Aluminum alloy liquid transfer and stirring device

By designing an aluminum alloy liquid transfer and stirring device with switchable rollers and suspension mechanisms, the problems of uneven temperature and inconvenience of dumping at high places are solved, uniform temperature stirring and efficient transfer are achieved, and the cost of forklift use is reduced.

CN116747755BActive Publication Date: 2025-09-05JIANGSU SHENZHU INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202310934917.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-28
Publication Date
2025-09-05
Estimated Expiration
2043-07-28

AI Technical Summary

Technical Problem

During the transfer of aluminum alloy liquid, the existing equipment is difficult to maintain uniform temperature, and it is inconvenient to dump it at high places. In addition, multiple forklifts are costly and inefficient.

Method used

An aluminum alloy liquid transfer and stirring device was designed. Through switchable rollers and suspension mechanisms, the stirring device can achieve uniform stirring temperature during transportation and has strong adaptability when dumping at different heights, reducing the use of forklifts.

Benefits of technology

It achieves uniform stirring and efficient transfer of aluminum alloy liquid temperature, reduces the cost of forklift use, improves handling efficiency, and adapts to various dumping scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides an aluminum alloy liquid transporting and stirring device, comprising a base, vertical poles symmetrically fixed on both sides of the top of the base, a slide groove provided on each side of the vertical poles away from each other, a slider provided for sliding in the slide groove, three positioning holes provided on the side of the slider from top to bottom, and a latch mechanism provided at each positioning hole. The present invention uses a switchable roller. When the roller is located at the bottom, it can act as a wheel to roll and drive the stirring device to stir the aluminum alloy liquid; when the roller is located at the top, it can act as a wind blade to rotate under the wind force generated by the vehicle and drive the stirring device to stir the aluminum alloy liquid. It can stir during the entire handling and transportation process to ensure the uniform temperature of the aluminum alloy liquid; when the roller is located in the middle, it can act as a rotating disk to drive the stirring barrel to rotate and tilt. When tilting at a low point, the roller is directly rotated, and when tilting at a high point, the roller is rotated by pulling a pull rope to drive the roller to rotate and drive the stirring barrel to tilt.
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Description

Technical Field

[0001] The present invention relates to the field related to aluminum liquid transportation, and in particular to an aluminum alloy liquid transportation and stirring device. Background Art

[0002] During the transportation of aluminum alloy liquid, it needs to be stored in a transfer device and then transported to the required delivery site. However, since the manufacturing and use sites of aluminum alloy liquid are generally indoors, long-distance transportation requires trucks. During the loading and unloading process, the transfer device needs to be loaded and unloaded by forklifts. Generally, during the loading or unloading process, the forklift needs to be constantly moved back and forth between the truck and the factory, which is inefficient and the cost of using multiple forklifts is high. During the transportation process, the aluminum alloy liquid is prone to high internal temperature and low surrounding temperature. The aluminum alloy liquid with low surrounding temperature is prone to solidification, affecting the use of the aluminum alloy liquid.

[0003] When transporting aluminum alloy liquid, it is difficult to maintain a uniform temperature of the aluminum alloy liquid during the transportation and truck transportation of the existing transfer bag, and the existing transport device for manually rotating the tank to tip is not suitable for high-altitude tipping. Summary of the Invention

[0004] The purpose of the present invention is to provide an aluminum alloy liquid transport and stirring device to solve the above problems.

[0005] The above technical objectives of the present invention are achieved through the following technical solutions: an aluminum alloy liquid transfer and stirring device, comprising a base, vertical rods are symmetrically fixed on both sides of the top of the base, and slide grooves are provided on the sides of the vertical rods away from each other, and a slider is provided for sliding in the slide groove, and three positioning holes are provided on the side of the slider from top to bottom, and a latch mechanism is provided at each positioning hole, and a latch hole is provided on the side of the positioning hole facing the slider, and when the latch hole is aligned with any one of the positioning holes, the latch mechanism at the corresponding position will be inserted into the latch hole, thereby fixing the position of the slider, and the slider is divided into upper and lower parts away from the opening side. Three spline sleeves are provided for rotation, and the positions of the three spline sleeves correspond to the positions of the three positioning holes. A roller is provided for rotation on the side of the slide away from the symmetrical center. A groove is provided on the outer circumference of the roller, and blades are arranged in an annular array in the groove. A spline sleeve is fixedly provided through the center axis of the roller, and one end of the spline sleeve passes through the slider on the corresponding side and is rotatably connected. A push-pull rod that can slide is coaxially provided in the spline sleeve, and a spline shaft is fixed to one end of the push-pull rod. The spline shaft can slide in the spline sleeve and be key-connected. The spline shaft can be inserted into each of the spline sleeves and be key-connected.

[0006] A transmission cavity 1 is provided in the vertical rods on both sides and on the side of the slide away from the opening. The spline sleeve 1 extends into the transmission cavity 1. A transmission mechanism 1 is connected between the spline sleeve 1 at the bottom and the top.

[0007] The top of the lifting gear is connected with the lifting gear of the lifting gear by the spring, and the bottom of the lifting gear is connected with the lifting gear of the lifting gear by the spring.

[0008] Small wheels are rotatably provided on both sides of the base, and the small wheels are located on the side of the roller close to the base. There are at least two small wheels on each side to stabilize the base and better share the gravity. A support mechanism is provided at the bottom of the base. When the base does not need to move, the support mechanism can contact the ground and support the base to prevent the base from moving;

[0009] The outer circumferential surface of the second spline sleeve is provided with a pull rope mechanism, and the second spline sleeve can be pulled to rotate by the pull rope mechanism.

[0010] Preferably, two parallel supporting rods are fixed to the bottom of the base, and slots are provided in the supporting rods, into which the forks of a forklift can be inserted.

[0011] Preferably, a limiting plate is fixedly provided on the top of the base, and the limiting plate can abut against the side of the mixing barrel.

[0012] Preferably, the latch mechanism includes an insertion rod slidably arranged in the positioning hole, and a spring 1 is fixedly connected between the outward end of the insertion rod and the outer surface of the vertical pole.

[0013] Preferably, a disc is fixed to the outward end of the push-pull rod, and a second spring is fixedly connected between the disc and the outer surface of the roller.

[0014] Preferably, the transmission mechanism includes a sprocket 1 fixedly arranged on the outer cylindrical surface of the spline sleeve 1 at the bottom, a small gear is fixedly provided on the outer cylindrical surface of the spline sleeve 1 at the top, a transmission shaft is rotatably arranged between the vertical rods on both sides and passes through the crossbeam, and large gears are fixed on the outer cylindrical surfaces of both ends of the transmission shaft located in the transmission cavity 1 on both sides, the large gear is meshed with the small gear, and the large gear is driven by the small gear to reduce rotation, and a sprocket 2 fixed on the outer cylindrical surface of the transmission shaft is provided on one side of the large gear, and a chain is connected between the sprocket 2 and the sprocket 1.

[0015] Preferably, the transmission mechanism three includes a transmission chamber two arranged in the crossbeam, the transmission shaft passes through the two side walls of the transmission chamber two, a bevel gear one is fixed on the outer cylindrical surface of the transmission shaft and located in the transmission chamber two, the upper end of the spline shaft two extends to the transmission chamber two and is fixed with a bevel gear two, and the bevel gear two is meshed with the bevel gear one.

[0016] Preferably, the second transmission mechanism includes a worm located in the middle of the spline sleeve 1 facing the mixing barrel side, and a worm wheel is meshed with the bottom of the worm and rotatably arranged between the two side walls of the transmission chamber 1. A bevel gear 3 is coaxially fixed to one side of the worm wheel, and the end of the rotating shaft extends into the transmission chamber 1 and is fixed with a bevel gear 4, and the bevel gear 4 is meshed with the bevel gear 3.

[0017] Preferably, the stirring mechanism includes a stirring shaft that passes through the cover and is rotatably arranged up and down, and a spline hole is opened upward in the stirring shaft. The two bottom ends of the spline shaft extend into the spline hole and are spline-connected. The spline holes are located in a round array outside the inner part of the barrel and are fixed with a stirring rod.

[0018] Preferably, the suspension rod array is arranged and located on three sides of the transmission mechanism, and a buffer spring is arranged around the outer circumference of each suspension rod, and the buffer spring is fixed between the lower suspension plate and the crossbeam.

[0019] Preferably, the support mechanism includes a telescopic column that is telescopically arranged at the bottom of the base and is telescopically arranged up and down, and a support foot is fixed at the bottom of each telescopic column. A connecting frame is provided under the base, and the connecting frame is fixedly connected to the side of each support foot. A movable cavity is opened in the middle of the bottom surface of the base, and a screw is rotatably arranged in the movable cavity. Two movable blocks are threadedly sleeved on the screw, and the movable block is slidably arranged in the movable cavity. The thread directions of the movable blocks on both sides are opposite to those of the screw. A hinged rod is hinged between the bottom of the movable blocks on both sides and the upper end of the connecting frame, and one end of the screw extends to the outside of the base and is fixed with a turntable, and a handle is provided at the eccentric position on the outward side of the turntable.

[0020] Preferably, the rope pulling mechanism includes a baffle fixedly arranged on the outer cylindrical surface of the second spline sleeve, the baffle is located between the roller and the vertical pole, a rope is wound on the outer cylindrical surface of the second spline sleeve, the inward end of the rope is fixedly connected to the second spline sleeve, and the outward end of the rope is fixed with an insert block, a socket is opened in the baffle, the shape of the socket matches the insert block, and the insert block can be inserted into the socket and fix the end of the rope.

[0021] Preferably, fixing blocks are fixed on the sides of the barrel part and the cover part, and the upper and lower fixing blocks are opposite to each other and have through holes passing through them. Bolts are inserted into the through holes of the upper and lower fixing blocks on the same side, and the bolts are tightened with nuts to fasten the cover part to the barrel part.

[0022] In summary, the present invention has the following beneficial effects:

[0023] The present invention uses a switchable roller. When the roller is located at the bottom, it can roll as a wheel and drive the stirring device to stir the aluminum alloy liquid; when the roller is located at the top, it can serve as a wind blade, rotate under the wind force generated by the vehicle's movement, and drive the stirring device to stir the aluminum alloy liquid. It can stir the aluminum alloy liquid during the entire handling and transportation process to ensure the uniformity of the aluminum alloy liquid temperature. In addition, there is no need to use multiple forklifts during the transportation process. The entire transfer and stirring device only needs to be pushed to the required location manually, and only a forklift is needed for loading and unloading, thereby improving the transportation efficiency; when the roller is located in the middle, it can serve as a rotating disk to drive the stirring barrel to rotate and dump. When dumping at a low place, the roller is directly rotated, and when dumping at a high place, the pull rope is pulled to drive the roller to rotate and drive the stirring barrel to dump, thereby meeting more usage scenarios and having better usage effects.

[0024] By setting up a suspension mechanism, the cover can be opened and the stirring device can be removed by a crane, and then the entire transfer stirring device can be lifted to a high place for dumping. There is no need for manpower to open the cover, which makes it easier and more convenient to use. At the same time, the buffer spring can effectively improve the stability during the suspension process. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0026] Figure 1 This is a schematic diagram of a three-dimensional structure from a first viewing angle according to an embodiment of the present invention;

[0027] Figure 2is a schematic diagram of a three-dimensional structure from a second viewing angle according to an embodiment of the present invention;

[0028] Figure 3 It is a schematic cross-sectional view of the internal structure of an embodiment of the present invention;

[0029] Figure 4 is a schematic cross-sectional structural diagram of a support mechanism in an embodiment of the present invention;

[0030] Figure 5 is a schematic structural diagram of the roller in an embodiment of the present invention;

[0031] Figure 6 This is an embodiment of the present invention Figure 5 Schematic diagram of the cross-sectional structure;

[0032] Figure 7 This is an embodiment of the present invention Figure 3 A schematic diagram of the structure at point A in the middle;

[0033] Figure 8 This is an embodiment of the present invention Figure 3 A magnified schematic diagram of the structure at B in the middle;

[0034] Figure 9 This is an embodiment of the present invention Figure 3 A magnified schematic diagram of the structure at C in the middle;

[0035] Figure 10 This is an embodiment of the present invention Figure 9 Schematic diagram of the structure in the DD direction.

[0036] In the figure: 1. base; 2. upright pole; 3. roller; 4. mixing barrel; 5. crossbeam; 6. suspension assembly; 7. rope pulling mechanism; 10. small wheel; 11. supporting mechanism; 110. telescopic column; 111. supporting foot; 112. connecting frame; 113. moving chamber; 114. screw; 115. moving block; 116. hinged rod; 117. turntable; 118. handle; 12. supporting rod; 13. limit plate; 20. slide groove; 21. slider; 22. positioning hole; 23. latch mechanism; 230. plug rod; 231. spring 1; 24. latch hole; 25. spline sleeve 1; 26. transmission chamber 1; 27. transmission mechanism 1; 270. sprocket 1; 271. small gear; 272. transmission shaft; 273. large gear; 274. sprocket 2; 2 75. Chain; 28. Transmission mechanism 2; 280. Worm; 281. Worm wheel; 282. Bevel gear 3; 283. Bevel gear 4; 30. Groove; 31. Blade; 32. Spline sleeve 2; 33. Push-pull rod; 34. Spline shaft 1; 35. Disc; 36. Spring 2; 40. Rotating shaft; 41. Barrel; 42. Cover; 43. Stirring mechanism; 430. Stirring shaft; 431. Spline hole; 432. Stirring rod; 44. Lower hanging plate; 45. Fixed block; 51. Spline shaft 2; 52. Transmission mechanism 3; 520. Transmission chamber 2; 521. Bevel gear 1; 522. Bevel gear 2; 60. Hanging rod; 61. Upper hanging plate; 62. Lifting ring; 63. Buffer spring; 70. Baffle; 71. Pull rope; 72. Insert block; 73. Socket. Implementation Method

[0037] Combined with attachment Figures 1-10The aluminum alloy liquid transporting and stirring device described herein comprises a base 1, and vertical rods 2 are symmetrically fixed on both sides of the top of the base 1. A slide groove 20 is provided on the side away from each other in the vertical rods 2, and a slider 21 is slidably provided in the slide groove 20. Three positioning holes 22 are provided on the side of the slider 21 from top to bottom, and a latch mechanism 23 is provided at each positioning hole. A latch hole 24 is provided on the side of the positioning hole 22 facing the slider 21. When the latch hole 24 is aligned with any one of the positioning holes 22, the latch mechanism 23 at the corresponding position will be inserted into the latch hole 24, thereby fixing the position of the slider 21. The slider 21 is distributed up and down on the side away from the opening and is rotatable with three spline sleeves 2 5. The positions of the three spline sleeves 25 correspond to the positions of the three positioning holes 22. A roller 3 is rotatably provided on the side of the slide 20 away from the center of symmetry. A groove 30 is provided on the outer circumferential surface of the roller 3. A blade 31 is arranged in an annular array in the groove 30. A spline sleeve 22 is fixedly provided at the center axis of the roller 3. The inward end of the spline sleeve 22 passes through the slider 21 on the corresponding side and is rotatably connected. A push-pull rod 33 is coaxially provided in the spline sleeve 22. A spline shaft 1 34 is fixed to the inward end of the push-pull rod 33. The spline shaft 1 34 can slide in the spline sleeve 22 and be key-connected. The spline shaft 1 34 can be inserted into each spline sleeve 25 and be key-connected.

[0038] A transmission cavity 26 is provided in the vertical rods 2 on both sides and on the side of the slide 20 away from the opening. The spline sleeve 25 extends into the transmission cavity 26. A transmission mechanism 27 is connected between the spline sleeve 25 at the bottom and the top.

[0039] A mixing barrel 4 is provided between the vertical rods 2 on both sides, and the two sides of the mixing barrel 4 are rotatably connected to the vertical rods 2 on both sides through a rotating shaft 40. A transmission mechanism 28 is connected between the rotating shaft 40 and the spline sleeve 1 25 located in the middle. The mixing barrel 4 includes a barrel portion 41 and a cover portion 42. The cover portion 42 is provided with a stirring mechanism 43 located in the barrel portion 41. A lower hanging plate 44 is fixed to the top of the cover portion 42 through a connecting rod. A crossbeam 5 fixed between the vertical rods 2 on both sides is provided above the lower hanging plate 44. A suspension assembly 6 is further provided above the lower hanging plate 44. The suspension assembly 6 includes a suspension rod 60 fixedly connected to the top of the lower hanging plate 44. The suspension rod 60 passes upward through the crossbeam 5 and is fixed with an upper hanging plate 61. A suspension ring 62 is fixed to the top of the upper hanging plate 61. A spline shaft 2 51 is rotatably provided at the bottom of the crossbeam. The bottom of the spline shaft 2 51 passes through the lower hanging plate 44 and is connected to the stirring mechanism 43. The top of the spline shaft 2 51 is dynamically connected to the transmission mechanism 2 28 through the transmission mechanism 3 52.

[0040] Small wheels 10 are rotatably provided on both sides of the base 1. The small wheels 10 are located on the side of the roller 3 close to the base 1. At least two small wheels 10 are provided on each side to stabilize the base 1 while better sharing the gravity. A support mechanism 11 is provided at the bottom of the base 1. When the base 1 does not need to move, the support mechanism 11 can contact the ground and support the base 1 to prevent the base 1 from moving;

[0041] A pull rope mechanism 7 is provided on the outer circumferential surface of the second spline sleeve 32 , and the second spline sleeve 32 can be pulled to rotate by the pull rope mechanism 7 .

[0042] Advantageously, two parallel supporting rods 12 are fixed to the bottom of the base 1 , and slots are provided in the supporting rods 12 , into which the forks of a forklift can be inserted.

[0043] Advantageously, a limiting plate 13 is fixedly provided on the top of the base 1 , and the limiting plate can abut against the side of the mixing barrel 4 .

[0044] Advantageously, the latch mechanism 23 includes an insertion rod 230 slidably disposed in the positioning hole 22 , and a spring 231 is fixedly connected between an outward end of the insertion rod 230 and the outer surface of the vertical pole 2 .

[0045] Advantageously, a disc 35 is fixed to the outward end of the push-pull rod 33 , and a second spring 36 is fixedly connected between the disc 35 and the outer surface of the roller 3 .

[0046] Advantageously, the transmission mechanism 27 includes a sprocket 270 fixedly arranged on the outer circumferential surface of the spline sleeve 25 at the bottom, a pinion 271 fixedly arranged on the outer circumferential surface of the spline sleeve 25 at the top, a transmission shaft 272 that passes through the crossbeam 5 is rotatably arranged between the vertical poles 2 on both sides, and a large gear 273 is fixed on the outer circumferential surfaces of both ends of the transmission shaft 272 located in the transmission cavity 26 on both sides. The large gear 273 is engaged with the small gear 271, and the large gear 273 is driven by the small gear 271 to reduce the rotation. A sprocket 2 274 fixed on the outer circumferential surface of the transmission shaft 272 is provided on one side of the large gear 273, and a chain 275 is connected between the sprocket 274 and the sprocket 1 270.

[0047] Advantageously, the transmission mechanism three 52 includes a transmission chamber two 520 arranged in the crossbeam 5, the transmission shaft 272 passes through the two side walls of the transmission chamber two 520, a bevel gear one 521 is fixed on the outer cylindrical surface of the transmission shaft 272 and located in the transmission chamber two 520, the upper end of the spline shaft two 51 extends to the transmission chamber two 520 and is fixed with a bevel gear two 522, and the bevel gear two 522 is meshed with the bevel gear one 521.

[0048] Advantageously, the transmission mechanism 28 includes a worm 280 located in the middle of the spline sleeve 1 25 toward the side of the mixing barrel 4, and a worm wheel 281 is meshed at the bottom of the worm 280 and is rotatably arranged between the two side walls of the transmission chamber 1 26. A bevel gear 3 282 is coaxially fixed to one side of the worm wheel 281, and a bevel gear 4 283 is fixed at the end of the rotating shaft 40 extending into the transmission chamber 1 26, and the bevel gear 4 283 is meshed with the bevel gear 3 282.

[0049] Advantageously, the stirring mechanism 43 includes a stirring shaft 430 that passes through the cover 42 from top to bottom and is rotatably arranged. A spline hole 431 is opened upward in the stirring shaft 430. The bottom end of the spline shaft 51 extends into the spline hole 431 and is spline-connected. The spline holes 431 are located in a rounded array inside the barrel 41 and are fixed with a stirring rod 432.

[0050] Advantageously, the suspension rods 60 are arranged in an array and located on the side of the transmission mechanism 3 52 , and a buffer spring 63 is arranged around the outer periphery of each suspension rod 60 , and the buffer spring 63 is fixed between the lower suspension plate 44 and the crossbeam 5 .

[0051] Advantageously, the support mechanism 11 includes a telescopic column 110 that is telescopically arranged at the bottom of the base 1, and a support leg 111 is fixed to the bottom of each telescopic column 110. A connecting frame 112 is provided under the base 1, and the connecting frame 112 is fixedly connected to the side of each support leg 111. A movable cavity 113 is provided in the middle of the bottom surface of the base 1, and a screw 114 is rotatably arranged in the movable cavity 113. Two movable blocks 115 are threadedly sleeved on the screw 114, and the movable blocks 115 are slidably arranged in the movable cavity 113. The thread directions of the movable blocks 115 on both sides are opposite to those of the screw 114. A hinged rod 116 is hinged between the bottom of the movable blocks 115 on both sides and the upper end of the connecting frame 112. One end of the screw 114 extends to the outside of the base 1 and is fixed with a turntable 117. A handle 118 is provided at an eccentric position on the outward side of the turntable 117.

[0052] Advantageously, the rope pulling mechanism 7 includes a baffle 70 fixedly arranged on the outer circumferential surface of the spline sleeve 2 32, the baffle 70 is located between the roller 3 and the upright 2, a rope 71 is wound around the outer circumferential surface of the spline sleeve 2 32, the inner end of the rope 71 is fixedly connected to the spline sleeve 2 32, the outer end of the rope 71 is fixed with an insert 72, a socket 73 is provided in the baffle 70, the shape of the socket 73 matches the insert 72, and the insert 72 can be inserted into the socket 73 and fix the end of the rope 71.

[0053] Advantageously, fixing blocks 45 are fixed on the sides of the barrel portion 41 and the cover portion 42. The upper and lower fixing blocks 45 are opposite each other and have through holes extending therethrough. Bolts are inserted into the through holes of the upper and lower fixing blocks 45 on the same side, and the bolts are tightened with nuts to fasten the cover portion 42 to the barrel portion 41.

[0054] In the initial state: the base 3 is at the bottom, the bottoms of the roller 3 and the small wheel 10 are in contact with the ground, the spline shaft 34 is inserted into the spline sleeve 25 below and keyed, the pull rope 71 is in a wound and stored state, the plug block 72 is inserted into the socket 73, the movable blocks 115 on both sides are away from each other, the connecting frame 112 is in the upper limit position, the telescopic column 110 is in a retracted state, 4 is in a vertical state, the cover 42 is in the lower limit position, and the spring 2 36, spring 1 231 and the buffer spring 63 are in a relaxed state.

[0055] When the aluminum alloy liquid needs to be transferred, the screws and nuts fastened to the fixed block 45 are first removed, and the hook is hooked into the lifting ring 62 by a lifting device such as a crane. Then, the lifting ring 62 is lifted upward by the crane, thereby driving the upper hanging plate 61, the hanging rod 60, the lower hanging plate 44, and the cover 42 to rise synchronously, and then the top of the barrel 41 is opened. At this time, the buffer spring 63 is compressed, and the aluminum alloy liquid is transported to the barrel 41 for storage. After storage, the lifting ring 62 is lowered by the crane, and the cover 42 is re-covered on the barrel 41, and the bolts and nuts are re-tightened on the fixed block 45;

[0056] At this time, the base 1 is pushed to move to the side of the truck that needs to be transported. During this process, the roller 3 contacts the ground and rotates, thereby driving the spline sleeve 2 32 and the spline shaft 1 34 to rotate. The spline shaft 1 34 drives the sprocket 1 270 to rotate through the key connection. The sprocket 1 270 drives the sprocket 2 274 to rotate through the chain 275, and then drives the bevel gear 1 521 to rotate through the transmission shaft 272. The bevel gear 1 521 rotates the bevel gear 2 522 through gear meshing. The bevel gear 2 522 drives the spline shaft 2 51 to rotate. The spline shaft 2 51 drives the stirring shaft 430 to rotate through the spline connection, and then drives the stirring rod 432 to stir the aluminum alloy liquid during the transportation process to ensure that the temperature of the aluminum alloy liquid is uniform.

[0057] When the entire transfer mixing device is moved to the side of the truck, the worker holds the handle 118 and rotates the turntable 117, thereby driving the screw 114 to rotate, and then driving the moving blocks 115 on both sides to approach each other through the threaded connection, and then driving the connecting frame 112 to descend through the hinged rod 116, and then driving the support leg 111 to descend to contact the ground, supporting the base 1 firmly, and then manually pulling out the disc 35 and the plug rod 230 on one side. At this time, the spline shaft 34 is pulled out from the bottom spline sleeve 25, and the bottom plug rod 230 is pulled out from the pin hole 24, and the roller is pulled out. The wheel 3 is lifted upward, and when the slider 21 passes the middle latch mechanism 23, the rod 230 is also pulled outward, and the roller 3 continues to move upward. At this time, the top rod 230 is pulled outward. When the slider 21 moves to the upper limit position, the latch hole 24 is aligned with the top positioning hole 22. At this time, the rod 230 is inserted into the latch hole 24 under the elastic force of the spring 1 231 to fix the position of the slider 21. At this time, the pulling action of the disc 35 is released, and the disc 35 is reset under the elastic force of the spring 2 36, and then the spline shaft 1 34 is inserted into the top spline sleeve 1 25, and then the same press is pressed. The above process moves the roller 3 on the other side to the top, and at this time, the fork of the forklift is inserted into the supporting rod 12, and then the entire transfer stirring device is moved to the truck for placement. During the placement process, the opening direction of 30 is facing the driving direction of the vehicle; after each transfer stirring device is adjusted according to the above process and placed on the truck, multiple transfer stirring devices are transported to the customer's site by the truck. During the transportation process, the wind will blow the blades 31 and drive the roller 3 to rotate, and then drive the top spline sleeve 25 to rotate, and then drive the small gear 271 to rotate, and the small gear 271 drives the large gear 273 to rotate at a reduced speed through meshing, thereby driving the transmission shaft 272 to rotate, and then driving the stirring rod 432 to stir, so that stirring can be performed during transportation by car. During transportation, the support legs 111 and the connecting frame 112 are in contact with the bottom of the car to ensure the stability of the entire device during transportation. In addition, due to the meshing of the worm 280 and the worm wheel 281, the worm wheel 281 cannot drive the worm 280 to rotate, achieving a self-locking effect. At the same time, combined with the restriction of the suspension component 6 on the stirring barrel 4, the stirring barrel 4 will not swing, ensuring the stability of transportation;

[0058] After the transfer stirring device of the present invention is transported to the customer's site, a forklift is inserted into the support rod 12 to remove the transfer stirring device from the truck and place it on the ground. Then, a worker resets the roller 3 to its initial state, reverses the turntable 117, and raises and resets the support legs 111 and the connecting frame 112. At this time, the worker moves each transfer stirring device to the place where the aluminum alloy liquid is needed. During this process, the rotation of the roller 3 continues to drive the stirring rod 432 to stir.

[0059] After moving to the site where the aluminum alloy liquid is used, if the position where the aluminum alloy liquid needs to be poured is higher, first pull out the disc 35 and the rod 230, then move the roller 3 up until the slider 21 is aligned with the middle positioning hole 22, and the middle rod 230 is inserted into the pin hole 24 under the elastic force. At this time, manually take out the plug block 72 from the socket 73 and rotate the roller 3 to release the pull rope 71. The length of the released pull rope 71 meets the requirements of subsequent use. At this time, release the disc 35, insert the spline shaft 34 into the middle spline sleeve 25, hook the crane's hook on the lifting ring 62, and remove the bolts on the fixing block 45 at the same time. At this time, the crane controls the hook to rise, and then lifts the barrel 41 until the stirring shaft 430 is moved out to above the cover 42. At this time, as the lifting ring 62 rises, the barrel 41 is slowly lifted. After the impact spring 63 is fully compressed, it drives the crossbeam 5 to rise, and then drives the entire transfer and stirring device to rise and move to the position where the aluminum alloy liquid needs to be poured. At this time, the pull ropes 71 on both sides are manually pulled, thereby driving the roller 3 to rotate, and then driving the spline sleeve 1 25 in the middle to rotate, and then driving the worm 280 to rotate and driving the worm gear 281 to rotate through meshing, the worm gear 281 drives the bevel gear 3 282 to rotate, and the bevel gear 3 282 drives the bevel gear 4 283 to rotate through meshing, and then drives the top of the barrel part 41 to flip toward the side of the limit plate 13 through the rotating shaft 40. When the barrel part 41 flips to the top beyond the edge of the base 1, the aluminum alloy liquid begins to pour out; if the position where the aluminum alloy liquid needs to be poured is lower, there is no need to release the pull rope 71, and the roller 3 can be directly rotated manually;

[0060] After all the aluminum alloy liquid in the barrel part 41 is poured out, the base 1 is first touched to the ground by a crane. At this time, the roller 3 is reversed quickly by manual operation and the pull rope 71 is reeled in. The barrel part 41 is flipped over and reset to be against the limit plate 13. At this time, the roller 3 cannot be rotated. The plug block 72 is reinserted into the socket 73, and the crane is lowered again. The cover part 42 moves down under the elastic force of the buffer spring 63 until it is tightly against the upper surface of the barrel part 41. At this time, the bolts and nuts are re-tightened on the fixing block 45. At this time, the roller 3 can be reset to the bottom, which is convenient for the entire transfer and stirring device to be transported back and continued to be used.

[0061] The above embodiments are intended only to illustrate the technical concepts and features of the present invention. Their purpose is to enable those skilled in the art to understand and implement the present invention. They are not intended to limit the scope of protection of the present invention. Any equivalent changes or modifications made in accordance with the spirit of the present invention are intended to be covered by the scope of protection of the present invention.

Claims

1. An aluminum alloy liquid transport and stirring device, comprising a base (1), characterized in that: The top two sides of the base (1) are symmetrically fixed with vertical rods (2), and the vertical rods (2) are provided with a sliding groove (20) on the side away from each other. A slider (21) is slidably provided in the sliding groove (20), and three positioning holes (22) are provided on the side of the slider (21) from top to bottom. Each positioning hole is provided with a latch mechanism (23), and the positioning hole (22) is provided with a latch hole (24) on the side facing the slider (21). When the latch hole (24) is aligned with any one of the positioning holes (22), the latch mechanism (23) at the corresponding position will be inserted into the latch hole (24), thereby fixing the position of the slider (21). The slider (21) is provided with three spline sleeves (25) distributed up and down and rotatably on the side away from the opening. The three spline sleeves (25) are provided. The position of the first and second positioning holes (25) corresponds to the position of the three positioning holes (22), the slide groove (20) is provided with a roller (3) on the side away from the symmetry center, the outer circumferential surface of the roller (3) is provided with a groove (30), and the inner annular array of blades (31) in the groove (30) is provided, and a spline sleeve (32) is fixedly passed through the center axis of the roller (3), and the inner end of the spline sleeve (32) passes through the slider (21) on the corresponding side and is rotatably connected, and a push-pull rod (33) that can slide is coaxially provided in the spline sleeve (32), and a spline shaft (34) is fixed on the inner end of the push-pull rod (33), and the spline shaft (34) can slide in the spline sleeve (32) and be key-connected, and the spline shaft (34) can be inserted into each of the spline sleeves (25) and be key-connected; A transmission cavity (26) is provided in the vertical rods (2) on both sides and on the side of the slide groove (20) away from the opening. The spline sleeves (25) extend into the transmission cavity (26). A transmission mechanism (27) is connected between the spline sleeves (25) at the bottom and the top. A mixing barrel (4) is provided between the vertical poles (2) on both sides. The two sides of the mixing barrel (4) are rotatably connected to the vertical poles (2) on both sides via a rotating shaft (40). A transmission mechanism (28) is connected between the rotating shaft (40) and the spline sleeve (25) located in the middle. The mixing barrel (4) includes a barrel portion (41) and a cover portion (42). The cover portion (42) is provided with a mixing mechanism (43) located inside the barrel portion (41). A lower hanging plate (44) is fixed to the top of the cover portion (42) via a connecting rod. A crossbeam (43) fixed between the vertical poles (2) on both sides is provided above the lower hanging plate (44). 5), a suspension assembly (6) is further provided above the lower hanging plate (44), the suspension assembly (6) includes a suspension rod (60) fixedly connected to the top of the lower hanging plate (44), the suspension rod (60) passes through the crossbeam (5) upward and is fixed with an upper hanging plate (61), the top of the upper hanging plate (61) is fixed with a suspension ring (62), the bottom of the crossbeam is provided with a spline shaft 2 (51) for rotation, the bottom of the spline shaft 2 (51) passes through the lower hanging plate (44) and is connected to the stirring mechanism (43), and the top of the spline shaft 2 (51) is connected to the transmission mechanism 2 (28) through the transmission mechanism 3 (52); Small wheels (10) are rotatably provided on both sides of the base (1), and a supporting mechanism (11) is provided at the bottom of the base (1); The outer circumferential surface of the second spline sleeve (32) is provided with a pull rope mechanism (7), and the second spline sleeve (32) can be pulled to rotate by the pull rope mechanism (7).

2. The aluminum alloy liquid transport and stirring device according to claim 1, characterized in that: Two parallel supporting rods (12) are fixed to the bottom of the base (1), and slots are provided in the supporting rods (12), into which the forks of the forklift can be inserted; a limit plate (13) is fixed to the top of the base (1), and the limit plate can be abutted against the side of the mixing barrel (4); a disc (35) is fixed to the outward end of the push-pull rod (33), and a spring 2 (36) is fixedly connected between the disc (35) and the outer surface of the roller (3); the suspension rods (60) are arranged in an array and located on the side of the transmission mechanism 3 (52), and a buffer spring (63) is provided around the outer periphery of each suspension rod (60), and the buffer spring (63) is fixed between the lower suspension plate (44) and the crossbeam (5).

3. The aluminum alloy liquid transport and stirring device according to claim 1, characterized in that: The latch mechanism (23) comprises an insertion rod (230) slidably arranged in the positioning hole (22), and a spring (231) is fixedly connected between an outward end of the insertion rod (230) and the outer surface of the vertical rod (2).

4. The aluminum alloy liquid transport and stirring device according to claim 1, characterized in that: The transmission mechanism (27) includes a sprocket (270) fixedly arranged on the outer circumference of the spline sleeve (25) at the bottom, a pinion (271) fixedly arranged on the outer circumference of the spline sleeve (25) at the top, a transmission shaft (272) penetrating the crossbeam (5) is rotatably arranged between the vertical rods (2) on both sides, and a large gear (273) is fixed on the outer circumference of both ends of the transmission shaft (272) in the transmission cavity (26) on both sides, and the large gear (273) is meshed with the small gear (271), and the large gear (273) is driven by the small gear (271) to rotate at a reduced speed, and a sprocket (274) fixed on the outer circumference of the transmission shaft (272) is provided on one side of the large gear (273), and a chain (275) is connected between the sprocket (274) and the sprocket (270).

5. The aluminum alloy liquid transport and stirring device according to claim 4, characterized in that: The transmission mechanism three (52) includes a transmission chamber two (520) arranged in the crossbeam (5), the transmission shaft (272) passes through the two side walls of the transmission chamber two (520), a bevel gear one (521) is fixed on the outer cylindrical surface of the transmission shaft (272) and located in the transmission chamber two (520), and the upper end of the spline shaft two (51) extends to the transmission chamber two (520) and is fixed with a bevel gear two (522), and the bevel gear two (522) is meshed with the bevel gear one (521).

6. The aluminum alloy liquid transport and stirring device according to claim 1, characterized in that: The transmission mechanism 2 (28) includes a worm (280) located in the middle of the spline sleeve 1 (25) facing the side of the mixing barrel (4), and a worm wheel (281) is provided at the bottom of the worm (280) and is rotatably arranged between the two side walls of the transmission chamber 1 (26). A bevel gear 3 (282) is coaxially fixed to one side of the worm wheel (281). The end of the rotating shaft (40) extends into the transmission chamber 1 (26) and is fixed with a bevel gear 4 (283), and the bevel gear 4 (283) is meshed with the bevel gear 3 (282).

7. The aluminum alloy liquid transporting and stirring device according to claim 1, characterized in that: The stirring mechanism (43) includes a stirring shaft (430) that passes through the upper and lower parts and is rotatably arranged on the cover (42). A spline hole (431) is opened upward in the stirring shaft (430). The bottom end of the second spline shaft (51) extends into the spline hole (431) and is spline-connected. The spline holes (431) are located in a rounded array inside and outside the barrel (41) and are fixed with stirring rods (432).

8. The aluminum alloy liquid transport and stirring device according to claim 1, characterized in that: The support mechanism (11) includes a telescopic column (110) which is telescopically arranged at the bottom of the base (1) and is arranged to extend upward and downward. A support leg (111) is fixed to the bottom of each telescopic column (110). A connecting frame (112) is provided below the base (1). The connecting frame (112) is fixedly connected to the side of each support leg (111). A movable cavity (113) is provided in the middle of the bottom surface of the base (1). A screw (114) is rotatably arranged in the movable cavity (113). A threaded sleeve is provided on the screw (114). There are two moving blocks (115), the moving blocks (115) are slidably arranged in the moving cavity (113), the thread directions of the moving blocks (115) on both sides connected to the screw rod (114) are opposite, and a hinge rod (116) is hinged between the bottom of the moving blocks (115) on both sides and the upper end of the connecting frame (112), one end of the screw rod (114) extends to the outside of the base (1) and is fixed with a turntable (117), and a handle (118) is provided at an eccentric position on the outward side of the turntable (117).

9. The aluminum alloy liquid transporting and stirring device according to claim 1, characterized in that: The rope pulling mechanism (7) includes a baffle (70) fixedly arranged on the outer circumference of the second spline sleeve (32), the baffle (70) is located between the roller (3) and the vertical rod (2), a rope (71) is wound around the outer circumference of the second spline sleeve (32), the inner end of the rope (71) is fixedly connected to the second spline sleeve (32), and the outer end of the rope (71) is fixed with an insert (72), a socket (73) is provided in the baffle (70), the shape of the socket (73) matches the insert (72), and the insert (72) can be inserted into the socket (73) and fix the end of the rope (71).

10. The aluminum alloy liquid transporting and stirring device according to claim 1, characterized in that: The sides of the barrel portion (41) and the cover portion (42) are both fixed with fixing blocks (45), and the upper and lower fixing blocks (45) are opposite to each other and are penetrated by through holes.

Citation Information

Patent Citations

  • Pesticide spraying machine with traction device and convenient stirring

    CN109122636A

  • Aquatic products fodder mixing machine

    CN207562740U