Not applicable.
Not applicable.
The present invention is related generally to hopper cars and in particular to a hopper car gate having multiple openings.
Hopper cars are commonly used to transport bulk materials. Hopper cars include one or more hoppers which hold bulk materials or other cargo for shipment. Each hopper has a discharge opening at its bottom in order to discharge the cargo upon arrival at its intended destination. A gate is joined to each opening to control the discharge of cargo from the hopper. Typically, the gate will have a frame defining an opening and a door moveable between a closed position which blocks the opening and an open position which allows cargo to exit through the opening. An opening mechanism allows a user to move the door between its closed and open positions.
The hopper openings must be spaced a distance sufficient to prevent interference between adjacent hopper gate doors when they are in their open position. Between adjacent hopper openings there are sloped hopper surfaces to facilitate discharge of the cargo within the hoppers. The area beneath the sloped surfaces is wasted space. Reducing the spacing between adjacent hopper openings reduces the wasted space beneath the sloped hopper surfaces, thus increasing the hopper car's carrying capacity. The length or width of hopper cars cannot be increased to increase carrying capacity because there are maximum exterior dimensions to which hopper cars must conform. For example, the Association of American Railroads (AAR) establishes maximum clearance dimensions for all railcars including hopper cars. It is important to maximize a hopper car's carrying capacity while ensuring the car has dimensions within the specified maximum clearance dimensions.
A hopper car gate with a frame having at least first and second openings and a solid section positioned between the first and second openings, an operating mechanism coupled to the frame, and a door supported by the frame. The door has at least first and second solid sections with an opening positioned between the first and second solid sections. The door is movable by the operating mechanism between a closed position, in which the first and second solid sections of the door block the first and second openings in the frame, respectively, and an open position, in which the opening in the door is aligned with at least one of the first and second openings in the frame and the solid section of the frame is aligned with at least one of the first and second solid sections of the door.
Preferably, the operating mechanism includes a shaft coupled to the frame and a gear mounted to the shaft. The gear preferably engages a gear rack on the door. The door preferably includes a central portion, a first side portion coupled to and extending outward from a first side of the central portion, and a second side portion coupled to and extending outward from a second side of the central portion. Preferably, each of the first and second side portions is continuous and solid.
Because the hopper car gate has a frame with multiple, spaced apart openings, the door only needs to move a relatively short distance from its closed position to its open position, in which cargo may discharge through each opening in the frame. The multiple openings in the frame give the gate a relatively large overall discharge opening size in comparison to the overall size of the frame. Since the door only moves a short distance, it does not extend an appreciable distance outward from the frame when the door is in its open position. This allows two of the gates to be positioned relatively close together without interference between the doors of the gates when the doors are opened. By spacing the gates close together, the overall cargo carrying capacity of the car to which the gates are mounted may be increased due to a reduction in the wasted space underneath the sloped surfaces of adjacent hoppers.
Additional aspects of the invention, together with the advantages and novel features appurtenant thereto, will be set forth in part in the description which follows, and in part will become apparent to those skilled in the art upon examination of the following, or may be learned from the practice of the invention. The objects and advantages of the invention may be realized and attained by means of the instrumentalities and combinations particularly pointed out in the appended claims.
A hopper car gate in accordance with one embodiment of the invention described herein is identified generally in
Referring to
Frame 12 includes first, second, and third bottom openings 56, 58, and 60, respectively. First bottom opening 56 is formed by first end wall 40, first and second side walls 36 and 38, and first dividing wall 44. Second bottom opening 58 is formed by second dividing wall 46, third dividing wall 48, and first and second side walls 36 and 38. Third bottom opening 60 is formed by second end wall 42, first and second side walls 36 and 38, and fourth dividing wall 50. First and second dividing walls 44 and 46 are positioned between first and second bottom openings 56 and 58, and third and fourth dividing walls 48 and 50 are positioned between second and third bottom openings 58 and 60.
Side and end walls 36, 38, 40, and 42 slope downward and inward from top opening 52 to bottom openings 56, 58, and 60 to facilitate discharge of cargo through bottom openings 56, 58, and 60 when door 16 is in the open position shown in
Three door support rails 62, 64, and 66, shown in
The components of frame 12 described above, namely, side rails 18 and 20, vertical sections 22 and 24, cross rails 26, 28, 30, 32, and 34, side walls 36 and 38, end walls 40 and 42, dividing walls 44, 46, 48, and 50, flange 52, and door support rails 62, 64, and 66, are preferably joined by welding. While frame 12 is shown and described herein with three bottom openings 56, 58, and 60, it is within the scope of the invention for frame 12 to have only two bottom openings, in which case third and fourth dividing walls 48 and 50 may be omitted. Further, frame 12 may have more than three bottom openings, in which case frame 12 would have additional sets of dividing walls extending between side walls 36 and 38.
Referring to
A first gear 84 is mounted to shaft 72 adjacent first side rail 18. First gear 84 is positioned beneath first and second dividing walls 44 and 46. As shown in
As shown in
The openings 104 and 106 in door 16 are sized to be approximately the same size as the openings 56, 58, and 60 in frame 12. The lengths L1, L2, and L3 of solid sections 98, 100, and 102, respectively, are sized to be at least slightly greater than the lengths L4, L5, and L6 (see
Door 16 includes first and second gear racks 108 and 110 mounted to the first and second side portions 90 and 92, respectively. First and second gear racks 108 and 110 extend lengthwise on door 16 approximately coterminous with opening 104 and solid section 100. First gear rack 108 engages first gear 84, and second gear rack 110 engages the second gear (not shown) described above. Gear racks 108 and 110 are positioned on an upper side of door 16. It is also within the scope of the invention for gear racks 108 and 110 to be positioned on a bottom side of door 16, in which case shaft 72 and gear 84 would be positioned beneath door 16. Door stops 112 and 114 are mounted on the upper side of door 16 adjacent first end 94.
In operation, the hopper car to which hopper car gate 10 is mounted is loaded with cargo when door 16 is in the closed position shown in
From the foregoing it will be seen that this invention is one well adapted to attain all ends and objectives herein-above set forth, together with the other advantages which are obvious and which are inherent to the invention.
Since many possible embodiments may be made of the invention without departing from the scope thereof, it is to be understood that all matters herein set forth or shown in the accompanying drawings are to be interpreted as illustrative, and not in a limiting sense.
While specific embodiments have been shown and discussed, various modifications may of course be made, and the invention is not limited to the specific forms or arrangement of parts and steps described herein, except insofar as such limitations are included in the following claims. Further, it will be understood that certain features and subcombinations are of utility and may be employed without reference to other features and subcombinations. This is contemplated by and is within the scope of the claims.
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Number | Date | Country | |
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20180194372 A1 | Jul 2018 | US |