Flange plate storage and transportation device
By designing a flange storage and transportation device including a base and a roof, the problems of inefficiency and susceptibility of traditional flange loading and transportation are solved, and more efficient transportation and better protection effects are achieved.
Patent Information
- Application Number
- CN202422320963.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-23
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-09-23
AI Technical Summary
Traditional flanges are inefficient during loading and transportation, and are prone to shake, loosening or bumping each other due to external loads, resulting in surface damage.
A flange storage and transportation device is designed, including a base and a top plate. The top plate can be lifted and lowered in the height direction of the insert shaft. The fitting member makes the bottom wall of the top plate abut and cooperates with the top wall of the flange, and the limiting member prevents the flange from shaking or loosening radially along the insert shaft.
Improve the loading and transportation efficiency of the flange, avoid damage to the flange due to shaking or loosening during transportation, and simplify the unloading process.
Smart Images

Figure CN223015267U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of flange transportation devices, and particularly relates to a flange storage and transportation device. Background Art
[0002] When traditional flanges need to be loaded, operators need to manually take out the flanges from the assembly line and load them into the cargo box. When the purchasing factory takes out the flanges from the cargo box, the unloading personnel also need to take out the flanges one by one. The whole process is time-consuming and laborious, and greatly delays the subsequent processing or assembly process of the flanges. At the same time, to avoid the phenomenon that the flanges shake, loosen or collide with each other due to the force exerted by the bumps of the transport vehicle during transportation, the manufacturer will fill a large amount of foam pads and other buffer structures in the cargo box to prevent the flanges from being bumped or loosened in the cargo box due to external loads. However, the sizes of different flanges are inconsistent, so there will still be gaps between adjacent flanges when flanges of different sizes are loaded into the cargo box. As a result, adjacent flanges will loosen, shake or collide with each other during transportation, causing damage to the surface of the flanges. Content of the Utility Model
[0003] Aiming at the deficiencies of the prior art, the utility model provides a flange storage and transportation device to solve the problems that the traditional flanges need to be taken out one by one during unloading, resulting in low efficiency of the whole process, and the flanges are prone to shake, loosen or collide with each other under the influence of external loads during transportation.
[0004] To achieve the above purpose, the utility model provides a flange storage and transportation device, including a base and a top plate. The base and the top plate are oppositely arranged and coaxially aligned. A receiving gap for accommodating a plurality of external flanges is formed between the top plate and the base. The end face of the base is a placement surface for stacking a plurality of external flanges. The base is provided with insertion shafts for inserting into the shaft holes of a plurality of external flanges. The top plate is provided with a fitting member for cooperating with the insertion shafts to lift the top plate along the height direction of the insertion shafts so as to realize the abutting cooperation between the bottom wall of the top plate and the top walls of adjacent flanges. The insertion shafts are provided with limiting members for preventing the plurality of flanges in the receiving gap from shaking, loosening or shifting along the radial direction of the insertion shafts.
[0005] The advantages of adopting the above technical solution are as follows: When the flange is produced and needs to be loaded, the manufacturer can stack several flanges coaxially and place them on the base, and make the insertion shaft inserted and matched with the shaft holes of several flanges. After several flanges are placed, the operator covers the top plate on the uppermost flange, and makes the bottom wall of the top plate abut and cooperate with the top wall of the uppermost flange through the matching part. Then, the movement of the flange along the radial direction of the insertion shaft is restricted by the limiting part, so as to avoid the phenomenon of shaking, loosening or mutual collision of the flanges during transportation, and further avoid damage to the flanges; The setting of the above technology is convenient for the manufacturer to store the flanges and is convenient for loading the flanges after each flange storage and transportation device stores a large number of flanges, so as to improve the unloading and transportation efficiency; When the manufacturer purchasing the flanges unloads the goods, the flange storage and transportation device can be directly lifted to efficiently send several flanges directly to the corresponding positions, that is, there is no need to take out the flanges from the cargo box one by one, thereby improving the unloading efficiency.
[0006] The present utility model is further provided with: a through groove is formed on the bottom wall of the top plate, a matching sleeve is connected in the through groove, the inner peripheral wall of the matching sleeve is threadedly connected with the outer peripheral wall of the top of the insertion shaft, and the outer peripheral wall of the matching sleeve is connected with the inner peripheral wall of the through groove. The matching sleeve is the matching part.
[0007] The advantages of adopting the above technical solution are as follows: When assembling the top plate, rotate the top plate so that the matching sleeve is threadedly connected with the insertion shaft until the bottom wall of the top plate abuts and cooperates with the top wall of the uppermost flange, so as to realize the connection between the top plate and the insertion shaft; Through the setting of the above technology, the rapid assembly and storage of several flanges are realized, thereby improving the storage efficiency and transportation efficiency.
[0008] The present utility model is further provided with: an adjustment hole is formed through the insertion shaft along its height direction, several limiting grooves are formed on the outer peripheral wall of the insertion shaft along the height direction of the insertion shaft, each limiting groove is communicated with the adjustment hole, a limiting protrusion is movably arranged in each limiting groove, the starting end of each limiting protrusion is an abutting end for passing through the opening of the limiting groove and partially abutting against the inner peripheral wall of the shaft hole of the external flange, the end of the limiting protrusion is an adjustment end for being placed in the adjustment hole, the limiting protrusion is the limiting part, an opening is formed on the top plate, an adjustment rod is threadedly connected in the opening, and the end of the adjustment rod is placed in the adjustment hole and forms a pressing end for pressing several adjustment ends.
[0009] The advantages of adopting the above technical solution are as follows: After the top plate and the bottom plate are assembled, if there is a gap between the outer peripheral wall of the insertion shaft and the shaft hole of the flange, the loading personnel can push the flange so that the inner peripheral wall of the shaft hole of the flange is partially in contact with the outer peripheral wall of the insertion shaft first, and then screw in the adjusting rod so that the end of the adjusting rod is placed in the adjusting hole and the limiting protrusion is squeezed by the squeezing end. The adjusting end is squeezed so that the limiting protrusion moves outward in the limiting groove towards the insertion shaft until the abutting end of the limiting protrusion is in contact with the inner peripheral wall of the shaft hole of the flange, so as to realize the displacement, loosening or shaking of the flange along the radial direction of the insertion shaft; the abutting end of the limiting protrusion can be made of an elastic material, so that the limiting protrusion can better adapt to flanges with different shaft hole diameters, that is, the limiting protrusion can be in contact and cooperate with the inner peripheral wall of the shaft hole of the flange, thereby realizing the limitation of the flange. Through the setting of the above technology, the scope of application and practicability are improved.
[0010] The present utility model is further provided with: the radial cross-section of the squeezing end is arranged in a conical shape, and the radial cross-section of the adjusting end is arranged in a trapezoidal shape with the inclined surface facing the opening.
[0011] The advantages of adopting the above technical solution are as follows: In the above technology, the radial cross-section of the squeezing end is arranged in a conical shape, and the radial cross-section of the adjusting end is arranged in a trapezoidal shape with the inclined surface facing the opening, so that when the squeezing end of the adjusting rod squeezes the adjusting end of the limiting protrusion, it can be smoother, thereby improving the sliding efficiency of the limiting protrusion.
[0012] The present utility model is further provided with: a placing hole for placing the squeezing end is opened on the base, the inner peripheral wall of the placing hole is threadedly connected with the outer peripheral wall of the squeezing end, and the placing hole is communicated with the adjusting hole.
[0013] The advantages of adopting the above technical solution are as follows: In the above technology, the adjusting rod is fixed in the adjusting hole through the threaded connection between the placing hole and the squeezing end, so as to ensure that the adjusting rod will not shake, displace or loosen, resulting in the loosening of the limiting protrusion, and further avoid the failure of the limiting function of the limiting protrusion.
[0014] The present utility model is further provided with: a holding ring for an external operator to hold is hinged on the top wall of the top plate.
[0015] The advantages of adopting the above technical solution are as follows: The setting of the holding ring in the above technology is convenient for the operator to hold, and thus convenient for transportation. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is a three-dimensional view of the state of the present utility model for storing several flanges;
[0017] Figure 2 is Figure 1 a cross-sectional view of;
[0018] Figure 3 is a three-dimensional view of the present utility model. Detailed implementation mode
[0019] The utility model provides a flange storage and transportation device, which includes a base 1 and a top plate 2. The base 1 and the top plate 2 are arranged oppositely and coaxially aligned. A storage gap 11 for accommodating a plurality of external flanges is formed between the top plate 2 and the base 1. The end face of the base 1 is a placement surface for stacking a plurality of external flanges. An insertion shaft 3 for inserting into the shaft holes of a plurality of external flanges is arranged on the base 1. A fitting member for cooperating with the insertion shaft 3 to lift the top plate 2 along the height direction of the insertion shaft 3 so as to realize the abutting cooperation between the bottom wall of the top plate 2 and the top wall of the adjacent flange is arranged on the top plate 2. A limiting member for preventing a plurality of flanges in the storage gap 11 from shaking, loosening or shifting along the radial direction of the insertion shaft 3 is arranged on the insertion shaft 3. A through groove 21 is opened on the bottom wall of the top plate 2. A fitting sleeve 22 is connected in the through groove 21. The inner peripheral wall of the fitting sleeve 22 is threadedly connected with the outer peripheral wall of the top of the insertion shaft 3. The outer peripheral wall of the fitting sleeve 22 is connected with the inner peripheral wall of the through groove 21. The fitting sleeve 22 is the fitting member. An adjusting hole 31 is formed through the insertion shaft 3 along its height direction. A plurality of limiting grooves 32 are opened on the outer peripheral wall of the insertion shaft 3 along the height direction of the insertion shaft 3. Each limiting groove 32 is communicated with the adjusting hole 31. A limiting protrusion 33 is movably arranged in each limiting groove 32. The starting end of each limiting protrusion 33 is an abutting end 331 for passing through the opening of the limiting groove 32 and partially abutting against the inner peripheral wall of the shaft hole of the external flange. The end of the limiting protrusion 33 is an adjusting end 332 for being inserted into the adjusting hole 31. The limiting protrusion 33 is the limiting member. An opening 23 is opened on the top plate 2. An adjusting rod 4 is threadedly connected in the opening 23. The end of the adjusting rod 4 is inserted into the adjusting hole 31 and forms a pressing end 41 for pressing a plurality of adjusting ends 332. The radial cross section of the pressing end 41 is conical. The radial cross section of the adjusting end 332 is trapezoidal and the inclined surface faces the opening 23. An insertion hole 12 for inserting the pressing end 41 is opened on the base 1. The inner peripheral wall of the insertion hole 12 is threadedly connected with the outer peripheral wall of the pressing end 41. The insertion hole 12 is communicated with the adjusting hole 31. A holding ring 24 for an external operator to hold is hinged on the top wall of the top plate 2.
[0020] The above shows and describes the basic principles, main features and advantages of the utility model. Those skilled in the art should understand that the utility model is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of the utility model. Without departing from the spirit and scope of the utility model, the utility model will have various changes and improvements, and these changes and improvements all fall within the scope of the utility model claimed. The scope of protection claimed by the utility model is defined by the appended claims and their equivalents.
Claims
1. A flange storage and transportation device, characterized in that: It includes a base and a top plate, which are arranged opposite to each other and coaxially aligned, an accommodating gap for accommodating a number of external flanges is formed between the top plate and the base, the end face of the base is a placement surface for stacking a number of external flanges, the base is provided with an insertion shaft for inserting into the axial holes of a number of external flanges, the top plate is provided with a mating piece for cooperating with the insertion shaft to make the top plate rise and fall along the height direction of the insertion shaft to achieve abutment and cooperation between the bottom wall of the top plate and the top wall of the adjacent flange, and the insertion shaft is provided with a limiting piece for preventing a number of flanges in the accommodating gap from shaking, loosening or shifting along the radial direction of the insertion shaft.
2. A flange storage and transportation device according to claim 1, characterized in that: A through groove is provided on the bottom wall of the top plate, a matching sleeve is connected in the through groove, the inner peripheral wall of the matching sleeve is threadedly connected to the outer peripheral wall of the top of the plug shaft, the outer peripheral wall of the matching sleeve is connected to the inner peripheral wall of the through groove, and the matching sleeve is the matching part.
3. A flange storage and transportation device according to claim 1, characterized in that: The plug shaft is penetrated by an adjustment hole along its height direction, and a plurality of limit grooves are opened on the outer peripheral wall of the plug shaft along the height direction of the plug shaft, each of the limit grooves is connected to the adjustment hole, and a limit protrusion is movably arranged in each of the limit grooves, and the starting end of each of the limit protrusions is an abutment end for passing through the opening of the limit groove and partially abutting against the inner peripheral wall of the external flange shaft hole, and the end of the limit protrusion is an adjustment end for being inserted into the adjustment hole, and the limit protrusion is a limit member, and an opening is opened on the top plate, and an adjusting rod is threadedly connected to the opening, and the end of the adjusting rod is inserted into the adjustment hole and is formed with an extrusion end for extruding a plurality of adjustment ends.
4. A flange storage and transportation device according to claim 3, characterized in that: The radial cross section of the extrusion end is arranged in a conical shape, and the radial cross section of the adjustment end is arranged in a trapezoidal shape with the inclined surface facing the opening.
5. A flange storage and transportation device according to claim 4, characterized in that: The base is provided with an insertion hole for the extrusion end to be inserted, the inner peripheral wall of the insertion hole is threadedly connected with the outer peripheral wall of the extrusion end, and the insertion hole is communicated with the adjustment hole.
6. The flange storage and transportation device according to claim 1, characterized in that: A holding ring for an outside operator to hold is hinged on the top wall of the top plate.