Wine jar transfer equipment

The wine jars are elastically fixed at multiple angles by a cylinder-driven pressure plate and spring system, combined with the auxiliary fixing of rubber blocks and plastic plates, which solves the problem of shaking during transportation and achieves efficient and safe transfer.

CN121020003APending Publication Date: 2025-11-28CHONGQING ZHONGTIAN CERAMICS CO LTD
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Patent Information

Application Number
CN202511377826.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-25
Publication Date
2025-11-28

AI Technical Summary

Technical Problem

Existing wine jar transfer equipment cannot effectively reduce shock during transportation, causing the wine jars to wobble on uneven surfaces, posing a risk of them falling out of their fixed positions and affecting handling efficiency and safety.

Method used

The pressure plate and spring system driven by a cylinder are used to elastically fix the left and right sides and the top and bottom sides of the wine jar. Combined with the auxiliary fixation of rubber blocks and plastic plates, the fixation effect of the wine jar is enhanced in multiple ways to adapt to the shaking of different road conditions.

Benefits of technology

This improves the safety and stability of the wine jars during transportation, reduces the risks caused by shaking, ensures that the wine jars do not loosen during diversified transportation, and improves transfer efficiency and quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of wine jar transfer, and particularly discloses wine jar transfer equipment which comprises a transfer box and further comprises a placing box and a plurality of transfer mechanisms arranged in the placing box at equal intervals in the length direction of the placing box. The transferring mechanism comprises an air cylinder, a pressing plate, a transferring block, a containing block, a groove formed in the transferring block and transferring assemblies symmetrically arranged on the two sides of the groove in the width direction of the groove. The cylinder is fixedly connected with the top of the placing box; an output shaft of the cylinder is fixedly connected with the pressing plate; the pressing plate can slide in and out of the groove; the transfer block is fixedly connected with the placing box; the transfer assembly comprises a guide cylinder, a sliding block, a first spring, a cavity formed in the transfer block and a transfer part arranged in the cavity. The guide cylinder is fixedly connected with the groove; the sliding block is in sliding connection with the guide cylinder; the two ends of the first spring are slidably connected with the sliding block and the guide cylinder correspondingly. The placing block is fixedly connected with the sliding block; and the cavity is communicated with the groove. The problem that an existing transferring device cannot conduct damping on a fixed wine jar in the transferring period is solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of wine jar transfer, in particular to a wine jar transfer equipment. BACKGROUND

[0002] For a large ceramic wine jar that has been completed, it needs to be transported and loaded onto a vehicle or transported to a designated storage location in the factory. When workers carry the wine jar, they need to tie it with a rope and then carry it. After the workers have carried it, the knot of the rope will tighten under the force, and it will take a long time to untie it, thereby affecting the efficiency of carrying the wine jar.

[0003] To solve the above problems, a wine jar transfer frame is disclosed in Chinese Patent No. CN214493015U, which includes a square frame. Four corners of the square frame are respectively connected with support columns by welding. A bottom plate is provided below the square frame, and the edge of the bottom plate is connected with the side of the support column by welding. A universal wheel is provided at the bottom end of the support column. A screw rod is provided through the main body of the support column, and the screw rod is connected with the support column by screwing. A fixed plate is connected with one end of the screw rod close to the square frame. A rubber pad is provided on the side of the fixed plate away from the screw rod. The other end of the screw rod is provided with a handle. When in use, the wine jar is placed on the bottom plate, and the position of the fixed plate is further adjusted by rotating the screw rod with the handle, so that the rubber pad contacts the wine jar, thereby clamping and fixing the wine jar. The universal wheel facilitates the movement of the device, and improves the efficiency of carrying the wine jar.

[0004] The above device has the following problems in actual use: During the transportation of the wine jar, if the road surface is uneven, i.e. there are concave and convex parts on the road surface, the transfer frame is prone to shaking, and the device cannot overcome the loosening of the contact between the rubber pad and the wine jar caused by the shaking of the transfer frame during the transfer of the wine jar. During the shaking of the wine jar, the wine jar is prone to disengaging from the contact with the rubber pad, i.e. there is a certain risk. SUMMARY

[0005] The present application provides a wine jar transfer equipment to solve the problem that the existing transfer equipment cannot dampen the fixed wine jar during transfer.

[0006] In order to achieve the above object, the technical scheme adopted by the present application is as follows: a wine jar transfer equipment, comprising a transfer box, further comprising a placing box, a plurality of transfer mechanisms equidistantly arranged in the placing box along the length direction of the placing box; the transfer mechanism comprises a pneumatic cylinder, a pressing plate, a transfer block, a placing block, a groove opened on the transfer block, a transfer assembly symmetrically arranged on both sides of the groove along the width direction of the groove; the pneumatic cylinder is fixedly connected with the top of the placing box, and the output shaft of the pneumatic cylinder is fixedly connected with the pressing plate; the pressing plate can slide in and out of the groove; the transfer block is fixedly connected with the placing box; the transfer assembly comprises a guide cylinder, a sliding block, a first spring, a cavity opened on the transfer block, and a transfer part arranged in the cavity; the guide cylinder is fixedly connected with the groove; the sliding block is slidingly connected with the guide cylinder; the two ends of the first spring are slidingly connected with the sliding block and the guide cylinder respectively; the placing block is fixedly connected with the sliding block; the cavity is communicated with the groove; the transfer part comprises a fixing block, a bottom block, an outer block, an inner block, a second spring, and a sliding groove opened on the outer block; the fixing block is fixedly connected with the placing block; the bottom block is fixedly connected with the fixing block; the outer block is connected with the bottom block; the inner block is slidingly connected with the sliding groove; the two ends of the second spring are connected with the inner block and the sliding groove respectively.

[0007] The principle and advantages of the present application are as follows: Adjust the distance between the two inner blocks, and then place the wine jar on the placing block, so that the two sides of the wine jar are fixed under the action of the inner block and the second spring. After the wine jar is elastically fixed by the inner block and the second spring, it can ensure that the left and right sides of the wine jar have a certain elastic space during transportation, thereby avoiding the risk of loosening of the left and right sides of the wine jar and improving the safety of the wine jar during transportation.

[0008] After the left and right sides of the wine jar are fixed, the output shaft of the pneumatic cylinder first drives the pressing plate to contact the top of the wine jar, and then drives the pressing plate to do vertical reciprocating motion. Therefore, through the joint action of the pressing plate and the first spring, the upper and lower sides of the wine jar can be elastically fixed, thereby ensuring that the upper and lower sides of the wine jar have a certain elastic space during transportation, so as to avoid the risk of the upper and lower sides of the wine jar being shaken by the transfer box.

[0009] In summary, through the elastic fixation of the left and right sides of the wine jar and the elastic fixation of the upper and lower sides of the wine jar, the sufficiency and comprehensiveness of the elastic fixation of the wine jar are improved, thereby reducing the hidden trouble caused by shaking of the transfer box during transfer and ensuring that the wine jar can be fixed with high quality.

[0010] Further, the transfer part further comprises an auxiliary unit; the auxiliary unit comprises an auxiliary shaft, a cam, a third spring, a bottom groove opened on the bottom block, and an auxiliary member for driving the auxiliary shaft to rotate; the auxiliary shaft is rotatably connected with the bottom block; the cam is fixedly connected with the auxiliary shaft and abuts against the outer block; the outer block is slidingly connected with the bottom groove; the two ends of the third spring are connected with the outer block and the bottom groove respectively.

[0011] Through the combined action of the cam and the third spring, the outer block drives the inner block to reciprocate along the length of the base block. During the movement of the outer block, the lateral clamping force of the inner block on the wine jar is further increased, thereby making the left and right sides of the wine jar more stable and providing greater flexibility in the elastic fixation of the wine jar. This ensures that the left and right sides of the wine jar can adapt to a greater degree of shaking, thus improving the quality of fixing the left and right sides of the wine jar.

[0012] Furthermore, the transfer unit also includes a linkage unit; the linkage unit includes a first guide rod, a first nut seat, a linkage plate, a rubber block, a through hole in the rubber block, and a linkage component for driving the first nut seat to reciprocate along the length of the first guide rod; the first guide rod is fixedly connected to the fixed block; the first nut seat is slidably connected to the first guide rod; the linkage plate is fixedly connected to the first nut seat; the rubber block is fixedly connected to the linkage plate; the outer block can slide in and out of the through hole.

[0013] The rubber blocks are designed to assist in securing the inner blocks, thereby enhancing the fixation of the left and right sides of the wine jar and enriching the variety of elastic fixation methods for the left and right sides of the wine jar.

[0014] The rubber block is designed to reciprocate along the length of the first guide rod, allowing it a certain deformation range. This provides the rubber block with a deformation force and adjusts the contact area between the rubber block and the wine jar. Therefore, the deformation of the rubber block further enhances its auxiliary fixing effect, improving the efficiency and quality of its grip on the wine jar.

[0015] The outer block can slide within the through hole to protect the rubber block from deformation, avoiding the risk of the rubber block breaking due to excessive deformation. This enhances the fixing effect of the rubber block and ensures that the rubber block can be stably and efficiently working.

[0016] Furthermore, the transfer unit also includes a shaping unit; the shaping unit includes a second guide rod, a power component, and shaping components symmetrically arranged at both ends of the second guide rod along its width direction; the second guide rod is fixedly connected to the bottom block; the shaping component includes a second nut seat and a shaping plate; the second nut seat is slidably connected to the second guide rod; the shaping plate is fixedly connected to the second nut seat; the rubber block is located on the movement trajectory of the shaping plate; the power component is used to drive the two second nut seats to move closer to each other and further away along the length direction of the second guide rod.

[0017] By moving the two shaping plates closer together or further apart, the plates guide the deformation direction of the rubber block, thus concentrating the deformation force of the rubber block onto the wine jar. In other words, the shaping plates further enhance the clamping effect of the rubber block, improving its clamping efficiency and quality.

[0018] Furthermore, the transfer assembly also includes a pressing part; the pressing part includes a side block, a pressing cylinder, a pressing block, a fourth spring, a pressing hole on the pressure plate, and a drive unit for driving the pressing cylinder to perform vertical reciprocating motion; the side block is fixedly connected to the groove; the pressing cylinder is slidably connected to the side block; the pressing block is slidably connected to the pressing cylinder, and the pressing block can slide in and out of the pressing hole; the two ends of the fourth spring are respectively connected to the pressing block and the pressing cylinder.

[0019] When the wine jar is placed on the placement block, the combined action of the pressing block and the fourth spring causes the pressing block to exert a vertical force on the wine jar. Through cooperation with the pressure plate, it is ensured that both the top and bottom sides of the wine jar are subjected to a pressing force, thereby improving the sufficiency and comprehensiveness of fixing the top and bottom sides of the wine jar and ensuring the quality of fixing the top and bottom sides of the wine jar.

[0020] During the vertical reciprocating motion of the pressure plate, the pressure cylinder drives the pressure block to also reciprocate vertically, thereby giving the pressure block a certain elastic force in the vertical direction. This allows the pressure block to more comprehensively and elastically fix the wine jar. Through this movement, the variety of elastic fixation methods for the wine jar by the pressure block is enriched, enabling the wine jar to further overcome shaking during transportation, thus ensuring that the wine jar can adapt to diverse transportation processes.

[0021] Furthermore, the auxiliary components include a rotating shaft, a first gear, a first rack, a first bevel gear, and a second bevel gear; the rotating shaft is rotatably connected to the fixed block; the first gear and the first bevel gear are both fixedly connected to the rotating shaft; the first rack is fixedly connected to the chamber, and the first gear meshes with the first rack; the second bevel gear is fixedly connected to the auxiliary shaft, and the first bevel gear meshes with the second bevel gear.

[0022] During the vertical reciprocating motion of the shaft, the first gear meshes with the first rack, thereby driving the shaft to rotate. During the rotation of the shaft, the auxiliary shaft rotates through the meshing of the first bevel gear and the second bevel gear.

[0023] Furthermore, the linkage component is a one-way screw; the one-way screw is rotatably connected to the fixed block, and the one-way screw is fixedly connected to the rotating shaft; the first nut seat is threadedly connected to the one-way screw.

[0024] During the rotation of the shaft, the one-way screw rotates synchronously. During the rotation of the one-way screw, the first nut seat can reciprocate along the length of the first guide rod.

[0025] Furthermore, the power component includes a bidirectional screw, a second gear, a second rack, and a top groove on the outer block; the bidirectional screw is rotatably connected to the bottom block; the second gear is fixedly connected to the bidirectional screw; the second rack is fixedly connected to the top groove, and the second rack meshes with the second gear.

[0026] During the reciprocating motion of the outer block along the length of the bottom block, the second rack moves synchronously. During the movement of the second rack, the second rack drives the bidirectional screw to rotate through the second gear.

[0027] Furthermore, the drive unit includes a drive shaft, a third gear, a third rack, a side groove on the pressure cylinder, and a drive component for driving the drive shaft to rotate; the drive shaft is rotatably connected to the groove; the third gear is fixedly connected to the drive shaft; the third rack is fixedly connected to the side groove, and the third rack meshes with the third gear.

[0028] The drive shaft is driven to rotate by the drive component, and the third gear rotates synchronously during the rotation of the drive shaft. During the rotation of the third gear, the third gear meshes with the third rack, which in turn drives the pressure cylinder to make vertical reciprocating motion along the length of the side block.

[0029] Furthermore, the driving component includes a fourth rack and a side groove on the slider; the fourth rack is fixedly connected to the side groove and meshes with the third gear.

[0030] During the vertical reciprocating motion of the slider, the fourth rack moves synchronously. During the movement of the fourth rack, it meshes with the third gear, which in turn drives the drive shaft to rotate. Attached Figure Description

[0031] Figure 1 This is a schematic diagram of an embodiment of a wine jar transfer device according to the present invention.

[0032] Figure 2 for Figure 1 A schematic diagram of the internal structure of the box placed in the middle.

[0033] Figure 3 for Figure 2 A schematic diagram of the internal structure of the chambers and grooves of the transfer block.

[0034] Figure 4 for Figure 3 Enlarged view of point A in the middle.

[0035] Figure 5 for Figure 3 Enlarged view of point B in the middle.

[0036] Figure 6 for Figure 3 A magnified view of point C in the middle. Detailed Implementation

[0037] The following detailed description illustrates the specific implementation method: The reference numerals in the accompanying drawings of the instruction manual include: 1. Placement box; 2. Cylinder; 3. Pressure plate; 4. Transfer block; 5. Placement block; 6. Guide cylinder; 7. Slider; 8. Fixing block; 9. Bottom block; 10. Outer block; 11. Inner block; 12. Auxiliary shaft; 13. Cam; 14. First guide rod; 15. First nut seat; 16. Linkage plate; 17. Rubber block; 18. Second guide rod; 19. Second nut seat; 20. Shaping plate; 21. Side block; 22. Pressing cylinder; 23. Pressing block; 24. Rotating shaft; 25. First gear; 26. First bevel gear; 27. Second bevel gear; 28. One-way screw; 29. ​​Two-way screw; 30. Second gear; 31. Second rack; 32. Drive shaft; 33. Third gear; 34. Fourth rack; 35. Groove; 36. Through hole; 37.

[0038] The basic implementation examples are as follows: Figure 1 , 2 As shown in points 3, 4, 5, and 6: An embodiment of the present invention provides a wine jar transfer device, including a transfer box (not shown in the figure), the transfer box being equipped with several casters, a placement box 1, and several transfer mechanisms equidistantly arranged within the placement box 1 along its length; each transfer mechanism includes a cylinder 2, a pressure plate 3, a transfer block 4, a placement block 5, a groove 36 formed in the transfer block 4, and transfer components symmetrically arranged on both sides of the groove 36 along its width; the cylinder 2 is fixedly connected to the top of the placement box 1, and the output shaft of the cylinder 2 is fixedly connected to the pressure plate 3; the pressure plate 3 is located above the groove 36 and can slide in and out of the groove 36; the transfer block 4 is fixedly connected to the placement box 1, and adjacent transfer blocks 4 are fixedly connected; the transfer components include a guide cylinder 6. The system includes a slider 7, a first spring, a chamber on the transfer block 4, and a transfer section located within the chamber; a guide cylinder 6 is fixedly connected to the bottom of the groove 36; the slider 7 is slidably connected to the inner wall of the guide cylinder 6; the first spring is located inside the guide cylinder 6, and its two ends are slidably connected to the slider 7 and the guide cylinder 6 respectively; a placement block 5 is fixedly connected to the two sliders 7; the chamber communicates with the groove 36; the transfer section includes a fixed block 8, a bottom block 9, an outer block 10, an inner block 11, a second spring, and a sliding groove on the outer block 10; the fixed block 8 is fixedly connected to the placement block 5; the bottom block 9 is fixedly connected to the fixed block 8; the outer block 10 is connected to the bottom block 9; the inner block 11 is slidably connected to the sliding groove; the second spring is located inside the bottom groove, and its two ends are connected to the inner block 11 and the sliding groove respectively.

[0039] The transfer unit also includes an auxiliary unit; the auxiliary unit includes an auxiliary shaft 12, a cam 13, a third spring, a bottom groove on the bottom block 9, and an auxiliary component for driving the auxiliary shaft 12 to rotate; the auxiliary shaft 12 is rotatably connected to the bottom block 9; the cam 13 is fixedly connected to the auxiliary shaft 12 and abuts against the outer block 10; the outer block 10 is slidably connected to the bottom groove; the third spring is located in the bottom groove, and the two ends of the third spring are respectively connected to the outer block 10 and the bottom groove.

[0040] The transfer unit also includes a linkage unit; the linkage unit includes a first guide rod 14, a first nut seat 15, a linkage plate 16, a rubber block 17, a through hole 37 on the rubber block 17, and a linkage component for driving the first nut seat 15 to reciprocate along the length of the first guide rod 14; the first guide rod 14 is fixedly connected to the fixed block 8; the first nut seat 15 is slidably connected to the first guide rod 14; the linkage plate 16 is fixedly connected to the first nut seat 15; the rubber block 17 is fixedly connected to the linkage plate 16; the outer block 10 can slide in and out of the through hole 37.

[0041] The transfer unit also includes a shaping unit; the shaping unit includes a second guide rod 18, a power component, and shaping components symmetrically arranged at both ends of the second guide rod 18 along its width direction; the second guide rod 18 is fixedly connected to the bottom block 9; the shaping components include a second nut seat 19 and a shaping plate 20; the second nut seat 19 is slidably connected to the second guide rod 18; the shaping plate 20 is fixedly connected to the second nut seat 19; the rubber block 17 is located on the movement trajectory of the shaping plate 20; the power component is used to drive the two second nut seats 19 to move closer and further apart along the length direction of the second guide rod 18.

[0042] The transfer assembly also includes a pressing part; the pressing part includes a side block 21, a pressing cylinder 22, a pressing block 23, a fourth spring, a pressing hole on the pressure plate 3, and a drive unit for driving the pressing cylinder 22 to perform vertical reciprocating motion; the side block 21 is fixedly connected to the groove 36; the pressing cylinder 22 is slidably connected to the side block 21; the pressing block 23 is slidably connected to the pressing cylinder 22, and the pressing block 23 can slide in and out of the pressing hole; the fourth spring is located inside the pressing cylinder 22, and the two ends of the fourth spring are respectively connected to the inner wall of the pressing block 23 and the inner wall of the pressing cylinder 22.

[0043] The auxiliary components include a rotating shaft 24, a first gear 25, a first rack 26, a first bevel gear 27, and a second bevel gear 28; the rotating shaft 24 is rotatably connected to the fixed block 8; the first gear 25 and the first bevel gear 27 are both fixedly connected to the rotating shaft 24; the first rack 26 is fixedly connected to the chamber, and the first gear 25 meshes with the first rack 26; the second bevel gear 28 is fixedly connected to the auxiliary shaft 12, and the first bevel gear 27 meshes with the second bevel gear 28.

[0044] The linkage component is a one-way screw 29; the one-way screw 29 is rotatably connected to the fixed block 8, and the one-way screw 29 is fixedly connected to the rotating shaft 24; the first nut seat 15 is threadedly connected to the one-way screw 29.

[0045] The power component includes a bidirectional screw 30, a second gear 31, a second rack 32, and a top groove on the outer block 10; the bidirectional screw 30 is rotatably connected to the bottom block 9; the second gear 31 is fixedly connected to the bidirectional screw 30; the second rack 32 is fixedly connected to the top groove, and the second rack 32 meshes with the second gear 31.

[0046] The drive unit includes a drive shaft 33, a third gear 34, a third rack, a side groove on the pressure cylinder 22, and a drive component for rotating the drive shaft 33; the drive shaft 33 is rotatably connected to the groove 36; the third gear 34 is fixedly connected to the drive shaft 33; the third rack is fixedly connected to the side groove, and the third rack meshes with the third gear 34.

[0047] The driving component includes a fourth rack 35 and a side groove on the slider 7; the fourth rack 35 is fixedly connected to the side groove and meshes with the third gear 34; the movement direction of the third rack is opposite to the movement direction of the fourth rack 35.

[0048] Specific implementation process: When the wine jar needs to be transported, first adjust the distance between the two inner blocks 11, then place the wine jar onto the placement block 5. This fixes both sides of the wine jar under the action of the inner blocks 11 and the second spring. After the wine jar is elastically fixed by the inner blocks 11 and the second spring, it ensures that there is a certain amount of elastic space on both sides of the wine jar during transportation, thereby avoiding the risk of loosening on both sides and improving the safety of the wine jar during transportation.

[0049] After the left and right sides of the wine jar are initially secured, cylinder 2 is activated. First, the output shaft of cylinder 2 drives the pressure plate 3 to contact the top of the wine jar. Then, the output shaft of cylinder 2 drives the pressure plate 3 to perform a vertical reciprocating motion. Therefore, through the combined action of the pressure plate 3 and the first spring, the upper and lower sides of the wine jar are elastically secured. This ensures that the upper and lower sides of the wine jar have a certain amount of elastic space during transportation, thus preventing the risks caused by the shaking of the transport box.

[0050] During the vertical reciprocating motion of block 5, slider 7 moves synchronously. During the vertical reciprocating motion of slider 7, fourth rack 35 moves synchronously. During the movement of fourth rack 35, fourth rack 35 meshes with third gear 34, thereby driving drive shaft 33 to rotate.

[0051] During the rotation of the drive shaft 33, the third gear 34 rotates synchronously. During the rotation of the third gear 34, the third gear 34 meshes with the third rack, which in turn drives the pressure cylinder 22 to make vertical reciprocating motion along the length of the side block 21.

[0052] When the wine jar is placed on the placement block 5, the combined action of the pressing block 23 and the fourth spring causes the pressing block 23 to exert a vertical force on the wine jar. Through cooperation with the pressure plate 3, it is ensured that both the upper and lower sides of the wine jar are subjected to a pressing force, thereby improving the sufficiency and comprehensiveness of fixing the upper and lower sides of the wine jar and ensuring the quality of fixing the upper and lower sides of the wine jar.

[0053] During the vertical reciprocating motion of the pressure plate 3, the pressure cylinder 22 drives the pressure block 23 to perform vertical reciprocating motion, thereby giving the pressure block 23 a certain elastic force in the vertical direction. This allows the pressure block 23 to more comprehensively and elastically fix the wine jar. Through the above-mentioned motion, the variety of elastic fixation of the wine jar by the pressure block 23 is enriched, enabling the wine jar to further overcome the shaking caused during transportation, thus ensuring that the wine jar can adapt to diversified transportation processes.

[0054] While the upper and lower sides of the wine jar are fully fixed, the vertical reciprocating motion of the rotating shaft 24 causes the first gear 25 to mesh with the first rack 26, thereby driving the rotating shaft 24 to rotate. During the rotation of the rotating shaft 24, the rotating shaft 24 drives the auxiliary shaft 12 to rotate through the meshing of the first bevel gear 27 and the second bevel gear 28.

[0055] During the rotation of the auxiliary shaft 12, the cam 13 rotates synchronously. During the rotation of the cam 13, when the protrusion of the cam 13 abuts against the outer block 10, the outer block 10 drives the inner block 11 to move closer to the groove 36, and the third spring is compressed; when the protrusion of the cam 13 no longer abuts against the outer block 10, the third spring returns to its original position, and the outer block 10 drives the inner block 11 to move away from the groove 36. Therefore, the outer block 10 can reciprocate along the length of the bottom block 9.

[0056] During the movement of the outer block 10, the lateral clamping force of the inner block 11 on the wine jar can be further increased, thereby making the left and right sides of the wine jar more stable and the elastic fixation of the wine jar more flexible, ensuring that the left and right sides of the wine jar can adapt to a greater degree of shaking, that is, improving the quality of fixing the left and right sides of the wine jar.

[0057] The rubber block 17 is designed to assist in the elastic fixation of the inner block 11, thereby enhancing the fixation effect on the left and right sides of the wine jar and enriching the diversity of elastic fixation on the left and right sides of the wine jar.

[0058] During the rotation of the unidirectional screw 29, the first nut seat 15 drives the rubber block 17 to reciprocate along the length of the base block 9 via the linkage plate 16. The rubber block 17 is designed to reciprocate along the length of the first guide rod 14, allowing it a certain deformation space. This provides the rubber block 17 with a deformation force and adjusts the contact area between the rubber block 17 and the wine jar. Therefore, the deformation of the rubber block 17 further enhances its auxiliary fixing effect, improving the efficiency and quality of its grip on the wine jar.

[0059] The outer block 10 can slide within the through hole 37 to protect the rubber block 17 from deformation, thus avoiding the risk of the rubber block 17 breaking due to excessive deformation. This enhances the fixing effect of the rubber block 17 and ensures that the rubber block 17 can be stably and efficiently working.

[0060] During the reciprocating motion of the outer block 10 along the length of the bottom block 9, the second rack 32 moves synchronously. During the movement of the second rack 32, the second rack 32 drives the bidirectional screw 30 to rotate through the second gear 31. During the rotation of the bidirectional screw 30, the two second nut seats 19 can continuously move closer or further away along the length of the second guide rod 18, that is, the two plastic plates 20 can continuously move closer or further away from each other.

[0061] By moving the two shaping plates 20 closer together or further apart, the shaping plates 20 can guide the deformation direction of the rubber block 17, thereby concentrating the deformation force of the rubber block 17 onto the wine jar. In other words, the action of the shaping plates 20 further enhances the clamping effect of the rubber block 17, improving the clamping efficiency and quality of the rubber block 17.

[0062] In summary, by fully and comprehensively securing the top, bottom, left, and right sides of the wine jar with elasticity, the placement box 1 is then placed inside the transport box for fixation and transportation. Therefore, this process ensures that the transport box can adapt to different road conditions during the transport of the wine jar, thereby enhancing the transport effect and improving the quality of the transport.

[0063] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention in any way. Although the present invention has been disclosed above with reference to preferred embodiments, it is not intended to limit the present invention. Any person skilled in the art can make some modifications or alterations to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present invention. Any simple modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of the present invention without departing from the scope of the present invention shall still fall within the scope of the present invention.

Claims

1. A wine jar transfer device, comprising a transfer box, characterized in that: It also includes a placement box and several transfer mechanisms equidistantly arranged within the placement box along its length. Each transfer mechanism includes a cylinder, a pressure plate, a transfer block, a placement block, a groove on the transfer block, and transfer components symmetrically arranged on both sides of the groove along its width. The cylinder is fixedly connected to the top of the placement box, and the cylinder's output shaft is fixedly connected to the pressure plate. The pressure plate can slide in and out of the groove. The transfer block is fixedly connected to the placement box. Each transfer component includes a guide cylinder, a slider, a first spring, a chamber on the transfer block, and a transfer section within the chamber. The guide cylinder is fixedly connected to the groove. The slider is slidably connected to the guide cylinder. The two ends of the first spring are slidably connected to the slider and the guide cylinder, respectively. The placement block is fixedly connected to the slider. The chamber communicates with the groove. The transfer section includes a fixed block, a bottom block, an outer block, an inner block, a second spring, and a groove on the outer block. The fixed block is fixedly connected to the placement block. The bottom block is fixedly connected to the fixed block. The outer block is connected to the bottom block. The inner block is slidably connected to the groove. The two ends of the second spring are connected to the inner block and the groove, respectively.

2. The wine jar transfer device according to claim 1, characterized in that: The transfer unit also includes an auxiliary unit; the auxiliary unit includes an auxiliary shaft, a cam, a third spring, a bottom groove on the bottom block, and an auxiliary component for driving the auxiliary shaft to rotate; the auxiliary shaft is rotatably connected to the bottom block; the cam is fixedly connected to the auxiliary shaft and abuts against the outer block; the outer block is slidably connected to the bottom groove; the two ends of the third spring are respectively connected to the outer block and the bottom groove.

3. The wine jar transfer device according to claim 2, characterized in that: The transfer unit also includes a linkage unit; the linkage unit includes a first guide rod, a first nut seat, a linkage plate, a rubber block, a through hole in the rubber block, and a linkage component for driving the first nut seat to reciprocate along the length of the first guide rod; the first guide rod is fixedly connected to the fixed block; the first nut seat is slidably connected to the first guide rod; the linkage plate is fixedly connected to the first nut seat; the rubber block is fixedly connected to the linkage plate; the outer block can slide in and out of the through hole.

4. The wine jar transfer device according to claim 3, characterized in that: The transfer unit also includes a shaping unit; the shaping unit includes a second guide rod, a power component, and shaping components symmetrically arranged at both ends of the second guide rod along its width direction; the second guide rod is fixedly connected to the bottom block; the shaping component includes a second nut seat and a shaping plate; the second nut seat is slidably connected to the second guide rod; the shaping plate is fixedly connected to the second nut seat; the rubber block is located on the movement trajectory of the shaping plate; the power component is used to drive the two second nut seats to move closer and further apart along the length direction of the second guide rod.

5. The wine jar transfer device according to claim 4, characterized in that: The transfer assembly also includes a pressing part; the pressing part includes a side block, a pressing cylinder, a pressing block, a fourth spring, a pressing hole on the pressure plate, and a drive unit for driving the pressing cylinder to perform vertical reciprocating motion; the side block is fixedly connected to the groove; the pressing cylinder is slidably connected to the side block; the pressing block is slidably connected to the pressing cylinder, and the pressing block can slide in and out of the pressing hole; the two ends of the fourth spring are respectively connected to the pressing block and the pressing cylinder.

6. The wine jar transfer device according to claim 5, characterized in that: The auxiliary components include a rotating shaft, a first gear, a first rack, a first bevel gear, and a second bevel gear; the rotating shaft is rotatably connected to the fixed block; the first gear and the first bevel gear are both fixedly connected to the rotating shaft; the first rack is fixedly connected to the chamber, and the first gear meshes with the first rack; the second bevel gear is fixedly connected to the auxiliary shaft, and the first bevel gear meshes with the second bevel gear.

7. The wine jar transfer device according to claim 6, characterized in that: The linkage component is a one-way screw; the one-way screw is rotatably connected to the fixed block and fixedly connected to the rotating shaft; the first nut seat is threadedly connected to the one-way screw.

8. The wine jar transfer device according to claim 7, characterized in that: The power components include a double-acting screw, a second gear, a second rack, and a top groove on the outer block; the double-acting screw is rotatably connected to the bottom block; the second gear is fixedly connected to the double-acting screw; the second rack is fixedly connected to the top groove, and the second rack meshes with the second gear.

9. A wine jar transfer device according to claim 8, characterized in that: The drive unit includes a drive shaft, a third gear, a third rack, a side groove on the pressure cylinder, and a drive component for rotating the drive shaft; the drive shaft is rotatably connected to the groove; the third gear is fixedly connected to the drive shaft; the third rack is fixedly connected to the side groove, and the third rack meshes with the third gear.

10. A wine jar transfer device according to claim 9, characterized in that: The driving component includes a fourth rack and a side groove on the slider; the fourth rack is fixedly connected to the side groove and meshes with the third gear.

Citation Information

Patent Citations

  • Wine jar transfer frame

    CN214493015U