Essence packaging bottle interlayer conveying device

By designing an interlayer conveying device for packaging bottles, and utilizing a stepper motor-driven lead screw and guide rod structure to achieve automated lifting and conveying, the problem of conveying packaging bottles from the lower workshop to the upper storage workshop was solved, improving efficiency and safety, and reducing the waste of human resources.

CN223962812UActive Publication Date: 2026-03-03TIANJIN YU MEI JING GRP
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520614658.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-02
Publication Date
2026-03-03
Estimated Expiration
2035-04-02

AI Technical Summary

Technical Problem

In existing technologies, the transfer of packaging bottles from the lower workshop to the upper storage workshop involves a height difference, which leads to difficulties in manual handling, low efficiency, and significant safety hazards, and is not conducive to production automation and intelligent management.

Method used

Design an interlayer conveying device for essence bottles, including a lower conveying mechanism, an upper conveying mechanism, and a lifting mechanism. The device utilizes a stepper motor to drive a lead screw and guide rod structure to achieve automated lifting and conveying of the bottles. The bottles are then conveyed from the lower layer to the upper layer via a lifting conveyor belt.

Benefits of technology

It has enabled automated conveying of packaging bottles, which has improved efficiency, reduced labor costs, lowered safety risks, optimized resource allocation, and ensured product integrity and worker safety.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223962812U_ABST
    Figure CN223962812U_ABST
Patent Text Reader

Abstract

The utility model belongs to the technical field of cosmetic packaging, and particularly relates to an essence packaging bottle interlayer conveying device which comprises a lower-layer conveying mechanism, an upper-layer conveying mechanism and a lifting mechanism arranged between the lower-layer conveying mechanism and the upper-layer conveying mechanism. The lifting mechanism comprises a base, a stepping motor, a lead screw, a guide rod, a lifting conveying belt, a sliding block, a lifting plate and a sliding rail. The stepping motor is fixed to the bottom of the base, and the output end of the stepping motor is connected with the lead screw. The lead screw is sleeved with a lead screw sleeve, and the lead screw sleeve is fixed to one side of the lifting plate. A sliding block is fixed to the other side of the lifting plate and is in sliding fit with a sliding rail perpendicularly fixed to one side of the supporting beam. According to the device, the lifting mechanism is matched with the upper-layer conveying mechanism and the lower-layer conveying mechanism, and automatic conveying of packaging bottle packaging boxes from the lower-layer workshop to the upper-layer storage workshop is achieved. And compared with manual carrying, the carrying time is greatly shortened, the problems of intermittence and fatigue of manual carrying are solved, conveying work can be continuously and stably conducted, and the whole packaging bottle storage process is more efficient and smoother.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model belongs to the field of cosmetic packaging technology, specifically relating to an interlayer conveying device for essence packaging bottles. Background Technology

[0002] In the cosmetics packaging industry, after the bottles are boxed, they need to be transported to warehouses for storage. As businesses grow, the efficient use of factory space has become a crucial issue. Some companies, due to limited factory area, design their factories as two-story structures, with the upper floor serving as a storage workshop and the lower floor for production operations.

[0003] Currently, there are significant problems in the transportation of packaged bottles after they have been boxed. Due to a three-to-four-meter height difference between the upper storage area and the lower handling area, conventional conveyor belts cannot easily bridge this gap to transport the boxes directly to the upper level. In such situations, companies often have to rely on manual handling by workers. Manual handling not only consumes a significant amount of time and labor costs but also has low efficiency, increases the workload of workers, and negatively impacts the overall efficiency of packaging and storage.

[0004] Meanwhile, manual handling also poses certain safety hazards. During the handling process, workers may experience fatigue, improper operation, or other reasons that cause packaging boxes to fall, resulting in product damage or even accidental injury to the workers themselves. In addition, frequent manual handling is not conducive to enterprises achieving automated and intelligent production management, and it is difficult to meet the efficient and precise production needs of modern enterprises. Utility Model Content

[0005] The purpose of this invention is to provide an interlayer conveying device for essence packaging bottles to solve the problems existing in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution: A layer conveying device for essence packaging bottles, comprising a lower conveying mechanism, an upper conveying mechanism, and a lifting mechanism disposed between the two; the lifting mechanism includes a base, a stepper motor, a lead screw, a guide rod, a lifting conveyor belt, a slider, a lifting plate, and a slide rail; the stepper motor is fixed to the bottom of the base, and its output end is connected to the lead screw; a lead screw sleeve is sleeved on the lead screw, and the lead screw sleeve is fixed to one side of the lifting plate; a slider is fixed to the other side of the lifting plate, and the slider slides in cooperation with a slide rail vertically fixed to one side of a support beam.

[0007] Preferably, there are two guide rods, which are vertically fixed to the base. A guide sleeve is fitted on the guide rod and the guide sleeve is fixed to the lifting plate. The top of the guide rod is connected by a connecting plate, and a bearing is provided in the middle of the connecting plate. The top of the lead screw is connected to the bearing.

[0008] Preferably, the bottom of the support beam is fixed to the base, and the slide rail is vertically arranged along the length direction of the support beam.

[0009] Preferably, the lifting conveyor belt is installed on the lifting plate, and its width is the same as that of the conveyor belts of the lower conveying mechanism and the upper conveying mechanism.

[0010] Preferably, both the lower conveying mechanism and the upper conveying mechanism are horizontally arranged conveyor belts, and both of them are in the same vertical projection plane as the lifting conveyor belt.

[0011] Preferably, the connecting plate is a rectangular plate, the two ends of which are respectively fixed to the tops of the two guide rods, and the middle bearing is a deep groove ball bearing.

[0012] The beneficial effects of the present utility model are as follows: This device uses a lifting mechanism in combination with upper and lower layer conveying mechanisms to achieve the automatic conveyance of packaging bottle packing boxes from the lower workshop to the upper storage workshop. Compared with manual handling, it greatly shortens the handling time, avoids the intermittence and fatigue problems of manual handling, can continuously and stably carry out the conveying work, makes the entire packaging bottle storage process more efficient and smooth. It completely changes the previous mode that relies on manual handling, and reduces the number of workers specifically responsible for handling. Enterprises do not need to invest a large amount of manpower in this link, saving labor costs, and can reallocate human resources to more valuable production links to optimize resource allocation. It effectively avoids the risk that the packing box drops due to improper operation or physical exhaustion during manual handling, not only protects the integrity of the product, reduces economic losses, but also reduces the possibility of workers being injured, creating a safer working environment. Description of the Drawings

[0013] Figure 1 is the front view of the present utility model;

[0014] Figure 2 is the right view of the present utility model. Detailed Embodiments

[0015] The following will describe the detailed embodiments of the present utility model in conjunction with the drawings and preferred embodiments.

[0016] As Figure 1As shown, an interlayer conveying device for essence packaging bottles includes a lower conveying mechanism 1 and an upper conveying mechanism 2. A lifting mechanism 3 is provided between the lower and upper conveying mechanisms. The lifting mechanism 3 includes a stepper motor 31, a lead screw 32, a guide rod 33, a lifting conveyor belt 34, a slider 35, and a lifting plate 36. The stepper motor 31 is fixed to the bottom of a base 37, serving as the power source for the entire lifting mechanism 3. When the stepper motor 31 is energized, its output shaft drives the lead screw 32 to rotate. The stepper motor 31 has precise control characteristics, enabling precise control of the rotation angle and speed of the lead screw 32 according to preset instructions, thereby achieving precise control of the position of the lifting conveyor belt 34.

[0017] The output end of the stepper motor is connected to a lead screw 32 on the upper part of the base. A lead screw sleeve 38 is connected to the lead screw, and the lead screw sleeve is fixed to one side of the lifting plate 36. As the lead screw 32 rotates, the lead screw sleeve 38, due to its threaded engagement with the lead screw 32, cannot rotate with the lead screw 32, but can only move linearly along the axis of the lead screw 32. In this way, the lead screw sleeve 38 drives the lifting plate 36 to move up and down together, realizing the vertical position adjustment of the lifting plate 36.

[0018] To ensure smooth lifting of the lifting plate 36, the device employs a cooperative structure consisting of guide rods 33, sliders 35, and slide rails 39. The slider 35 is fixed to one side of the lifting plate, and it slides in conjunction with the slide rail 39, which is vertically fixed to one side of the support beam 312. The bottom of the support beam is fixed to the base 37. Two guide rods 33 are provided, each with its bottom fixed to the base. Each guide rod has a guide sleeve 310, which is fixed to the lifting plate. The tops of the guide rods are connected by a connecting plate 311, which has a bearing in its center. The top of the lead screw is connected to the bearing. The guide rods 33 restrict the direction of movement of the lifting plate 36 during lifting, allowing it to move only up and down along the axial direction of the guide rods 33, preventing swaying and deviation. Simultaneously, the slider 35 on the other side of the lifting plate 36 slides in conjunction with the slide rail 39, which is vertically fixed to one side of the support beam 312. This cooperation further enhances the stability of the lifting plate 36 during lifting, reduces swaying and tilting during movement, and ensures a smooth and reliable lifting process.

[0019] The lifting mechanism of this device uses a lead screw drive system, controlled by a stepper motor, to precisely control the position of the lifting conveyor belt. The use of a slider and rail combination ensures smoother up-and-down movement of the lifting plate. The lifting conveyor belt 34 is mounted on the lifting plate 36 and is used to transport packaging boxes between the lower and upper conveyor mechanisms. The lower and upper conveyor mechanisms can use ordinary conveyor belts with the same width as the lifting conveyor belt in the lifting mechanism.

[0020] The lower conveyor mechanism 1 uses a standard conveyor belt to transport the boxed bottles from the lower operating workshop to the docking position with the lifting conveyor belt 34. At this point, according to preset control commands, the stepper motor 31 drives the lead screw 32 to rotate, causing the lifting conveyor belt 34 to descend to the same height as the lower conveyor mechanism 1. The boxes are smoothly transferred from the lower conveyor mechanism 1 to the lifting conveyor belt 34. Next, the stepper motor 31 reverses the rotation of the lead screw 32, causing the lifting conveyor belt 34 to rise, conveying the boxes upwards. When the lifting conveyor belt 34 rises to the same height as the upper conveyor mechanism 2, the upper conveyor mechanism 2 is activated, transferring the boxes from the lifting conveyor belt 34 to the upper conveyor mechanism 2, ultimately completing the transfer process of the bottles from the lower workshop to the upper storage workshop.

[0021] It should be noted that, for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications should also be considered within the scope of protection of this utility model.

Claims

1. An interlayer transfer device for an essence pack bottle, characterized by, The device comprises a lower conveying mechanism (1), an upper conveying mechanism (2), and a lifting mechanism (3) arranged between the two; the lifting mechanism (3) comprises a base (37), a stepping motor (31), a lead screw (32), a guide rod (33), a lifting conveyor belt (34), a sliding block (35), a lifting plate (36), and a slide rail (39); the stepping motor (31) is fixed to the bottom of the base (37), and its output end is connected with the lead screw (32); the lead screw (32) is sleeved with a lead screw sleeve (38), which is fixed to one side of the lifting plate (36); the other side of the lifting plate (36) is fixed with the sliding block (35), which is in sliding fit with the slide rail (39) fixed vertically on one side of a support beam (312).

2. The interlayer conveying apparatus for a serum pack bottle according to claim 1, wherein The guide rod (33) is two, which are fixed vertically on the base (37), and are sleeved with a guide sleeve (310), which is fixed on the lifting plate (36); the top of the guide rod (33) is connected through a connecting plate (311), the middle part of which is provided with a bearing, and the top end of the lead screw (32) is connected with the bearing.

3. The interlayer conveyor for the essence pack bottle according to claim 1, wherein The support beam (312) is fixed at the bottom of the base (37), and the slide rail (39) is arranged vertically along the length direction of the support beam (312).

4. The interlayer conveyor for the essence pack bottle according to claim 1, wherein The lifting conveyor belt (34) is installed on the lifting plate (36), and its width is consistent with the width of the conveyor belt of the lower conveying mechanism (1) and the upper conveying mechanism (2).

5. The interlayer conveyor for the essence pack bottle according to claim 1, wherein The lower conveying mechanism (1) and the upper conveying mechanism (2) are both horizontally arranged conveyor belts, and both are in the same vertical projection plane with the lifting conveyor belt (34).

6. The interlayer conveyor for the essence pack bottle according to claim 2, wherein The connecting plate (311) is a rectangular plate, and its two ends are respectively fixed with the top of the two guide rods (33), and the middle bearing is a deep groove ball bearing.