Transmission device for mechanical electrical equipment manufacturing

By designing a combination of input track, transfer conveyor track, and rotating mechanism, the problem of disordered goods at transfer points in traditional transmission devices has been solved, thus improving docking accuracy and efficiency.

CN223737074UActive Publication Date: 2025-12-30TIBET HONGTE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520056716.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-09
Publication Date
2025-12-30
Estimated Expiration
2035-01-09

AI Technical Summary

Technical Problem

Traditional transmission devices result in chaotic, inaccurate, and inefficient cargo transport at transfer points.

Method used

Design a transmission device that includes an input track, a transfer conveyor track, a direct output track, and a transfer output track. A rotating mechanism enables the transfer conveyor track to connect with different tracks, and a pressure sensor controls the transfer path of the goods.

Benefits of technology

It improves the conveying accuracy and efficiency at transfer points, avoids cargo confusion, and ensures efficient material allocation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a transmission device for manufacturing mechanical and electrical equipment. The transmission device comprises an input track, a switching conveying track, a direct output track and two switching output tracks, the input track is the same as the direct output track and the transfer output track in structure, the input end of the input track is a linear end, the output end of the input track is an inwards-concave arc-shaped end, the input ends of the direct output track and the transfer output track are inwards-concave arc-shaped ends, and the output ends of the direct output track and the transfer output track are linear ends. And the input end and the output end of the transfer conveying rail are convex semicircular edges. When specific goods need to be output from the transfer output track and conveyed to the transfer conveying track, the transfer conveying track does not convey the goods, but rotates and is in butt joint with the transfer output track, after butt joint is completed, the goods are conveyed again until the goods are output, the transfer efficiency is high, the precision is high, and the transfer process is not disordered.
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Description

TECHNICAL FIELD

[0001] The utility model relates to goods transmission device technical field especially relates to a transmission device for mechanical and electrical equipment manufacturing. BACKGROUND

[0002] In the manufacture of mechanical and electrical equipment, the transmission device is mainly used for moving, transferring and distributing materials or components in the production process. The traditional transmission device uses a belt, chain or roller system to transport materials from one point to another. It is widely used in automated production lines. However, it is relatively troublesome to transport goods to different tracks at the transfer point according to needs. Many goods are disordered at the transfer point, the transportation precision is not high, and the transportation efficiency is low. SUMMARY

[0003] The utility model aims at least in a certain extent solves one of the technical problems in the prior art. Therefore, one purpose of the utility model is to provide a transmission device for mechanical and electrical equipment manufacturing, which solves the problem of disordered goods at the transfer point, low transportation precision and low transportation efficiency.

[0004] According to the utility model discloses a transmission device for mechanical and electrical equipment manufacturing, including an input track, a transfer conveying track, a direct output track and two transfer output tracks;

[0005] The input track, the direct output track and the transfer output track have the same structure. The input end of the input track is a straight end, and the output end is a concave arc end. The input end of the direct output track and the transfer output track is a concave arc end, and the output end is a straight end. The output end of the input track is distributed around a circle with the input end of the direct output track and the input end of the two transfer output tracks. The input track and the direct output track are on the same straight line, and the two transfer output tracks are on the two sides of the input track and the direct output track.

[0006] The input end and the output end of the transfer conveying track are both convex semicircular edges. The transfer conveying track is installed on a rotating mechanism at the bottom. The transfer conveying track is arranged at the position of the circle surrounded by the input track, the direct output track and the two transfer output tracks. When the transfer conveying track rotates, the output end of the transfer conveying track can be connected to the input end of the direct output track or the input end of the two transfer output tracks.

[0007] In some embodiments of the utility model, the input track, the switching conveying track, the direct output track and the switching output track are all frame-mounted rollers, the frame is a U-shaped groove frame, the roller is provided with a rotating shaft at both ends and a bearing is sleeved on the rotating shaft, the bearing is inlaidly installed in the groove two side walls of the U-shaped groove frame, the roller is connected by a connecting shaft in the middle position, two belt pulleys are sleeved on the connecting shaft, the rollers are sequentially connected by the belt pulley alternately, a driving motor is arranged below the output end or the input end position and a driving belt pulley is sleeved on the rotating shaft of the driving motor, and the driving belt pulley is connected with the spare belt pulley of the most marginal roller by a belt.

[0008] In some embodiments of the utility model, the rotating mechanism comprises a base, a disc motor and a supporting roller, the disc motor is inlaid in the top of the base, the frame bottom of the switching conveying track is fixed on the rotating shaft of the disc motor in the middle position, the frame bottom of the switching conveying track is provided with four supporting rollers which are circularly arranged, and the four supporting rollers are arranged on the top of the base.

[0009] In some embodiments of the utility model, the switching conveying track is provided with a pressure sensor on one of the rollers at the input end, when the goods are input on the switching conveying track and pressed on the roller with the pressure sensor, the system will be started to control the input track to stop conveying.

[0010] In some embodiments of the utility model, at least two goods can be placed on the input track, one direct output track and two switching output tracks, and the goods are kept at a half-width distance, the middle section length of the switching conveying track is greater than one goods width except the convex semicircle end at both ends.

[0011] In some embodiments of the utility model, the roller top height of the input track 1 is 5-7mm higher than the roller top height of the switching conveying track, and the roller top height of the switching conveying track is 5-7mm higher than the roller top height of one direct output track and two switching output tracks.

[0012] In the utility model, the goods are conveyed on the input track and directly conveyed to the switching conveying track, if directly conveyed, the switching conveying track is not rotated, and the goods are directly conveyed to the direct output track, if the specific goods (for example, defective goods) need to be output from the switching output track, when the goods are conveyed to the switching conveying track, the switching conveying track is not conveyed, but is rotated to dock with the switching output track, after the docking is completed, the conveying is carried out again until the output is completed, the switching efficiency is high, the precision is also high, and the switching process is not chaotic. BRIEF DESCRIPTION OF DRAWINGS

[0013] The accompanying drawings are used to provide further understanding of the present application, and constitute a part of the specification, and are used to explain the present application together with embodiments of the present application, and do not constitute a limitation to the present application. In the drawings:

[0014] Figure 1 A structural schematic view of the transmission device for manufacturing mechanical and electrical equipment according to the present application (the adapter conveying track is connected with one of the adapter output tracks).

[0015] Figure 2 A structural schematic view of the transmission device for manufacturing mechanical and electrical equipment according to the present application (the adapter conveying track is connected with one of the adapter output tracks).

[0016] Figure 3 A structural schematic view of the adapter conveying track according to the present application.

[0017] Figure 4 A structural schematic view of the adapter conveying track and the rotating mechanism according to the present application.

[0018] Figure 5 A structural schematic view of the connection mode between the rollers according to the present application.

[0019] In the figure: 1, input track; 2, adapter conveying track; 21, outer convex semicircular edge; 22, roller; 221, connecting shaft; 222, belt pulley; 223, belt; 23, driving motor; 24, supporting roller; 25, disc motor; 26, base; 3, direct output track; 4, adapter output track; 40, inner concave arc-shaped end. DETAILED DESCRIPTION

[0020] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings of the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments of the present application.

[0021] Examples of the described embodiments are shown in the drawings, in which the same or similar reference signs represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are intended to explain the present application, and cannot be understood as a limitation to the present application.

[0022] Referring to Figures 1-5 A transmission device for manufacturing mechanical and electrical equipment, comprising an input track 1, an adapter conveying track 2, a direct output track 3 and two adapter output tracks 4;

[0023] The input track 1 is the same structure as the direct output track 3 and the switching output track 4, the input end of the input track 1 is a straight end, the output end is a concave arc-shaped end 40, the input end of the direct output track 3 and the switching output track 4 is a concave arc-shaped end 40, and the output end is a straight end, the output end of the input track 1 is distributed around a circle with the input end of the direct output track 3 and the input end of the two switching output tracks 4, the input track 1 is on the same straight line as the direct output track 3, and the two switching output tracks 4 are respectively on the two sides of the input track 1 and the direct output track 3;

[0024] The input end and the output end of the switching conveying track 2 are both convex semicircular edges 21, the bottom of the switching conveying track 2 is mounted on a rotating mechanism, the switching conveying track 2 is arranged at a position around a circle formed by the input track 1, the direct output track 3 and the two switching output tracks 4, and when the switching conveying track 2 rotates, the output end of the switching conveying track 2 can be connected to the input end of the direct output track 3 or the input end of the two switching output tracks 4.

[0025] Figure 1 And Figure 2 An input track 1, a direct output track 3 and two switching output tracks 4 are arranged around the switching conveying track 2 uniformly, and the positions and orientations of the two switching output tracks 4 can also be set as needed. Goods (electrical components and other goods) are input into the input track 1 every few seconds to maintain a spacing between the goods, if the goods are directly output from the direct output track 3, the switching conveying track 2 does not rotate and does not stop running, and the goods are directly conveyed to the direct output track 3. If the goods are switched to one of the two switching output tracks 4, the goods are not conveyed when they are conveyed to the switching conveying track 2, instead, the switching conveying track 2 is rotated until it is connected to the switching output track 4, then the conveying is started again and the goods are conveyed to the switching conveying track 2, and then the switching conveying track 2 is rotated to the initial position, at this time, the input track 1 is started to convey again.

[0026] The input track 1, the switching conveying track 2, the direct output track 3 and the switching output track 4 are all frame-mounted rollers 22, the frame is a U-shaped groove frame, the rollers 22 are provided with shafts at both ends and the shafts are sleeved with bearings, the bearings are embeddedly installed in the two side walls of the groove of the U-shaped groove frame, the middle position of the roller 22 is connected with a connecting shaft 221, the connecting shaft 221 is sleeved with two belt pulleys 222, the rollers 22 are sequentially and alternately connected by a belt 223 which is sleeved on the two belt pulleys 222, a drive motor 23 is arranged below the output end or the input end position, a driving belt pulley is sleeved on the rotating shaft of the drive motor 23, and the driving belt pulley is connected with the spare belt pulley 222 of the most edge roller 22 by the belt 223.

[0027] The middle position of the roller 22 is connected by a connecting shaft 221, which is used to drive in the middle. The roller 22 at both ends of the transfer track 2 is short, and the drive cannot be set at both ends of the roller. The input track 1, the direct output track 3 and the transfer output track 4 can be set according to the driving position.

[0028] The rotating mechanism includes a base 26, a disc motor 25 and a supporting roller 24. The disc motor 25 is embedded in the top of the base 26. The frame of the transfer track 2 is fixed on the rotating shaft of the disc motor 25 at the middle position of the bottom. The frame of the transfer track 2 is provided with four supporting rollers 24 arranged in a circle, and the four supporting rollers 24 are arranged on the top of the base 26.

[0029] When the transfer track 2 is rotating and connected with the direct output track 3 and the transfer output track 4, the interval is kept at 0.5-1.0 cm. The disc motor 25 is prevented from being pressed, and the four supporting rollers 24 are arranged to support and not affect the rotation.

[0030] The transfer track 2 is provided with a pressure sensor on one of the rollers 22 at the input end. When the goods are input on the transfer track 2 and pressed on the roller 22 with the pressure sensor, the system will start to control the input track 1 to stop conveying. The pressure sensor senses whether the goods are conveyed or not. Each goods conveying is conveyed according to the number. When a certain goods is conveyed to the transfer track 2, the number corresponds, the pressure sensor works, and the rotating connection is realized. If it is not the corresponding number, the pressure sensor does not work, and the goods are directly conveyed without rotating the transfer track 2.

[0031] The input track 1, one direct output track 3 and two transfer output tracks 4 can place at least two goods with a half of the width of the goods between the goods. The middle section of the transfer track 2 is greater than the width of one goods except the two end convex semicircular ends. The interval is kept to prevent the conveying from being chaotic, and the start and stop can be effectively controlled.

[0032] The top of the roller 22 of the input track 1 is 5-7 mm higher than the top of the roller 22 of the transfer track 2. The top of the roller 22 of the transfer track 2 is 5-7 mm higher than the top of the roller 22 of one direct output track 3 and two transfer output tracks 4. It is convenient for the goods to fall into the next conveying channel without being stuck or blocked.

[0033] The above merely describes a preferred embodiment of the present application, and the protection scope of the present application is not limited thereto, and any skilled person in the art, according to the technical scheme and the inventive concept of the present application, makes equivalent replacement or change within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.

Claims

1. A conveying device for manufacturing of mechanical and electrical equipment, characterized in that: It comprises an input track (1), a transfer conveying track (2), a direct output track (3) and two transfer output tracks (4); The input track (1) is the same structure as the direct output track (3) and the transfer output track (4), the input end of the input track (1) is a straight end, and the output end is a concave arc end (40), the input end of the direct output track (3) and the transfer output track (4) is a concave arc end (40), and the output end is a straight end, the output end of the input track (1) is distributed around a circle with the input end of the direct output track (3) and the input end of the two transfer output tracks (4), the input track (1) is on the same straight line with the direct output track (3), and the two transfer output tracks (4) are respectively on the two sides of the input track (1) and the direct output track (3). The input end and the output end of the transfer conveying track (2) are both convex semicircle edges (21), the bottom of the transfer conveying track (2) is installed on the rotating mechanism, the transfer conveying track (2) is arranged at the position of the circle surrounded by the input track (1), the direct output track (3) and the two transfer output tracks (4), when the transfer conveying track (2) rotates, the output end of the transfer conveying track (2) can be connected with the input end of the direct output track (3) or the input end of the two transfer output tracks (4).

2. The conveying device for manufacturing of mechanical and electrical equipment according to claim 1, characterized in that: The input track (1), the transfer conveying track (2), the direct output track (3) and the transfer output track (4) are all frame-mounted rollers (22), the frame is a U-shaped groove frame, the rollers (22) are provided with shafts at both ends and the shafts are sleeved with bearings, the bearings are embeddedly installed in the two side walls of the groove of the U-shaped groove frame, the middle position of the roller (22) is connected with a connecting shaft (221), the connecting shaft (221) is sleeved with two belt pulleys (222), the rollers (22) are sequentially connected through the staggered belt (223) on the two belt pulleys (222), a driving motor (23) is arranged below the output end or the input end position and the driving motor (23) is sleeved with a driving belt pulley on the shaft, and the driving belt pulley is connected with the spare belt pulley (222) of the most marginal roller (22) by the belt (223).

3. The conveying device for manufacturing of mechanical and electrical equipment according to claim 2, characterized in that: The rotating mechanism comprises a base (26), a disc motor (25) and a supporting roller (24), the disc motor (25) is embedded in the top of the base (26), the frame bottom of the transfer conveying track (2) is fixed on the shaft of the disc motor (25), the frame bottom of the transfer conveying track (2) is provided with four supporting rollers (24) arranged in a circle, and the four supporting rollers (24) are arranged on the top of the base (26).

4. The conveying device for manufacturing of mechanical and electrical equipment according to claim 1, characterized in that: The transfer conveying track (2) is provided with a pressure sensor on one of the rollers (22) at the input end, when there is goods input on the transfer conveying track (2) and pressed on the roller (22) with the pressure sensor, the system will start to control the input track (1) to stop conveying.

5. The conveying device for manufacturing of mechanical and electrical equipment according to claim 1, characterized in that: The input track (1), a direct output track (3) and two transfer output tracks (4) can place at least two goods and keep the half space of goods width between the goods, and the middle section length of the transfer track (2) is greater than one goods width except the convex semicircle end of the two ends.

6. The conveying device for manufacturing of mechanical and electrical equipment according to claim 1, characterized in that: The top height of the roller (22) of the input track (1) is 5-7mm higher than the top height of the roller (22) of the transfer track (2), and the top height of the roller (22) of the transfer track (2) is 5-7mm higher than the top height of the roller (22) of one direct output track (3) and two transfer output tracks (4).