Full-servo high-speed heat shrink packaging device for Lanqin drinks
By designing a fully servo-driven high-speed heat shrink packaging device for Lanqin beverages, and utilizing the combined transmission of belt conveyors and rubber sleeves, the problem of Lanqin beverages being fragile during the heat shrinking process was solved, achieving stable conveying of the bottle and reducing the risk of breakage.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGSU HAISHOU HEALTH TECH CO LTD
- Filing Date
- 2025-06-05
- Publication Date
- 2026-05-01
AI Technical Summary
The problem of Blue Scutellaria baicalensis beverages being fragile during heat shrinking, especially due to improper dispensing leading to bottle breakage.
A fully servo-driven high-speed heat shrink packaging device for Scutellaria baicalensis beverages was designed, comprising a packaging mechanism and a material guiding mechanism. Utilizing a belt conveyor, a rubber sleeve, and a drive assembly, the rubber sleeve rotates stably through mechanical transmission via gears and gear rings, ensuring that the product is arranged in a shallow trough and falls close to the ground, reducing the risk of breakage.
This effectively reduces the probability of breakage of the Lanqin beverage bottle during the heat shrinking process, improving the stability and safety of the packaging process.
Smart Images

Figure CN224184664U_ABST
Abstract
Description
A fully servo-driven high-speed heat shrink packaging device for Scutellaria baicalensis beverages Technical Field
[0001] This utility model relates to the field of packaging device technology, specifically a fully servo-driven high-speed heat shrink packaging device for Scutellaria baicalensis beverage. Background Technology
[0002] Lanqin drink, usually packaged in glass bottles, is an oral liquid with the functions of clearing heat and detoxifying, relieving sore throat and reducing swelling. It is used for acute pharyngitis, sore throat, dry throat, and burning sensation in the throat caused by lung and stomach heat syndrome.
[0003] Its container is characterized by its slender and fragile shape. Therefore, if the container is not properly handled when it leaves the heat shrink machine, it is very easy for the bottle to break. Summary of the Invention
[0004] This utility model aims to solve one of the technical problems existing in the prior art or related technologies.
[0005] Therefore, the technical solution adopted by this utility model is as follows:
[0006] A fully servo-driven high-speed heat shrink packaging device for Scutellaria baicalensis beverages includes a packaging mechanism and a material guiding mechanism. The packaging mechanism includes a support frame, a belt conveyor embedded in the top of the support frame, and a heat shrink machine connected to the top of the support frame. One end of the belt conveyor extends into the interior of the belt conveyor. The material guiding mechanism includes two detachably mounted arms on one side of the support frame, a shaping frame rotatably connected between the two arms, a rubber sleeve fitted onto the outside of the shaping frame, and a stop sleeve connected to the bottom of the support frame. The stop sleeve fits against the inner side of the rubber sleeve. The rubber sleeve has multiple shallow grooves arranged around its perimeter, and a drive assembly is provided on the rear side of the rubber sleeve.
[0007] By adopting the above technical solution, the Lanqin beverage enters the heat shrink packaging machine from the left end of the support frame. Then, the shaped product is conveyed to the rubber sleeve by the belt conveyor. The product enters the shallow groove and is arranged. Then, the motor is started. The motor drives the gear ring to rotate through the gear. The gear ring affects the rotation of the rubber sleeve through the shaping frame. Then, the rubber sleeve and the baffle cooperate to stably convey the product to the spacing position. Since the spacing is close to the ground, the product can land without damage, thereby further reducing the probability of bottle breakage.
[0008] In a preferred embodiment, the present invention can be further configured as follows: the shaping frame consists of rollers and multiple support rods, the multiple support rods are equally spaced and arranged in a ring at both ends of the rollers, both ends of the rollers are provided with circular grooves suitable for insertion into the inner end of the boom, and the outer ends of the multiple support rods are fixedly connected to the inner wall of the rubber sleeve.
[0009] In a preferred embodiment, the present invention can be further configured such that: the drive assembly includes a gear ring connected to the rear end of the roller, a gear meshing on one side of the gear ring, and a motor connected to a boom near the rear side of the support frame, wherein the output shaft of the motor is connected to the gear.
[0010] In a preferred embodiment, the present invention can be further configured such that the inner diameter of the toothed ring is larger than the inner diameter of the boom, and the toothed ring is movably sleeved on the inner end of the boom.
[0011] In a preferred embodiment, the present invention can be further configured such that: a second retaining sleeve is attached to the outer side of the rubber sleeve, and the second retaining sleeve is connected between the support frame and the two booms.
[0012] In a preferred embodiment, the present invention can be further configured such that a gap is formed between the first and second retaining sleeves, and the gap is located at the bottom of the rubber sleeve.
[0013] By adopting the above technical solution, the beneficial effects achieved by this utility model are as follows:
[0014] In this invention, the blue scutellaria beverage enters the heat shrink packaging machine from the left end of the support frame. The shaped product is then conveyed to the rubber sleeve by a belt conveyor. The product enters the shallow groove and is arranged. Then, the motor is started, and the motor drives the gear ring to rotate through the gear. The gear ring affects the rotation of the rubber sleeve through the shaping frame. Then, the rubber sleeve and the retaining sleeve cooperate to stably convey the product to the spacing position. Since the spacing is close to the ground, the product can land without damage, thereby further reducing the probability of bottle breakage. Attached Figure Description
[0015] Figure 1 is a perspective view of the overall structure of this utility model;
[0016] Figure 2 is a rear view of the overall structure of this utility model;
[0017] Figure 3 is a schematic diagram of the packaging mechanism of this utility model;
[0018] Figure 4 is a schematic diagram showing the cooperation relationship between the material guiding mechanism and the drive assembly of this utility model;
[0019] Figure 5 is a partial structural diagram of the material guiding mechanism of this utility model;
[0020] Figure 6 is a schematic diagram of the installation positions of the first and second retaining sleeves of this utility model;
[0021] Figure 7 is a schematic diagram of the drive component of this utility model.
[0022] Figure label:
[0023] 100. Packaging mechanism; 110. Support frame; 120. Belt conveyor; 130. Heat shrink machine;
[0024] 200. Material guiding mechanism; 210. Boom; 220. Shaping frame; 221. Roller; 222. Support rod; 230. Rubber sleeve; 240. Stop sleeve one;
[0025] 300. Drive assembly; 310. Gear ring; 320. Gear; 330. Motor;
[0026] 400, Gearbox 2. Detailed Implementation
[0027] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to specific embodiments and accompanying drawings. It should be noted that, unless otherwise specified, the embodiments and features of the present utility model can be combined with each other.
[0028] It should be understood that these descriptions are merely exemplary and not intended to limit the scope of this invention.
[0029] The following describes, with reference to the accompanying drawings, some embodiments of the present invention, a fully servo-driven high-speed heat shrink packaging device for Scutellaria baicalensis beverages.
[0030] Example 1:
[0031] As shown in Figures 1-7, the present invention provides a fully servo-driven high-speed heat shrink packaging device for Scutellaria baicalensis beverage, including a packaging mechanism 100 and a material guiding mechanism 200. The packaging mechanism 100 includes a support frame 110, a belt conveyor 120 embedded in the top of the support frame 110, and a heat shrink machine 130 connected to the top of the support frame 110. One end of the belt conveyor 120 extends into the interior of the belt conveyor 120.
[0032] The material guiding mechanism 200 includes two booms 210 detachably mounted on one side of the support frame 110, a shaping frame 220 rotatably connected between the two booms 210, a rubber sleeve 230 sleeved on the outside of the shaping frame 220, and a stop sleeve 240 connected to the bottom of the support frame 110. The stop sleeve 240 fits against the inside of the rubber sleeve 230. The rubber sleeve 230 has multiple shallow grooves arranged around it, and a drive assembly 300 is provided on the rear side of the rubber sleeve 230.
[0033] Specifically, the drive assembly 300 includes a gear ring 310 connected to the rear end of the roller 221, a gear 320 meshing with one side of the gear ring 310, and a motor 330 connected to the boom 210 near the rear side of the support frame 110. The output shaft of the motor 330 is connected to the gear 320. The motor 330 serves as the power source, and the gear 320 and the gear ring 310 mechanically transmit power to realize the continuous rotation of the rubber sleeve 230, thereby enabling it to support the continuously forming blue scutellaria beverage.
[0034] Furthermore, the shaping frame 220 is composed of rollers 221 and multiple support rods 222. The multiple support rods 222 are evenly spaced and arranged in a ring at both ends of the rollers 221. Both ends of the rollers 221 are provided with circular grooves suitable for insertion into the inner end of the boom 210. The outer ends of the multiple support rods 222 are fixed to the inner wall of the rubber sleeve 230. The structural design of the shaping frame 220 can enclose the rubber sleeve 230 into a cylindrical shape, ensuring that the rubber sleeve 230 can accurately catch the blue scutellaria beverage.
[0035] Furthermore, the inner diameter of the toothed ring 310 is larger than the inner diameter of the boom 210. The toothed ring 310 is movably sleeved on the inner end of the boom 210. The size design of the toothed ring 310 ensures that it will not be interfered with by the boom 210 when it rotates.
[0036] Example 2:
[0037] As shown in Figures 1, 2 and 6, based on Embodiment 1, a second retaining sleeve 400 is attached to the outer side of the rubber sleeve 230. The second retaining sleeve 400 is connected between the support frame 110 and the two booms 210. The second retaining sleeve 400 can improve the stability of the rubber sleeve 230 when it rotates.
[0038] Example 3:
[0039] As shown in Figures 1, 2 and 6, in the above embodiment, a gap is formed between the first baffle 240 and the second baffle 400. The gap is located at the bottom of the rubber sleeve 230. The gap is set to provide conditions for the blue scutellaria beverage to leave the shallow tank.
[0040] The working principle and usage process of this utility model: The blue scutellaria beverage enters the heat shrink machine 130 for packaging from the left end of the support frame 110. Then, the shaped product is conveyed to the rubber sleeve 230 by the belt conveyor 120. The product enters the shallow groove and is arranged. Then, the motor 330 is started. The motor 330 drives the gear ring 310 to rotate through the gear 320. The gear ring 310 affects the rotation of the rubber sleeve 230 through the shaping frame 220. Then, the rubber sleeve 230 cooperates with the stop sleeve 240 to stably convey the product to the spacing position. Since the spacing is close to the ground, the product can land without damage, thereby further reducing the probability of bottle breakage.
[0041] Although embodiments of the present invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the claims and their equivalents.
Claims
1. A fully servo-driven high-speed heat shrink packaging device for Scutellaria baicalensis beverages, characterized in that, include: The packaging mechanism (100) includes a support frame (110), a belt conveyor (120) embedded in the top of the support frame (110), and a heat shrink machine (130) connected to the top of the support frame (110). One end of the belt conveyor (120) extends into the interior of the belt conveyor (120). The material guiding mechanism (200) includes two booms (210) detachably installed on one side of the support frame (110), a shaping frame (220) rotatably connected between the two booms (210), a rubber sleeve (230) sleeved on the outside of the shaping frame (220), and a stop sleeve (240) connected to the bottom of the support frame (110). The stop sleeve (240) fits against the inside of the rubber sleeve (230). The rubber sleeve (230) has multiple shallow grooves arranged around it. A drive assembly (300) is provided on the rear side of the rubber sleeve (230).
2. The all-servo high-speed heat shrink packaging device for Scutellaria baicalensis beverage according to claim 1, characterized in that, The shaping frame (220) consists of rollers (221) and multiple support rods (222). The multiple support rods (222) are evenly spaced and arranged in a ring at both ends of the rollers (221). Both ends of the rollers (221) are provided with circular grooves suitable for insertion into the inner end of the boom (210). The outer ends of the multiple support rods (222) are fixed to the inner wall of the rubber sleeve (230).
3. The fully servo-driven high-speed heat shrink packaging device for Scutellaria baicalensis beverage according to claim 1, characterized in that, The drive assembly (300) includes a gear ring (310) connected to the rear end of the roller (221), a gear (320) meshing with one side of the gear ring (310), and a motor (330) connected to a boom (210) near the rear side of the support frame (110). The output shaft of the motor (330) is connected to the gear (320).
4. The fully servo-driven high-speed heat shrink packaging device for Scutellaria baicalensis beverage according to claim 3, characterized in that, The inner diameter of the toothed ring (310) is larger than the inner diameter of the boom (210), and the toothed ring (310) is movably sleeved on the inner end of the boom (210).
5. The fully servo-driven high-speed heat shrink packaging device for Scutellaria baicalensis beverage according to claim 1, characterized in that, A second baffle (400) is attached to the outside of the rubber sleeve (230), and the second baffle (400) is connected between the support frame (110) and the two booms (210).
6. The fully servo-driven high-speed heat shrink packaging device for Scutellaria baicalensis beverage according to claim 5, characterized in that, A gap is formed between the first retainer (240) and the second retainer (400), and the gap is located at the bottom of the rubber sleeve (230).