Gauze sizing equipment
By introducing mounting rods, transport frames and elastic connection structures into the mesh setting equipment, the problem of cumbersome alignment of guide rails during mesh setting process is solved, and convenient alignment and stable positioning of transport frames and the guide rails of the shaping machine are achieved.
Patent Information
- Application Number
- CN202422563511.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-23
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-10-23
AI Technical Summary
When using a humid and heat setting machine to shape the mesh, the operator is cumbersome to align the transfer frame with the guide rails in the humid and heat setting machine, resulting in inconvenient positioning.
By setting up structures such as installation rods, transportation frames, clamps and positioning rods, the shafts and springs are used to achieve convenient alignment and positioning of the transport frames and guide rails in the main body of the fixed tank, including sleeve grooves, positioning grooves and elastic connections, improving positioning accuracy and stability.
The alignment process of the transport frame and the setting machine guide rail is simplified, the operator's positioning convenience and stability are improved, and the operation complexity is reduced.
Smart Images

Figure CN223281056U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of shaping equipment, in particular to a mesh shaping equipment. Background Art
[0002] Mesh setting equipment is commonly used in the finishing process of textiles, particularly in the production of knitted and woven fabrics. It improves the fabric's dimensional stability, feel, and appearance. While existing setting equipment generally meets user needs, several challenges remain, including wet heat setting machines and hot air stenter setting machines.
[0003] When using a hot and wet setting machine to set the mesh, the operator first takes the mesh and places it on a carrier, then pushes the carrier to move, and moves the carrier with the mesh into the hot and wet setting machine to set the mesh. However, when moving the carrier with the mesh up and down, the operator may need to align the transfer rack with the guide rails in the hot and wet setting machine, and then pushes the carrier with the mesh to move, so that the carrier moves from the guide rails in the hot and wet setting machine to the transfer rack. However, since it is rather cumbersome for the operator to position the transfer rack with the guide rails in the hot and wet setting machine, we propose a mesh setting device. Utility Model Content
[0004] The utility model provides a mesh shaping device, which pushes the installation rod, and the installation rod rotates through the rotating shaft to move the installation rod out of the storage groove. Then the operator takes the transport rack, and the transport rack drives the sleeve groove to be sleeved on the surface of the installation rod, so that the transport rack and the guide rail in the shaping tank body are aligned with each other, which is convenient for the operator to position the guide rail and the transport rack, thereby improving the convenience of the operator's positioning.
[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a mesh shaping device, comprising a shaping tank body and a loading slot, the loading slots being symmetrically fixed on the inner wall of the shaping tank body, the loading slots being provided in the middle of the loading slots, and the middle of the storage slots being provided with mounting rods, the ends of the mounting rods being passed through with rotating shafts fixed on the inner walls of the storage slots, the ends of the mounting rods being provided with transport racks, and the transport racks being provided with sleeve grooves sleeved on the surface of the mounting rods on the side close to the mounting rods, the surface of the transport racks being fitted with splints, and the splints and the transport racks being elastically connected, the ends of the splints being fixed with positioning rods that move through the sleeve grooves, and the surfaces of the positioning rods being sleeved with second positioning grooves provided on the side walls of the mounting rods.
[0006] Furthermore, the end of the storage slot is fitted with a slide slot opened in the loading slot, and a first spring and a slider are respectively provided inside the slide slot, the two side ends of the first spring are respectively abutted between the slider surface and the inner wall of the slide slot, the ends of the slider are fixed with connecting plates fitted on the surface of the loading slot, and the ends of the connecting plates are fixed with push plates inserted in the storage slot, the push plates and the mounting rods are fitted with positioning blocks, and the surfaces of the positioning blocks are both sleeved with first positioning grooves opened on both side ends of the mounting rod, and the middle parts of the slider and the first spring are penetrated by a slide rod fixed on the inner wall of the slide slot.
[0007] Furthermore, a circular through hole is provided in the middle of the slider, and the slide rod is configured to be cylindrical, and the cylindrical shape of the slide rod matches the circular through hole provided in the middle of the slider.
[0008] Furthermore, a connecting rod is fixed between the two groups of connecting plates, and a handle is fixed in the middle of the connecting rod, and a plurality of groups of wave-shaped grooves are opened on the surface of the handle.
[0009] Furthermore, a sleeve rod is fixed on one side of the splint and the transport frame, and the surface of the sleeve rod is sleeved with a spring groove opened on the transport frame, and the surface of the spring groove is wrapped with a second spring respectively abutting between the inner wall of the spring groove and the surface of the sleeve rod.
[0010] Furthermore, the positioning rods are all configured to be cylindrical, and the ends of the positioning rods are all configured to be arc-shaped chamfers.
[0011] The beneficial effects of the utility model are:
[0012] 1. The mesh shaping equipment is provided with a mounting rod, a receiving groove, a sleeve groove and a rotating shaft. When the operator pushes the mounting rod, the mounting rod is rotated out of the receiving groove through the rotating shaft. Then the operator takes the transport rack, and the transport rack drives the sleeve groove to move so that the sleeve groove is sleeved on the surface of the mounting rod, which is convenient for the operator to position the transport rack and the guide rail in the shaping tank body, thereby improving the convenience of the operator in positioning the transport rack.
[0013] 2. The mesh shaping device is provided with a splint, a first positioning groove, a push plate, a positioning block and a push plate. The connecting plate slides on the surface of the loading groove, so that the connecting plate drives the push plate to move, and the push plate drives the positioning block to be inserted into the first positioning groove. The positioning block is driven by the push plate to be inserted into the first positioning groove to limit the position of the mounting rod. By limiting the position of the mounting rod, the mounting rod is prevented from shaking at will when it is stored in the storage groove, and the mounting rod is prevented from rotating at will when the sleeve groove is set on the sleeve groove surface, thereby ensuring the stability of the mounting rod. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 This is a schematic diagram of the front cross-sectional structure of the present utility model;
[0015] Figure 2 This is a front cross-sectional structural diagram of the mounting rod of the present invention in a retracted state;
[0016] Figure 3 This is a schematic diagram of a top-view cross-sectional structure of the utility model;
[0017] Figure 4 It is a side cross-sectional structural schematic diagram of the utility model;
[0018] Figure 5 It is a side cross-sectional structural diagram of the mounting rod and the rotating shaft of the present invention;
[0019] Figure 6 For the utility model Figure 1 Schematic diagram of the enlarged structure at A in the middle;
[0020] Figure 7 For the utility model Figure 2 Schematic diagram of the enlarged structure at B in the middle;
[0021] Figure 8 For the utility model Figure 3 Schematic diagram of the enlarged structure at point C in the middle.
[0022] In the picture:
[0023] 1. Shaped tank body; 2. Loading slot; 3. Transport rack; 4. Storage slot; 5. Mounting rod; 6. First positioning slot; 7. Clamping plate; 8. Positioning rod; 9. Second positioning slot; 10. Rotating shaft; 11. Push plate; 12. Slide slot; 13. First spring; 14. Handle; 15. Slider; 16. Slide rod; 17. Connecting plate; 18. Connecting rod; 19. Positioning block; 20. Second spring; 21. Sleeve rod; 22. Spring slot; 23. Sleeve slot. DETAILED DESCRIPTION
[0024] In order to further understand the content, features and effects of the present invention, the following embodiments are given as examples and described in detail with reference to the accompanying drawings.
[0025] Example:
[0026] See also Figure 1 - Figure 8When the operator aligns the transport rack 3 and the loading tank 2 with each other, the operator first pulls the mounting rod 5, and the mounting rod 5 rotates through the rotating shaft 10 to make the mounting rack 3 move. When the load box 2 is in the working state, the lifting device 10 is in the working state, and ...
[0027] In other embodiments, the end of the storage slot 4 is fitted with a slide slot 12 opened in the loading slot 2, and a first spring 13 and a slider 15 are respectively provided inside the slide slot 12. The ends of the first spring 13 are respectively abutted between the surface of the slider 15 and the inner wall of the slide slot 12. The ends of the slider 15 are welded with a connecting plate 17 fitted on the surface of the loading slot 2, and the ends of the connecting plate 17 are welded with a push plate 11 inserted into the storage slot 4. The push plate 11 and the mounting rod 5 are fitted with each other and are welded with a positioning block 19. The surface of the positioning block 19 is provided with a first positioning groove 6 opened on both sides of the mounting rod 5. The middle of the slider 15 and the first spring 13 There are slide bars 16 welded on the inner wall of the slide groove 12. When the operator needs to take the mounting rod 5 out of the receiving groove 4, the operator first pulls the connecting plate 17. The connecting plate 17 drives the slider 15 to slide in the slide groove 12. When the slider 15 slides in the slide groove 12, the circular through hole opened in the middle of the slider 15 slides on the surface of the slide bar 16, so that the slide bar 16 pulls the movement of the slider 15. When the slider 15 slides in the slide groove 12, the slider 15 squeezes the first spring 13, causing the first spring 13 to undergo elastic deformation. After the first spring 13 undergoes elastic deformation, the first spring 13 exerts pressure on the slider 15. 5 is avoided, so that the slider 15 drives the connecting plate 17 to slide on the surface of the loading slot 2, the connecting plate 17 drives the push plate 11 to move, and the push plate 11 drives the positioning block 19 to move out of the first positioning groove 6 opened at the opposite end of the mounting rod 5, so that the positioning block 19 no longer fixes the mounting rod 5 through the first positioning groove 6. Then the operator pushes the mounting rod 5, and the mounting rod 5 rotates through the rotating shaft 10, so that the mounting rod 5 is rotated out of the receiving slot 4. When the mounting rod 5 is rotated out of the receiving slot 4, the operator releases the connecting plate 17. After the connecting plate 17 no longer squeezes the first spring 13 through the slider 15, the elastic deformation of the first spring 13 is restored. , the first spring 13 pushes the slider 15 to move, the slider 15 drives the connecting plate 17 to move, the connecting plate 17 drives the push plate 11 to move, and the push plate 11 pushes the positioning block 19 to move, and the positioning block 19 is inserted into another first positioning groove 6 opened on the surface of the mounting rod 5 to fix the position of the mounting rod 5. When the mounting rod 5 is inserted into the receiving groove 4, the positioning block 19 is inserted into the first positioning groove 6, which facilitates the fixing of the mounting rod 5 in the receiving groove 4. When the mounting rod 5 is removed from the receiving groove 4, the positioning block 19 is inserted into the other first positioning groove 6, which facilitates the mutual positioning of the mounting rod 5 and the sleeve groove 23, and the mounting rod 5 can shake at will.
[0028] In other embodiments, a circular through hole is opened in the middle of the slider 15, and the slide rod 16 is set to be cylindrical, and the cylindrical shape of the slide rod 16 matches the circular through hole opened in the middle of the slider 15. By matching the circular through hole set in the middle of the slider 15 with the circular shape set in the slide rod 16, the slider 15 can slide on the surface of the slide rod 16, and the cylindrical surface of the slide rod 16 fits with the inner wall of the circular through hole opened in the middle of the slider 15, thereby increasing the stability of the slider 15 sliding on the surface of the slide rod 16.
[0029] In other embodiments, a connecting rod 18 is welded between the two groups of connecting plates 17, and a handle 14 is welded in the middle of the connecting rod 18. Several groups of wavy grooves are provided on the surface of the handle 14. When the operator pulls the two groups of connecting plates 17 to move, the operator first holds his hand on the surface of the handle 14, and then the operator pulls the handle 14, and the handle 14 drives the connecting rod 18 to move. When the connecting rod 18 moves, the connecting rod 18 simultaneously drives the two groups of connecting plates 17 to move, which is convenient for the operator to pull the two groups of connecting plates 17 to move at the same time. After the operator holds his hand on the surface of the handle 14, the operator's hand and the several groups of wavy grooves provided on the surface of the handle 14 fit together, so that the several groups of wavy grooves provided on the surface of the handle 14 increase the friction of the operator's hand on the surface of the handle 14, thereby improving the stability of the operator pulling the handle 14.
[0030] In other embodiments, a sleeve rod 21 is welded to one side of the splint 7 and the transport frame 3 that are in contact with each other, and the surface of the sleeve rod 21 is provided with a spring groove 22 provided on the transport frame 3, and the surface of the spring groove 22 is wound with a second spring 20 that abuts against the inner wall of the spring groove 22 and the surface of the sleeve rod 21. When the operator pulls the splint 7 to move, the operator holds his hand on the surface of the splint 7, and then the operator pulls the splint 7, and the splint 7 drives the sleeve rod 21 to slide in the spring groove 22, and when the sleeve rod 21 slides in the spring groove 22, the sleeve rod 21 squeezes the second spring 20, causing the second spring 20 to undergo elastic deformation. After the second spring 20 undergoes elastic deformation, The second spring 20 avoids the sleeve rod 21, so that the sleeve rod 21 moves out of the spring groove 22, and the splint 7 moves out of the surface of the transport frame 3. At the same time, the splint 7 drives the positioning rod 8 out of the second positioning groove 9, so that the positioning rod 8 and the second positioning groove 9 no longer restrict the installation rod 5 and the sleeve groove 23. When the operator releases the splint 7 and the splint 7 no longer squeezes the second spring 20 through the sleeve rod 21, the elastic deformation of the second spring 20 is restored, and the second spring 20 pushes the sleeve rod 21 to move, and the sleeve rod 21 drives the splint 7 to move, and the splint 7 drives the positioning rod 8 to move, so that the positioning rod 8 is inserted into the second positioning groove 9 again, which is convenient for the operator to fix the installation rod 5 and the sleeve groove 23.
[0031] In other embodiments, the positioning rods 8 are all set to be cylindrical, and the ends of the positioning rods 8 are all set to be arc-shaped chamfers. By setting the positioning rods 8 to be cylindrical, the positioning rods 8 can pass through the circular through hole opened on one side of the sleeve groove 23, and the end of the positioning rod 8 can be inserted into the second positioning groove 9. At the same time, the end of the positioning rod 8 is set to be an arc-shaped chamfer. The arc-shaped chamfer set at the end of the positioning rod 8 facilitates reducing the surface diameter of the end of the positioning rod 8, making it easier for the positioning rod 8 to pass through the through hole opened on the surface of the sleeve groove 23 and be inserted into the second positioning groove 9.
[0032] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A mesh shaping device, comprising a shaping tank body (1) and a loading tank (2), characterized in that: The inner wall of the shaped tank body (1) is symmetrically fixed with a loading groove (2), the middle of the loading groove (2) is provided with a receiving groove (4), and the middle of the receiving groove (4) is provided with a mounting rod (5), the end of the mounting rod (5) is penetrated by a rotating shaft (10) fixed on the inner wall of the receiving groove (4), the end of the mounting rod (5) is provided with a transport rack (3), and the transport rack (3) is provided with a sleeve groove (23) sleeved on the surface of the mounting rod (5) on the side close to the mounting rod (5), the surface of the transport rack (3) is fitted with a splint (7), and the splint (7) and the transport rack (3) are elastically connected, the end of the splint (7) is fixed with a positioning rod (8) that passes through the sleeve groove (23) and moves, and the surface of the positioning rod (8) is sleeved with a second positioning groove (9) opened on the side wall of the mounting rod (5).
2. The mesh shaping device according to claim 1, characterized in that: The end of the receiving groove (4) is fitted with a slide groove (12) opened in the loading groove (2), and a first spring (13) and a slider (15) are respectively provided inside the slide groove (12), and the two side ends of the first spring (13) are respectively abutted between the surface of the slider (15) and the inner wall of the slide groove (12), and the ends of the slider (15) are fixed with a connecting plate (17) fitted on the surface of the loading groove (2), and the ends of the connecting plate (17) are fixed with a push plate (11) inserted into the receiving groove (4), and the push plate (11) and the mounting rod (5) are fitted with each other and fixed with a positioning block (19), and the surface of the positioning block (19) is sleeved with a first positioning groove (6) opened on the two side ends of the mounting rod (5), and the middle of the slider (15) and the first spring (13) are penetrated by a slide rod (16) fixed on the inner wall of the slide groove (12).
3. The mesh shaping device according to claim 2, characterized in that: The sliders (15) are all provided with circular through holes in the middle, and the slide bars (16) are all arranged in a cylindrical shape, and the cylindrical shape of the slide bars (16) matches the circular through holes in the middle of the sliders (15).
4. The mesh shaping device according to claim 2, characterized in that: A connecting rod (18) is fixed between the two groups of connecting plates (17), and a handle (14) is fixed in the middle of the connecting rod (18). The surface of the handle (14) is provided with a plurality of groups of wave-shaped grooves.
5. The mesh shaping device according to claim 1, characterized in that: A sleeve rod (21) is fixed to one side of the clamping plate (7) and the transport frame (3) where they are in contact with each other, and a spring groove (22) provided on the transport frame (3) is sleeved on the surface of the sleeve rod (21), and a second spring (20) is wound around the surface of the spring groove (22) and abuts between the inner wall of the spring groove (22) and the surface of the sleeve rod (21).
6. The mesh shaping device according to claim 1, characterized in that: The positioning rods (8) are all configured to be cylindrical, and the ends of the positioning rods (8) are all configured to be arc-shaped chamfers.