A reciprocating driving device for a pressure head of a full-automatic plastic glove heat sealing machine
By designing a combination of electric cylinders, drive mechanisms, push-pull mechanisms, and vibration mechanisms for a fully automatic plastic glove heat sealing machine, the problems of low efficiency and wasted manpower in existing devices have been solved, achieving automated and efficient glove heat sealing production.
Patent Information
- Application Number
- CN202510371720.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-27
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2045-03-27
AI Technical Summary
The existing fully automatic plastic glove heat sealing machine has a reciprocating drive for the pressure head, which is inefficient and wastes manpower when repeatedly heat sealing a large number of gloves.
A reciprocating drive device for a press head of a fully automatic plastic glove heat sealing machine was designed, comprising an electric cylinder, a drive mechanism, a push-pull mechanism, a clamping mechanism, and a vibration mechanism. The electric cylinder drives the drive mechanism to achieve automatic feeding and unloading, the clamping mechanism achieves automatic clamping of gloves, and the vibration mechanism reduces defective products and improves work efficiency.
The process of heat sealing gloves has been automated, which has improved work efficiency, saved manual time, and reduced the rate of defective products.
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Figure CN120096092B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of heat sealing equipment for plastic gloves, specifically a reciprocating drive device for a pressure head in a fully automatic heat sealing machine for plastic gloves. Background Technology
[0002] Plastic glove heat sealing machines can heat seal plastic film materials through a heat sealing process. Under the action of a mold, the flat plastic film is heat-sealed along specific edges and shapes, so that the edges of the film are fused together. In the heat sealing process, not only are the edges of the gloves fused together, but it also ensures that the gloves will not leak during use.
[0003] Existing patent (Publication No.: CN 212708088) U) discloses a reciprocating drive device for a fully automatic plastic glove heat sealing machine, including a reciprocating guide seat fixedly mounted on the frame of the heat sealing machine. At least three reciprocating guide rods are vertically slidably mounted on the reciprocating guide seat, and a pressure head seat is connected to the reciprocating guide rods. At least one of the reciprocating guide rods is connected to a reciprocating drive seat, and a drive seat guide device is provided between the reciprocating drive seat and the frame. A drive shaft is rotatably mounted on the frame, and an eccentric transmission device is provided between the drive shaft and the reciprocating drive seat. The drive shaft is connected to a power supply device. The above-mentioned reciprocating drive device for a fully automatic plastic glove heat sealing machine is guided by the drive seat guide device, which can significantly reduce the vibration caused by the eccentric transmission device, making the vertical sliding of the reciprocating guide rods more stable. This is beneficial for the pressure head seat to increase the frequency of downward heat sealing and improve the heat sealing efficiency. However, in the actual operation of the factory, a large number of plastic gloves need to be repeatedly heat sealed. Traditional heat sealing machines are difficult to repeatedly heat seal a large number of gloves and are relatively wasteful of human resources. Therefore, a reciprocating drive device for a fully automatic plastic glove heat sealing machine is needed. Summary of the Invention
[0004] The purpose of this invention is to provide a reciprocating drive device for a press head in a fully automatic plastic glove heat sealing machine, so as to solve the problems mentioned in the background art. To achieve the above objective, this invention provides the following technical solution: a reciprocating drive device for a press head in a fully automatic plastic glove heat sealing machine, comprising a machine base, an electric cylinder fixedly connected to the surface of the machine base, a heat sealing machine body fixedly connected to the upper end of the electric cylinder, an electric conveyor belt provided on the surface of the machine base, a drive mechanism fixedly connected to the surface of the machine base, a push-pull mechanism provided on the surface of the machine base, a clamping mechanism fixedly connected to one end of the push-pull mechanism, a vibration mechanism provided at the lower end of the clamping mechanism, and a discharge port opened on the surface of the machine base.
[0005] Preferably, the driving mechanism includes a fixed rod, which is fixedly connected to the lower surface of the heat sealing machine body connector. A rotating groove is fixedly connected to the side of the machine base. A rotating roller is rotatably connected inside the rotating groove. A round rod is fixedly connected to the surface of the fixed rod. A special-shaped threaded groove is formed on the surface of the rotating roller. The special-shaped threaded groove is composed of a threaded groove and a straight groove. The round rod is slidably connected inside the special-shaped threaded groove. A half-tooth ring is fixedly connected to the bottom of the rotating roller. A half-gear is fixedly connected to the surface of the half-tooth ring. A rotating rod is rotatably connected to the surface of the machine base. A gear is fixedly connected to the top of the rotating rod. A bevel gear one is fixedly connected to the surface of the rotating rod. A bevel gear two is rotatably connected to the surface of the machine base.
[0006] Preferably, the push-pull mechanism includes a rotating rod, which is rotatably connected to the surface of the base of the machine body, and the other end of the rotating rod is fixedly connected to the other end of the bevel gear. A locking rod is fixedly connected to the surface of the rotating rod, and a limiting groove is fixedly connected to the surface of the base of the machine body. A sliding rod is slidably connected inside the limiting groove. A crossbar is rotatably connected to one end of the sliding rod, and a locking groove is opened at the lower end of the crossbar. The locking rod engages with the locking groove.
[0007] Preferably, the clamping mechanism includes an L-shaped rod, which is fixedly connected to the other end of a sliding rod. A glove mold is fixedly connected to the surface of the machine base. A U-shaped fixing frame is fixedly connected to the side of the L-shaped rod. An L-shaped rod is slidably connected to the side of the U-shaped fixing frame. The other end of the L-shaped rod is slidably connected inside the L-shaped rod. A rotating groove is fixedly connected to the lower end of the L-shaped rod. A small gear is rotatably and slidably connected inside the rotating groove. A rack is fixedly connected to the surface of the machine base. A sliding plate is fixedly connected to the other end of the L-shaped rod. A lower clamping rod is fixedly connected to the lower end of the U-shaped fixing frame. A slider is slidably connected to one end of the sliding plate. An upper clamping rod is slidably connected to the upper end of the U-shaped fixing frame. A connecting rod is rotatably connected between the slider and the upper clamping rod. A telescopic rod is fixedly connected between the sliding plate and the U-shaped fixing frame.
[0008] Preferably, the lower mold of the glove has a T-shaped groove inside, one end of the T-shaped groove has an inclined surface, and teeth are fixedly connected inside the T-shaped groove.
[0009] Preferably, the vibration mechanism includes a slide groove, which is fixedly connected to the surface of the machine base. The slide groove has a vertical groove and a curved groove inside. A baffle is slidably connected inside the slide groove. A support rod is fixedly connected to the surface of the machine base. A pressure rod is rotatably connected to the side of the support rod. One end of the pressure rod is hinged to the baffle, and the other end of the pressure rod is fixedly connected to an inclined block.
[0010] Preferably, the gear is in its initial state about to engage with the half gear ring and about to disengage from the half gear, and the first bevel gear engages with the second bevel gear.
[0011] Preferably, the lower end of the baffle slides and rotates inside the vertical groove, while the middle part of the baffle slides inside the curved groove.
[0012] In this invention, when the round rod moves downward, it will be in the straight groove at the lower end of the irregular thread groove. At this time, the rotating roller will stop rotating, and the heat sealing machine body will start to heat press the plastic glove. When the U-shaped fixing frame moves forward again, it will push the heat-sealed plastic glove out of the discharge port. In this way, the loading and unloading can be completed at the same time, which improves work efficiency and saves a lot of manual time.
[0013] In this invention, when the rotating rod rotates, it drives the surface clamping rod to rotate. When the clamping rod rotates in the opposite direction, it pulls the horizontal bar with the clamping groove. The horizontal bar then pulls the sliding rod back and simultaneously drives the L-shaped rod back. At this time, the plastic glove is pulled into the lower mold of the glove by the two clamping mechanisms, thus realizing automatic feeding, saving a lot of time and improving work efficiency.
[0014] In this invention, the other end of the pressure rod drives the baffle to slide upward in the chute. While sliding, the middle part of the baffle will swing around the bottom of the baffle and along the curved groove opened in the chute, generating vibration. This vibration vibrates the plastic glove in the lower mold, causing it to quickly fit into the mold and reduce the defective product rate. Attached Figure Description
[0015] Figure 1 This is a three-dimensional appearance diagram of the present invention;
[0016] Figure 2 This is a schematic diagram of the surface structure of the base of the machine body of the present invention;
[0017] Figure 3 This is a schematic diagram of the drive mechanism structure of the present invention;
[0018] Figure 4 This is a schematic diagram of the bottom structure of the roller of the present invention;
[0019] Figure 5 This is a schematic diagram of the push-pull mechanism structure of the present invention;
[0020] Figure 6 This is a schematic diagram of the push-pull mechanism and clamping machine structure of the present invention;
[0021] Figure 7 This is a schematic diagram of the clamping mechanism of the present invention;
[0022] Figure 8This is a schematic diagram of the vibration mechanism structure of the present invention;
[0023] Figure 9 This is a schematic diagram of the chute structure of the present invention;
[0024] Figure 10 This is a schematic diagram of the lower mold structure for the gloves of the present invention.
[0025] In the diagram: 1. Machine base; 2. Electric cylinder; 3. Heat sealing machine body; 4. Electric conveyor belt; 5. Drive mechanism; 6. Push-pull mechanism; 7. Clamping mechanism; 8. Vibration mechanism; 9. Discharge port; 51. Fixed rod; 52. Rotary groove; 53. Round rod; 54. Rotary roller; 55. Special-shaped threaded groove; 56. Half gear ring; 57. Half gear; 58. Rotating rod; 59. Gear; 510. Bevel gear one; 511. Bevel gear two; 61. Rotating rod; 62. Locking rod; 63. Limiting groove; 64. Sliding rod; 6 5. Crossbar; 66. Slot; 71. L-shaped bar; 72. Lower glove mold; 73. U-shaped fixing frame; 74. L-shaped bar one; 75. Rotary groove one; 76. Pinion; 77. Rack one; 78. Slide plate; 79. Lower clamping rod; 710. Slider; 711. Connecting rod one; 712. Upper clamping rod; 713. Telescopic rod; 714. T-slot; 715. Inclined block; 716. Tooth; 81. Slide groove; 82. Baffle; 83. Support rod; 84. Pressure rod; 85. Vertical slide groove; 86. Curved groove. Detailed Implementation
[0026] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0027] Please see Figures 1 to 10 The present invention provides a technical solution: a reciprocating drive device for a press head of a fully automatic plastic glove heat sealing machine, comprising a machine base 1, an electric cylinder 2 fixedly connected to the surface of the machine base 1, a heat sealing machine body 3 fixedly connected to the upper end of the electric cylinder 2, an electric conveyor belt 4 provided on the surface of the machine base 1, a drive mechanism 5 fixedly connected to the surface of the machine base 1, a push-pull mechanism 6 provided on the surface of the machine base 1, a clamping mechanism 7 fixedly connected to one end of the push-pull mechanism 6, a vibration mechanism 8 provided at the lower end of the clamping mechanism 7, and a discharge port 9 opened on the surface of the machine base 1.
[0028] The drive mechanism 5 includes a fixed rod 51, which is fixedly connected to the lower surface of the connector of the heat sealing machine body 3. A rotating groove 52 is fixedly connected to the side of the machine base 1. A rotating roller 54 is rotatably connected inside the rotating groove 52. A round rod 53 is fixedly connected to the surface of the fixed rod 51. A special threaded groove 55 is opened on the surface of the rotating roller 54. The special threaded groove 55 is composed of a threaded groove and a straight groove. The round rod 53 is slidably connected inside the special threaded groove 55. A half gear ring 56 is fixedly connected to the bottom of the rotating roller 54. A half gear 57 is fixedly connected to the surface of the half gear ring 56. A rotating rod 58 is rotatably connected to the surface of the machine base 1. A gear 59 is fixedly connected to the top of the rotating rod 58. A bevel gear 1 510 is fixedly connected to the surface of the rotating rod 58. A bevel gear 2 511 is rotatably connected to the surface of the machine base 1. In the initial state, the gear 59 is about to mesh with the half gear ring 56 and about to separate from the half gear 57. The bevel gear 1 510 meshes with the bevel gear 2 511.
[0029] The push-pull mechanism 6 includes a rotating rod 61, which is rotatably connected to the surface of the machine base 1. The other end of the rotating rod 61 is fixedly connected to the other end of the bevel gear 511. A locking rod 62 is fixedly connected to the surface of the rotating rod 61. A limiting groove 63 is fixedly connected to the surface of the machine base 1. A sliding rod 64 is slidably connected inside the limiting groove 63. A crossbar 65 is rotatably connected to one end of the sliding rod 64. A slot 66 is opened at the lower end of the crossbar 65. The locking rod 62 meshes with the slot 66. When the rotating rod 61 rotates, it drives the locking rod 62 to rotate. When the locking rod 62 rotates in the opposite direction, it pulls the crossbar 65 with the slot 66. The crossbar 65 then pulls the sliding rod 64 back, and at the same time drives the L-shaped rod 71 back. At this time, the plastic glove is pulled into the glove lower mold 72 by the two clamping mechanisms 7. This can realize automatic feeding, save a lot of time and improve work efficiency.
[0030] The clamping mechanism 7 includes an L-shaped rod 71, which is fixedly connected to the other end of a sliding rod 64. A glove mold 72 is fixedly connected to the surface of the base 1. A U-shaped fixing frame 73 is fixedly connected to the side of the L-shaped rod 71. An L-shaped rod 74 is slidably connected to the side of the U-shaped fixing frame 73. The other end of the L-shaped rod 74 is slidably connected inside the L-shaped rod 71. A rotating groove 75 is fixedly connected to the lower end of the L-shaped rod 74. A small gear 76 is rotatably and slidably connected inside the rotating groove 75. A rack 77 is fixedly connected to the surface of the base 1. A sliding plate 78 is fixedly connected to the other end of the L-shaped rod 74. A lower part of the U-shaped fixing frame 73 is fixedly connected to the lower part of the sliding rod 64. A slider 710 is slidably connected to one end of the clamping rod 79 and the slide plate 78. An upper clamping rod 712 is slidably connected to the upper end of the U-shaped fixing frame 73. A connecting rod 711 is rotatably connected between the slider 710 and the upper clamping rod 712. A telescopic rod 713 is fixedly connected between the slide plate 78 and the U-shaped fixing frame 73. A T-slot 714 is opened inside the glove lower mold 72. A slope is opened at one end of the T-slot 714. Teeth 716 are fixedly connected inside the T-slot 714. When the round rod 53 moves downward, it will be in the straight groove at the lower end of the irregular thread groove 55. At this time, the rotating roller 54 will stop rotating, and the heat sealing machine body 3 will start to heat press the plastic glove. When the U-shaped fixing frame 73 moves forward again, it will push the heat-sealed plastic glove out of the discharge port 9. In this way, the loading and unloading can be completed at the same time, improving work efficiency and saving a lot of labor time.
[0031] The vibration mechanism 8 includes a slide 81, which is fixedly connected to the surface of the base 1. A vertical slide 85 and a curved groove 86 are formed inside the slide 81. A baffle 82 is slidably connected inside the slide 81. A support rod 83 is fixedly connected to the surface of the base 1. A pressure rod 84 is rotatably connected to the side of the support rod 83. One end of the pressure rod 84 is hinged to the baffle 82, and the other end of the pressure rod 84 is fixedly connected to an inclined block 715. The lower end of the baffle 82 is located at the vertical slide 85. The inside of the groove 85 slides and rotates. When the middle part of the baffle 82 slides inside the curved groove 86, the other end of the pressure rod 84 drives the baffle 82 to slide upward in the slide groove 81. At the same time, the middle part of the baffle 82 will swing along the curved groove 86 opened in the slide groove 81 with the bottom end of the baffle 82 as the center, and at the same time generate vibration, which vibrates the plastic glove in the lower glove mold 72, so that it quickly fits the plastic glove in the lower glove mold 72, reducing the occurrence rate of defective products.
[0032] The method of use and advantages of this invention: The reciprocating drive device for the pressure head of this fully automatic plastic glove heat sealing machine operates as follows:
[0033] like Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 9 , Figure 10 As shown;
[0034] In use, first place the unsealed plastic glove on the surface of the electric conveyor belt 4 and transport it to one end of the electric conveyor belt 4. At the same time, start the electric cylinder 2. The electric cylinder 2 drives the plastic glove mold-shaped heat sealing machine body 3 to gradually move downward. When the heat sealing machine body 3 moves downward, it drives the fixed rod 51 to move downward at the same time. When the fixed rod 51 moves downward, it drives the round rod 53 to move downward at the same time. When the round rod 53 moves downward, it will squeeze the irregular threaded groove 55 opened in the rotating roller 54, and the texture of the irregular threaded groove 55 will make the rotating roller 54 rotate. When squeezing the first circle of texture, the rotating roller 54 will rotate the first revolution. When the rotating roller 54 rotates, it will bring The lower half-gear ring 56 rotates, and the half-gear ring 56 will mesh with the gear 59 at this time, and drive the gear 59 to rotate. When the gear 59 rotates, it drives the first bevel gear 510 to rotate through the rotating rod 58. The first bevel gear 510 drives the meshing second bevel gear 511 to rotate. When the second bevel gear 511 rotates, it drives the rotating rod 61 at the other end to rotate on the surface of the machine body base 1. When the rotating rod 61 rotates, it drives the surface locking rod 62 to rotate. The locking rod 62 will rotate in the groove opened on the surface of the machine body base 1. When the locking rod 62 rotates, it will push open the crossbar 65 with the locking groove 66. When the crossbar 65 is pushed, it will drive the sliding rod 64 to slide forward in the limiting sliding groove 63.
[0035] When the sliding rod 64 slides forward, it drives the L-shaped rod 71 forward. The L-shaped rod 71 then drives the U-shaped fixing frame 73 forward simultaneously. The U-shaped fixing frame 73 then drives the L-shaped rod 74 and the lower rotating groove 75 forward simultaneously. The rotating groove 75 drives the pinion 76 forward. At this time, the pinion 76 and the rack 77 are misaligned and cannot mesh. The U-shaped fixing frame 73 drives other components to move forward within the T-slot 714 in the lower mold 72 until the pinion 76 moves to the side of the tooth 716 and meshes with it. At this point, the L-shaped rod 74 is pushed forward within the U-shaped fixing frame 73. As the L-shaped rod 74 moves forward, it drives the slide plate 78 within the U-shaped fixing frame 73. When the fixed bracket 73 moves forward, the slide plate 78 pushes the two connecting rods 711. The linear distance between the connecting rods remains unchanged, so one end of the connecting rod 711 will cause the slider 710 to slide inward due to the sliding of the slide plate 78. At the same time, the other end of the connecting rod 711 will pull the upper clamping rod 712 to slide inward and merge with the lower clamping rod 79. After the plastic glove is clamped, the shaft that drives the pinion 76 to rotate will be squeezed by the inclined surface at the top of the T-slot 714, causing the pinion 76 to separate from the teeth 716.
[0036] When the rotating roller 54 rotates for the second time, the rotation of the rotating roller 54 will drive the lower half-gear ring 56 to rotate. The half-gear ring 56 will drive the half-gear 57 to rotate. At this time, the half-gear 57 will mesh with the gear 59 and separate from the half-gear ring 56, and drive the gear 59 to rotate. At this time, the half-gear 57 will drive the gear 59 to rotate in the opposite direction. At the same time, when the rotating rod 61 rotates, it will drive the surface clamping rod 62 to rotate. When the clamping rod 62 rotates in the opposite direction, it will pull the crossbar 65 with the clamping groove 66. The crossbar 65 will pull the sliding rod 64 to move back, and at the same time drive the L-shaped rod 71 to move back. At this time, the plastic glove will be pulled into the glove lower mold 72 by the two clamping mechanisms 7. This can realize automatic feeding, save a lot of time and improve work efficiency.
[0037] At this time, the pinion 76 is on the same horizontal line as the rack 77 and will mesh with the rack 77. Based on the above principle, the upper clamping rod 712 will separate from the lower clamping rod 79. Releasing the plastic glove, when the pinion 76 moves forward, it will not press against the pressure rod 84. Without pressure on the pressure rod 84, the hinged baffle 82 will slide downwards in the slide groove 81 due to its own gravity, exposing the T-slot 714. When the pinion 76 moves back, it will press against the pressure rod 84 through its side. When the rear end of the pressure rod 84 is pressed, it will... The top of the support rod 83 is the center, which drives the other end to move upward. The other end of the pressure rod 84 drives the baffle 82 to slide upward in the slide groove 81. While sliding, the middle part of the baffle 82 will swing along the curved groove 86 opened in the slide groove 81 with the bottom end of the baffle 82 as the center, and at the same time generate vibration. This vibration vibrates the plastic glove in the lower glove mold 72, which quickly makes the plastic glove in the lower glove mold 72 fit, reducing the occurrence rate of defective products. At the same time, the pinion 76 will be squeezed by the inclined block 715 on the pressure rod 84, separating it from the rack 77, and the pinion 76 will be on the same horizontal line as the teeth 716.
[0038] At this time, when the round rod 53 moves downward, it will be in the straight groove at the lower end of the irregular thread groove 55. At this time, the rotating roller 54 will stop rotating, and the heat sealing machine body 3 will start to heat press the plastic glove. After completion, the above operation will be repeated. At the same time, when the U-shaped fixing frame 73 moves forward again, it will push the heat-sealed plastic glove out of the discharge port 9. In this way, loading and unloading can be completed at the same time, improving work efficiency and saving a lot of manual time.
[0039] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely preferred examples and are not intended to limit the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of the present invention is defined by the appended claims and their equivalents.
Claims
1. A full-automatic plastic glove heat sealing machine with a pressure head reciprocating drive device, comprising a machine body base, characterized in that: The surface of the body base is fixedly connected with an electric cylinder, the upper end of the electric cylinder is fixedly connected with a heat sealing machine body, the surface of the body base is provided with an electric conveying belt, the surface of the body base is fixedly connected with a driving mechanism, the surface of the body base is provided with a push-pull mechanism, one end of the push-pull mechanism is fixedly connected with a clamping mechanism, the lower end of the clamping mechanism is provided with a vibration mechanism, and the surface of the body base is provided with a discharge port; The driving mechanism comprises a fixed rod, the fixed rod is fixedly connected to the lower surface of the heat sealing machine body connector, the side surface of the body base is fixedly connected with a rotating groove, the rotating groove is rotatably connected with a rotating roller in the inside, the surface of the fixed rod is fixedly connected with a round rod, the surface of the rotating roller is provided with a special-shaped thread groove, the special-shaped thread groove is composed of a thread groove and a straight groove, the round rod is slidably connected in the special-shaped thread groove, the bottom of the rotating roller is fixedly connected with a half tooth ring, the surface of the half tooth ring is fixedly connected with a half gear, the surface of the body base is rotatably connected with a rotating rod, the top end of the rotating rod is fixedly connected with a gear, the surface of the rotating rod is fixedly connected with a bevel gear one, and the surface of the body base is rotatably connected with a bevel gear two. The gear is in an initial state of being about to engage with the half tooth ring and about to be separated from the half gear, and the bevel gear one is engaged with the bevel gear two. The push-pull mechanism comprises a rotating rod, the rotating rod is rotatably connected to the surface of the body base, and the other end of the rotating rod is fixedly connected with the other end of the bevel gear two, the surface of the rotating rod is fixedly connected with a clamping rod, the surface of the body base is fixedly connected with a limiting sliding groove, the inside of the limiting sliding groove is slidably connected with a sliding rod, one end of the sliding rod is rotatably connected with a horizontal rod, and the lower end of the horizontal rod is provided with a clamping groove.
2. The reciprocating driving device for the press head of a full-automatic plastic glove heat sealing machine according to claim 1, characterized in that: The clamping mechanism comprises an L-shaped rod, the L-shaped rod is fixedly connected to the other end of the sliding rod, the surface of the body base is fixedly connected with a glove lower mold, the side surface of the L-shaped rod is fixedly connected with a U-shaped fixing frame, the side surface of the U-shaped fixing frame is slidably connected with an L-shaped rod one, the other end of the L-shaped rod one is slidably connected in the L-shaped rod, the lower end of the L-shaped rod one is fixedly connected with a rotating groove one, the inside of the rotating groove one is rotatably and slidably connected with a pinion, the surface of the body base is fixedly connected with a rack one, the other end of the L-shaped rod one is fixedly connected with a sliding plate, the lower end of the U-shaped fixing frame is fixedly connected with a lower clamping rod, one end of the sliding plate is slidably connected with a sliding block, the upper end of the U-shaped fixing frame is slidably connected with an upper clamping rod, and the sliding block and the upper clamping rod are rotatably connected with a connecting rod one, and the sliding plate and the U-shaped fixing frame are fixedly connected with an extension rod.
3. The reciprocating driving device for the press head of a full-automatic plastic glove heat sealing machine according to claim 2, characterized in that: The inside of the glove lower mold is provided with a T-shaped groove, one end of the T-shaped groove is provided with an inclined surface, and the inside of the T-shaped groove is fixedly connected with teeth.
4. The press head reciprocating drive device for a full-automatic plastic glove heat sealing machine according to claim 3, characterized in that: The vibration mechanism comprises a sliding groove fixedly connected to the surface of the machine body base, a vertical sliding groove is formed in the inside of the sliding groove, a curved groove is formed in the inside of the sliding groove, a baffle is slidably connected to the inside of the sliding groove, a supporting rod is fixedly connected to the surface of the machine body base, a pressure rod is rotatably connected to the side surface of the supporting rod, one end of the pressure rod is hingedly connected to the baffle, and an inclined block is fixedly connected to the other end of the pressure rod.
5. The reciprocating driving device for the press head of a full-automatic plastic glove heat sealing machine according to claim 4, characterized in that: The lower end of the baffle slides and rotates in the vertical sliding groove, and the middle part of the baffle slides in the curved groove.
Citation Information
Patent Citations
Pressure head reciprocating driving device for full-automatic plastic glove heat sealing machine
CN212708088U
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