Station switching and conveying device of soft landing system

By designing a four-station cyclic switching conveyor device, and utilizing components such as translation rollers, guide wheels, and servo motors, the problem of low efficiency in traditional soft-drop feeding mechanisms was solved, achieving uninterrupted material transportation and improving work efficiency.

CN224132060UActive Publication Date: 2026-04-17PLASTIC SYST SHANGHAI CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
PLASTIC SYST SHANGHAI CO LTD
Filing Date
2025-04-23
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Traditional soft-drop feeding mechanisms are inefficient, especially in single-station mode where materials need to be collected and waited for, and dual-station mode still cannot meet customer needs.

Method used

Design a soft landing system workstation switching conveyor device, which adopts a four-station reciprocating cycle mode. The workstation switching device realizes uninterrupted material transportation and utilizes components such as translation rollers, guide wheels, conveyor belt servo motors and translation cylinders to achieve efficient material switching.

Benefits of technology

It enabled uninterrupted material transportation and significantly improved work efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224132060U_ABST
    Figure CN224132060U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of plastic machinery, in particular to a station switching and conveying device of a soft landing system. A station switching conveying device of a soft landing system is characterized in that a supporting base is connected with a conveying belt mechanism base through translation idler wheels, and a conveying belt mechanism is arranged on the conveying belt mechanism base; one side of the conveying belt mechanism base is connected with a cable drag chain connecting support, one side of the middle of the cable drag chain connecting support is connected with a translation air cylinder driving shaft, one side of the front portion of the cable drag chain connecting support is connected with one end of a cable drag chain, and the other end of the cable drag chain and a translation air cylinder are connected with the supporting base through connecting pieces. Compared with the prior art, the station switching conveying device of the soft landing system has the advantages that a traditional one-station or two-station operation mode is changed, four-station reciprocating circulation can be completed through the station switching device, uninterrupted material conveying work can be carried out, and the working efficiency is greatly improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of plastic machinery technology, specifically to a station switching conveyor device for a soft landing system. Background Technology

[0002] Traditional soft-drop feeding mechanisms typically operate in a single-station or double-station mode. While their structure and operation are simple, their work efficiency is slow, especially in the single-station mode. When the material box is full, it needs to be pushed out and replaced with an empty one before work can resume, resulting in waiting time exceeding the actual working time. Although the double-station feeding mechanism improved efficiency, it still did not meet customer needs. Summary of the Invention

[0003] To overcome the shortcomings of the prior art, this utility model provides a workstation switching and conveying device for a soft landing system, which changes the traditional one- or two-workstation operation mode. Through the workstation switching device, four-workstation reciprocating cycles can be completed, enabling uninterrupted material transportation and greatly improving work efficiency.

[0004] To achieve the above objectives, a workstation switching conveyor device for a soft landing system is designed, comprising a support base, a conveyor belt mechanism, a translation cylinder, a cable drag chain connecting bracket, a cable drag chain, guide wheels, and translation rollers. The device is characterized in that: the support base is connected to the base of the conveyor belt mechanism via translation rollers, and the base of the conveyor belt mechanism is equipped with a conveyor belt mechanism; the cable drag chain connecting bracket is connected to one side of the base of the conveyor belt mechanism, the middle side of the cable drag chain connecting bracket is connected to the drive shaft of the translation cylinder, the front side of the cable drag chain connecting bracket is connected to one end of the cable drag chain, and the other end of the cable drag chain and the translation cylinder are respectively connected to the support base via connectors.

[0005] The translation roller is connected to the support base via a roller connecting bracket. A guide wheel is connected to the roller connecting bracket located on the side above the translation roller. The rims of the translation roller and the guide wheel respectively abut against the bottom and side of the conveyor belt mechanism base.

[0006] The support base is a concave frame structure, and there are at least 4 support bases. The support base is located in the middle and connected to the conveyor belt mechanism through the conveyor belt mechanism base. The outer side of the support base is connected to the frame of the soft landing system.

[0007] The translation roller and guide roller are respectively connected to the roller connecting bracket via a rotating shaft.

[0008] The bottom and sides of the base of the conveyor belt mechanism are in sliding engagement with the translation rollers and guide wheels.

[0009] A conveyor belt servo motor is connected to the front side of the conveyor belt mechanism.

[0010] Compared with the prior art, this utility model provides a workstation switching and conveying device for a soft landing system, which changes the traditional one- or two-workstation operation mode. Through the workstation switching device, four-workstation reciprocating cycles can be completed, enabling uninterrupted material transportation and greatly improving work efficiency. Attached Figure Description

[0011] Figure 1 This is a front view of the structure of this utility model.

[0012] Figure 2 This is a top view of the structure of this utility model.

[0013] Figure 3 for Figure 1 Sectional view along the AA direction.

[0014] Figure 4 This is a schematic diagram of the present invention installed on a soft landing system.

[0015] See Figures 1 to 4 1 is the workstation switching conveyor, 1-1 is the support base, 1-2 is the translation roller, 1-3 is the conveyor belt mechanism base, 1-4 is the conveyor belt mechanism, 1-5 is the cable drag chain connecting bracket, 1-6 is the cable drag chain, 1-7 is the translation cylinder, 1-8 is the conveyor belt servo motor, 1-9 is the roller connecting bracket, and 1-10 is the guide wheel. Detailed Implementation

[0016] The present invention will be further described below with reference to the accompanying drawings.

[0017] like Figures 1 to 3 As shown, the support base 1-1 is connected to the conveyor belt mechanism base 1-3 via the translation roller 1-2. The conveyor belt mechanism base 1-3 is equipped with a conveyor belt mechanism 1-4. A cable drag chain connecting bracket 1-5 is connected to one side of the conveyor belt mechanism base 1-3. The middle side of the cable drag chain connecting bracket 1-5 is connected to the drive shaft of the translation cylinder 1-7. The front side of the cable drag chain connecting bracket 1-5 is connected to one end of the cable drag chain 1-6. The other end of the cable drag chain 1-6 and the translation cylinder 1-7 are respectively connected to the support base 1-1 via connectors.

[0018] The translation roller 1-2 is connected to the support base 1-1 via the roller connecting bracket 1-9. The guide wheel 1-10 is connected to the roller connecting bracket 1-9 located on the side above the translation roller 1-2. The rims of the translation roller 1-2 and the guide wheel 1-10 respectively abut against the bottom and side of the conveyor belt mechanism base 1-3.

[0019] The support base 1-1 is a concave frame structure. There are at least 4 support bases 1-1 located in the middle of the support base 1-1 and connected to the conveyor belt mechanism 1-4 through the conveyor belt mechanism base 1-3. The outer side of the support base 1-1 is connected to the frame of the soft landing system.

[0020] The translation rollers 1-2 and guide rollers 1-10 are respectively connected to the roller connecting brackets 1-9 via rotating shafts.

[0021] The bottom and sides of the conveyor belt mechanism base 1-3 are in sliding fit with the translation roller 1-2 and the guide wheel 1-10.

[0022] The front side of the conveyor belt mechanism 1-4 is connected to the conveyor belt servo motor 1-8.

[0023] Multiple sensors are installed on the workstation switching conveyor device 1. During operation, the sensor transmits information such as its position and conveying status to the control terminal at any time, so that the control terminal can switch the position and conveying direction.

[0024] The general mode of the workstation switching conveyor 1 is to first convey the first and second workstations, and then convey the third and fourth workstations after the first and second workstations are full.

[0025] The working principle of this utility model:

[0026] 1. When the material is conveyed from the end of the extended conveyor to the station switching conveyor 1, the conveyor belt servo motor 1-8 on the station switching conveyor 1 controls the conveyor belt mechanism 1-4 to rotate counterclockwise, conveying the material to the first station.

[0027] 2. When the material box at the first workstation is full, the conveyor belt servo motor 1-8 controls the conveyor belt mechanism 1-4 to stop conveying.

[0028] 3. The translation cylinder 1-7 pushes the conveyor belt mechanism 1-4, so that the conveyor belt mechanism 1-4 is located between the second and fourth work positions;

[0029] 4. After reaching the designated position, the conveyor belt servo motor 1-8 on the workstation switching conveyor device 1 controls the conveyor belt mechanism 1-4 to rotate counterclockwise, conveying the material to the second workstation;

[0030] 5. When the material box of the second workstation is full, the conveyor belt servo motor 1-8 controls the conveyor belt mechanism 1-4 to stop conveying.

[0031] 6. The conveyor belt servo motor 1-8 on the workstation switching conveyor device 1 controls the conveyor belt mechanism 1-4 to rotate clockwise, conveying the material to the fourth workstation;

[0032] 7. When the material box at the fourth workstation is full, the conveyor belt servo motor 1-8 controls the conveyor belt mechanism 1-4 to stop conveying.

[0033] 8. The translation cylinder 1-7 pulls the conveyor belt mechanism 1-4, so that the conveyor belt mechanism 1-4 is located between the first station and the third station;

[0034] 9. The conveyor belt servo motor 1-8 on the workstation switching conveyor device 1 controls the conveyor belt mechanism 1-4 to rotate clockwise, conveying the material to the third workstation;

[0035] 10. When the material box of the third station is full, the conveyor belt servo motor 1-8 controls the conveyor belt mechanism 1-4 to stop conveying.

[0036] 11. Repeat the above steps until the work stops.

[0037] This utility model device changes the traditional one- or two-station operation mode. Through the station switching device, it can complete the reciprocating cycle of four stations, enabling uninterrupted material transportation and greatly improving work efficiency.

Claims

1. A workstation switching conveyor device for a soft landing system, comprising a support base, a conveyor belt mechanism, a translation cylinder, a cable drag chain connection bracket, a cable drag chain, guide wheels, and translation rollers, characterized in that: The support base (1-1) is connected to the conveyor belt mechanism base (1-3) via translation rollers (1-2). The conveyor belt mechanism base (1-3) is equipped with a conveyor belt mechanism (1-4). A cable drag chain connecting bracket (1-5) is connected to one side of the conveyor belt mechanism base (1-3). The middle side of the cable drag chain connecting bracket (1-5) is connected to the drive shaft of the translation cylinder (1-7). The front side of the cable drag chain connecting bracket (1-5) is connected to one end of the cable drag chain (1-6). The other end of the cable drag chain (1-6) and the translation cylinder (1-7) are connected to the support base (1-1) via connectors.

2. A station change conveyor for a soft landing system according to claim 1, characterized in that The translation roller (1-2) is connected to the support base (1-1) through the roller connecting bracket (1-9). The guide wheel (1-10) is connected to the roller connecting bracket (1-9) located on the side above the translation roller (1-2). The rims of the translation roller (1-2) and the guide wheel (1-10) respectively abut against the bottom and side of the conveyor belt mechanism base (1-3).

3. A station change conveyor for a soft landing system according to claim 1, characterized in that: The support base (1-1) is a concave frame structure. There are at least 4 support bases (1-1). The support base (1-1) is located in the middle and connected to the conveyor belt mechanism (1-4) through the conveyor belt mechanism base (1-3). The outer side of the support base (1-1) is connected to the frame of the soft landing system.

4. A station change conveyor for a soft landing system according to claim 2, characterized in that: The translation rollers (1-2) and guide wheels (1-10) are respectively connected to the roller connecting brackets (1-9) via rotating shafts.

5. A station change conveyor for a soft landing system according to claim 1 or 2 or 3 or any combination thereof, characterized in that: The bottom and sides of the conveyor belt mechanism base (1-3) are in sliding fit with the translation roller (1-2) and guide wheel (1-10).

6. A station change conveyor for a soft landing system according to claim 1, characterized in that: The conveyor belt mechanism (1-4) is connected to a conveyor belt servo motor (1-8) on one side of its front.