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    • 83. 发明申请
    • METHOD AND APPARATUS FOR SEPARATING AND RECYCLING WASTE ASPHALT CONCRETE OF CONSTRUCTION WASTE ARTICLES
    • 用于分离和回收废弃物废物的废弃物混合物的方法和装置
    • WO2005068080A1
    • 2005-07-28
    • PCT/KR2004/000058
    • 2004-01-15
    • SAMHEUNG ENVIRONMENT CO., LTD.LEE, Ho-GeunPARK, Chan-Jin
    • LEE, Ho-GeunPARK, Chan-Jin
    • B02C23/08
    • C04B18/20B03B9/065C04B18/16Y02W30/521Y02W30/58Y02W30/95Y02W30/96
    • Disclosed herein is a method and apparatus for separating and recycling waste asphalt concrete from construction waste, in which only waste asphalt concrete is separated from construction waste including various types of waste such as waste concrete, soil and sand, etc., upon disposal of the construction waste, and then recycled as useful material. The separation method of the current invention, including feeding collected construction waste, crushing the construction waste and removing a metal material, transferring and sorting, washing and removing floating materials, and re-circulating to improve the shape of particles, includes a first step of sorting the construction waste after having undergone washing to remove impurities according to a particle size using a sorting screen; a second step of guiding the construction waste having a predetermined particle size into a reversed funnel-shaped base; a third step of distributing the construction waste positioned in the base into a plurality of transfer passages and subsequently transferring the distributed waste; a fourth step of sensing the washed waste asphalt concrete, transferred from the third step, from a short distance depending on a unique color or a chemical reaction thereof to detect only the waste asphalt concrete; a fifth step of selectively opening a plurality of air spray nozzles positioned at an upper portion of the transfer passage to spray air in response to an electrical signal applied as a result of the performance of the fourth step, which are connected to position detection means so that selection among the air spray nozzles and orientation of the air spray nozzles toward the waste asphalt concrete positioned adjacent to a discharge port are controlled; a sixth step of forcibly returning the waste asphalt concrete along with general construction waste to the fourth step; and a seventh step of transferring the discharged waste asphalt concrete to a storage location. In addition, specific treatment means at each step is provided.
    • 本发明公开了一种从施工废弃物中分离回收废沥青混凝土的方法和装置,其中只有废沥青混凝土与建筑废物分离,包括废弃混凝土,土壤和沙等各种类型的废弃物, 建筑废料,再循环再用作有用的材料。 本发明的分离方法包括:收集建筑垃圾,破碎施工废弃物和去除金属材料,转移和分选,洗涤和除去浮动材料,并重新循环以改善颗粒的形状,包括第一步骤 在经过洗涤之后对施工废料进行分选以使用分选筛根据粒度除去杂质; 将具有预定粒度的建筑垃圾引导到反向的漏斗形基座中的第二步骤; 将位于基座中的建筑废料分配到多个输送通道中并随后转移分散废物的第三步骤; 第四步,根据独特的颜色或化学反应,从短距离传感第三步骤的废沥青混凝土,仅检测废沥青混凝土; 选择性地打开位于传送通道的上部的多个空气喷嘴的第五步骤,以响应由于执行第四步的结果施加的电信号而喷射空气,这些连接到位置检测装置 空气喷嘴之间的选择和空气喷嘴朝向与排放口相邻的废沥青混凝土的方位的控制; 将废沥青混凝土与一般建筑垃圾一起强制退回第四步; 以及将排出的废沥青混凝土输送到储存位置的第七步骤。 此外,提供每个步骤的具体处理手段。
    • 84. 发明申请
    • CONCRETE PUMP BIN
    • 混凝土泵
    • WO2004026710A1
    • 2004-04-01
    • PCT/AU2002/001301
    • 2002-09-23
    • AMADIO, Richard
    • AMADIO, Richard
    • B65D1/34
    • B03B9/063Y02W30/58
    • A concrete pump bin according to the present invention comprises an inner bin (1), and an outer bin (2). The inner bin (1) has a base (7) and outwardly sloping sides (3), which in this example is at 30°;, but could be of any suitable angle. The outer bin (2) has side walls (4) and a base (5), with triangular bracing members (6), welded between the side walls (4) and the base (5). At least one drainage point (8) is located in the side walls (4). The waste in the concrete pump hopper is dumped into the inner bin (1) and the washing and excess liquid drains into the outer bin (2). The drainage point has a removable cap (9) or opening valve, to allow the liquid in the outer bin (2) to be retained therein or to be drained into a suitable container. The concrete can be allowed to set in the inner bin (1) separated from the wash liquid.
    • 根据本发明的混凝土泵仓包括内箱(1)和外箱(2)。 内部仓(1)具有基部(7)和向外倾斜的侧面(3),在该示例中为30°,但可以具有任何合适的角度。 外箱(2)具有焊接在侧壁(4)和底座(5)之间的侧壁(4)和具有三角形支撑构件(6)的底座(5)。 至少一个排水点(8)位于侧壁(4)中。 混凝土泵料斗中的废物倾倒到内部仓(1)中,洗涤和多余的液体排入外箱(2)。 排水点具有可移除的盖(9)或打开阀,以允许外箱(2)中的液体保持在其中或排放到合适的容器中。 可以将混凝土放置在与洗涤液分离的内箱(1)中。
    • 86. 发明申请
    • A METHOD OF TREATING UNSET SURPLUS CONCRETE
    • 一种处理非固体混凝土的方法
    • WO2003078068A1
    • 2003-09-25
    • PCT/IE2002/000022
    • 2002-02-21
    • SWAINSTOWN STONE COMPANY LIMITEDMCKEOWN, Dermot, EugeneCURRAN, Martin, Joseph
    • MCKEOWN, Dermot, EugeneCURRAN, Martin, Joseph
    • B03B9/06
    • B03B9/063C04B18/16Y02W30/58Y02W30/95C04B20/02
    • Wet unset concrete is delivered to a concrete mixer drum and water is sprayed onto the concrete as is necessary. Then, the concrete is delivered into a scrubber drum (6) which is rotated and as it rotates, the concrete is mixed, agitated and washed by means of internal paddle blades. The concrete is then gradually delivered to a cylindrical rotary screen (8). As the wet concrete is delivered into the rotary screen (8), a spray bar delivers water to further wash the aggregate and to deliver the sand, fines, cement and most of the water into an outlet hopper (12). The washed aggregate is delivered onto a conveyor (13) and then to storage hoppers (14). The aggregate can be further screened, separated and sized. An outlet hopper associated with the rotary screen (8) delivers a slurry which is then further screened by a flat bed screen (9) such that the sand is delivered to the conveyor (13) and a slurry now of fines, cement and water is delivered to a settling tank assembly (20). Relatively clean water is then removed for recycling.
    • 将湿的未混凝土输送到混凝土搅拌器桶中,并根据需要将水喷洒到混凝土上。 然后,将混凝土输送到洗涤器鼓(6)中,该洗涤器鼓(6)旋转并随着其旋转,混凝土被搅拌并通过内部桨叶进行冲洗。 然后将混凝土逐渐输送到圆柱形旋转筛(8)。 当湿混凝土被输送到旋转筛网(8)中时,喷洒杆输送水以进一步清洗骨料并将砂,细粉,水泥和大部分水输送到出口料斗(12)中。 将洗涤的骨料输送到输送机(13)上,然后送至储存料斗(14)。 聚合物可以进一步筛选,分离和大小。 与旋转筛(8)相关联的出料斗输送浆料,然后由平底筛(9)进一步筛分,使得砂被输送到输送机(13),现在的细粒,水泥和水的浆料是 输送到沉淀池组件(20)。 然后取出相对清洁的水循环再造。
    • 87. 发明申请
    • PORTABLE SORTING SYSTEM AND METHOD FOR RECYCLABLE MATERIAL
    • 可回收材料的便携式分拣系统和方法
    • WO2003076085A1
    • 2003-09-18
    • PCT/US2003/002248
    • 2003-01-27
    • HUSKEY, Michael, L.
    • HUSKEY, Michael, L.
    • B07B9/00
    • B07B13/00B03B9/061B03B9/065B07B1/005B07B9/00Y02W30/523Y02W30/528Y02W30/58Y10S209/93Y10S209/931
    • A system and method for sorting recyclable materials is portable, modular, and easy to install and/or remove. Generally, a variety of sorting equipment is placed upon a portable platform (12) that may be loaded or unloaded from a roll-off truck (14). When at the desired location, the portable platform (12) may be removed and the sorting equipment set up for use. The sorting equipment may include an infeed conveyor (22), a sorting conveyor, and a variety of automatic sorting equipment such as an aluminum blower (36), a magnet separator, and an eddy-current separator (38). The platform (12) may be simply placed on the floor or ground at the desired location or it may be elevated by a plurality of supports.
    • 用于分类可回收材料的系统和方法是便携式,模块化的并且易于安装和/或移除。 通常,各种分拣设备被放置在便携式平台(12)上,该便携式平台可以从滚降卡车(14)装载或卸载。 当在期望的位置时,便携式平台(12)可以被移除,分拣设备设置成使用。 分选设备可以包括进料输送机(22),分选输送机,以及诸如铝鼓风机(36),磁体分离器和涡流分离器(38)的各种自动分选设备。 平台(12)可以简单地放置在理想​​位置的地板或地面上,或者可以由多个支撑件升高。
    • 88. 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。
    • 89. 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。