CN223032153U - Chain plate assembly line for easy loading and unloading - Google Patents
Chain plate assembly line for easy loading and unloading Download PDFInfo
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- CN223032153U CN223032153U CN202422264451.8U CN202422264451U CN223032153U CN 223032153 U CN223032153 U CN 223032153U CN 202422264451 U CN202422264451 U CN 202422264451U CN 223032153 U CN223032153 U CN 223032153U
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Abstract
The utility model discloses a chain plate assembly line convenient for loading and unloading, and relates to the technical field of loading. According to the utility model, when the spherical parts are required to be fed, the spherical parts are placed in the feed inlet at the upper end of the shell, then the motor is started through the external control equipment, the motor can respectively transmit power to the feeding part, the control part and the quantitative part, the spherical parts are conveyed into the conveying groove from the feed inlet through the feeding groove through the feeding part, then the quantity of the spherical parts passing through the control part is controlled, so that the feeding speed is controlled, and when the spherical parts pass through the quantitative part, the spherical parts can be conveyed into the box body along the conveying groove and the connecting plate to buffer the spherical parts through the control part, so that the probability of irregular rolling or bouncing of the spherical parts of the chain plate assembly line body is reduced, and the feeding efficiency is improved.
Description
Technical Field
The utility model relates to the technical field of feeding, in particular to a chain plate assembly line convenient for feeding and discharging.
Background
The chain plate assembly line takes a standard chain plate as a bearing surface, and realizes the rapid and stable conveying of materials by taking a motor speed reducer as power transmission. The conveying mode can bear larger load, is suitable for long-distance conveying, and can adjust conveying speed to meet the requirements of different production rhythms.
In the current factory production, it is common to manually assemble products in cooperation with a chain assembly line. The mode combines the flexibility of people and the efficiency of machines, aims at improving the production efficiency and the product quality, and needs to continuously feed materials at one end of a chain plate assembly line manually in the assembly process so as to be convenient for manually assembling the chain plate assembly line.
However, in the process of loading the spherical parts, due to the smooth appearance characteristics, the parts are difficult to stably place during loading, and are easy to roll irregularly or bounce during loading, so that the parts are separated from a preset area of a chain plate assembly line, and the loading efficiency is obviously reduced. In addition, the manual feeding mode is difficult to realize accurate control of feeding speed, so that the operation difficulty is increased, and the subsequent assembly efficiency is directly influenced.
Disclosure of utility model
The utility model aims to provide a chain plate assembly line convenient for loading and unloading so as to solve the problems in the background technology.
In order to solve the technical problems, the utility model adopts the following technical scheme:
Chain joint assembly line of unloading in convenient, include:
The chain plate assembly line comprises a chain plate assembly line body, wherein one end of the chain plate assembly line body is provided with a supporting frame, the supporting frame is fixedly connected with the chain plate assembly line body, a shell is fixedly connected to the upper portion of the supporting frame, a feeding hole is formed in the top of the shell, a feeding groove, a conveying groove, a rotating groove and a cavity are formed in the shell, one side of the shell is fixedly connected with a motor, a rotating shaft is connected in the shell, one end of the rotating shaft, far away from the motor, is fixedly connected with a bevel gear, one end of the rotating shaft, close to the motor, is fixedly connected with a first belt wheel, a box body is arranged above the chain plate assembly line body, the box body is fixedly connected with the chain plate assembly line body through a bolt, a feeding part for feeding is connected in the shell, the feeding part is located in the feeding groove, a quantitative part for controlling the feeding speed is connected in the shell, a control part for buffering parts is connected in the box body, one side of the shell, close to the box body, the other end of the connecting plate is fixedly connected with the box body, and the box body is hollow.
When the spherical part is required to be fed, the spherical part is placed in the feed inlet at the upper end of the shell, then the motor is started through external control equipment, the motor is started to drive the rotating shaft fixedly connected with the output end of the motor to rotate, the rotating shaft rotates to drive the bevel gear and the first belt wheel fixedly connected with the rotating shaft to rotate, so that power is respectively transmitted to the feeding part, the control part and the quantitative part, the feeding part is used for conveying the spherical part from the feed inlet to the conveying groove through the feeding groove, then the control part is used for controlling the feeding speed through the quantity of the spherical part, after the spherical part passes through the quantitative part, the spherical part can be conveyed into the box body along the conveying groove and the connecting plate to buffer the spherical part through the control part, and therefore the probability of irregular rolling or bouncing of the spherical part of the chain plate assembly line body is reduced, and the feeding efficiency is improved.
The feeding component comprises a transmission shaft, the transmission shaft is in rotary connection with the shell, the transmission shaft is perpendicular to the rotation shaft, the end, close to the bevel teeth, of the transmission shaft is fixedly connected with the bevel teeth, the bevel teeth are meshed with each other, the intermeshing bevel teeth are located in the cavity, the end, far away from the bevel teeth, of the transmission shaft is fixedly connected with a packing auger, and the packing auger is located in the feeding groove.
By adopting the technical scheme, when the motor starts to drive the bevel gear to rotate in the scheme, power can be transmitted to the transmission shaft through the bevel gear meshed with each other so as to drive the auger fixedly connected with the bevel gear to rotate, and the spherical part can be conveyed to the conveying groove from the feed inlet through the rotation of the auger.
The quantitative component comprises a control component, wherein the control component comprises a rotary table fixedly connected with a transmission shaft, a plurality of through grooves are uniformly formed in the rotary table along the circumferential direction, a plurality of sliding grooves are uniformly formed in the rotary table along the circumferential direction, sliding blocks are slidably connected in the sliding grooves, the sliding blocks are matched with the through grooves for use, one end of each sliding block is rotatably connected with a bolt, and the bolts are in threaded connection with the rotary table.
Adopt above-mentioned technical scheme, in this scheme after ball part carries the conveyer trough through the material loading part, the transmission shaft drives the carousel rather than fixed connection simultaneously and rotates, when the logical groove of carousel rotates the below of conveyer trough, ball part can continue the landing through the carousel until in carrying the box body through the connecting plate, simultaneously, when the efficiency of material loading needs to be improved, can rotate the bolt, the bolt rotates and can drive the slider and remove to make a plurality of logical grooves opened, promote the volume that ball part passed in the unit time, thereby improve the efficiency of material loading.
The technical scheme of the utility model is further improved in that the control part comprises a sliding shaft, the sliding shaft is rotationally connected with the box body, the outer side of the sliding shaft is fixedly connected with a concentric disc, a placing groove is formed in the concentric disc, a second belt wheel is fixedly connected onto the sliding shaft, the first belt wheel is in transmission connection with the second belt wheel through a belt, and a first empty groove and a second empty groove are respectively formed in the box body.
Adopt above-mentioned technical scheme, in this scheme when ball part carries the box body through the carousel in, ball part can deposit at this moment in first empty slot inside, the axis of rotation rotates simultaneously and can drive first band pulley and rotate, then first band pulley passes through the belt and drives the second band pulley and rotate, thereby drive the slide shaft and rotate, the slide shaft rotates and can drive concentric disc and rotate, make ball part fall into the standing groove, then the slide shaft drives concentric disc and rotates and make ball part fall into the second empty slot, can carry out quantitative control to ball part's quantity through being provided with the standing groove, ball part arranges under the effect of link joint assembly line body simultaneously.
The control part further comprises a baffle plate, the box body is provided with a moving groove, the baffle plate is in sliding connection with the moving groove, two ends of the baffle plate are respectively and fixedly connected with a first support plate, two ends of the box body are symmetrically provided with a second support plate which is fixedly connected with the first support plate, a reset spring is arranged between the first support plate and the second support plate, one end of the reset spring is fixedly connected with the first support plate, the other end of the reset spring is fixedly connected with the second support plate, two ends of the sliding shaft are respectively and fixedly connected with a deflector rod, and the deflector rods are symmetrically arranged to be matched with the baffle plate.
By adopting the technical scheme, when the sliding shaft rotates in the scheme, the deflector rod can be driven to rotate, so that the deflector rod extrudes the baffle, the baffle rises, the first support plate moves upwards, the return spring is in a compressed state, the spherical parts are originally arranged under the action of the chain plate assembly line body and the baffle, when the baffle rises, the spherical parts move under the action force of the chain plate assembly line body, and then the baffle resets, so that the probability that the spherical parts of the chain plate assembly line body roll or bounce irregularly is reduced.
The technical scheme of the utility model is further improved in that an anti-slip layer is arranged in the connecting plate, and the anti-slip layer is made of rubber.
By adopting the technical scheme, the rolling spherical part can be buffered through the anti-slip layer made of rubber materials in the scheme, so that the speed of the spherical part is slowed down.
The technical scheme of the utility model is further improved in that a plurality of placing grooves are uniformly arranged along the circumferential direction.
By adopting the technical scheme, the speed of conveying the spherical parts from the first empty groove to the second empty groove on the box body in unit time can be improved by the arrangement of the plurality of placing grooves in the scheme, so that the feeding efficiency of the spherical parts is improved.
By adopting the technical scheme, compared with the prior art, the utility model has the following technical progress:
1. The utility model provides a chain plate assembly line convenient for loading and unloading, when a spherical part is required to be loaded, the spherical part is placed into a feed inlet at the upper end of a shell, then a motor is started through external control equipment, the motor is started to drive a rotating shaft fixedly connected with the output end of the motor to rotate, the rotating shaft rotates to drive a bevel gear and a first belt wheel which are fixedly connected with the rotating shaft to rotate, so that power is respectively transmitted to a loading part, a control part and a quantitative part, the loading part is used for conveying the spherical part from the feed inlet to a conveying groove through a loading groove, then the control part is used for controlling the passing amount of the spherical part so as to control the loading speed, and when the spherical part passes through the quantitative part, the spherical part is conveyed into a box body along the conveying groove and a connecting plate through the control part so as to buffer the spherical part, and the probability of irregular rolling or bouncing of the spherical part of the chain plate assembly line body is reduced, so that the loading efficiency is improved.
2. The chain plate assembly line convenient for loading and unloading is provided by the utility model, when the motor is started to drive the bevel gears to rotate, power is transmitted to the transmission shaft through the bevel gears meshed with each other so as to drive the auger fixedly connected with the bevel gears to rotate, and the spherical parts can be conveyed to the conveying groove from the feed inlet through the rotation of the auger.
3. The utility model provides a chain plate assembly line convenient for loading and unloading, when a spherical part is conveyed to a conveying groove through a loading part, a transmission shaft drives a turntable fixedly connected with the spherical part to rotate, when a through groove of the turntable rotates below the conveying groove, the spherical part can continuously slide down through the turntable until the spherical part is conveyed into a box body through a connecting plate, meanwhile, when the loading efficiency is required to be improved, a bolt can be rotated, the bolt can be rotated to drive a sliding block to move, so that a plurality of through grooves are opened, the passing amount of the spherical part in unit time is improved, and the loading efficiency is improved.
Drawings
The utility model is further described below with reference to the accompanying drawings.
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic view of a first cross-sectional structure of the present utility model;
FIG. 3 is a schematic diagram of a second cross-sectional structure of the present utility model;
FIG. 4 is a schematic diagram of a turntable according to the present utility model;
FIG. 5 is a schematic view of a partial structure of a control unit according to the present utility model;
FIG. 6 is a schematic view of the structure of the case of the present utility model;
FIG. 7 is an enlarged schematic view of the structure of the present utility model at A;
Fig. 8 is an enlarged schematic view of the structure of the present utility model at B.
In the figure, a chain plate assembly line body, 2, a supporting frame, 3, a shell, 4, a feeding hole, 5, a feeding groove, 6, a conveying groove, 7, a rotating groove, 8, a cavity, 9, a motor, 10, a rotating shaft, 11, a bevel gear, 12, a first belt wheel, 13, a box body, 14, a connecting plate, 15, a transmission shaft, 16, an auger, 17, a turntable, 18, a through groove, 19, a sliding groove, 20, a sliding block, 21, a bolt, 22, a sliding shaft, 23, a concentric disc, 24, a placing groove, 25, a second belt wheel, 26, a first empty groove, 27, a second empty groove, 28, a baffle, 29, a moving groove, 30, a first supporting plate, 31, a second supporting plate, 32, a return spring, a deflector rod, 34 and an anti-skid layer.
Detailed Description
The utility model is further illustrated by the following examples:
Example 1
As shown in fig. 1, 2 and 3, the present utility model provides a link plate assembly line for facilitating loading and unloading, comprising:
The chain plate assembly line comprises a chain plate assembly line body 1, one end of the chain plate assembly line body 1 is provided with a support frame 2, the support frame 2 is fixedly connected with the chain plate assembly line body 1, a shell 3 is fixedly connected with the upper side of the support frame 2, a feed inlet 4 is formed in the top of the shell 3, a feeding groove 5, a conveying groove 6, a rotating groove 7 and a cavity 8 are formed in the shell 3 respectively, one side of the shell 3 is fixedly connected with a motor 9, the shell 3 is rotationally connected with a rotating shaft 10, one end of the rotating shaft 10, which is far away from the motor 9, is fixedly connected with a bevel gear 11, one end of the rotating shaft 10, which is close to the motor 9, is fixedly connected with a first belt pulley 12, a box body 13 is arranged above the chain plate assembly line body 1, the box body 13 is fixedly connected with the chain plate assembly line body 1 through a bolt 21, a feeding part for feeding is connected with the box body 3, the feeding part is located inside the feeding groove 5, a quantitative part for controlling the feeding speed is connected with the inside the shell 3, a control part for buffering the part is connected with the inside the box body 13, one side, which is close to the box body 13 is fixedly connected with a connecting plate 14, and the other end of the connecting plate 14 is fixedly connected with the box body 13, and the connecting plate 14 is hollow and is arranged.
In this embodiment, when the spherical part is required to be fed, the spherical part is placed in the feed inlet 4 at the upper end of the housing 3, then the motor 9 is started by the external control device, the motor 9 is started to drive the rotating shaft 10 fixedly connected with the output end of the motor to rotate, the rotating shaft 10 rotates to drive the bevel gear 11 and the first belt pulley 12 fixedly connected with the rotating shaft to rotate, so that power is respectively transmitted to the feeding part, the control part and the quantitative part, the spherical part is conveyed from the feed inlet 4 to the conveying groove 6 through the feeding groove 5 through the feeding part, then the speed of feeding is controlled by controlling the passing amount of the spherical part through the control part, and when the spherical part passes through the quantitative part, the spherical part is conveyed to the box 13 through the control part along the conveying groove 6 and the connecting plate 14 to buffer the spherical part, so that the probability of irregular rolling or bouncing of the spherical part of the chain plate assembly line body 1 is reduced, and the feeding efficiency is improved.
As shown in fig. 2 and 3, in this embodiment, preferably, the feeding component includes a transmission shaft 15, the transmission shaft 15 is rotationally connected with the housing 3, the transmission shaft 15 is perpendicular to the rotation shaft 10, one end of the transmission shaft 15, which is close to the bevel gear 11, is fixedly connected with the bevel gear 11, the bevel gears 11 are meshed with each other, the intermeshing bevel gears 11 are located in the cavity 8, one end, which is far away from the bevel gear 11, of the transmission shaft 15 is fixedly connected with an auger 16, and the auger 16 is located inside the feeding groove 5.
When the motor 9 starts to drive the bevel gear 11 to rotate, power can be transmitted to the transmission shaft 15 through the bevel gear 11 meshed with each other so as to drive the auger 16 fixedly connected with the bevel gear to rotate, and the spherical parts can be conveyed to the conveying groove 6 from the feed inlet 4 through the rotation of the auger 16.
As shown in fig. 3 and 4, preferably, the quantitative component comprises a control component, the control component comprises a turntable 17, the turntable 17 is fixedly connected with a transmission shaft 15, a plurality of through grooves 18 are uniformly arranged on the turntable 17 along the circumferential direction, a plurality of sliding grooves 19 are uniformly arranged in the turntable 17 along the circumferential direction, a sliding block 20 is slidably connected in the sliding grooves 19, the sliding block 20 is matched with the through grooves 18 for use, one end of the sliding block 20 is rotatably connected with a bolt 21, and the bolt 21 is in threaded connection with the turntable 17.
After the ball part is conveyed to the conveying groove 6 through the feeding part, the transmission shaft 15 drives the rotary table 17 fixedly connected with the ball part to rotate, when the through groove 18 of the rotary table 17 rotates to the lower side of the conveying groove 6, the ball part can continue to slide down through the rotary table 17 until being conveyed into the box body 13 through the connecting plate 14, meanwhile, when the feeding efficiency needs to be improved, the bolt 21 can be rotated, the bolt 21 can rotate to drive the sliding block 20 to move, so that the through grooves 18 are opened, the passing amount of the ball part in unit time is improved, and the feeding efficiency is improved.
As shown in fig. 6, preferably, the control component includes a sliding shaft 22, the sliding shaft 22 is rotatably connected with the box body 13, a concentric disc 23 is fixedly connected with the outer side of the sliding shaft 22, a placing groove 24 is formed on the concentric disc 23, a second belt wheel 25 is fixedly connected with the sliding shaft 22, the first belt wheel 12 is in transmission connection with the second belt wheel 25 through a belt, and a first empty groove 26 and a second empty groove 27 are respectively formed on the box body 13.
When the spherical parts are conveyed into the box body 13 through the rotary disc 17, the spherical parts can be stored in the first empty groove 26, the rotary shaft 10 rotates to drive the first belt pulley 12 to rotate, then the first belt pulley 12 drives the second belt pulley 25 to rotate through the belt, so that the sliding shaft 22 is driven to rotate, the sliding shaft 22 rotates to drive the concentric disc 23 to rotate, the spherical parts fall into the placing groove 24, then the sliding shaft 22 drives the concentric disc 23 to rotate, the spherical parts fall into the second empty groove 27, quantitative control can be carried out on the quantity of the spherical parts through the placing groove 24, and meanwhile the spherical parts are arranged under the action of the chain plate assembly line body 1.
As shown in fig. 7, preferably, the control part further includes a baffle 28, a moving groove 29 is formed on the box body 13, the baffle 28 is slidably connected with the moving groove 29, two ends of the baffle 28 are respectively and fixedly connected with a first support plate 30, two ends of the box body 13 are symmetrically provided and fixedly connected with a second support plate 31, a return spring 32 is arranged between the first support plate 30 and the second support plate 31, one end of the return spring 32 is fixedly connected with the first support plate 30, the other end of the return spring 32 is fixedly connected with the second support plate 31, two ends of the sliding shaft 22 are respectively and fixedly connected with a deflector rod 33, and the deflector rods 33 are symmetrically arranged to be matched with the baffle 28.
When the sliding shaft 22 rotates, the deflector rod 33 can be driven to rotate, so that the deflector rod 33 extrudes the baffle 28, the baffle 28 rises at the moment, the first support plate 30 moves upwards, the return spring 32 is in a compressed state, the original spherical parts are arranged under the action of the chain plate assembly line body 1 and the baffle 28, when the baffle 28 rises, the spherical parts move under the action force of the chain plate assembly line body 1, and then the baffle 28 resets, so that the probability of irregular rolling or bouncing of the spherical parts of the chain plate assembly line body 1 is reduced.
As shown in fig. 8, the connecting plate 14 is preferably provided with an anti-slip layer 34 inside, and the anti-slip layer 34 is made of rubber.
The rolling ball parts can be cushioned by the provision of the rubber material of the anti-slip layer 34 so that the speed of the ball parts is slowed down.
As shown in fig. 5, the placement grooves 24 are preferably uniformly formed in a circumferential direction.
By providing a plurality of placing grooves 24, the speed of conveying the spherical parts from the first empty groove 26 to the second empty groove 27 on the box body 13 in unit time can be increased, so that the feeding efficiency of the spherical parts is improved.
The working principle of the chain plate assembly line convenient for loading and unloading is specifically described below.
As shown in fig. 1-8, when the spherical parts are required to be fed, the spherical parts are placed in the feed inlet 4 at the upper end of the shell 3, then the motor 9 is started by the external control equipment, the motor 9 is started to drive the rotating shaft 10 fixedly connected with the output end of the motor to rotate, the rotating shaft 10 rotates to drive the bevel gear 11 and the first belt pulley 12 fixedly connected with the rotating shaft to rotate, so that power is respectively transmitted to the feeding part, the control part and the quantitative part, the spherical parts are conveyed from the feed inlet 4 to the conveying groove 6 through the feeding groove 5 through the feeding part, then the speed of feeding is controlled through the control part, the spherical parts are conveyed into the box 13 through the control part along the conveying groove 6 and the connecting plate 14 after passing through the quantitative part, and the spherical parts are buffered through the control part, so that the probability of irregular rolling or bouncing of the spherical parts of the chain plate assembly line body 1 is reduced, and the feeding efficiency is improved. when the motor 9 starts to drive the bevel gear 11 to rotate, power can be transmitted to the transmission shaft 15 through the bevel gear 11 meshed with each other so as to drive the auger 16 fixedly connected with the bevel gear to rotate, and the spherical parts can be conveyed to the conveying groove 6 from the feed inlet 4 through the rotation of the auger 16. After the ball part is conveyed to the conveying groove 6 through the feeding part, the transmission shaft 15 drives the rotary table 17 fixedly connected with the ball part to rotate, when the through groove 18 of the rotary table 17 rotates to the lower side of the conveying groove 6, the ball part can continue to slide down through the rotary table 17 until being conveyed into the box body 13 through the connecting plate 14, meanwhile, when the feeding efficiency needs to be improved, the bolt 21 can be rotated, the bolt 21 can rotate to drive the sliding block 20 to move, so that the through grooves 18 are opened, the passing amount of the ball part in unit time is improved, and the feeding efficiency is improved. When the spherical parts are conveyed into the box body 13 through the rotary disc 17, the spherical parts can be stored in the first empty groove 26, the rotary shaft 10 rotates to drive the first belt pulley 12 to rotate, then the first belt pulley 12 drives the second belt pulley 25 to rotate through the belt, so that the sliding shaft 22 is driven to rotate, the sliding shaft 22 rotates to drive the concentric disc 23 to rotate, the spherical parts fall into the placing groove 24, then the sliding shaft 22 drives the concentric disc 23 to rotate, the spherical parts fall into the second empty groove 27, quantitative control can be carried out on the quantity of the spherical parts through the placing groove 24, and meanwhile the spherical parts are arranged under the action of the chain plate assembly line body 1. When the sliding shaft 22 rotates, the deflector rod 33 can be driven to rotate, so that the deflector rod 33 extrudes the baffle 28, the baffle 28 rises at the moment, the first support plate 30 moves upwards, the return spring 32 is in a compressed state, the original spherical parts are arranged under the action of the chain plate assembly line body 1 and the baffle 28, when the baffle 28 rises, the spherical parts move under the action force of the chain plate assembly line body 1, and then the baffle 28 resets, so that the probability of irregular rolling or bouncing of the spherical parts of the chain plate assembly line body 1 is reduced. The rolling ball parts can be cushioned by the provision of the rubber material of the anti-slip layer 34 so that the speed of the ball parts is slowed down. By providing a plurality of placing grooves 24, the speed of conveying the spherical parts from the first empty groove 26 to the second empty groove 27 on the box body 13 in unit time can be increased, so that the feeding efficiency of the spherical parts is improved.
The foregoing utility model has been generally described in great detail, but it will be apparent to those skilled in the art that modifications and improvements can be made thereto. Accordingly, it is intended to cover modifications or improvements within the spirit of the inventive concepts.
Claims (7)
1. The chain plate assembly line convenient for loading and unloading is characterized by comprising the following components:
The chain plate assembly line body (1), one end of chain plate assembly line body (1) is provided with support frame (2), support frame (2) and chain plate assembly line body (1) fixed connection, support frame (2) top fixedly connected with casing (3), feed inlet (4) have been seted up at casing (3) top, feeding groove (5), conveyer trough (6), rotary tank (7) and cavity (8) have been seted up respectively to casing (3) inside, one side fixedly connected with motor (9) of casing (3), casing (3) internal rotation is connected with axis of rotation (10), one end fixedly connected with awl tooth (11) that motor (9) were kept away from to axis of rotation (10), one end fixedly connected with first band pulley (12) that axis of rotation (10) are close to motor (9), the chain plate assembly line body (1) top is provided with box (13), box (13) are through bolt (21) and chain plate assembly line body (1) fixed connection, the material loading part that is used for the material loading in casing (3) interconnect, material loading part that is used for the material loading is located in the box (3) and is used for controlling the material loading part (5) internal connection, the box (13) is used for the material loading part (13), one side of the shell (3) close to the box body (13) is fixedly connected with a connecting plate (14), the other end of the connecting plate (14) is fixedly connected with the box body (13), and the connecting plate (14) is arranged in a hollow mode.
2. The chain plate assembly line convenient for loading and unloading according to claim 1, wherein the loading component comprises a transmission shaft (15), the transmission shaft (15) is rotationally connected with the shell (3), the transmission shaft (15) is vertically arranged with the rotating shaft (10), one end of the transmission shaft (15) close to the bevel gear (11) is fixedly connected with the bevel gear (11), the bevel gears (11) are meshed with each other and are located in the cavity (8), one end of the transmission shaft (15) far away from the bevel gear (11) is fixedly connected with a packing auger (16), and the packing auger (16) is located in the loading groove (5).
3. The chain plate assembly line convenient for loading and unloading according to claim 2, wherein the quantitative component comprises a rotary table (17), the rotary table (17) is fixedly connected with a transmission shaft (15), a plurality of through grooves (18) are uniformly arranged on the rotary table (17) along the circumferential direction, a plurality of sliding grooves (19) are uniformly arranged in the rotary table (17) along the circumferential direction, a sliding block (20) is slidably connected in the sliding groove (19), the sliding block (20) is matched with the through grooves (18), one end of the sliding block (20) is rotatably connected with a bolt (21), and the bolt (21) is in threaded connection with the rotary table (17).
4. The chain plate assembly line convenient for loading and unloading according to claim 3, wherein the control part comprises a sliding shaft (22), the sliding shaft (22) is rotationally connected with the box body (13), a concentric disc (23) is fixedly connected with the outer side of the sliding shaft (22), a placing groove (24) is formed in the concentric disc (23), a second belt wheel (25) is fixedly connected with the sliding shaft (22), the first belt wheel (12) is connected with the second belt wheel (25) through belt transmission, and a first empty groove (26) and a second empty groove (27) are respectively formed in the box body (13).
5. The assembly line for conveniently feeding and discharging the chain plate according to claim 4, wherein the control part further comprises a baffle plate (28), the box body (13) is provided with a moving groove (29), the baffle plate (28) is in sliding connection with the moving groove (29), two ends of the baffle plate (28) are respectively and fixedly connected with a first supporting plate (30), two ends of the box body (13) are symmetrically provided with a second supporting plate (31), a reset spring (32) is arranged between the first supporting plate (30) and the second supporting plate (31), one end of the reset spring (32) is fixedly connected with the first supporting plate (30), the other end of the reset spring (32) is fixedly connected with the second supporting plate (31), and two ends of the sliding shaft (22) are respectively and fixedly connected with a deflector rod (28) which is symmetrically arranged for being matched with the baffle plate (28).
6. The assembly line for the chain plates convenient to feed and discharge according to claim 5, wherein an anti-slip layer (34) is arranged inside the connecting plate (14), and the anti-slip layer (34) is made of rubber.
7. The assembly line for the chain plates, which is convenient for loading and unloading as set forth in claim 6, wherein the plurality of placing grooves (24) are uniformly arranged along the circumferential direction.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202422264451.8U CN223032153U (en) | 2024-09-18 | 2024-09-18 | Chain plate assembly line for easy loading and unloading |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202422264451.8U CN223032153U (en) | 2024-09-18 | 2024-09-18 | Chain plate assembly line for easy loading and unloading |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN223032153U true CN223032153U (en) | 2025-06-27 |
Family
ID=96129606
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202422264451.8U Active CN223032153U (en) | 2024-09-18 | 2024-09-18 | Chain plate assembly line for easy loading and unloading |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN223032153U (en) |
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2024
- 2024-09-18 CN CN202422264451.8U patent/CN223032153U/en active Active
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