CN217749322U - High-strength and high-stability aluminum water ladle transfer track - Google Patents

High-strength and high-stability aluminum water ladle transfer track Download PDF

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Publication number
CN217749322U
CN217749322U CN202221872828.2U CN202221872828U CN217749322U CN 217749322 U CN217749322 U CN 217749322U CN 202221872828 U CN202221872828 U CN 202221872828U CN 217749322 U CN217749322 U CN 217749322U
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Prior art keywords
track
wall post
support column
wall
hole
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CN202221872828.2U
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梁业诗
黄明福
杨景州
谢志强
梁清梅
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Guangxi Huamei Aluminum Co ltd
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Guangxi Huamei Aluminum Co ltd
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Abstract

The utility model discloses a track is transported to aluminium water drum of high strength high stability, including wall post and track, be equipped with convex bearing block on the preceding terminal surface of wall post, be equipped with the track on the top surface of bearing block, be equipped with shock-absorbing structure between bearing block and the track, the track is equipped with steel connecting plate towards a terminal surface of wall post, steel connecting plate and wall post fixed connection, and orbital bottom is equipped with the enhancement support column, and the top of strengthening the support column is equipped with the level (l) ing structure. The utility model discloses a plurality of bolts are taut fixed, improve the intensity of each hookup location of track, are equipped with the steel sheet of plugging into and shock-absorbing structure at the top surface of the junction of guide rail simultaneously, through the form of drawing a pad, effectively reduce the vibrations that equipment produced when passing through the track junction, improve the stability of this department; the reinforced support columns are additionally arranged at the weak strength positions of the guide rails, the strength of the whole track is effectively improved, the strength and the stability of the track are optimized on the existing track structure, and the cost expenditure of enterprises is effectively reduced.

Description

High-strength and high-stability aluminum water ladle transfer track
[ technical field ] A method for producing a semiconductor device
The utility model relates to an aluminium raw materials transfer apparatus technical field, concretely relates to track is transported to aluminium water drum of high strength high stability.
[ background ] A method for producing a semiconductor device
The molten aluminum is a liquid obtained by melting solid aluminum, and the temperature of the molten aluminum is very high, so that the molten aluminum is usually transported by using a special metal aluminum ladle to be contained, and in aluminum product manufacturing enterprises, the molten aluminum is usually purchased and led into a smelting furnace, and is stored and used for manufacturing primary products, such as aluminum plates, aluminum bars and the like.
Former aluminium water drum is after splendid attire aluminium water, weight reaches about 16 tons, because the influence of supply and demand relation, in order to increase the output, the aluminium water drum is for can the splendid attire more aluminium water, can enlarge the volume of self, consequently after present aluminium water drum splendid attire aluminium water, weight can reach about 32 tons, the track that transports the aluminium water drum of the former design of aluminium product manufacturing enterprise can't bear current big weight, consequently when hoist and mount aluminium water drum, the track appears rocking easily, unstable condition, and the vibrations at orbital guide rail and the junction of guide rail are very big, long-term so the track takes place slope and warp easily, carry out aluminium water drum transportation work under this kind of unstable condition, extremely easily cause the incident, if change whole set of transportation equipment, the replacement cost reaches millions, the replacement cost is high. Consequently, this application optimizes in the structure that original transportation track combines the factory building, provides the orbital new scheme is transported to the aluminium water drum of a high strength high stability to solve the above-mentioned problem.
[ Utility model ] content
The utility model aims to provide a high-strength high-stability aluminum water ladle transfer track, which solves the problems that the existing track for transferring the aluminum water ladle can not bear new aluminum water ladles with heavy weight, the track is easy to shake and unstable, and safety accidents are easy to cause in the transferring process; the cost of replacing the whole set of transfer equipment is very high.
In order to solve the technical problem, the utility model discloses a following technical scheme:
the utility model provides a track is transported to high strength high stability's aluminium water drum, includes wall post and track, the wall post is a plurality of roots and equidistance and distributes, be equipped with convex bearing block on the preceding terminal surface of wall post, be equipped with the track on the top surface of bearing block, be equipped with shock-absorbing structure between bearing block and the track, the track is equipped with steel sheet towards a terminal surface of wall post, steel sheet and wall post fixed connection, the orbital bottom of wall post between two liang is equipped with the enhancement support column, the top of strengthening the support column is equipped with the level (l) ing structure, the bottom of strengthening the support column is equipped with the supporting seat.
Furthermore, the track is composed of a plurality of sections of guide rails, the joint of the guide rails and the guide rails is arranged on the bearing block, the bottom of the joint of the guide rails and the guide rails is provided with a connection steel plate, the damping structure is arranged at the bottom of the connection steel plate, and the top surface of the bearing block is provided with a groove for placing the connection steel plate and the damping structure.
Further, the shock-absorbing structure is any one of an oil pressure shock absorber, a steel plate shock absorber or a spring shock absorber.
Furthermore, the connecting steel plate is composed of a longitudinal plate and a transverse plate, is integrally in a cross structure and is respectively arranged at two ends of the guide rail, a counter bore is formed in one end face, facing the rail, of the wall column, one end of the longitudinal plate of the connecting steel plate is arranged in the counter bore, a through hole is formed in the side face of the longitudinal plate arranged in the wall column, a through hole coaxial with the through hole in the side face of the longitudinal plate is formed in the wall column, a transverse tensioning screw rod is arranged in the through hole in the wall column and the through hole in the side face of the longitudinal plate, and tensioning nuts are arranged at two ends of the transverse tensioning screw rod; the diaphragm of connecting steel sheet and the laminating of the preceding terminal surface of wall post, a plurality of through-holes have been seted up on the diaphragm, also seted up on the wall post a plurality ofly and coaxial through-hole on the diaphragm, be equipped with a vertical tensioning screw in diaphragm and the coaxial through-hole on the wall post respectively, the both ends of vertical tensioning screw are equipped with tensioning nut respectively.
Furthermore, one end of the wall column, which is far away from the track, is provided with a reinforcing steel plate provided with a plurality of through holes, and the reinforcing steel plate is sleeved on the plurality of longitudinal tensioning screws through the plurality of through holes formed in the reinforcing steel plate.
Furthermore, the body of each reinforcing support column is an I-shaped steel column, inclined baffles are arranged at the front end and the rear end of the top surface of each reinforcing support column, so that the side view of each reinforcing support column is of a Y-shaped structure, through holes are formed in the two baffles, and a horizontal adjusting structure is arranged in each through hole.
Further, the horizontal adjusting structure comprises a pressing block, an adjusting screw rod and an adjusting nut, the front end face of the pressing block is provided with the adjusting screw rod which inclines downwards, the rear end face of the pressing block is attached to the front end face of the track, the adjusting screw rod is arranged in the through hole of the baffle, the adjusting screw rod is provided with two adjusting nuts, and the two adjusting nuts are arranged on the front end face and the rear end face of the baffle respectively.
Furthermore, the supporting seat is formed by pouring concrete, and the bottom of the reinforcing support column is inserted into the supporting seat.
The utility model discloses the beneficial effect who reaches is:
this transfer track has kept under original orbital structure, thereby has increased bearing structure and shock-absorbing structure and has made original track have intensity height, the good performance of stability: firstly, cross-shaped connecting steel plates are respectively additionally arranged at two ends of a guide rail, one part of each connecting steel plate is embedded in a wall column, the other part of each connecting steel plate is tightly attached to the end surface of the wall column, and is tightened and fixed through a plurality of bolts, so that the strength of each connecting position of the rail is improved, meanwhile, the top surface of the connecting part of the guide rail is provided with the connecting steel plates and a damping structure, and through a mode of pulling one pad, the vibration generated when equipment passes through the connecting part of the rail is effectively reduced, and the stability of the connecting part is improved; the top of the reinforced support column is provided with a horizontal adjusting structure, and the horizontal adjusting structures of the two inclined struts support the front end surface and the rear end surface of the guide rail, so that the top surface of the guide rail can be in a relatively flat levelness, the deformation of the guide rail can be reduced, the stability of the equipment in the operation process can be improved, and the safety risk can be reduced; optimize its intensity and stability on current track structure, need not to change whole sets of equipment, the effectual cost expenditure who reduces the enterprise.
[ description of the drawings ]
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention, and together with the description serve to explain the principles of the invention. In the drawings:
fig. 1 is a front view of the present invention;
FIG. 2 isbase:Sub>A cross-sectional view taken at A-A of FIG. 1;
FIG. 3 is a cross-sectional view taken at B-B of FIG. 1;
fig. 4 is a left side view of the present invention;
FIG. 5 is a partial schematic view at A in FIG. 4;
fig. 6 is a schematic perspective view of the utility model installed in a factory building.
1. A guide rail; 1-1, reinforcing ribs; 2. a horizontal adjustment structure; 2-1, briquetting; 2-2, adjusting a screw rod; 2-3, adjusting a nut; 3. a wall stud; 3-1, bearing blocks; 4. connecting a steel plate; 5. a baffle plate; 6. reinforcing the support rod; 7. a supporting seat; 8. transversely tensioning the screw rod; 9. longitudinally tensioning the screw; 10. tightening the nut; 11. a longitudinal plate; 12. reinforcing a steel plate; 13. a transverse plate; 14. a connecting nut; 15. a connecting bolt; 16. and (5) a shock absorption structure.
[ detailed description ] A
The following is a detailed description of specific embodiments.
The present invention will be described in further detail with reference to the following embodiments. It should be emphasized that the following description is merely exemplary in nature and is not intended to limit the scope of the invention or its application.
As shown in fig. 1-5, a high-strength high-stability aluminum water ladle transfer rail comprises wall columns 3 and rails, wherein the wall columns 3 are distributed at a plurality of equal intervals, the wall columns 3 are formed by pouring reinforcing steel bars and are poured on the wall of a factory building, the front end surfaces of the wall columns 3 are provided with bearing blocks 3-1 protruding forwards, the bearing blocks 3-1 can be rectangular in structure, the top surfaces of the bearing blocks 3-1 are provided with the rails, the rails are composed of a plurality of sections of guide rails 1, the guide rails are i-shaped guide rails, the front end surfaces and the rear end surfaces of two sides of each guide rail 1 are respectively welded with reinforcing ribs 1-1, the end surfaces of the reinforcing ribs 1-1 are provided with through holes, connecting bolts 15 are arranged in the through holes, two ends of each connecting bolt 15 are respectively provided with a connecting nut 14, each section of each guide rail 1 is connected through the connecting bolt 15 and the connecting nut 14, the connecting part of each guide rail 1 and the guide rail 1 is arranged on the bearing block 3-1, and the bottom of the connecting part of each guide rail 1 is provided with a connecting steel plate 4 which is connected through bolts; a damping structure 16 is arranged between the bearing block 3-1 and the rail, the damping structure 16 is any one of an oil pressure damper, a steel plate damper or a spring damper, the damping structure 16 is arranged at the bottom of the connection steel plate 4, and a groove for placing the connection steel plate 4 and the damping structure 16 is formed in the top surface of the bearing block 3-1.
The connecting steel plate is welded on one end face of the rail facing the wall column 4, the connecting steel plate is fixedly connected with the wall column 3, the connecting steel plate consists of a longitudinal plate 11 and a transverse plate 13, the connecting steel plate is integrally in a cross structure and is respectively arranged at two ends of the guide rail 1 and one side of the reinforcing rib 1-1, a counter bore is arranged on one end face of the wall column 3 facing the rail, one end of the longitudinal plate 11 of the connecting steel plate is arranged in the counter bore, a through hole is arranged on the side face of the longitudinal plate 11 arranged in the wall column 3, a through hole coaxial with the through hole on the side face of the longitudinal plate 11 is arranged on the wall column 3, a transverse tensioning screw rod 8 is arranged in the through hole on the wall column 3 and the through hole on the side face of the longitudinal plate 11, tensioning nuts 10 are arranged at two ends of the transverse tensioning screw rod 8, and the rail is preliminarily tensioned on the wall column 3; diaphragm 13 of connecting steel sheet and the laminating of the preceding terminal surface of wall post 3, a plurality of through-holes have been seted up on diaphragm 13, also set up on the wall post 3 a plurality ofly and coaxial through-hole on diaphragm 13, be equipped with a vertical tensioning screw 9 in the coaxial through-hole on diaphragm 13 and the wall post 3 respectively, the both ends of vertical tensioning screw 9 are equipped with tensioning nut 10 respectively, further with the track taut on wall post 3, wall post 3 deviates from orbital one end and is equipped with a reinforcing steel plate 12 of seting up a plurality of through-holes, a plurality of through-holes cover that reinforcing steel plate 12 was seted up through self are on a plurality of vertical tensioning screw 9, strengthen tensioning nut 10 and wall post 3's area of contact, the tightening force is improved.
The bottom of a track between every two wall columns is provided with a reinforced support column 6, the top of the reinforced support column 6 is provided with a horizontal adjusting structure 2, the body of the reinforced support column 6 is an I-shaped steel column, the front end and the rear end of the top surface of the reinforced support column 6 are welded with inclined baffles 5, so that the side view of the reinforced support column 6 is in a Y-shaped structure, through holes are respectively formed in the two baffles 5, the horizontal adjusting structure 2 is arranged in the through holes, the horizontal adjusting structure 2 comprises a pressing block 2-1, an adjusting screw 2-2 and an adjusting nut 2-3, the front end surface of the pressing block 2-1 is provided with an adjusting screw 2-2 inclining downwards, the rear end surface of the pressing block 2-1 is attached to the front end surface of the track, namely attached to the front end surface of the guide rail 1, and the adjusting screw 2-2 is arranged in the through holes of the baffles 5, two adjusting nuts 2-3 are arranged on the adjusting screw 2-2, the two adjusting nuts 2-3 are respectively arranged on the front end surface and the rear end surface of the baffle 5, the adjusting nut 2-3 on the adjusting screw 2-2 on the rear end surface of the baffle 5 is used for moving the adjusting screw 2-2 and the pressing block 2-1 to the front end large surface of the guide rail 1 when rotating the adjusting nut 2-3, the adjusting nut 2-3 moves towards the adjusting screw 2-2 in the opposite direction, but is limited by the baffle 5, therefore, only the adjusting screw 2-2 moves, if the guide rail 1 inclines, the levelness of the guide rail 1 can be adjusted by adjusting the horizontal adjusting mechanisms 2 at two positions on the top surface of the reinforcing support column 6 and the adjusting nuts 2-3 on the rear end of the baffle 5 (if the horizontal adjusting mechanism 2 on the rear end of the top surface of the reinforcing support column 6, adjusting an adjusting nut 2-3 on an adjusting screw 2-2 at the front end of a baffle 5 on the rear end of the top surface of the reinforced supporting column 6), namely, if the guide rail 1 inclines to which side, withdrawing a pressing block 2-1 on the opposite side (for example, rotating the adjusting nut 2-2 clockwise to enable the adjusting screw 2-1 to move towards the front end of the guide rail 1 in a large face way, and rotating the adjusting nut 2-2 anticlockwise to enable the adjusting screw 2-1 to move towards the direction far away from the front end of the guide rail 1 in a large face way), then pressing block 2-1 of the horizontal adjusting mechanism 2 on the inclined side is pressed against the inclined end face of the guide rail 1 to apply thrust to the guide rail 1 to correct the guide rail 1, and adjusting nut 2-3 on the adjusting screw 2-2 on the front end face of the baffle 5 is used for limiting and fixing; the bottom of the reinforced support column 6 is provided with a support seat 7, the support seat 7 is formed by pouring concrete, and the bottom of the reinforced support column 6 is inserted into the support seat 7.
The transverse tensioning screw 8, the longitudinal tensioning screw 9, the connecting screw 15 and the adjusting screws 2-2 are double-thread screws.

Claims (8)

1. The utility model provides a track is transported to aluminium water drum of high strength high stability, includes wall post and track, the wall post is a plurality of roots and equidistance distribution, its characterized in that: be equipped with convex bearing block on the preceding terminal surface of wall post, be equipped with the track on the top surface of bearing block, be equipped with shock-absorbing structure between bearing block and the track, the track is equipped with steel sheet towards a terminal surface of wall post, steel sheet and wall post fixed connection, the orbital bottom of wall post between two liang is equipped with the enhancement support column, the top of strengthening the support column is equipped with the level (l) ing structure, the bottom of strengthening the support column is equipped with the supporting seat.
2. The high-strength high-stability aluminum ladle transfer track according to claim 1, wherein: the track consists of a plurality of sections of guide rails, and the joint of the guide rails and the guide rails is arranged on the bearing block; the steel plate that plugs into is still included, the guide rail is equipped with the steel plate that plugs into with the bottom of leading the junction, shock-absorbing structure locates the bottom of the steel plate that plugs into, the top surface of bearing block is seted up places the recess of plugging into steel plate and shock-absorbing structure.
3. The high-strength high-stability aluminum ladle transfer track according to claim 1, wherein: the shock absorption structure is any one of an oil pressure shock absorber, a steel plate shock absorber or a spring shock absorber.
4. The high-strength high-stability aluminum ladle transfer track according to claim 2, wherein: the connecting steel plate is composed of a longitudinal plate and a transverse plate, is integrally in a cross structure and is respectively arranged at two ends of the guide rail, a counter bore is formed in one end face, facing the rail, of the wall column, one end of the longitudinal plate of the connecting steel plate is arranged in the counter bore, a through hole is formed in the side face of the longitudinal plate arranged in the wall column, a through hole coaxial with the through hole in the side face of the longitudinal plate is formed in the wall column, a transverse tensioning screw rod is arranged in the through hole in the wall column and the through hole in the side face of the longitudinal plate, and tensioning nuts are arranged at two ends of the transverse tensioning screw rod; the diaphragm of steel connecting plate and the laminating of the preceding terminal surface of wall post, a plurality of through-holes have been seted up on the diaphragm, also seted up on the wall post a plurality ofly and the diaphragm coaxial through-hole, be equipped with a vertical tensioning screw in diaphragm and the coaxial through-hole on the wall post respectively, vertical tensioning screw's both ends are equipped with straining nut respectively.
5. The high-strength high-stability aluminum ladle transfer track as claimed in claim 4, wherein: the wall post deviates from orbital one end and is equipped with the reinforcing plate who sets up a plurality of through-holes, reinforcing plate covers on a plurality of vertical tensioning screw through a plurality of through-holes that self was seted up.
6. The high-strength high-stability aluminum ladle transfer track according to claim 1, wherein: the reinforced support column is characterized in that the body of the reinforced support column is an I-shaped steel column, the front end and the rear end of the top surface of the reinforced support column are provided with inclined baffles, so that the side view of the reinforced support column is in a Y-shaped structure, the two baffles are provided with through holes, and horizontal adjusting structures are arranged in the through holes.
7. The high-strength high-stability aluminum ladle transfer track according to claim 1, wherein: the horizontal adjusting structure comprises a pressing block, an adjusting screw rod and an adjusting nut, wherein the front end face of the pressing block is provided with the adjusting screw rod which inclines downwards, the rear end face of the pressing block is attached to the front end face of the track, the adjusting screw rod is arranged in the through hole of the baffle, the adjusting screw rod is provided with two adjusting nuts, and the two adjusting nuts are respectively arranged on the front end face and the rear end face of the baffle.
8. The high-strength high-stability aluminum ladle transfer track according to claim 1, wherein: the supporting seat is formed by pouring concrete, and the bottom of the reinforcing support column is inserted into the supporting seat.
CN202221872828.2U 2022-07-18 2022-07-18 High-strength and high-stability aluminum water ladle transfer track Active CN217749322U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221872828.2U CN217749322U (en) 2022-07-18 2022-07-18 High-strength and high-stability aluminum water ladle transfer track

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221872828.2U CN217749322U (en) 2022-07-18 2022-07-18 High-strength and high-stability aluminum water ladle transfer track

Publications (1)

Publication Number Publication Date
CN217749322U true CN217749322U (en) 2022-11-08

Family

ID=83876030

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221872828.2U Active CN217749322U (en) 2022-07-18 2022-07-18 High-strength and high-stability aluminum water ladle transfer track

Country Status (1)

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CN (1) CN217749322U (en)

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