Zipper production forming device
By employing multiple sets of parallel heating wires equidistantly spaced along the central axis of the connecting base in the zipper production forming device, and utilizing the cooperation of a servo motor and a hinged boom, efficient cutting and forming are achieved, solving the problems of low efficiency and high wear of existing devices, and improving the overall performance of the equipment.
Patent Information
- Application Number
- CN202520082563.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-14
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2035-01-14
AI Technical Summary
Existing zipper production and forming equipment is inefficient during cutting, and the equipment is prone to damage and has high losses.
This device employs multiple sets of equally spaced parallel heating wires along the central axis of a connected base. The heating wires are then cut and shaped using a servo motor and a hinged boom. The device achieves efficient cutting and shaping by cooperating with the servo motor and the hinged boom.
It improved the processing efficiency of the equipment and reduced the wear and tear on equipment components.
Smart Images

Figure CN223617841U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of zipper production technology, and in particular to a zipper production forming device. Background Technology
[0002] The zipper production process includes mold making, material procurement and processing, tooth forming, link assembly, installation of closing and opening mechanisms, surface treatment, quality inspection, and packaging.
[0003] Existing zipper production forming devices, such as the one disclosed in application number CN202222299035.2, include a base with a forming structure on it. The forming structure includes a feeding roller, a receiving roller, an operating table, a placement groove, a pressing template, a zipper extrusion template, a first back plate, a reciprocating drive assembly, and a cutting assembly. The feeding roller is mounted on the upper wall of the base, and the receiving roller is also mounted on the upper wall of the base, with the receiving roller located to the right of the feeding roller. This utility model relates to the field of zipper production technology. This invention adopts a forming structure that is simple in structure and convenient to operate, placing the pressing template in the placement groove on the operating table. However, in the above-mentioned technology, the cutting blade is unidirectional, resulting in low processing efficiency and high blade wear. Therefore, this utility model proposes a zipper production forming device to solve the problems existing in the prior art. Utility Model Content
[0004] To address the aforementioned issues, this utility model proposes a zipper production forming device. This device primarily utilizes multiple sets of parallel heating wires equidistant from the central axis of the connecting base. Through a servo motor and a hinged arm, the heating wires cut and form the product, enabling the cut product to be wound and formed. This improves the processing efficiency of the equipment and reduces the wear and tear on the equipment components.
[0005] To achieve the purpose of this utility model, the utility model is implemented through the following technical solution: a zipper production forming device, including a feeding output component and a forming mechanism, wherein a bolt-connected receiving positioning component is provided above one end of the feeding output component, and a bolt-connected forming mechanism is provided above the middle part of the feeding output component;
[0006] The forming mechanism includes a lifting frame, a crossbeam, a central folding base, a servo motor, a hinged boom, a vertical frame, a connecting base, a heating wire, a junction base, and a hinge support. The lifting frame is bolted to the upper middle part of the feeding output assembly. A crossbeam is provided above the lifting frame, and a central folding base is bolted to the inner side of the middle part of the crossbeam. Hinged booms connected to the output ends of the servo motor are provided below both ends of the central folding base, and a vertical frame is provided below one end of the hinged boom. A connecting base is provided below the vertical frame, and a heating wire is provided on the opposite side of the connecting base. A junction base is provided around the outer perimeter of the connecting base, and a hinge support is provided at one end of the junction base.
[0007] In a preferred embodiment of this utility model, the heating wires are arranged in multiple parallel groups at equal intervals along the central axis of the connecting base, and the connecting base and hinge support are symmetrically distributed along the central axis of the connecting base.
[0008] In a preferred embodiment of this utility model, the feeding output assembly includes a pressure reducing plate, a first bolt base, a first side frame, a positioning rod, a connecting bar, a first cylinder, a raw material cylinder, an inner convex plate, a lower fixed rod, and an upper pressure rod. A first bolt base with bolt connection is provided above one end of the pressure reducing plate, and a first side frame is provided above both ends of the first bolt base. An inner convex plate is provided on one side above the first side frame, and a lower fixed rod is provided on the inner side of the inner convex plate. An upper pressure rod is provided above the lower fixed rod.
[0009] In a preferred embodiment of the present invention, a positioning rod is provided on the upper inner side of the first side frame, and a connecting bar is provided on the outer side of one end of the positioning rod. A first cylinder is provided on the lower side of the connecting bar, and a raw material cylinder is provided on the inner end of the positioning rod.
[0010] In a preferred embodiment of this utility model, the material receiving and positioning component includes a second bolt base, a second side frame, an inner convex shell, a lower fixing strip, an upper pressure strip, a drive housing, a drive motor, and a material receiving cylinder. The second bolt base is disposed above the other end of the pressure reducing plate. The second side frame is disposed above both ends of the second bolt base. An inner convex shell is disposed on one side above the second side frame, and a lower fixing strip is disposed on the inner side of one end of the inner convex shell. An upper pressure strip is disposed above the lower fixing strip.
[0011] In a preferred embodiment of the present invention, a drive housing is provided on one side of the outer side of the second side frame, and a drive motor is provided on one side of the drive housing, and a receiving cylinder is provided at the output end of the drive housing.
[0012] The beneficial effects of this utility model are as follows:
[0013] This utility model mainly utilizes multiple sets of parallel heating wires equidistant from the central axis of the connecting base. After being driven by a servo motor and a hinged boom, the heating wires cut and shape the product, thereby enabling the cut product to be wound and shaped, which improves the processing efficiency of the equipment and reduces the wear and tear of the equipment components. Attached Figure Description
[0014] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0015] Figure 2 This is a bottom-view three-dimensional structural diagram of the present invention;
[0016] Figure 3 This is a three-dimensional structural diagram of the molding mechanism of this utility model.
[0017] The components include: 1. Feeding and output assembly; 101. Pressure reducing plate; 102. First bolt base; 103. First side frame; 104. Positioning rod; 105. Connecting bar; 106. First cylinder; 107. Raw material cylinder; 108. Inner convex plate; 109. Lower fixed rod; 1010. Upper pressure rod; 2. Receiving and positioning component; 201. Second bolt base; 202. Second side frame; 203. Inner convex shell; 204. Lower fixing strip; 205. Upper pressure strip; 206. Drive housing; 207. Drive motor; 208. Receiving cylinder; 3. Forming mechanism; 301. Lifting frame; 302. Crossbeam; 303. Middle folding base; 304. Servo motor; 305. Hinge boom; 306. Vertical frame; 307. Connecting base; 308. Heating wire; 309. Transfer base; 3010. Hinge support bar. Detailed Implementation
[0018] To deepen the understanding of this utility model, the following detailed description will be provided in conjunction with embodiments. These embodiments are only used to explain this utility model and do not constitute a limitation on the scope of protection of this utility model.
[0019] according to Figure 1-3 As shown, this embodiment proposes a zipper production forming device, including a feeding output component 1 and a forming mechanism 3. A receiving and positioning component 2 connected by bolts is provided above one end of the feeding output component 1, and a bolt-connected forming mechanism 3 is provided above the middle part of the feeding output component 1.
[0020] The forming mechanism 3 includes a lifting frame 301, a crossbeam 302, a central folding base 303, a servo motor 304, a hinged boom 305, a vertical frame 306, a connecting base 307, a heating wire 308, a connecting base 309, and a hinge support 3010. The lifting frame 301 is bolted to the upper middle part of the feeding output assembly 1. The crossbeam 302 is provided above the lifting frame 301, and the central folding base 3 is bolted to the inner side of the middle part of the crossbeam 302. 03. The lower ends of the central folding base 303 are provided with hinge arms 305 that connect to the output end of the servo motor 304. The lower end of the hinge arm 305 is provided with a vertical frame 306. The lower end of the vertical frame 306 is provided with a connecting base 307. The opposite side of the connecting base 307 is provided with a heating wire 308. The outer perimeter of the connecting base 307 is provided with a junction base 309. The lower end of the junction base 309 is provided with a hinge support bar 3010.
[0021] The heating wires 308 are arranged in multiple parallel groups at equal intervals along the central axis of the connecting base 307, and the connecting base 309 and the hinge support 3010 are symmetrically distributed along the central axis of the connecting base 307.
[0022] In this embodiment, the heating wire 308 on the connecting base 307 is then turned on to generate high temperature. After the servo motor 304 on the middle folding base 303 outputs power and runs, the hinge arm 305, the vertical frame 306, the connecting base 309, and the hinge support 3010 cooperate to ensure the orderly operation of the connecting base 307 and the heating wire 308, so that the heating wire 308 cuts the raw material into shape.
[0023] The feeding and output assembly 1 includes a pressure reducing plate 101, a first bolt base 102, a first side frame 103, a positioning rod 104, a connecting bar 105, a first cylinder 106, a raw material cylinder 107, an inner convex plate 108, a lower fixed rod 109, and an upper pressure rod 1010. The pressure reducing plate 101 is provided with a bolted first bolt base 102 above one end, and the first side frame 103 is provided above both ends of the first bolt base 102. The inner convex plate 108 is provided on one side above the first side frame 103, and the lower fixed rod 109 is provided on the inner side of the inner convex plate 108. The upper pressure rod 1010 is provided above the lower fixed rod 109.
[0024] In this embodiment, the output end on the inner convex plate 108 is then used to output power to drive the output end to run, which causes the upper pressure bar 1010 to press down, so that the lower fixed bar 109 and the upper pressure bar 1010 cooperate to clamp and position the raw material.
[0025] A positioning rod 104 is provided on the upper inner side of the first side frame 103, and a connecting bar 105 is provided on the outer side of one end of the positioning rod 104. A first cylinder 106 is provided on the lower side of the connecting bar 105, and a raw material cylinder 107 is provided on the inner end of the positioning rod 104.
[0026] In this embodiment, when in use, the output end is driven by the output power of the first cylinder 106, which causes the connecting bar 105 to drive the output end of the positioning bar 104 to position and clamp the raw material cylinder 107.
[0027] The receiving and positioning component 2 includes a second bolt base 201, a second side frame 202, an inner convex shell 203, a lower fixing strip 204, an upper pressure strip 205, a drive housing 206, a drive motor 207, and a receiving cylinder 208. The second bolt base 201 is located above the other end of the pressure reducing plate 101. The second side frame 202 is located above both ends of the second bolt base 201. The inner convex shell 203 is located on one side above the second side frame 202. The lower fixing strip 204 is located on the inner side of one end of the inner convex shell 203. The upper pressure strip 205 is located above the lower fixing strip 204.
[0028] In this embodiment, the raw material is then output from the raw material cylinder 107, so that the raw material travels a long distance and enters between the lower fixed bar 204 and the upper pressure bar 205. The output end of the upper pressure bar 205 outputs power, so that the lower fixed bar 204 and the upper pressure bar 205 cooperate to clamp and position the raw material.
[0029] A drive housing 206 is provided on one side of the second side frame 202, and a drive motor 207 is provided on one side of the drive housing 206. A receiving cylinder 208 is provided at the output end of the drive housing 206.
[0030] In this embodiment, the drive motor 207 outputs power to drive the drive housing 206 to perform transmission operation, which in turn causes the receiving cylinder 208 to wrap and form the processed product.
[0031] The working principle of this zipper production forming device is as follows: During operation, the first cylinder 106 outputs power to drive the output end, causing the connecting strip 105 to drive the output end of the positioning rod 104 to position and clamp the raw material cylinder 107. Then, the raw material cylinder 107 outputs raw material, which travels a long distance to enter between the lower fixing strip 204 and the upper pressure strip 205. The output end of the upper pressure strip 205 outputs power, causing the lower fixing strip 204 and the upper pressure strip 205 to cooperate in clamping and positioning the raw material. Next, the output end on the inner convex plate 108 outputs power to drive the output end, causing the upper pressure rod 1010 to press down, causing the lower... The raw material is clamped and positioned by the cooperation of the fixed bar 109 and the upper pressure bar 1010. Then, the heating wire 308 on the connecting base 307 is turned on to generate high temperature. After the servo motor 304 on the middle folding base 303 outputs power, the hinge arm 305, the vertical frame 306, the connecting base 309 and the hinge support 3010 cooperate to make the connecting base 307 and the heating wire 308 operate in an orderly manner, so that the heating wire 308 cuts the raw material into shape. Then, the output end of the drive motor 207 outputs power to drive the drive housing 206 to drive the output, so that the receiving cylinder 208 wraps the processed product to form a shape.
[0032] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A zipper production forming device, comprising a feeding and output assembly (1) and a forming mechanism (3), characterized in that: The feeding output assembly (1) is provided with a bolted receiving positioning component (2) at one end, and the feeding output assembly (1) is provided with a bolted connection to the forming mechanism (3) at the middle. The forming mechanism (3) includes a lifting frame (301), a crossbeam (302), a central folding base (303), a servo motor (304), a hinged boom (305), a vertical frame (306), a connecting base (307), a heating wire (308), a junction base (309), and a hinge support (3010). The lifting frame (301) is bolted to the upper middle part of the feeding output assembly (1). A crossbeam (302) is provided above the lifting frame (301), and a central folding base is bolted to the inner side of the middle part of the crossbeam (302). (303) The two ends of the central folding base (303) are provided with hinge arms (305) that connect to the output end of the servo motor (304), and a vertical frame (306) is provided below one end of the hinge arm (305). A connecting base (307) is provided below the vertical frame (306), and an electric heating wire (308) is provided on the opposite side of the connecting base (307). A junction base (309) is provided on the outer periphery of the connecting base (307), and a hinge support (3010) is provided at one end of the junction base (309).
2. The zipper production and forming apparatus according to claim 1, characterized in that: The heating wires (308) are arranged in multiple parallel groups at equal intervals along the central axis of the connecting base (307), and the connecting base (309) and the hinge support (3010) are symmetrically distributed along the central axis of the connecting base (307).
3. The zipper production forming apparatus according to claim 1, characterized in that: The feeding and output assembly (1) includes a pressure reducing plate (101), a first bolt base (102), a first side frame (103), a positioning rod (104), a connecting bar (105), a first cylinder (106), a raw material cylinder (107), an inner convex plate (108), a lower fixed rod (109), and an upper pressure rod (1010). The pressure reducing plate (101) is provided with a bolt-connected first bolt base (102) above one end, and the first side frame (103) is provided above both ends of the first bolt base (102). The inner convex plate (108) is provided on one side above the first side frame (103), and the lower fixed rod (109) is provided on the inner side of the inner convex plate (108). The upper pressure rod (1010) is provided above the lower fixed rod (109).
4. The zipper production forming apparatus according to claim 3, characterized in that: A positioning rod (104) is provided on the upper inner side of the first side frame (103), and a connecting bar (105) is provided on the outer side of one end of the positioning rod (104). A first cylinder (106) is provided on the lower side of the connecting bar (105), and a raw material cylinder (107) is provided on the inner end of the positioning rod (104).
5. The zipper production forming apparatus according to claim 3, characterized in that: The receiving and positioning component (2) includes a second bolt base (201), a second side frame (202), an inner convex shell (203), a lower fixing strip (204), an upper pressure strip (205), a drive housing (206), a drive motor (207), and a receiving cylinder (208). The second bolt base (201) is located above the other end of the pressure reducing plate (101). The second side frame (202) is located above both ends of the second bolt base (201). The inner convex shell (203) is located on one side above the second side frame (202), and the lower fixing strip (204) is located on the inner side of one end of the inner convex shell (203). The upper pressure strip (205) is located above the lower fixing strip (204).
6. The zipper production forming apparatus according to claim 5, characterized in that: A drive housing (206) is provided on one side of the second side frame (202), and a drive motor (207) is provided on one side of the drive housing (206). A receiving cylinder (208) is provided at the output end of the drive housing (206).
Citation Information
Patent Citations
Zipper production forming device
CN218278859U