Boxing glove manufacturing equipment
By introducing material leveling and material changing components into the boxing glove manufacturing equipment, the problem of uniform spraying of release agent in irregular molds is solved, the demoulding success rate and production efficiency are improved, and material damage and economic losses are avoided.
Patent Information
- Application Number
- CN202422844176.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-20
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-11-20
AI Technical Summary
Existing mold release agent spraying devices are difficult to spray evenly inside the irregular boxing glove mold, resulting in damage to the foaming material during demoulding, affecting manufacturing efficiency and causing economic losses.
A boxing glove manufacturing equipment including a material leveling component and a material changing component was designed. An atomizing nozzle and a spray ball were used to achieve uniform spraying of the release agent, and a sliding block and a pulley were used to ensure the continuity and uniformity of the spraying work.
The uniform spraying of the release agent in the boxing glove mold is achieved, which prevents material damage during demoulding, improves manufacturing efficiency and success rate, and reduces economic losses.
Smart Images

Figure CN223395596U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of mold demoulding, in particular to a device for making boxing gloves. Background Art
[0002] Boxing gloves are essential equipment for boxing matches and training. They protect the boxer's hands from injury and provide support and cushioning. The production of boxing gloves requires multiple processes, and the equipment used to make them also needs to have multiple functions to ensure the quality of the gloves and production efficiency. Boxing gloves are generally filled with a large amount of softer materials for cushioning. In the early days, cotton and other fillers were generally used. Now, with the development of technology, most of them are filled with vinyl foam materials. Because boxing gloves are irregular in shape, they require a release agent to assist in demolding.
[0003] However, existing mold release agent spraying devices have difficulty in evenly spraying the mold release agent on the irregular interior of a boxing glove mold, which can easily damage the foaming material and the molding material during demolding, affecting manufacturing efficiency and causing economic losses. To avoid the above technical problems, it is indeed necessary to provide a boxing glove manufacturing device that overcomes the above-mentioned shortcomings in the prior art. Utility Model Content
[0004] The utility model provides a boxing glove manufacturing device, which can effectively solve the problem proposed in the above-mentioned background art that the existing mold release agent spraying device is difficult to spray the mold release agent evenly inside the irregular boxing glove mold, which leads to easy damage to the foaming material and the molding material during demoulding, affecting the manufacturing efficiency and causing economic losses.
[0005] To achieve the above-mentioned object, the present invention provides the following technical solution: a boxing glove manufacturing device, comprising a sliding rod, a material distribution assembly being installed on a side end surface of the sliding rod;
[0006] The material distribution assembly includes a sliding slot plate, a sliding connecting rod, a booster cylinder, a fixed rod, a booster mounting slot plate, a booster pump, a return spring, an air supply hose, an air pressure chamber, a single-way solenoid valve, a liquid infusion tube, a spray ball, an atomizing nozzle and a feed solenoid valve;
[0007] The inner end face of the sliding rod is slidably mounted with a sliding groove plate, one end face of the sliding groove plate is welded with a sliding connecting rod, one end face of the sliding connecting rod is welded with a boosting cylinder, the top end of the sliding rod is mounted with a fixed rod, and a boosting mounting groove plate is mounted at the middle position of the top end of the fixed rod, the inner side of the boosting mounting groove plate is embedded with a boosting pump, the bottom end point of the fixed rod is welded with a return spring, the air outlet end of the boosting pump is connected with an air supply hose, an air pressure chamber is opened inside the boosting cylinder, the bottom end of the boosting cylinder is connected with an infusion tube, the outer side of the infusion tube is sleeved with a one-way solenoid valve, the output end of the infusion tube is connected with a spray ball, the outer side of the spray ball is mounted with an atomizing nozzle, and the top of the boosting cylinder is mounted with a feed solenoid valve.
[0008] Preferably, an embedding groove is provided on the inner side of the fixing rod at a position corresponding to the gas hose, and the gas outlet end of the gas hose is connected to the booster cylinder.
[0009] Preferably, a plurality of the return springs are spot-welded, and the plurality of return springs are spot-welded at equal intervals at the bottom end of the fixed rod, and the other end of the return spring is spot-welded to the sliding connecting rod.
[0010] Preferably, a plurality of atomizing nozzles are provided, and the plurality of atomizing nozzles are evenly distributed at the outer sides of the spray ball, and the input end of the booster pump is electrically connected to the output end of the external power supply.
[0011] Preferably, a material changing assembly is provided at the bottom of the spray ball;
[0012] The material replacement assembly includes a glove filling forming die, a mounting seat, a pulley, a base, a sliding block and a base plate;
[0013] A glove filler forming mold is provided at the bottom end of the spray ball, a mounting seat is welded at the bottom end of the glove filler forming mold, a pulley is rotatably sleeved on the outer side of the mounting seat, a base is provided at the bottom end of the glove filler forming mold, a sliding block is welded at the top end of the base, and a base plate is installed at the bottom end of the base.
[0014] Preferably, two groups of mounting seats are provided, and the two groups of mounting seats are symmetrically installed at the bottom position of the glove filler forming mold, and the glove filler forming mold is slidably connected to the top position of the sliding block through the mounting seats.
[0015] Compared with the existing technology, the beneficial effects of the present invention are as follows: the present invention has a scientific and reasonable structure and is safe and convenient to use:
[0016] 1. A material distribution component is provided, and the atomizing nozzle evenly sprays the internal mold release agent to the inner side of the glove filling molding die. At this time, the operator can quickly remove the vinyl glove filling during demoulding. Moreover, because the mold release agent is evenly applied to the inner side of the glove filling molding die, the vinyl glove filling can be prevented from being damaged by uneven force during demoulding, thereby improving the glove manufacturing efficiency and reducing economic losses.
[0017] 2. A material changing component is provided. The glove filling molding mold without the release agent is placed on the top of the sliding block and moved to the bottom of the spray ball. At this time, the spraying position of the glove filling molding mold can be prevented, which further ensures that the release agent can be sprayed evenly, further improving the demoulding success rate. In addition, the sliding block can ensure that the spraying work is uninterrupted, further improving work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation to the present invention.
[0019] In the attached figure:
[0020] Figure 1 It is a structural diagram of the utility model;
[0021] Figure 2 This is a structural diagram of the material distribution component of the utility model;
[0022] Figure 3 This is a schematic diagram of the installation structure of the feed solenoid valve of the utility model;
[0023] Figure 4 It is a structural diagram of the material changing assembly of the utility model;
[0024] Numbers in the figure: 1, sliding rod;
[0025] 2. Material distribution assembly; 201. Sliding slot; 202. Sliding connecting rod; 203. Booster cylinder; 204. Fixed rod; 205. Booster mounting slot; 206. Booster pump; 207. Return spring; 208. Air hose; 209. Air pressure chamber; 210. One-way solenoid valve; 211. Liquid infusion tube; 212. Spray ball; 213. Atomizing nozzle; 214. Feed solenoid valve;
[0026] 3. Material replacement assembly; 301. Glove filling molding die; 302. Mounting seat; 303. Pulley; 304. Base; 305. Sliding block; 306. Base plate. DETAILED DESCRIPTION
[0027] The preferred embodiments of the present invention are described below in conjunction with the accompanying drawings. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the present invention and are not used to limit the present invention.
[0028] Example: Figure 1-4 As shown, the utility model provides a technical solution, a boxing glove manufacturing device, comprising a sliding rod 1, a material distribution assembly 2 is installed on the side end surface of the sliding rod 1;
[0029] The material distribution assembly 2 includes a sliding slot plate 201, a sliding connecting rod 202, a booster cylinder 203, a fixed rod 204, a booster mounting slot plate 205, a booster pump 206, a return spring 207, an air supply hose 208, an air pressure chamber 209, a one-way solenoid valve 210, a liquid delivery tube 211, a spray ball 212, an atomizing nozzle 213 and a feed solenoid valve 214;
[0030] A sliding groove plate 201 is slidably mounted on the inner end face of the sliding rod 1, and a sliding connecting rod 202 is welded to one end face of the sliding groove plate 201. An embedding groove is provided on the inner side of the fixed rod 204 at a position corresponding to the gas hose 208. The gas outlet end of the gas hose 208 is connected to the booster cylinder 203 to prevent the gas hose 208 from falling off due to high pressure.
[0031] A boost cylinder 203 is welded on one end face of the fixed rod 204, and a fixed rod 204 is installed on the top of the sliding rod 1. An embedding groove is provided on the inner side of the fixed rod 204 at a position corresponding to the gas hose 208. The gas outlet end of the gas hose 208 is connected to the boost cylinder 203 to prevent the gas hose 208 from falling off due to high pressure. A boost installation slot plate 205 is installed at the middle position of the top of the fixed rod 204, and a boost pump 206 is embedded in the inner side of the boost installation slot plate 205. A return spring 207 is welded on the bottom end of the fixed rod 204. There are several return springs 207 spot welded. Several return springs 207 are spot welded at the bottom end of the fixed rod 204 at equal distances. The other end of the return spring 207 is connected to the sliding connecting rod 202 Phase spot welding facilitates the rapid reset of the sliding connecting rod 202, the air outlet end of the booster pump 206 is connected to the air supply hose 208, and an air pressure chamber 209 is opened inside the booster cylinder 203. The bottom end of the booster cylinder 203 is connected to the infusion tube 211, and the outer side of the infusion tube 211 is sleeved with a one-way solenoid valve 210. The output end of the infusion tube 211 is connected to the spray ball 212, and an atomizing nozzle 213 is installed on the outer side of the spray ball 212. There are several atomizing nozzles 213, and several atomizing nozzles 213 are evenly distributed at the outer side of the spray ball 212. The input end of the booster pump 206 is electrically connected to the output end of the external power supply to facilitate uniform coating. A feed solenoid valve 214 is installed at the top of the booster cylinder 203.
[0032] A material changing assembly 3 is provided at the bottom of the spray ball 212;
[0033] The material replacement assembly 3 includes a glove filling forming mold 301, a mounting seat 302, a pulley 303, a base 304, a sliding block 305 and a base plate 306;
[0034] The bottom end of the spray ball 212 is provided with a glove filler forming mold 301, and a mounting seat 302 is welded to the bottom end of the glove filler forming mold 301. A pulley 303 is rotatably sleeved on the outer side of the mounting seat 302. The bottom end of the glove filler forming mold 301 is provided with a base 304, and a sliding block 305 is welded to the top of the base 304. There are two groups of mounting seats 302, and the two groups of mounting seats 302 are symmetrically installed at the bottom position of the glove filler forming mold 301. The glove filler forming mold 301 is slidably clamped at the top position of the sliding block 305 through the mounting seat 302 to prevent the glove filler forming mold 301 from shifting its position. A base plate 306 is installed at the bottom end of the base 304.
[0035] The working principle and usage process of the present invention are as follows: first, the operator adds an appropriate amount of mold release agent through the feed solenoid valve 214. At this time, the mold release agent will enter the inner position of the air pressure chamber 209. Then the operator turns on the booster pump 206 inside the booster installation slot plate 205. At this time, the external air pressure will enter the inside of the air delivery hose 208. Then, the gas will be filled into the inner position of the air pressure chamber 209. Then the operator presses the sliding connecting rod 202 to overcome the elastic force of the return spring 207, and can press down the mobile booster cylinder 203. At this time, the sliding slot plate 201 will slide downward on the outside of the sliding rod 1. At this time, the spray ball 212 at the bottom end of the infusion tube 211 can be deeply The glove filling mold 301 is then filled with the vinyl glove filling. The operator then opens the one-way solenoid valve 210, and the high-pressure gas in the air pressure chamber 209 instantly enters the inside of the spray ball 212. The spray ball 212 then evenly sprays the mold release agent inside onto the inside of the glove filling mold 301 through the atomizing nozzle 213. At this time, the operator can quickly remove the vinyl glove filling during demoulding. Because the mold release agent is evenly applied to the inside of the glove filling mold 301, the vinyl glove filling can be prevented from being damaged by uneven force during demoulding, thereby improving glove manufacturing efficiency and reducing economic losses.
[0036] Next, after spraying the release agent on a glove filling molding mold 301, the personnel can move the top of the sliding block 305 to the side of the base 304. At this time, the glove filling molding mold 301 can be moved to the side of the base 304 through the pulley 303. Then, the glove filling molding mold 301 without the release agent is placed on the top of the sliding block 305 and moved to the bottom of the spray ball 212. At this time, the glove filling can be prevented from deviating from the spraying position of the molding mold 301, further ensuring that the release agent can be sprayed evenly, further improving the demoulding success rate, and the sliding block 305 can ensure that the spraying work is uninterrupted, further improving work efficiency.
[0037] Finally, it should be noted that the above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art will be able to modify the technical solutions described in the aforementioned embodiments or replace some of the technical features therein with equivalents. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.
Claims
1. A boxing glove manufacturing device, comprising a sliding rod (1), characterized in that: A material distribution assembly (2) is installed on the side end surface of the sliding rod (1); The material distribution assembly (2) comprises a sliding slot plate (201), a sliding connecting rod (202), a boosting cylinder (203), a fixing rod (204), a boosting mounting slot plate (205), a boosting pump (206), a return spring (207), an air delivery hose (208), an air pressure chamber (209), a single electromagnetic valve (210), a liquid delivery tube (211), a spray ball (212), an atomizing nozzle (213) and a feed electromagnetic valve (214); A sliding slot plate (201) is slidably mounted on the inner end face of the sliding rod (1), a sliding connecting rod (202) is welded to one end face of the sliding connecting rod (202), a boost cylinder (203) is welded to one end face of the sliding connecting rod (202), a fixed rod (204) is mounted on the top end of the sliding rod (1), a boost installation slot plate (205) is mounted at the middle position of the top end of the fixed rod (204), a boost pump (206) is embedded in the inner side of the boost installation slot plate (205), and a return spring is welded to the bottom end of the fixed rod (204). (207), the air outlet end of the booster pump (206) is connected to an air delivery hose (208), an air pressure chamber (209) is provided inside the booster cylinder (203), the bottom end of the booster cylinder (203) is connected to an infusion tube (211), a single electromagnetic valve (210) is sleeved on the outside of the infusion tube (211), the output end of the infusion tube (211) is connected to a spray ball (212), an atomizing nozzle (213) is installed on the outside of the spray ball (212), and a feed electromagnetic valve (214) is installed on the top end of the booster cylinder (203).
2. The boxing glove manufacturing device according to claim 1, characterized in that: An embedding groove is provided on the inner side of the fixing rod (204) at a position corresponding to the air delivery hose (208), and the air outlet end of the air delivery hose (208) is connected to the boost cylinder (203).
3. The boxing glove manufacturing device according to claim 1, characterized in that: A plurality of the return springs (207) are spot welded, and the plurality of return springs (207) are spot welded at equal intervals at the bottom end of the fixed rod (204), and the other end of the return spring (207) is spot welded to the sliding connecting rod (202).
4. The boxing glove manufacturing device according to claim 1, characterized in that: A plurality of atomizing nozzles (213) are provided, and the plurality of atomizing nozzles (213) are evenly distributed at positions outside the spray ball (212). The input end of the booster pump (206) is electrically connected to the output end of an external power supply.
5. The boxing glove manufacturing device according to claim 1, characterized in that: A material changing assembly (3) is provided at the bottom of the spray ball (212); The material replacement assembly (3) comprises a glove filling forming die (301), a mounting seat (302), a pulley (303), a base (304), a sliding block (305) and a base plate (306); The bottom end of the spray ball (212) is provided with a glove filling forming mold (301), the bottom end of the glove filling forming mold (301) is welded with a mounting seat (302), the outer side of the mounting seat (302) is rotatably sleeved with a pulley (303), the bottom end of the glove filling forming mold (301) is provided with a base (304), the top end of the base (304) is welded with a sliding block (305), and the bottom end of the base (304) is installed with a base plate (306).
6. The boxing glove manufacturing device according to claim 5, characterized in that: Two groups of mounting seats (302) are provided. The two groups of mounting seats (302) are symmetrically mounted at the bottom positions of the glove filling forming mold (301). The glove filling forming mold (301) is slidably engaged with the top position of the sliding block (305) through the mounting seats (302).