CN215478602U - Mesh cage type square tissue machine capable of winding square tissues with different widths - Google Patents
Mesh cage type square tissue machine capable of winding square tissues with different widths Download PDFInfo
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- CN215478602U CN215478602U CN202122323394.2U CN202122323394U CN215478602U CN 215478602 U CN215478602 U CN 215478602U CN 202122323394 U CN202122323394 U CN 202122323394U CN 215478602 U CN215478602 U CN 215478602U
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Abstract
The utility model discloses a mesh cage type square tissue machine capable of winding square tissues with different widths, wherein a first spoke disc is arranged at one end of a rotating shaft, a second spoke disc is arranged at the other end of the rotating shaft, a plurality of first spokes are radially distributed by taking the first spoke disc as a center, a plurality of second spokes are radially distributed by taking the second spoke disc as a center, the first spokes are connected with the second spokes through support rods, a first ring body and a second ring body are connected on the rotating shaft in a sliding manner, a distance adjusting mechanism for adjusting the distance between the first ring body and the second ring body is arranged on a fixed seat arranged between the first ring body and the second ring body, each support rod comprises a first support rod and a second support rod, the first support rod is connected with the first ring body through a first connecting rod, and the second support rod is connected with the second ring body through a second connecting rod. The utility model can wind the square tissue with different widths, and improves the processing flexibility.
Description
Technical Field
The utility model relates to the technical field of processing equipment of square tissue paper, in particular to a net cage type square tissue paper machine capable of winding the square tissue paper with different widths.
Background
In the processing process of the square tissue, a plurality of single-layer papers need to be wound together by using the net cage type square tissue machine, so that the square tissue roll with the plurality of layers of papers is obtained on the net cage type square tissue machine, and then the roll is cut for many times, so that the square tissue with the target size can be obtained.
For the existing net cage type square tissue machine, chinese patent with application number CN201920858025.3 discloses a roll cage paper winder, and as shown in fig. 1, the equipment comprises a net cage 1, a frame 2 and a driving mechanism 3. The netpen 1 comprises a rotating shaft 11, a first spoke disk 12, a second spoke disk 13, a first spoke 14, a second spoke 15 and a support rod 16, wherein the first spoke disk 12 is arranged at one end of the rotating shaft 11, the second spoke disk 13 is arranged at the other end of the rotating shaft 11, the first spoke disk 12 is provided with a plurality of first spokes 14 which are radially distributed by taking the first spoke disk 12 as the center, the second spoke disk 13 is provided with a plurality of second spokes 15 which are radially distributed by taking the second spoke disk 13 as the center, and the first spokes 14 are connected with the second spokes 15 through the support rod 16. The frame 2 is rotatably connected with a rotating shaft 11 in the net cage 1, and the frame 2 is provided with a driving mechanism 3 for driving the rotating shaft 11 in the net cage 11 to rotate. When the driving mechanism 3 drives the cylinder mould 1 to rotate, the cylinder mould 1 can wind the tissue.
In the current processing and production of the square tissue, because the production tasks are different, a net cage type square tissue machine is often required to be used for winding the square tissue with different widths. However, as can be seen from fig. 1, the supporting rods 16 in the net cage 1 are used for supporting the tissue, and the total length of the supporting rods 16 on the net cage 1 limits the width of the tissue wound on the net cage 1, so that it is difficult to wind the tissue with different widths on the same net cage tissue machine, and the processing flexibility is reduced.
Therefore, how to wind the square tissues with different widths by using the same net cage type square tissue machine to improve the processing flexibility is a technical problem to be solved urgently by technical personnel in the field.
SUMMERY OF THE UTILITY MODEL
Aiming at the defects in the prior art, the utility model provides the net cage type square tissue machine capable of winding the square tissues with different widths.
In order to achieve the purpose, the utility model adopts the technical scheme that:
a net cage type square tissue machine capable of winding square tissue paper with different widths comprises a net cage, the net cage comprises a rotating shaft, a first spoke disc, a second spoke disc, a first spoke, a second spoke and a supporting rod, the first spoke disc is arranged at one end of the rotating shaft, the second spoke disc is arranged at the other end of the rotating shaft, the first spoke disc is provided with a plurality of first spokes which are radially distributed by taking the first spoke disc as a center, the second spoke disc is provided with a plurality of second spokes which are radially distributed by taking the second spoke disc as a center, the first spokes are connected with the second spoke through the supporting rod, wherein a first ring body, a second ring body and a fixing seat are sleeved on the rotating shaft, the first ring body and the second ring body are both in sliding connection with the rotating shaft along the axial direction of the rotating shaft, the fixing seat is arranged between the first ring body and the second ring body, a distance adjusting mechanism for adjusting the distance between the first ring body and the second ring body is arranged on the fixing seat, the supporting rod comprises a first supporting rod and a second supporting rod, first branch along the axial of pivot with first spoke sliding connection, second branch along the axial of pivot with second spoke sliding connection, first branch and second branch sliding connection, first branch is connected with first ring body through first connecting rod, and second branch passes through second connecting rod and second ring body connection.
Furthermore, the distance adjusting mechanism comprises a first adjusting rod, a second adjusting rod and a telescopic rod, wherein one end of the first adjusting rod and one end of the second adjusting rod are hinged to one end of the telescopic rod, one end of the first adjusting rod, far away from the telescopic rod, is hinged to the first ring body, one end of the second adjusting rod, far away from the telescopic rod, is hinged to the second ring body, and one end of the telescopic rod, far away from the first adjusting rod and the second adjusting rod, is connected with the fixed seat.
Furthermore, the telescopic rod adopts an electric push rod.
Further, first spoke is equipped with first forked tail spout, first branch and first forked tail spout sliding fit, the second spoke is equipped with second forked tail spout, second branch and second forked tail spout sliding fit.
Furthermore, the first supporting rod is provided with a guide block, the second supporting rod is provided with a dovetail long groove, and the guide block is in sliding fit with the dovetail long groove.
Furthermore, first branch is keeping away from the one end of first connecting rod is equipped with first stop collar, first spoke is located between first stop collar and the first connecting rod, second branch is keeping away from the one end of second connecting rod is equipped with the second stop collar, the second spoke is located between second stop collar and the second connecting rod.
Furthermore, the first position limiting sleeve and the second position limiting sleeve are both plastic sleeves.
The utility model has the following beneficial effects:
1. the net cage type square tissue machine capable of winding the square tissues with different widths, provided by the utility model, can adjust the total length of the supporting rod to enable the supporting rod to support the square tissues with different widths, for example, when the total length of the supporting rod is increased, the supporting rod can support the square tissues with larger width, so that the square tissues with different widths can be wound by only one machine, the requirements of manufacturers on processing and producing the square tissues with different widths can be met, and the processing flexibility is improved.
And moreover, a manufacturer does not need to purchase a plurality of net cage type square tissue paper machines, the cost for purchasing the net cage type square tissue paper machines is saved, the area of a factory is saved, and the cost for renting the factory is saved.
2. In the utility model discloses in, when adjusting the total length of branch, only need the staff adjust the length of the telescopic link in the roll adjustment mechanism can, when the telescopic link extends, the total length of branch shortens, and when the telescopic link shortens, the total length extension of branch, convenient operation is favorable to improving regulation efficiency.
3. The electric push rod is used as the telescopic rod, so that materials can be conveniently obtained, the assembly of the electric push rod is facilitated, and the assembly efficiency of the electric push rod is improved.
4. According to the utility model, the first support rod is matched with the first dovetail sliding groove on the first spoke, and the first support rod is inserted from the first dovetail sliding groove, so that the assembly of the first support rod and the first spoke can be realized, the operation is simple and convenient, and the assembly efficiency of the utility model is further improved.
The second support rod is matched with the second dovetail sliding groove in the second spoke, and the second support rod can be installed with the second spoke only by inserting the second support rod into the second dovetail sliding groove, so that the assembly method is simple and convenient to operate, and the assembly efficiency of the assembly method is further improved.
5. According to the utility model, the first limiting sleeve is arranged on the first support rod, the second limiting sleeve is arranged on the second support rod, when the first support rod and the second support rod slide close to each other, the first support rod is gradually extracted from the first dovetail sliding groove on the first spoke, and the second support rod is gradually extracted from the second dovetail sliding groove on the second spoke, the first limiting sleeve can be blocked by the first spoke, and the second limiting sleeve can be blocked by the second spoke, so that the first limiting sleeve can prevent the first support rod from slipping off from the first dovetail sliding groove, the second limiting sleeve can prevent the second support rod from slipping off from the second dovetail sliding groove, further, the phenomenon that the first support rod is inserted into the first dovetail sliding groove again and the second support rod is inserted into the second dovetail sliding groove again due to slipping is avoided, the time is saved, and the adjustment efficiency is improved.
6. According to the utility model, the plastic sleeves are used as the first limiting sleeve and the second limiting sleeve, so that materials can be conveniently obtained, the assembly of the utility model is facilitated, and the assembly efficiency of the utility model is further improved. In addition, the plastic sleeve is low in price, and the assembly cost of the utility model is further saved.
Drawings
FIG. 1 is a schematic diagram of a background art configuration;
FIG. 2 is a front view of a cylinder type tissue machine capable of winding tissue paper of different widths;
FIG. 3 is a perspective view of a wire-cage type tissue machine capable of winding tissue paper of different widths;
FIG. 4 is a partial enlarged view of FIG. 3A;
FIG. 5 is a partial enlarged view of FIG. 3B;
fig. 6 is a partially enlarged view of fig. 3C.
Description of reference numerals:
1-a net cage is arranged on the net cage,
11-a rotating shaft, 111-a first ring body, 112-a second ring body, 113-a fixed seat, 114-a distance adjusting mechanism, 1141-a first adjusting rod, 1142-a second adjusting rod, 1143-a telescopic rod,
12-a first spoke disk, the spoke disk being,
13-a second spoke disk, the spoke disks of which,
14-first spoke, 141-first dovetail slot,
15-second spoke, 151-second dovetail slot,
16-strut, 161-first strut, 1611-guide block, 1612-first connecting rod, 1613-first limit sleeve, 162-second strut, 1621-dovetail elongated slot, 1622-second connecting rod, 1623-second limit sleeve,
2-the machine frame is used for placing the machine frame,
3-a driving mechanism is arranged on the frame,
31-driving the motor, and driving the motor,
32-a first pulley for the first belt pulley,
33-a second belt pulley, the second belt pulley,
34-a belt.
Detailed Description
For a better understanding of the present invention, reference is made to the following further description taken in conjunction with the accompanying drawings. It is noted that in the description of the present invention, the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience in describing the present invention and simplifying the description, but do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be construed as limiting the present invention.
Examples
As shown in fig. 2-6, the mesh cage type square tissue machine capable of winding the square tissue with different widths comprises a mesh cage 1, a frame 2 and a driving mechanism 3. The frame 2 is rotationally connected with the cylinder mould 1, and the frame 2 is provided with a driving mechanism 3 for driving the cylinder mould 1 to rotate. When the driving mechanism 3 drives the cylinder mould 1 to rotate, the cylinder mould 1 can wind the kerchief roll on the cylinder mould 1.
As shown in fig. 2 and 3, the netpen 1 comprises a rotating shaft 11, a first spoke disk 12, a second spoke disk 13, a first spoke 14, a second spoke 15 and a strut 16.
As shown in fig. 2 and 3, both ends of the rotating shaft 11 are rotatably connected to the frame 2 through bearings. The driving mechanism 3 includes a driving motor 31, a first pulley 32, a second pulley 33, and a belt 34. The chassis of the driving motor 31 is fixed on the frame 2 by screws, a first belt pulley 32 is mounted on an output shaft of the driving motor 31, a second belt pulley 33 is mounted at one end of the rotating shaft 11, and the first belt pulley 32 is connected with the second belt pulley 33 by a belt 34. When the output shaft of the driving motor 31 in the driving mechanism 3 rotates, the output shaft of the driving motor 31 drives the first belt pulley 32 to rotate together, the first belt pulley 32 drives the second belt pulley 33 to rotate through the belt 34, and the second belt pulley 33 drives the rotating shaft 11 to rotate.
As shown in fig. 2 and fig. 3, a first ring body 111, a second ring body 112, and a fixing base 113 are sleeved on the middle portion of the rotating shaft 11. The first ring body 111 and the second ring body 112 are both slidably connected to the rotating shaft 11 along the axial direction of the rotating shaft 11. The fixing seat 113 is disposed between the first ring 111 and the second ring 112, and the fixing seat 113 is welded and fixed on the rotating shaft 11. The fixed base 113 is provided with a distance adjusting mechanism 114, and the distance adjusting mechanism 114 is used for adjusting the distance between the first ring body 111 and the second ring body 112.
As shown in fig. 2 and 3, the distance adjustment mechanism 114 includes a first adjustment rod 1141, a second adjustment rod 1142, and an extension rod 1143. Telescopic link 1143 adopts electric putter, adopts electric putter as telescopic link 1143, can conveniently draw materials. One end of the first adjusting rod 1141 and one end of the second adjusting rod 1142 are both hinged to one end of the telescopic rod 1143, one end of the first adjusting rod 1141 away from the telescopic rod 1143 is hinged to the first ring 111, one end of the second adjusting rod 1142 away from the telescopic rod 1143 is hinged to the second ring 112, and one end of the telescopic rod 1143 away from the first adjusting rod 1141 and the second adjusting rod 1142 is fixed to the fixing base 113 through screws.
As shown in fig. 2 and 3, when an electric push rod serving as a telescopic rod 1143 in the distance adjustment assembly is extended, the telescopic rod 1143 pushes the first adjusting rod 1141 and the second adjusting rod 1142 outwards, so that an included angle a between the first adjusting rod 1141 and the second adjusting rod 1142 is reduced, the first adjusting rod 1141 pulls the first ring 111 towards the fixed seat 113, the second adjusting rod 1142 pulls the second ring 112 towards the fixed seat 113, the first ring 111 and the second ring 112 are close to each other, and thus a distance between the first ring 111 and the second ring 112 is reduced.
As shown in fig. 2 and 3, when the electric push rod serving as the telescopic rod 1143 in the distance adjusting assembly is shortened, the telescopic rod 1143 pulls the first adjusting rod 1141 and the second adjusting rod 1142 back, so that the included angle a between the first adjusting rod 1141 and the second adjusting rod 1142 is increased, the first adjusting rod 1141 pushes the first ring 111 in a direction away from the fixing base 113, the second adjusting rod 1142 pushes the second ring 112 in a direction away from the fixing base 113, the first ring 111 and the second ring 112 are far away from each other, and thus the distance between the first ring 111 and the second ring 112 is increased.
As shown in fig. 2 and 3, a first spoke plate 12 is welded to one end of the rotating shaft 11, and a second spoke plate 13 is welded to the other end of the rotating shaft 11. The first spoke disk 12 is welded with a plurality of first spokes 14 which are radially and uniformly distributed by taking the first spoke disk 12 as a center. A plurality of second spokes 15 which are radially and uniformly distributed by taking the second spoke plate 13 as the center are welded on the second spoke plate 13.
As shown in fig. 2 and 3, the struts 16 include a first strut 161 and a second strut 162. The first support rod 161 is slidably connected to the first spoke 14 along the axial direction of the rotating shaft 11, specifically, as shown in fig. 5, the first spoke 14 is provided with a first dovetail groove 141, and the first support rod 161 can be slidably engaged with the first dovetail groove 141 along the axial direction of the rotating shaft 11. The second supporting rod 162 is slidably connected to the second spoke 15 along the axial direction of the rotating shaft 11, specifically, as shown in fig. 4, the second spoke 15 is provided with a second dovetail sliding groove 151, and the second supporting rod 162 can be slidably engaged with the second dovetail sliding groove 151 along the axial direction of the rotating shaft 11. The first support bar 161 and the second support bar 162 are slidably connected, specifically, as shown in fig. 6, a guide block 1611 is welded to the first support bar 161, a dovetail long groove 1621 is provided on the second support bar 162, and the guide block 1611 can be slidably fitted with the dovetail long groove 1621 along the axial direction of the rotating shaft 11.
As shown in fig. 2 and 3, the first link 161 is connected to the first ring 111 by a first link 1612. Specifically, one end of the first link 1612 is welded to the first link 161, and the end of the first link 1612 away from the first link 161 is welded to the first ring 111. Second strut 162 is connected to second ring 112 by a second link 1622. Specifically, one end of the second connecting rod 1622 is welded to the second support 162, and the end of the second connecting rod 1622 away from the second support 162 is welded to the second ring 112.
As shown in fig. 2 and 3, when the electric putter as the telescopic shaft 1143 in the distance adjustment assembly is extended, the first ring 111 and the second ring 112 approach the fixed seat 113, because the first ring 111 is connected to the first rod 161 through the first link 1612 and the second ring 112 is connected to the second rod 162 through the second link 1622, the first rod 161 and the second rod 162 slide close to each other, so that the total length L of the rod 16 is shortened, and the total length L of the rod 16 is the distance between the end of the first rod 161 away from the second rod 162 and the end of the second rod 162 away from the first rod 161.
As shown in fig. 2 and 3, when the electric putter as the telescopic shaft 1143 in the distance adjustment assembly is shortened, the first ring 111 and the second ring 112 are both far away from the fixing base 113, and since the first ring 111 is connected with the first rod 161 through the first connecting rod 1612 and the second ring 112 is connected with the second rod 162 through the second connecting rod 1622, the first rod 161 and the second rod 162 slide away from each other, so that the total length L of the rod 16 is increased.
Therefore, when the square tissue with a larger width needs to be wound on the cylinder mould 1, the electric push rod serving as the telescopic rod 1143 in the distance adjusting assembly needs to be shortened by a worker, so that the first ring body 111 and the second ring body 112 are both far away from the fixing seat 113, the first ring body 111 drives the first support rod 161 through the first connecting rod 1612, the second ring body 112 drives the second support rod 162 through the second connecting rod 1622, the first support rod 161 and the second support rod 162 are far away from each other to slide, and the total length L of the support rod 16 is increased, so that the support rod 16 is used for supporting the square tissue with a larger width.
When needs are at the cylinder mould 1 on the less square tissue of width of lap, need the staff with the electric putter extension as telescopic link 1143 in the roll adjustment subassembly, so that let first ring body 111 and second ring body 112 all be close to fixing base 113, thereby let first ring body 111 drive first branch 161 through first connecting rod 1612, second ring body 112 drives second branch 162 through second connecting rod 1622, make first branch 161 and second branch 162 be close to each other and slide, then make the total length L of branch 16 reduce, so that utilize branch 16 to remove the less square tissue of bearing width.
Can know through the process, the net cage formula square tissue machine of different width square tissue can be convoluteed to the present embodiment that provides, can adjust the total length L of branch 16, let branch 16 remove to support the square tissue of different width, for example when the total length L of branch 16 increases, can let branch 16 support the bigger square tissue of width, thereby only need to use the net cage formula square tissue machine of a different width square tissue of can convoluteing that this embodiment provided, just can convolute the square tissue of different width, so that satisfy the demand that the different width square tissue of firm processing production, the processing flexibility has been improved.
And, need not the firm to purchase the square tissue machine of many netcages, saved the cost of purchasing the square tissue machine of netcages, saved the area of factory, the area of factory is big more, and the expense of renting the factory is higher, thereby has saved the cost of renting the factory.
And, in the net cage formula square tissue machine of the different width square tissue of can coiling of this embodiment, when adjusting the total length L of branch 16, only need the staff adjust the roll adjustment mechanism 114 in the length of telescopic link 1143 can, when telescopic link 1143 extends, the total length L of branch 16 shortens, when telescopic link 1143 shortens, the total length L extension of branch 16, convenient operation is favorable to improving regulation efficiency.
Further, as shown in fig. 2 and 3, the first strut 161 is tightly sleeved with a first position-limiting sleeve 1613 at an end far away from the first connecting rod 1612, and the first spoke 14 is arranged between the first position-limiting sleeve 1613 and the first connecting rod 1612. The second rod 162 is tightly sleeved with a second limiting sleeve 1623 at one end far away from the second connecting rod 1622, and the second spoke 15 is arranged between the second limiting sleeve 1623 and the second connecting rod 1622.
When the first rod 161 and the second rod 162 slide close to each other, the first rod 161 is gradually pulled out from the first dovetail groove 141 on the first spoke 14, the second rod 162 is gradually pulled out from the second dovetail groove 151 on the second spoke 15, but the first stop collar 1613 can be stopped by the first spoke 14, and the second stop collar 1623 can be stopped by the second spoke 15, so that the first stop collar 1613 prevents the first rod 161 from slipping out of the first dovetail groove 141, and the second stop collar 1623 prevents the second rod 162 from slipping out of the second dovetail groove 151, thereby avoiding time waste caused by slipping out to reinsert the first rod 161 into the first dovetail groove 141 again, and insert the second rod 162 into the second dovetail groove 151, saving time, and being beneficial to improving the adjustment efficiency.
Further, the first position-limiting sleeve 1613 and the second position-limiting sleeve 1623 are both plastic sleeves. Through adopting the plastic cover as first stop collar 1613 and second stop collar 1623, can conveniently draw materials to make things convenient for the equipment of the net cage formula square tissue machine of the different width square tissue of can coiling of this embodiment, thereby be favorable to improving the packaging efficiency of the net cage formula square tissue machine of the different width square tissue of can coiling of this embodiment. And, the plastic cover low price is favorable to saving the equipment cost of the net cage formula square tissue machine of the different width square tissue of can coiling of this embodiment.
It will be apparent to those skilled in the art that various changes and modifications may be made in the present invention without departing from the spirit and scope of the utility model. Thus, if such modifications and variations of the present invention fall within the scope of the claims of the present invention and their equivalents, the present invention is also intended to include such modifications and variations.
Claims (7)
1. A net cage type square tissue machine capable of winding square tissue paper with different widths comprises a net cage, the net cage comprises a rotating shaft, a first spoke disc, a second spoke disc, a first spoke, a second spoke and a supporting rod, the first spoke disc is arranged at one end of the rotating shaft, the second spoke disc is arranged at the other end of the rotating shaft, the first spoke disc is provided with a plurality of first spokes which are radially distributed by taking the first spoke disc as a center, the second spoke disc is provided with a plurality of second spokes which are radially distributed by taking the second spoke disc as a center, the first spokes are connected with the second spoke through the supporting rod, the net cage is characterized in that a first ring body, a second ring body and a fixing seat are sleeved on the rotating shaft, the first ring body and the second ring body are both in sliding connection with the rotating shaft along the axial direction of the rotating shaft, the fixing seat is arranged between the first ring body and the second ring body, a distance adjusting mechanism for adjusting the distance between the first ring body and the second ring body is arranged on the fixing seat, the supporting rod comprises a first supporting rod and a second supporting rod, the first supporting rod is connected with the first spoke in a sliding mode along the axial direction of the rotating shaft, the second supporting rod is connected with the second spoke in a sliding mode along the axial direction of the rotating shaft, the first supporting rod is connected with the first ring body through the first connecting rod, and the second supporting rod is connected with the second ring body through the second connecting rod.
2. The mesh-cage type square tissue machine capable of winding square tissues with different widths as claimed in claim 1, wherein the distance adjusting mechanism comprises a first adjusting rod, a second adjusting rod and a telescopic rod, wherein one end of the first adjusting rod and one end of the second adjusting rod are both hinged with one end of the telescopic rod, the first adjusting rod is hinged with the first ring body at one end far away from the telescopic rod, the second adjusting rod is hinged with the second ring body at one end far away from the telescopic rod, and the telescopic rod is connected with the fixed seat at one end far away from the first adjusting rod and the second adjusting rod.
3. The mesh cage type square tissue machine capable of winding square tissues with different widths as claimed in claim 2, wherein the telescopic rod adopts an electric push rod.
4. The net cage type square tissue machine capable of winding square tissues with different widths as claimed in any one of claims 1 to 3, wherein the first spokes are provided with first dovetail sliding grooves, the first support rods are in sliding fit with the first dovetail sliding grooves, the second spokes are provided with second dovetail sliding grooves, and the second support rods are in sliding fit with the second dovetail sliding grooves.
5. The net cage type square tissue machine capable of winding the tissues with different widths as claimed in claim 4, wherein the first supporting rod is provided with a guide block, the second supporting rod is provided with a dovetail elongated slot, and the guide block is in sliding fit with the dovetail elongated slot.
6. The mesh-cage type square tissue machine capable of winding square tissues with different widths as claimed in claim 4, wherein the first support bar is provided with a first stop collar at an end far away from the first connecting rod, the first spoke is arranged between the first stop collar and the first connecting rod, the second support bar is provided with a second stop collar at an end far away from the second connecting rod, and the second spoke is arranged between the second stop collar and the second connecting rod.
7. The mesh-cage type square tissue machine capable of winding square tissues with different widths as claimed in claim 6, wherein the first limiting sleeve and the second limiting sleeve are plastic sleeves.
Priority Applications (1)
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CN202122323394.2U CN215478602U (en) | 2021-09-24 | 2021-09-24 | Mesh cage type square tissue machine capable of winding square tissues with different widths |
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CN202122323394.2U CN215478602U (en) | 2021-09-24 | 2021-09-24 | Mesh cage type square tissue machine capable of winding square tissues with different widths |
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CN215478602U true CN215478602U (en) | 2022-01-11 |
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2021
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