CN216510488U - Barrel that is fit for batch manufacturing transports and stacks frock - Google Patents
Barrel that is fit for batch manufacturing transports and stacks frock Download PDFInfo
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- CN216510488U CN216510488U CN202122564942.0U CN202122564942U CN216510488U CN 216510488 U CN216510488 U CN 216510488U CN 202122564942 U CN202122564942 U CN 202122564942U CN 216510488 U CN216510488 U CN 216510488U
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Abstract
The utility model discloses a barrel transferring and stacking tool suitable for batch manufacturing, which comprises: two bilateral symmetry's square frame, two square frame's bottom is through three connecting pipes looks welded fastening that move towards and be parallel to each other about respectively, all welded a support column in two rectangle little frames of every square frame, the both ends of every support column respectively with violently manage looks welded fastening that is close to mutually, still be equipped with four V-arrangement support arms that erect, the department of buckling of four V-arrangement support arms is articulated mutually with the middle part of four support columns one to one respectively, but all articulated on the upper and lower both ends of four V-arrangement support arms have a tripod of luffing motion, all be provided with the gyro wheel on two base angles of every tripod. The barrel transferring and stacking tool is easy to manufacture and low in cost, efficiency is improved to a great extent, and cost is reduced; the device can be suitable for transferring barrels with different diameters; when the barrel needs to be stacked, the barrel can be used for transferring and stacking the tool for stacking.
Description
Technical Field
The utility model relates to the field of barrel production tools, in particular to a barrel transferring and stacking tool suitable for batch manufacturing in barrel production.
Background
At present, the inner container of the tank body manufactured in a large batch is not provided with lifting lugs on the barrel body of the inner container, and the lifting can only be carried out by using a lifting belt pocket bottom, so that the safety and the barrel body deformation risk exist. The barrel of the inner container may have a large number of stages needing to be placed in the manufacturing process, and the barrel can be stacked only independently, so that the occupied space is too large.
SUMMERY OF THE UTILITY MODEL
The technical problem to be solved by the utility model is as follows: will provide one kind and enable the barrel and carry out reliable handling and can prevent that the barrel from warping, can make the barrel of piling up be fit for batch production's barrel transport and stack the frock.
In order to solve the problems, the technical scheme adopted by the utility model is as follows: the utility model provides a frock is transported and stacks to barrel that is fit for batch manufacturing which characterized in that: the method comprises the following steps: two bilateral symmetry's square frame, square frame's structure includes: the two transverse pipes are arranged up and down and are parallel, the three vertical pipes are arranged in a front-back alignment mode, the two transverse pipes and the two vertical pipes are mutually welded and fixed to form a rectangular large frame, the remaining vertical pipe is located in the middle of the rectangular large frame, two ends of the remaining vertical pipe are respectively welded and fixed with the two transverse pipes, each two adjacent vertical pipes and the two transverse pipes can enclose a rectangular small frame, and inclined stay pipes are welded to four corners of each rectangular small frame; the bottoms of the two square frames are respectively welded and fixed through three connecting pipes which run left and right and are parallel to each other, two ends of one connecting pipe are respectively welded with the front lower corners of the two square frames and are aligned with the two vertical pipes in the front parts of the two square frames left and right, two ends of one connecting pipe are respectively welded with the rear lower corners of the two square frames and are aligned with the two vertical pipes in the rear parts of the two square frames left and right, two ends of one connecting pipe are respectively welded with the middles of the bottoms of the two square frames and are aligned with the two vertical pipes in the middle parts of the two square frames left and right, the left and right ends of the three connecting pipes are respectively welded and fixed with the adjacent vertical pipes through one inclined supporting pipe, a vertically arranged supporting column is welded in each of the two small rectangular frames of each square frame, and two ends of each supporting column are respectively welded and fixed with the adjacent horizontal pipes, the four upright V-shaped supporting arms are also arranged, the bending parts of the four V-shaped supporting arms are respectively hinged with the middle parts of the four supporting columns one by one, so that the four V-shaped supporting arms can swing up and down, the two V-shaped supporting arms positioned at the front part are aligned left and right, the V-shaped openings are arranged towards each other, the two V-shaped supporting arms positioned at the rear part are aligned left and right, the V-shaped openings are arranged towards each other, the upper and lower ends of the four V-shaped supporting arms are hinged with a tripod capable of swinging up and down, the hinged parts are positioned at the vertex angles of the tripod, the two bottom corners of each tripod are arranged up and down, rollers are arranged on the two bottom corners of each tripod, when the front and back trend of the barrel falls between the two square frames, the barrel can touch the rollers, so that the four V-shaped supporting arms and the eight tripods can swing to be adjusted, and the four tripods positioned below can be tightly attached to the lower part of the barrel, The four tripods positioned above can be tightly attached to the upper part of the cylinder body, so that the cylinder body can be supported.
Further, aforementioned frock is transported and stacked to barrel that is fit for batch manufacturing, wherein: the horizontal pipe, the vertical pipe and the diagonal bracing pipe are all rectangular pipes.
Further, aforementioned frock is transported and stacked to barrel that is fit for batch manufacturing, wherein: each support column consists of two vertically arranged channel steels, wherein the two channel steels are arranged in parallel at intervals from front to back in a back-to-back manner.
Further, aforementioned frock is transported and stacked to barrel that is fit for batch manufacturing, wherein: the V-shaped supporting arm is composed of two V-shaped supporting sheets, wherein the two V-shaped supporting sheets are arranged side by side in a spaced manner from front to back.
Further, aforementioned frock is transported and stacked to barrel that is fit for batch manufacturing, wherein: the tripod consists of two triangular plates which are arranged side by side in front and at intervals.
The utility model has the advantages that: the barrel transferring and stacking tool is easy to manufacture and low in cost, efficiency is improved to a great extent, and cost is reduced; the device can be suitable for the transportation of cylinders with different diameters; when the barrel needs to be stacked, the barrel can be transported and stacked by the stacking tool.
Drawings
Fig. 1 is a schematic structural diagram of a barrel transferring and stacking tool suitable for batch manufacturing according to the present invention.
FIG. 2 is a schematic sectional view of the structure at A-A in FIG. 1.
Fig. 3 is a schematic top view of the structure of fig. 1.
Fig. 4 is a schematic view of stacking the cylinders by the cylinder transferring and stacking tool of the utility model.
Detailed Description
The present invention will be described in further detail below with reference to specific embodiments and the attached drawings.
As shown in fig. 1, 2 and 3, a barrel transferring and stacking tool suitable for batch manufacturing includes: two square frame 1 that bilateral symmetry arranged, square frame 1's structure includes: the two transverse pipes 11 and the three vertical pipes 12 are vertically arranged and are parallel, the two transverse pipes 11 and the two vertical pipes 12 are mutually welded and fixed to form a rectangular large frame, the remaining vertical pipe 12 is located in the middle of the rectangular large frame, two ends of the remaining vertical pipe are respectively welded and fixed with the two transverse pipes 11, each two adjacent vertical pipes 12 and the two transverse pipes 11 can enclose a rectangular small frame, and inclined stay pipes 13 are welded at four corners of each rectangular small frame; the bottoms of two square frames 1 are respectively welded and fixed through three connecting pipes 2 which run left and right and are parallel to each other, two ends of one connecting pipe 2 are respectively welded with the front lower corners of the two square frames 1 and are aligned with the left and right of two vertical pipes 12 at the front parts of the two square frames 1, two ends of one connecting pipe 2 are respectively welded with the rear lower corners of the two square frames 1 and are aligned with the left and right of two vertical pipes 12 at the rear parts of the two square frames 1, two ends of one connecting pipe 2 are respectively welded with the middle parts of the bottoms of the two square frames 1 and are aligned with the left and right of two vertical pipes 12 at the middle parts of the two square frames 1, the left and right ends of the three connecting pipes 2 are respectively welded and fixed with vertical pipes 12 which are close to each other through one inclined supporting pipe 13, a supporting column 3 which is vertically arranged is welded in the two small rectangular frames of each square frame 1, and two ends of each supporting column 3 are respectively welded and fixed with a transverse pipe 11 which is close to each other, four upright V-shaped supporting arms 4 are further arranged, the bent parts of the four V-shaped supporting arms 4 are respectively hinged with the middle parts of four supporting columns 3 one by one, so that the four V-shaped supporting arms 4 can swing up and down, the two V-shaped supporting arms 4 positioned at the front part are aligned left and right, V-shaped ports are arranged towards each other, the two V-shaped supporting arms 4 positioned at the rear part are aligned left and right, V-shaped ports are arranged towards each other, triangular supports 5 capable of swinging up and down are hinged on the upper end and the lower end of each V-shaped supporting arm 4, the hinged parts are positioned at the top angles of the triangular supports 5, two bottom angles of each triangular support 5 are arranged up and down, rollers 6 are arranged on the two bottom angles of each triangular support 5, when the barrel 9 moves forwards and backwards to fall between the two square frames 1, the barrel 9 can touch the rollers 6, so that the four V-shaped supporting arms 4 and the eight triangular supports 5 can swing to adjust, therefore, the four tripods 5 positioned at the lower part can be clung to the lower part of the cylinder body 9, and the four tripods 5 positioned at the upper part can be clung to the upper part of the cylinder body 9, thereby reliably supporting the cylinder body 9.
In the present embodiment, the horizontal tube 11, the vertical tube 12 and the diagonal brace 13 are all rectangular tubes. Each support column 3 is composed of two vertically arranged channel steel 31, wherein the two channel steel 31 are arranged in parallel at intervals back to back. The V-shaped support arm 4 is composed of two V-shaped support pieces 41, wherein the two V-shaped support pieces 41 are arranged side by side in front and at a distance. The tripod 5 is composed of two triangular pieces 51, wherein the two triangular pieces 51 are arranged side by side in a spaced manner.
As shown in figure 4, the barrel can be stacked through the barrel transferring and stacking tool, so that the occupied area can be reduced.
Before the barrel is manufactured, the barrel transferring and stacking tool is placed below the barrel in advance, and when the barrel is manufactured and needs to be transferred, the barrel transferring and stacking tool is hoisted, so that the barrel can fall into the barrel transferring and stacking tool, and the eight tripods can be tightly attached to the barrel to reliably support the barrel; when the barrel needs to be piled up and placed, the barrel can be used for transporting and stacking the tool to be piled up.
Claims (5)
1. The utility model provides a frock is transported and stacks to barrel that is fit for batch manufacturing which characterized in that: the method comprises the following steps: two bilateral symmetry's square frame, square frame's structure includes: the two transverse pipes are arranged up and down and are parallel, the three vertical pipes are arranged in a front-back alignment mode, the two transverse pipes and the two vertical pipes are mutually welded and fixed to form a rectangular large frame, the remaining vertical pipe is located in the middle of the rectangular large frame, two ends of the remaining vertical pipe are respectively welded and fixed with the two transverse pipes, each two adjacent vertical pipes and the two transverse pipes can enclose a rectangular small frame, and inclined stay pipes are welded to four corners of each rectangular small frame; the bottoms of the two square frames are respectively welded and fixed through three connecting pipes which run left and right and are parallel to each other, two ends of one connecting pipe are respectively welded with the front lower corners of the two square frames and are aligned with the two vertical pipes in the front parts of the two square frames left and right, two ends of one connecting pipe are respectively welded with the rear lower corners of the two square frames and are aligned with the two vertical pipes in the rear parts of the two square frames left and right, two ends of one connecting pipe are respectively welded with the middles of the bottoms of the two square frames and are aligned with the two vertical pipes in the middle parts of the two square frames left and right, the left and right ends of the three connecting pipes are respectively welded and fixed with the adjacent vertical pipes through one inclined supporting pipe, a vertically arranged supporting column is welded in each of the two small rectangular frames of each square frame, and two ends of each supporting column are respectively welded and fixed with the adjacent horizontal pipes, the four upright V-shaped supporting arms are also arranged, the bending parts of the four V-shaped supporting arms are respectively hinged with the middle parts of the four supporting columns one by one, so that the four V-shaped supporting arms can swing up and down, the two V-shaped supporting arms positioned at the front part are aligned left and right, the V-shaped openings are arranged towards each other, the two V-shaped supporting arms positioned at the rear part are aligned left and right, the V-shaped openings are arranged towards each other, the upper and lower ends of the four V-shaped supporting arms are hinged with a tripod capable of swinging up and down, the hinged parts are positioned at the vertex angles of the tripod, the two bottom corners of each tripod are arranged up and down, rollers are arranged on the two bottom corners of each tripod, when the front and back trend of the barrel falls between the two square frames, the barrel can touch the rollers, so that the four V-shaped supporting arms and the eight tripods can swing to be adjusted, and the four tripods positioned below can be tightly attached to the lower part of the barrel, The four tripods positioned above can be tightly attached to the upper part of the cylinder body, so that the cylinder body can be supported.
2. The barrel transferring and stacking tool suitable for batch manufacturing according to claim 1, wherein: the horizontal pipe, the vertical pipe and the diagonal bracing pipe are all rectangular pipes.
3. The tool for transferring and stacking barrels suitable for batch manufacturing according to claim 1 or 2, wherein: each support column consists of two vertically arranged channel steels, wherein the two channel steels are arranged in parallel at intervals from front to back in a back-to-back manner.
4. The tool for transferring and stacking barrels suitable for batch manufacturing according to claim 1 or 2, wherein: the V-shaped supporting arm is composed of two V-shaped supporting sheets, wherein the two V-shaped supporting sheets are arranged side by side in a spaced manner from front to back.
5. The tool for transferring and stacking barrels suitable for batch manufacturing according to claim 1 or 2, wherein: the tripod consists of two triangular plates which are arranged side by side in front and at intervals.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122564942.0U CN216510488U (en) | 2021-10-25 | 2021-10-25 | Barrel that is fit for batch manufacturing transports and stacks frock |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122564942.0U CN216510488U (en) | 2021-10-25 | 2021-10-25 | Barrel that is fit for batch manufacturing transports and stacks frock |
Publications (1)
Publication Number | Publication Date |
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CN216510488U true CN216510488U (en) | 2022-05-13 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202122564942.0U Active CN216510488U (en) | 2021-10-25 | 2021-10-25 | Barrel that is fit for batch manufacturing transports and stacks frock |
Country Status (1)
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CN (1) | CN216510488U (en) |
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2021
- 2021-10-25 CN CN202122564942.0U patent/CN216510488U/en active Active
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