Feeding structure for automatic motor assembly line
By connecting the feeding mechanism and cleaning system, the impact problem during motor shaft transmission is solved, enabling safe transmission and surface cleaning of the motor shaft, and improving the reliability and durability of the feeding structure.
Patent Information
- Application Number
- CN202520707261.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-04-15
AI Technical Summary
In the existing feeding structure, when the motor shaft is transmitted to the drive belt through the funnel, the motor shaft is subjected to impact force due to gravity, which causes damage to the drive belt.
The system employs a feeding connection mechanism and a cleaning mechanism. The feeding baffle is connected via connecting screw holes and bolts, and a cleaning pad is installed in the gap of the transmission belt. The cleaning block and spring are used to vibrate the transmission belt, reducing the impact force on the motor shaft and cleaning surface impurities.
This reduces the impact force of the motor shaft on the transmission belt, avoids damage to the transmission belt, ensures the cleanliness of the motor shaft surface, and improves the safety and service life of the transmission belt.
Smart Images

Figure CN223920253U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to motor processing technical field, more specifically, especially relate to a motor automatic assembly line is with feeding structure. BACKGROUND
[0002] Motor processing is to make various parts such as motor shaft, rotor, etc., various parts are made, and the parts need to be transmitted to the automatic assembly line using the feeding structure, the motor shaft is transmitted through the feeding structure after the motor shaft processing is completed, the motor shaft is transmitted to the automatic assembly line, and the motor shaft is installed on the motor main body to complete the assembly.
[0003] According to CN202121680412.6, the utility model discloses an automatic feeding mechanism of motor assembly line, including feeding hopper, rubber board, conveying belt, conveying roller and frame, the feeding hopper is fixed on the frame through the fixing frame, the feeding hopper is located in the right upper side of conveying belt, the rubber board is fixed on the conveying belt vertically equidistantly, the conveying belt is sleeved on the conveying roller, the conveying roller is rotatably connected on the left part and right part of frame, the feeding hopper is internally fixed with the flow guide plate, in the utility model, four groups of notched grooves are set up on the feeding shaft, four groups of motor shafts can be conveyed when the driving motor rotates once, the conveying efficiency of equipment is improved, and the sealing rubber strip is clamped in the notched groove, the notched groove can be selectively sealed, the conveying efficiency is changed without changing the load of driving motor, and the use flexibility is improved.
[0004] Based on the above, the existing feeding structure generally transmits the motor shaft to the transmission belt structure through the hopper structure, the hopper is generally arranged on the upper side of the transmission belt, and the motor shaft will be impacted by gravity when falling onto the transmission belt, so that the motor shaft has a certain impact force, and the long-term impact of the motor shaft on the transmission belt can easily cause damage to the transmission belt. UTILITY MODEL CONTENTS
[0005] To solve the above technical problems, the utility model provides a kind of feeding structure for motor automatic assembly line, to solve the problem that the existing feeding structure generally transmits the motor shaft to the transmission belt structure through the hopper structure, the hopper is generally arranged on the upper side of the transmission belt, and the motor shaft will be impacted by gravity when falling onto the transmission belt, so that the motor shaft has a certain impact force, and the long-term impact of the motor shaft on the transmission belt can easily cause damage to the transmission belt.
[0006] The purpose and effect of the utility model are achieved by the following specific technical means:
[0007] The utility model provides an automatic assembly line for motor supplies structure, including supply base, supply support leg, supply baffle, supply hopper, supply transmission belt, support connecting arm, supply connecting mechanism and arrangement cleaning mechanism, the supply support leg is provided with multiple groups, and multiple supply support legs are fixedly connected in the lower end surface of supply base respectively, the supply baffle is located in the front end surface of supply base, the supply hopper is fixedly connected in the upper end surface right side of supply base, the supply transmission belt is transmission connection in the inside of supply base, the support connecting arm is fixedly connected in the inside of supply base, and the support connecting arm is located in the right side of supply transmission belt inboard surface, the supply connecting mechanism is arranged in the front side of supply base, and the arrangement cleaning mechanism is arranged in the inside rear side of supply base.
[0008] Further, the supply connecting mechanism comprises a connecting screw hole and a connecting bolt; the connecting screw hole is provided with multiple groups; multiple connecting screw holes are respectively provided in the lower side of the front end surface of the supply base and the lower side of the supply baffle; the connecting bolt is provided with multiple groups; multiple connecting bolts are respectively threadedly connected in the multiple connecting screw holes.
[0009] Further, the supply connecting mechanism further comprises a cleaning bottom pad and a bottom pad connecting block; the cleaning bottom pad is provided with multiple groups, and multiple cleaning bottom pads are respectively inserted and connected in the gaps in the inside of the supply transmission belt; the outer end surfaces of the multiple cleaning bottom pads are respectively arc-shaped structures; and the multiple cleaning bottom pads are respectively hard sponge rectangular structures; the bottom pad connecting block is fixedly connected to the front end surface of the multiple cleaning bottom pads, and the bottom pad connecting block slides in the inside of the supply base.
[0010] Further, the arrangement cleaning mechanism comprises a supply motor and a supply pulley; the supply motor is fixedly connected to the right side of the inside of the supply base; the supply pulley is provided with two groups; the two groups of supply pulleys are respectively rotationally connected to the left and right sides of the inside of the supply base; the two groups of supply pulleys and the supply transmission belt are in transmission connection; and the right group of supply pulleys and the supply motor shaft are coaxially fixedly connected.
[0011] Further, the arrangement cleaning mechanism further comprises a motor pulley, an arrangement transmission belt, and an arrangement pulley; the motor pulley is coaxially fixedly connected to the shaft of the supply motor; the arrangement pulley is rotationally connected to the rear side of the inside of the supply base; and the arrangement transmission belt is in transmission connection with the outer end surfaces of the motor pulley and the arrangement pulley.
[0012] Further, the arrangement cleaning mechanism further comprises an arrangement shaft, an arrangement cam, and an arrangement knocking block; the arrangement shaft is rotationally connected to the inside of the support connecting arm; the rear side of the arrangement shaft and the arrangement pulley are coaxially fixedly connected; the arrangement cam is fixedly connected to the middle position of the arrangement shaft and rotates in the inside of the support connecting arm; and the arrangement knocking block is slidingly connected to the inside of the upper end surface of the support connecting arm, slides on the upper side of the inboard surface of the supply transmission belt, and slides on the upper side of the arrangement cam.
[0013] Further, the arrangement cleaning mechanism further comprises: arrangement springs; the arrangement springs are provided in multiple groups, and the multiple groups of arrangement springs are fixedly connected to the inside of the support connecting arms respectively, and the multiple groups of arrangement springs are elastically connected to the lower end surface of the arrangement knock block respectively.
[0014] Compared with the prior art, the utility model has the advantages of the following beneficial effects:
[0015] The utility model discloses a supply connection mechanism, realizes that the supply baffle is connected in the front end surface of the supply base through connecting screw hole and connecting bolt, and the supply baffle can be disassembled, conveniently replaces and installs the cleaning bottom pad, the cleaning bottom pad is installed in the inside of the supply transmission belt gap, when the motor rotating shaft falls to the inside of the supply transmission belt gap through the supply hopper, the cleaning bottom pad reduces the strength of the motor rotating shaft impact, avoids the problem that the motor rotating shaft is damaged and the supply transmission belt is damaged by the impact, improves the safety of the motor rotating shaft and the supply transmission belt.
[0016] The utility model discloses a arrangement cleaning mechanism, realizes when the motor rotating shaft is transmitted through the supply transmission belt and drives the arrangement knock block reciprocating slide simultaneously, and the arrangement knock block reciprocating slide knocks the supply transmission belt, and the supply transmission belt produces vibration, and the supply transmission belt produces vibration and drives the motor rotating shaft to produce vibration, and the motor rotating shaft produces vibration and falls to the inside of the supply transmission belt groove quickly, and the motor rotating shaft is vibrated and produces displacement in the inside of the groove, and when the motor rotating shaft produces displacement and rotates, the cleaning bottom pad cleans the surface of the motor rotating shaft, guarantees the surface neat of the motor rotating shaft. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is the structure schematic diagram of the supply structure front view of the utility model.
[0018] Figure 2 It is the structure schematic diagram of the supply structure split of the utility model.
[0019] Figure 3 It is the structure schematic diagram of the supply connection mechanism connection split of the utility model.
[0020] Figure 4 It is the structure schematic diagram of the cleaning bottom pad of the utility model.
[0021] Figure 5 It is the structure schematic diagram of the arrangement cleaning mechanism whole of the utility model.
[0022] Figure 6 It is the structure schematic diagram of the arrangement knock block lower view of the utility model.
[0023] In the drawing, the corresponding relationship of component name and drawing number is as follows:
[0024] 1, feed base; 2, feed support leg; 3, feed baffle; 4, feed hopper; 5, feed transmission belt; 6, support connecting arm; 7, connecting screw hole; 8, connecting bolt; 9, cleaning bottom pad; 901, bottom pad connecting block; 10, feed motor; 1001, motor pulley; 11, feed pulley; 12, arrangement transmission belt; 13, arrangement rotating shaft; 1301, arrangement pulley; 1302, arrangement cam; 14, arrangement knock block; 1401, arrangement spring. DETAILED DESCRIPTION
[0025] The embodiments of the present application will be further described in detail below with reference to the accompanying drawings and examples.
[0026] Example 1:
[0027] As shown in the accompanying drawings: Figure 1 to the accompanying drawings: Figure 4 As shown in the accompanying drawings:
[0028] The utility model provides a kind of feed structure for motor automation assembly line, including feed base 1, feed support leg 2, feed baffle 3, feed hopper 4, feed transmission belt 5, support connecting arm 6 and feed connecting mechanism;Feed support leg 2 is provided with multiple groups, and multiple groups of feed support leg 2 are fixedly connected at the lower end surface of feed base 1 respectively;Feed baffle 3 is located at the front end surface of feed base 1;Feed hopper 4 is fixedly connected at the upper end surface right side of feed base 1;Feed transmission belt 5 is transmission connection in the inside of feed base 1;Support connecting arm 6 is fixedly connected in the inside of feed base 1, and support connecting arm 6 is located at the inner end surface right side of feed transmission belt 5;Feed connecting mechanism is arranged at the front side of feed base 1.
[0029] Among them, feed connecting mechanism includes: connecting screw hole 7 and connecting bolt 8;Connecting screw hole 7 is provided with multiple groups;Multiple groups of connecting screw hole 7 are respectively set in the lower side of the front end surface of feed base 1 and the lower side of feed baffle 3;Connecting bolt 8 is provided with multiple groups;Multiple groups of connecting bolt 8 are respectively screwed in the inside of multiple groups of connecting screw hole 7, in the process of use, when feed baffle 3 is installed at the front end surface of feed base 1, feed baffle 3 moves and drives the movement of connecting screw hole 7 on feed baffle 3, connecting screw hole 7 on feed baffle 3 moves to the position of connecting screw hole 7 on feed base 1 and is aligned, connecting bolt 8 is installed in connecting screw hole 7, so that feed baffle 3 is installed at the front end surface of feed base 1.
[0030] The feeding connection mechanism also includes: a cleaning base pad 9 and a base pad connecting block 901; multiple sets of cleaning base pads 9 are provided, and the multiple sets of cleaning base pads 9 are respectively inserted into the gaps inside the feeding conveyor belt 5. The outer end faces of the multiple sets of cleaning base pads 9 are arc-shaped structures, and the multiple sets of cleaning base pads 9 are rigid sponge rectangular structures; the base pad connecting block 901 is fixedly connected to the front end face of the multiple sets of cleaning base pads 9, and the base pad connecting block 901 slides inside the feeding base 1. During use, the base pad connecting block 901 connects the multiple sets of cleaning base pads 9 together. When the motor shaft falls from the feeding funnel 4 into the gap of the feeding conveyor belt 5, the motor shaft falls onto the cleaning base pad 9. The cleaning base pad 9 reduces the impact force of the motor shaft falling. The cleaning base pad 9 can be replaced. When the motor shaft shakes on the cleaning base pad 9, the cleaning base pad 9 can clean the surface of the motor shaft.
[0031] The specific usage and function of this first embodiment are as follows:
[0032] During use, when the feeding baffle 3 is installed on the front end face of the feeding base 1, the movement of the feeding baffle 3 causes the connecting screw hole 7 on the feeding baffle 3 to move. The connecting screw hole 7 on the feeding baffle 3 moves to the position of the connecting screw hole 7 on the feeding base 1 and aligns. The connecting bolt 8 is installed inside the connecting screw hole 7, thereby installing the feeding baffle 3 on the front end face of the feeding base 1. The bottom pad connecting block 901 connects multiple sets of cleaning bottom pads 9 together. When the motor shaft falls from the feeding funnel 4 into the gap of the feeding transmission belt 5, the motor shaft falls onto the cleaning bottom pad 9. The cleaning bottom pad 9 reduces the impact force of the motor shaft falling. The cleaning bottom pad 9 can be replaced. When the motor shaft shakes on the cleaning bottom pad 9, the cleaning bottom pad 9 can clean the surface of the motor shaft, thereby reducing the impact force of the motor shaft falling.
[0033] Example 2:
[0034] Based on Example 1, as shown in the appendix Figure 5 and attached Figure 6 As shown:
[0035] This utility model provides a feeding structure for an automated motor assembly line, which also includes a sorting and cleaning mechanism. The sorting and cleaning mechanism is located inside the rear side of the feeding base 1 and includes a feeding motor 10 and feeding pulleys 11. The feeding motor 10 is fixedly connected to the right side inside the feeding base 1. There are two sets of feeding pulleys 11, which are rotatably connected to the left and right sides inside the feeding base 1, respectively. The two sets of feeding pulleys 11 are connected to the feeding transmission belt 5. The right set of feeding pulleys 11 is coaxially fixedly connected to the shaft of the feeding motor 10. During use, the shaft of the feeding motor 10 rotates, driving the feeding pulleys 11 to rotate. The rotation of the feeding pulleys 11 drives the feeding transmission belt 5 to transmit power, and the feeding transmission belt 5 transmits power to the motor shaft.
[0036] The arranging and cleaning mechanism further comprises a motor pulley 1001, an arranging transmission belt 12 and an arranging pulley 1301. The motor pulley 1001 is coaxially fixedly connected to the rotating shaft of the feeding motor 10. The arranging pulley 1301 is rotatably connected to the rear inner side of the feeding base 1. The arranging transmission belt 12 is in transmission connection with the outer end surfaces of the motor pulley 1001 and the arranging pulley 1301. During use, the rotating shaft of the feeding motor 10 drives the motor pulley 1001 to rotate, the motor pulley 1001 drives the arranging transmission belt 12 to transmit, and the arranging transmission belt 12 drives the arranging pulley 1301 to rotate.
[0037] The arranging and cleaning mechanism further comprises an arranging rotating shaft 13, an arranging cam 1302 and an arranging knocking block 14. The arranging rotating shaft 13 is rotatably connected to the inner side of the supporting connecting arm 6, and the rear side of the arranging rotating shaft 13 is coaxially fixedly connected to the arranging pulley 1301. The arranging cam 1302 is fixedly connected to the middle position of the arranging rotating shaft 13, and rotates in the inner side of the supporting connecting arm 6. The arranging knocking block 14 is slidably connected to the inner side of the upper end surface of the supporting connecting arm 6, and slides on the upper side of the inner end surface of the feeding transmission belt 5 and the upper side of the arranging cam 1302. During use, the arranging pulley 1301 drives the arranging rotating shaft 13 to rotate, the arranging rotating shaft 13 drives the arranging cam 1302 to rotate, and the arranging cam 1302 drives the arranging knocking block 14 to slide.
[0038] The arranging and cleaning mechanism further comprises arranging springs 1401. A plurality of arranging springs 1401 are fixedly connected to the inner side of the supporting connecting arm 6, and are in elastic connection with the lower end surface of the arranging knocking block 14. During use, the arranging knocking block 14 drives the arranging springs 1401 to stretch and contract, the arranging springs 1401 and the arranging cam 1302 drive the arranging knocking block 14 to reciprocatingly slide, the arranging knocking block 14 reciprocatingly slides and knocks the feeding transmission belt 5, the feeding transmission belt 5 is vibrated, the motor rotating shaft is vibrated, and the cleaning pad 9 cleans the impurities on the surface of the motor rotating shaft when the motor rotating shaft is displaced.
[0039] The specific use mode and effect of the second embodiment are as follows:
[0040] In use, the supply motor 10 rotates the shaft to drive the supply pulley 11 to rotate, the supply pulley 11 drives the supply transmission belt 5 to drive the motor shaft, the supply motor 10 rotates the shaft to drive the motor pulley 1001 to rotate, the motor pulley 1001 drives the arrangement transmission belt 12 to drive the arrangement pulley 1301 to rotate, the arrangement pulley 1301 drives the arrangement shaft 13 to rotate, the arrangement shaft 13 drives the arrangement cam 1302 to rotate, the arrangement cam 1302 drives the arrangement knock block 14 to slide, the arrangement knock block 14 drives the arrangement spring 1401 to stretch and contract, the arrangement spring 1401 and the arrangement cam 1302 drive the arrangement knock block 14 to slide back and forth, the arrangement knock block 14 strikes the supply transmission belt 5 to make the supply transmission belt 5 vibrate, the supply transmission belt 5 drives the motor shaft to vibrate, the motor shaft is displaced to clean the bottom pad 9 to clean the impurities on the surface of the motor shaft, and the motor shaft is arranged on the supply transmission belt 5 to clean the impurities on the surface of the motor shaft.
[0041] In this paper, the following points need attention:
[0042] 1. The drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure, and other structures can refer to the general design.
[0043] 2. In the case of no conflict, the embodiments of the present disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.
[0044] The above is only a specific implementation of the present disclosure, but the protection scope of the present disclosure is not limited to this, any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present disclosure, which should be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.
Claims
1. A feeding structure for motor automation assembly line, comprising a feeding base (1), a feeding support leg (2), a feeding baffle (3), a feeding hopper (4), a feeding transmission belt (5), a support connecting arm (6), a feeding connecting mechanism and a finishing and cleaning mechanism; a plurality of groups of feeding support legs (2) are arranged, and the plurality of groups of feeding support legs (2) are fixedly connected to the lower end surface of the feeding base (1); characterized in that: The feeding baffle (3) is located at the front end surface of the feeding base (1); the feeding funnel (4) is fixedly connected to the upper end surface of the feeding base (1) on the right side; the feeding transmission belt (5) is drivingly connected inside the feeding base (1); the supporting connecting arm (6) is fixedly connected inside the feeding base (1), and the supporting connecting arm (6) is located at the inner end surface right side of the feeding transmission belt (5); the feeding connecting mechanism is arranged on the front side of the feeding base (1); and the arrangement and cleaning mechanism is arranged inside the feeding base (1) on the rear side.
2. The feeding structure for motor automated assembly line according to claim 1, characterized in that: The feeding connecting mechanism comprises connecting screw holes (7) and connecting bolts (8); a plurality of groups of the connecting screw holes (7) are arranged; the plurality of groups of the connecting screw holes (7) are respectively arranged on the lower side of the front end surface of the feeding base (1) and the lower side of the feeding baffle (3); and a plurality of groups of the connecting bolts (8) are arranged; the plurality of groups of the connecting bolts (8) are respectively threadedly connected inside the plurality of groups of the connecting screw holes (7).
3. The feeding structure for motor automated assembly line according to claim 1, wherein: The feeding connecting mechanism further comprises cleaning bottom pads (9) and bottom pad connecting blocks (901); a plurality of groups of the cleaning bottom pads (9) are arranged, the plurality of groups of the cleaning bottom pads (9) are respectively inserted and connected in gaps inside the feeding transmission belt (5), outer end surfaces of the plurality of groups of the cleaning bottom pads (9) are respectively arc-shaped structures, the plurality of groups of the cleaning bottom pads (9) are respectively hard sponge rectangular structures; and the bottom pad connecting blocks (901) are fixedly connected to front end surfaces of the plurality of groups of the cleaning bottom pads (9), and the bottom pad connecting blocks (901) slide inside the feeding base (1).
4. The feeding structure for motor automated assembly line according to claim 1, wherein: The arrangement and cleaning mechanism comprises a feeding motor (10) and a feeding pulley (11); the feeding motor (10) is fixedly connected to the inside right side of the feeding base (1); two groups of the feeding pulleys (11) are arranged, the two groups of the feeding pulleys (11) are respectively rotatably connected to the inside left and right sides of the feeding base (1), the two groups of the feeding pulleys (11) are drivingly connected with the feeding transmission belt (5), and the right group of the feeding pulleys (11) is coaxially fixedly connected with the rotating shaft of the feeding motor (10).
5. The feeding structure for motor automated assembly line according to claim 4, wherein: The arrangement and cleaning mechanism further comprises a motor pulley (1001), an arrangement transmission belt (12) and an arrangement pulley (1301); the motor pulley (1001) is coaxially fixedly connected to the rotating shaft of the feeding motor (10); the arrangement pulley (1301) is rotatably connected to the inside rear side of the feeding base (1); and the arrangement transmission belt (12) is drivingly connected to outer end surfaces of the motor pulley (1001) and the arrangement pulley (1301).
6. The feeding structure for motor automated assembly line according to claim 5, characterized in that: The arrangement and cleaning mechanism further comprises an arrangement rotating shaft (13), an arrangement cam (1302) and an arrangement knocking block (14); the arrangement rotating shaft (13) is rotatably connected inside the supporting connecting arm (6), the rear side of the arrangement rotating shaft (13) is coaxially fixedly connected with the arrangement pulley (1301); the arrangement cam (1302) is fixedly connected to the middle position of the arrangement rotating shaft (13), and the arrangement cam (1302) rotates inside the supporting connecting arm (6); and the arrangement knocking block (14) is slidingly connected to the inside upper end surface of the supporting connecting arm (6), the arrangement knocking block (14) slides on the upper side of the inner end surface of the feeding transmission belt (5), and the arrangement knocking block (14) slides on the upper side of the arrangement cam (1302).
7. The feeding structure for motor automated assembly line according to claim 6, characterized in that: The finishing cleaning mechanism further comprises finishing springs (1401); the finishing springs (1401) are provided in multiple groups, the finishing springs (1401) in the multiple groups are fixedly connected inside the support connecting arms (6) respectively, and the finishing springs (1401) in the multiple groups are elastically connected to the lower end surfaces of the finishing knockers (14) respectively.
Citation Information
Patent Citations
Automatic feeding mechanism of motor assembly line
CN215363541U