wood and other low density material toward a rear converging passageway (74) that leads into a rear discharge opening (52). The higher density material is carried by a scroll type conveyor (104) forwardly in the drum to a forward discharge location where rotating paddles lift the high density debris upwardly and hence move it into the front discharge opening (54). Rear and front water separation and discharge sections are provided in the form of a fursto-conical structure having through openings to separate the water from the low density and high density debris.
    • 将建筑碎片分解为低密度碎片(152)和高密度碎片(112)的系统。 施工碎片被输送到具有前排出口(54和52)的旋转滚筒(73)中。 鼓的下部填充有水,并且碎片沉积在水上,低密度碎片漂浮在表面上,高密度碎屑下降到鼓的底部。 多个高速水射流(136,134)位于碎片接收位置的前方,以在滚筒中的水的上部区域处产生湍流的高速水流,以使木材和其它低密度材料向后移动 会聚通道(74),其通向后排出口(52)。 较高密度的材料由涡卷式输送机(104)在滚筒中向前运送到向前排放位置,在该向前排放位置,旋转叶片向上提升高密度碎片,从而将其移动到前排出口(54)中。 后部和前部水分离和排出部分以具有通孔的透明锥形结构的形式提供,以将水与低密度和高密度碎片分离。
    • 2. 发明申请
    • DENSITY SEPARATION SYSTEM, METHOD, AND APPARATUS FOR CONSTRUCTION DEBRIS
    • 密度分离系统,方法和装置设计
    • WO0044501A3
    • 2000-12-21
    • PCT/US0002571
    • 2000-02-01
    • KRAUSE MFG INCKRAUSE HERBERT K
    • KRAUSE HERBERT K
    • B03B5/28B03B5/42B03B9/06B03B11/00
    • B03B9/065B03B5/28B03B5/42B03B11/00B03B2005/405Y02W30/524Y02W30/58
    • A system for separating construction debris into low density debris (152) and high density debris (112). The construction debris is delivered into a rotating drum (73) having front and rear discharge openings (54 and 52, resp.). The lower portion of the drum is filled with water, and the debris is deposited onto the water, with the low density debris floating at the surface and the high density debris descending to the bottom of the drum. A plurality of high velocity water jets (136, 134) are positioned forwardly of the debris receiving location to create a turbulent high velocity water flow at an upper zone of the water in the drum to move the wood and other low density material toward a rear converging passageway (74) that leads into a rear discharge opening (52). The higher density material is carried by a scroll type conveyor (104) forwardly in the drum to a forward discharge location where rotating paddles lift the high density debris upwardly and hence move it into the front discharge opening (54). Rear and front water separation and discharge sections are provided in the form of a fursto-conical structure having through openings to separate the water from the low density and high density debris.
    • 将建筑碎片分解为低密度碎片(152)和高密度碎片(112)的系统。 施工碎片被输送到具有前排出口(54和52)的旋转滚筒(73)中。 鼓的下部填充有水,并且碎片沉积在水上,低密度碎片漂浮在表面上,高密度碎屑下降到鼓的底部。 多个高速水射流(136,134)位于碎片接收位置的前方,以在滚筒中的水的上部区域处产生湍流的高速水流,以使木材和其它低密度材料向后移动 会聚通道(74),其通向后排出口(52)。 较高密度的材料由涡卷式输送机(104)在滚筒中向前运送到向前排放位置,在该向前排放位置,旋转叶片向上提升高密度碎片,从而将其移动到前排出口(54)中。 后部和前部水分离和排出部分以具有通孔的透明锥形结构的形式提供,以将水与低密度和高密度碎片分离。
    • 4. 发明专利
    • ROTATING DRUM LIQUID FLOTATION SEPARATOR WITH AXIALLY OPPOSED COMPONENT EXITS
    • CA2361229C
    • 2008-08-26
    • CA2361229
    • 2000-02-01
    • KRAUSE MFG INC
    • KRAUSE HERBERT K
    • B03B5/52B03B5/28B03B5/42B03B9/06B03B11/00
    • A system for separating construction debris into low density debris and high density debris. The construction debris is delivered into a rotating drum having front and rear discharge openings. The lower portion of the drum is filled with water, and the debris is deposited onto the water, with the low density debris floating at the surface and the high density debris descending to the bottom of the drum. A plurality of high velocity water jets are positioned forwardly of the debris receiving location to create a turbulent high velocity water flow at an upper zone of the water in the drum to move the wood and other low density material toward a rear converging passageway that leads into the rear discharge opening and retains the water level in the drum. The higher density material is carried by a scroll type conveyor forwardly in the drum to a forward discharge location where rotating paddles lift the high density debris upwardly and thence move it into the front discharge opening. Rear and front water separation and discharge sections are provided in the form of a frusto-conical structure having through openings to separate the water from the low density and high density debris.
    • 5. 发明专利
    • WATER SEPARATION SYSTEM, METHOD AND APPARATUS FOR CONSTRUCTION DEBRIS
    • CA2361229A1
    • 2000-08-03
    • CA2361229
    • 2000-02-01
    • KRAUSE MFG INC
    • KRAUSE HERBERT K
    • B03B5/28B03B5/42B03B9/06B03B11/00B03B5/52
    • A system for separating construction debris into low density debris (152) an d high density debris (112). The construction debris is delivered into a rotating drum (73) having front and rear discharge openings (54 and 52, resp.). The lower portion of the drum is filled with water, and the debris i s deposited onto the water, with the low density debris floating at the surfac e and the high density debris descending to the bottom of the drum. A pluralit y of high velocity water jets (136, 134) are positioned forwardly of the debri s receiving location to create a turbulent high velocity water flow at an uppe r zone of the water in the drum to move the wood and other low density materia l toward a rear converging passageway (74) that leads into a rear discharge opening (52). The higher density material is carried by a scroll type convey or (104) forwardly in the drum to a forward discharge location where rotating paddles lift the high density debris upwardly and hence move it into the fro nt discharge opening (54). Rear and front water separation and discharge sectio ns are provided in the form of a fursto-conical structure having through openin gs to separate the water from the low density and high density debris.
    • 6. 发明专利
    • APPARATUS FOR TRANSPORTING CARGO CONTAINING FLUID- LIKE MATERIALS
    • CA1204084A
    • 1986-05-06
    • CA476064
    • 1985-03-08
    • KRAUSE MFG INC
    • KRAUSE HERBERT KGRASHER ROBERT M
    • A01D90/00B60P1/36
    • There is disclosed a mobile cargo container for transporting fluid-like materials such as cannery waste. The cargo container includes a floor conveyor extending rearward of and beyond the container bottom for discharging materials from the container through a rear discharge outlet. A trailer door is connected to the container to pivot between an open position wherein the door is above the discharge outlet, and a closed position wherein the door seals the container in a fluid tight fit. The discharge outlet is defined by side walls of the trailer which are angled downwardly in a rearward direction from the top of the container to a point wherein the side walls project downwardly in a forward direction to meet with a bottom portion of the container. The side edges and bottom of the container door are configured to fit against the container side walls and bottom portion in a sealing fit by compression of an elastomeric gasket therebetween so that the floor conveyor and sprocket assembly are enclosed within the container. The trailer door includes a bottom portion having an interior surface which is pressed against the underside of a member projecting rearwardly from the container floor. The container door, including the door bottom portion, is held against the container side walls and bottom portion by an hydraulically actuated piston/cylinder assembly. Wedges extending rearwardly from the bottom of the container bottom portion are utilized to engage the bottom portion of the container door in a wedge-like fit to improve the sealing between the door bottom portion and the container bottom portion. An hydraulically actuated overcenter mechanism or a manually actuated overcenter mechanism are utilized to help maintain the seal between the container door and the container.