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    • 1. 发明授权
    • Powered conveyor system
    • 动力输送机系统
    • US06286654B1
    • 2001-09-11
    • US09322433
    • 1999-05-28
    • Theodore S. GorniakJohn H. Zelina, Jr.
    • Theodore S. GorniakJohn H. Zelina, Jr.
    • B65G3700
    • B65G1/0414B65G1/0485B65G1/065B65G43/08B65G47/261
    • A conveyor system has a load support structure which enables loads to be moved along the conveyor. The load support structure has an input position at which loads can be placed into the conveyor system, an unload position at which loads can be removed from the conveyor system and a load storage area located between the input position and the unload position. The conveyor system also includes a plurality of sensors including an input sensor which senses when a load is at the input position, an unload sensor which senses when a load is at the unload position, and a filled sensor which determines when a pre-selected portion of the load structure has been filled with loads. A propulsion system moves loads along the load support structure. One such propulsion system includes a tram which reciprocates along the load support system. A control system responds to the sensors to cause the propulsion system to move one or more loads to the unload position whenever the unload position is empty. It also causes the propulsion system to move a load from the input position to the storage area when the unload position is full, until such time as the filled sensor determines the pre-selected portion of the conveyor support structure has been filled.
    • 输送机系统具有负载支撑结构,其能够使负载沿输送机移动。 负载支撑结构具有输入位置,在该输入位置,负载可以被放置到输送系统中,卸载位置可以从输送机系统卸载负载,以及位于输入位置和卸载位置之间的负载存储区域。 输送系统还包括多个传感器,其包括感测负载何时位于输入位置的输入传感器,检测负载何时处于卸载位置的卸载传感器,以及确定何时预选部分 的负载结构已经充满了负载。 推进系统沿负载支撑结构移动载荷。 一个这样的推进系统包括沿着负载支撑系统往复运动的电车。 控制系统响应于传感器,以便在卸载位置为空时,推进系统将一个或多个负载移动到卸载位置。 当卸载位置满时,推进系统将负载从输入位置移动到存储区域,直到填充的传感器确定输送机支撑结构的预选部分已经被填满为止。
    • 2. 发明授权
    • Push back storage rack system
    • 推回存储机架系统
    • US06851562B2
    • 2005-02-08
    • US09971752
    • 2001-10-04
    • Theodore S. GorniakJohn B. PellegrinoJames A. Courtwright
    • Theodore S. GorniakJohn B. PellegrinoJames A. Courtwright
    • B65G1/02B65G1/08A47F5/00
    • B65G1/026
    • A push back storage rack system for storing multiple loads in a single inclined cart lane. Each lane contains at least two wheeled carts, each cart being capable of receiving and storing multiple pallet loads. The carts are vertically spaced so that they can freely slide underneath each other when unloaded. Beginning with the first or lowest level cart in the system, each successively higher cart is also wider and longer than the cart immediately beneath it. The carts are positioned on at least one but potentially two pairs of rectangular tracks or tubes, each tube being capable of supporting two or four individual carts, depending on how the carts are constructed and installed on the tubes. The tubes are mounted on an incline away from a loading end of each lane so that when loads are placed on or are removed from a lane, the carts are biased toward the loading end of the lane by the force of gravity. Each tube has a single, planar upper support surface which has inside and outside edges. The wheels of each cart ride only on either the inside or outside edges of the tubes on which they are mounted, allowing more than one vertically spaced cart to occupy the same tube.
    • 用于在单个倾斜车道中存储多个负载的推回式存储架系统。 每个车道包含至少两个轮式推车,每个车厢能够接收和存储多个托盘负载。 这些推车是垂直间隔开的,使得它们在卸载时可以在彼此的下方自由滑动。 从系统中的第一级或最低级别的推车开始,每个连续更高的推车也比其下方的推车更宽和更长。 推车位于至少一个但可能两对矩形轨道或管上,每个管能够支撑两个或四个单独的推车,这取决于推车​​如何构造和安装在管上。 这些管子安装在远离每个通道的加载端的倾斜处,使得当负载被放置在车道上或者从车道上移除时,车辆通过重力被偏压到车道的装载端。 每个管具有单个的平坦的上支撑表面,其具有内侧和外侧边缘。 每个车的车轮仅在其上安装的管的内侧或外侧的边缘上,允许多于一个的垂直间隔的推车占据相同的管。
    • 3. 发明授权
    • Bolted axle wheel assembly
    • 螺栓轴轮组件
    • US06702350B1
    • 2004-03-09
    • US10065116
    • 2002-09-18
    • Theodore S. Gorniak
    • Theodore S. Gorniak
    • B60B3700
    • F16C13/006
    • A wheel and axle assembly for a material handling cart has a wheel with a bearing and an axle that extends through the bearing. The axle has a bolt cavity with female cavity threads and an inside tapered portion. A bolt having male bolt threads and an outside tapered portion engages the female cavity threads. The head of the bolt has a head diameter that is greater than the inside diameter of the bearing and therefore locks the bolt in position. When the outside tapered portion of the bolt contacts the inside tapered portion of the bolt cavity, the head of the bolt locks the bearing against a shoulder of the axle. To prevent the bolt from loosening its engagement with the bolt cavity, a locking material is added to the male threads of the bolt.
    • 用于材料搬运车的轮轴组件具有带轴承的车轮和延伸穿过轴承的车轴。 该轴具有一个具有阴腔螺纹和内部锥形部分的螺栓腔。 具有外螺纹螺栓和外锥形部分的螺栓接合阴腔螺纹。 螺栓的头部的头部直径大于轴承的内径,因此将螺栓锁定就位。 当螺栓的外部锥形部分接触螺栓腔的内部锥形部分时,螺栓的头部将轴承锁定在轴的肩部上。 为了防止螺栓松动其与螺栓腔的接合,将锁定材料添加到螺栓的阳螺纹中。
    • 4. 发明授权
    • Adjustable shelf hanging clip
    • 可调搁架挂夹
    • US06293507B1
    • 2001-09-25
    • US09415634
    • 1999-10-12
    • Theodore S. Gorniak
    • Theodore S. Gorniak
    • A47G2902
    • A47B57/404
    • An adjustable, shelf hanging clip for hanging shelves on storage racks is constructed from at least two rectangular sections of material joined at an angle which can be about 90°. At least one of these rectangular sections has a pair of hook-shaped support and latching tabs extending from its exterior surface, with the ends of the tabs extending toward one another. The hook shaped tabs are adapted to be received into a pair of adjacent, vertically spaced holes in the columns of the storage racks. The hook of the upper tab fits over the bottom of the upper hole so that the top inside surface of the hook is the bearing surface and the outside surface of the lower tab is the bearing surface on the bottom of the lower hole. The other rectangular section of the clip has a notch at each of its ends. The bottom surface of each notch is a separate, preselected longitudinal distance from the inside bearing surface of the nearest tab. Thus, the clip can be turned around and installed in the same vertically spaced holes on storage rack columns to adjust the height of the storage rack. The clip can have additional adjustment heights by fabricating an additional pair of similarly arranged hook tabs on each of one or more additional rectangular sections of the clip and cutting notches in the ends of adjacent rectangular sections which are additional, different longitudinal distances from the inside bearing surfaces of these tabs.
    • 一个可调节的货架悬挂夹子,用于在货架上悬吊货架,由至少两个以约90°的角度连接的矩形材料构成。 这些矩形部分中的至少一个具有从其外表面延伸的一对钩形支撑件和闩锁片,其中突片的端部朝向彼此延伸。 钩形突片适于被容纳在存储架的列中的一对相邻的垂直间隔开的孔中。 上突片的钩子装配在上孔的底部,使得钩的顶部内表面是支承表面,下突出部的外表面是下孔底部的支承表面。 夹子的另一个矩形部分在其每个端部具有凹口。 每个凹口的底表面是距离最近的凸片的内侧支承表面的单独的,预选的纵向距离。 因此,夹子可以转动并安装在存放架柱上的相同的垂直间隔开的孔中,以调节存储架的高度。 通过在夹子的一个或多个另外的矩形部分中的每一个上制造另外一对类似布置的钩形突片,在相邻的矩形部分的端部中切割切口,该夹子可以具有额外的调整高度,这是与内侧轴承 这些标签的表面。
    • 5. 发明授权
    • Powered conveyor system
    • US06502686B2
    • 2003-01-07
    • US09810362
    • 2001-07-23
    • Theodore S. GorniakJohn H. Zelina, Jr.
    • Theodore S. GorniakJohn H. Zelina, Jr.
    • B65G3700
    • B65G1/0414B65G1/0485B65G1/065B65G43/08B65G47/261
    • A conveyor system has a load support structure which enables loads to be moved along the conveyor. The load support structure has an input position at which loads can be placed into the conveyor system, an unload position at which loads can be removed from the conveyor system and a load storage area located between the input position and the unload position. The conveyor system also includes a plurality of sensors including an input sensor which senses when a load is at the input position, an unload sensor which senses when a load is at the unload position, and a filled sensor which determines when a pre-selected portion of the load structure has been filled with loads. A propulsion system moves loads along the load support structure. One such propulsion system includes a tram which reciprocates along the load support system. A control system responds to the sensors to cause the propulsion system to move one or more loads to the unload position whenever the unload position is empty. It also causes the propulsion system to move a load from the input position to the storage area when the unload position is full, until such time as the filled sensor determines the pre-selected portion of the conveyor support structure has been filled.