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    • 151. 发明申请
    • COOLER FOR PARTICULATE MATERIAL
    • 颗粒材料冷却器
    • WO9848231A8
    • 1999-10-21
    • PCT/EP9802012
    • 1998-04-07
    • SMIDTH & CO AS F LFONS MOGENS JUHLSCHOMBURG FLEMMING
    • FONS MOGENS JUHLSCHOMBURG FLEMMING
    • F27B7/38C04B7/47F27D15/02F28C3/16F28F27/02
    • F28C3/16F27D15/0213F28F27/02
    • A cooler (1) for cooling particulate material which has been subjected to heat treatment in an industrial kiln (3), such as a rotary kiln for manufacturing cement clinker, which cooler (1) comprises an inlet (4), an outlet (5), end walls (6, 7), side walls (8), a bottom (9) and a ceiling (10), at least one stationary supporting surface (11) for receiving and supporting the material to be cooled, means (11a, 12) for injecting cooling gas into the material, as well as a reciprocating scraper system which comprises a number of rows of scraper elements (14) arranged transversely across the direction of movement of the material, said scraper elements being moved back and forth in the direction of movement of the material for conveying the material forward across the supporting surface (11). The cooler is peculiar in that each row of the transverse scraper elements (14) is firmly fixed to at least one drive plate (16) oriented in the direction of movement of the material, said plate extending at least across the entire length of the supporting surface (11), and being led either through the supporting surface (11) of the cooler, its ceiling (10), one of its side walls (8) and/or at least one of its end walls (6, 7), where the drive plate (16) is connected to a drive arrangement for movement back and forth.
    • 一种冷却器(1),用于冷却已经在工业窑(3)中进行热处理的颗粒材料,例如用于制造水泥熟料的回转窑,该冷却器(1)包括入口(4),出口(5) ),端壁(6,7),侧壁(8),底部(9)和天花板(10),至少一个用于接收和支撑待冷却材料的固定支撑表面(11),装置 ,12),用于将冷却气体注入到所述材料中,以及往复式刮刀系统,其包括横向横跨所述材料运动方向布置的多排刮板元件(14),所述刮刀元件前后移动 用于将材料输送到穿过支撑表面(11)的材料的运动方向。 冷却器是特别的,因为每排横向刮刀元件(14)牢固地固定在至少一个在材料运动方向上定向的驱动板(16)上,所述板至少延伸穿过支撑件的整个长度 表面(11),并且被引导通过冷却器的支撑表面(11),其顶板(10),其侧壁(8)中的一个和/或其端壁(6,7)中的至少一个, 其中驱动板(16)连接到用于前后运动的驱动装置。
    • 152. 发明申请
    • FLUID BED COOLING SYSTEM FOR POLYMER PROCESSING
    • 用于聚合物加工的流体床冷却系统
    • WO1997001592A1
    • 1997-01-16
    • PCT/US1996003328
    • 1996-03-11
    • HOSOKAWA BEPEX CORPORATION
    • HOSOKAWA BEPEX CORPORATIONWALSH, John, J.
    • C08G63/88
    • F28C3/16C08G63/785C08G63/80C08G63/88Y10T117/1024
    • A system for the solid phase polymerization of polymers wherein cold amorphous polymer is introduced to a crystallizer (12) and heated to crystallize the polymer, the crystallized polymer is discharged to a reactor to achieve polymerization of the polymer, and the hot polymer product of the reactor is discharged to a fluid bed (12) cooler for cooling of the polymerized product. The fluid bed (12) cooler includes an inlet for the hot polymer and an inlet for the cooling gas, and the cooled polymer and the heated gas are discharged from the cooler (34) after contact of the gas with the polymer. The cooler includes a bed portion through which the polymer moves while in contact with the cooling gas, and an upper chamber which collects the heated gas. The temperature of the polymer gradually decreases from the location of the inlet (52) for the polymer to the location of the discharge for the polymer, and the gas in the upper chamber is hotter in the area of the upper chamber adjacent the inlet (52) for the hot polymer than in the area of the upper chamber adjacent the discharge location of the cooled polymer. At least two outlets (3 and 15) are defined by the upper chamber and a weir baffle is used to separate an upper chamber zone containing the hotter gas from the balance of the upper chamber. Hotter gas (20 and 22) is then discharged to the reactor (32) through an outlet communicating with the upper chamber zone containing the hotter gas.
    • 一种用于聚合物固相聚合的体系,其中将冷无定形聚合物引入结晶器(12)并加热使聚合物结晶,将结晶的聚合物排出到反应器中,以实现聚合物的热聚合产物 反应器被排放到用于冷却聚合产物的冷却器的流化床(12)中。 流化床(12)冷却器包括用于热聚合物的入口和用于冷却气体的入口,并且冷却的聚合物和加热的气体在气体与聚合物接触之后从冷却器(34)排出。 冷却器包括床部分,聚合物在与冷却气体接触的同时移动,并且收集加热气体的上部室。 聚合物的温度从用于聚合物的入口(52)的位置到聚合物的排出位置逐渐减小,并且上部室中的气体在邻近入口(52)的上部室中较热 )比在与被冷却的聚合物的排放位置相邻的上室的区域中。 至少两个出口(3和15)由上部腔室限定,堰挡板用于将包含较热气体的上部腔室与上部腔室的平衡分开。 然后,较热的气体(20和22)通过与含有较热气体的上部室区连通的出口排放到反应器(32)中。
    • 153. 发明申请
    • METHOD AND COOLER FOR COOLING PARTICULATE MATERIAL
    • 用于冷却颗粒材料的方法和冷却器
    • WO1994015161A1
    • 1994-07-07
    • PCT/EP1993003444
    • 1993-12-07
    • F.L. SMIDTH & CO. A/SENKEGAARD, Torben
    • F.L. SMIDTH & CO. A/S
    • F28C03/16
    • F27D15/022F27B2009/2484F27D15/0206F27D15/0213F27D15/0266F27D2003/0081F28C3/16
    • A cooler (1) for cooling particulate material from a kiln, wherein the material upon entry into the cooler (1) is distributed to a material bed on a stationary supporting surface (11) in the form of a tray, while cooling gas, such as atmospheric air, is blown up through the material bed from injectors in the tray in a uniform and evenly distributed manner. The material is conveyed forward across the supporting surface (1) and through the cooler (1) by means of a separate mechanical conveying device (17). It is thus possible to split the three functions of such a cooler, viz. to support the material, to distribute the cooling gas across the supporting surface and to convey the material forward across the supporting surface, into functions which are independent of one another, so that each function can be optimized.
    • 一种用于从窑炉中冷却颗粒材料的冷却器(1),其中进入所述冷却器(1)的所述材料被分配到托盘形式的固定支撑表面(11)上的材料床,同时冷却气体 作为大气,以均匀且均匀分布的方式从托盘中的注射器通过材料床吹起。 材料通过独立的机械输送装置(17)通过支撑表面(1)向前输送并通过冷却器(1)输送。 因此,可以分离这样的冷却器的三个功能,即 为了支撑材料,将冷却气体分布在支撑表面上并将材料向前穿过支撑表面输送到彼此独立的功能,使得每个功能可以被优化。
    • 157. 发明公开
    • Apparatus for and method of temperature treatment of a product
    • Vorrichtung und Verfahren zur Temperaturbehandlung eines Produkts
    • EP2946676A1
    • 2015-11-25
    • EP14169409.1
    • 2014-05-22
    • John Bean Technologies AB
    • Ohlsson, Håkan
    • A23L3/36A23L3/50F26B3/08F25D13/06F28C3/16
    • A23L3/50A23L3/361F25D13/067F25D2317/063F26B3/08F26B3/084F26B21/004F28C3/16
    • The invention relates to an apparatus (1) and a method for temperature treatment of products (8) in a fluidised bed (B) of products (8) transported along a product path (P). The apparatus (1) is provided with two, along the product path (P) successively arranged, zones (Z1, Z2) with a common gas temperature treatment arrangement (10) being common to both zones (Z1, Z2). At least one of the zones (Z1) is provided with a gas flow bypass arrangement (40) adapted to allow a fraction (F3; F4) of the gas to bypass the common gas temperature treatment arrangement (10) and to rejoin with gas (F5) that has been circulated through the common gas temperature treatment arrangement (10) before the gas is circulated through said bed (B) of products (8) in said gas flow bypass arrangement (40) provided zone (Z1), such that the temperature of gas may be controlled to be different in the different zones (Z1, Z2) associated with the common gas temperature treatment arrangement (10).
    • 本发明涉及一种用于在沿着产品路径(P)运输的产品(8)的流化床(B)中的产品(8)的温度处理的装置(1)和方法。 设备(1)沿着连续布置的产品路径(P)设有两个具有两个区域(Z1,Z2)共同的公共气体温度处理装置(10)的区域(Z1,Z2)。 至少一个区域(Z1)设置有气体旁通装置(40),其适于允许气体的一部分(F3; F4)绕过普通气体温度处理装置(10)并与气体重新结合 F5),在气体通过所述气体流动旁路装置(40)设置区域(Z1)中的产品(8)的床(B)循环之前已经循环通过普通气体温度处理装置(10),使得 可以在与普通气体温度处理装置(10)相关联的不同区域(Z1,Z2)中控制气体的温度不同。
    • 159. 发明公开
    • SEAL STRUCTURE FOR COOLER DEVICE AND COOLER DEVICE PROVIDED THEREWITH
    • DICHTUNGSSTRUKTURFÜREINEKÜHLERVORRICHTUNGUNDKÜHLERVORRICHTUNGDAMIT
    • EP2799406A1
    • 2014-11-05
    • EP12862220.6
    • 2012-12-26
    • Kawasaki Jukogyo Kabushiki Kaisha
    • BANDO, HiroshiICHITANI, NoboruHAYASHI, IsaoKIYOSHIMA, KoujiARIMA, Nanako
    • C04B7/47F16J15/06F27D15/02F28D13/00
    • F27D15/0213C04B7/47F27B7/383F27D3/123F27D9/00F27D15/0206F27D15/022F27D99/0073F28C3/16F28F2230/00
    • A seal structure (1) is a seal structure of a cooler apparatus (2) configured to: cause cooling unit trains (13) to move to convey cement clinkers placed on the cooling unit trains (13), the cooling unit trains (13) being arranged in an orthogonal direction such that side walls (21a and 21b) of the adjacent cooling unit trains are opposed to each other; and supply a cooling fluid to the cement clinkers from under the cooling unit trains (13). The seal structure (1) includes a cover body (31) and a sealing member (32). The cover body (31) is attached to a left side wall (21a) of one of the adjacent cooling unit trains and surrounds an upper surface and both side surfaces of a right side wall (21b) of the other cooling unit train (13), opposed to the left side wall (21a), to cover a gap (29) between the two side walls (21a and 21b). A labyrinth (36) communicating with the gap (29) and a dead layer (40) side is formed between the cover body (31) and the right side wall (21b). The sealing member (32) is provided at the labyrinth (36) so as to seal a gap between the cover body (31) and the right side wall (21 b).
    • 密封结构(1)是冷却器装置(2)的密封结构,其构造成:使冷却单元列(13)移动以输送放置在冷却单元列(13)上的水泥熟料,冷却单元列(13) 沿正交方向布置,使得相邻冷却单元列的侧壁(21a和21b)彼此相对; 并从所述冷却单元列(13)下方向所述水泥熟料供应冷却流体。 密封结构(1)包括盖体(31)和密封构件(32)。 盖体31安装在相邻的冷却单元列之一的左侧壁21a上,并且包围另一冷却单元列13的右侧壁21b的上表面和两侧面, 与所述左侧壁(21a)相对,以覆盖所述两个侧壁(21a和21b)之间的间隙(29)。 在盖体(31)和右侧壁(21b)之间形成有与间隙(29)连通的迷宫(36)和死层(40)侧。 密封构件(32)设置在迷宫(36)处,以密封盖主体(31)和右侧壁(21b)之间的间隙。