CN116729884A - Conveying device for production of new energy automobile parts - Google Patents

Conveying device for production of new energy automobile parts Download PDF

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Publication number
CN116729884A
CN116729884A CN202310987214.1A CN202310987214A CN116729884A CN 116729884 A CN116729884 A CN 116729884A CN 202310987214 A CN202310987214 A CN 202310987214A CN 116729884 A CN116729884 A CN 116729884A
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CN
China
Prior art keywords
cleaning
conveying
transmission
new energy
energy automobile
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Granted
Application number
CN202310987214.1A
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Chinese (zh)
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CN116729884B (en
Inventor
梁军
梁孟伟
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Changzhou Runbang Mould Technology Co ltd
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Changzhou Runbang Mould Technology Co ltd
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Priority to CN202310987214.1A priority Critical patent/CN116729884B/en
Publication of CN116729884A publication Critical patent/CN116729884A/en
Application granted granted Critical
Publication of CN116729884B publication Critical patent/CN116729884B/en
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Abstract

The invention provides a conveying device for producing parts of a new energy automobile, which relates to the conveying field and comprises a conveying bracket, wherein a conveying motor is arranged at the right end of the front side of the conveying bracket; a transmission connecting wheel A is arranged on an output shaft of the conveying motor; the front end and the rear end of the conveying support are provided with conveying rollers; a conveying belt is arranged on the outer wall of the conveying roller; the conveying rollers are symmetrically provided with transmission connecting wheels B; the right end of the conveying roller positioned at the front side is provided with the transmission connecting wheel C, and impurities on parts are removed by utilizing the sweeping action of the brushing and cleaning soft brush, so that the cleanliness of the parts of the new energy automobile is ensured, and the influence of impurities on the processing of the parts of the new energy automobile in other working procedures is avoided. The problem that the existing conveying device is inconvenient for the subsequent processing procedures if the impurities cannot be cleaned timely due to the fact that part impurities possibly exist on parts is solved, and the impurities are easy to leave on the conveying device is solved.

Description

Conveying device for production of new energy automobile parts
Technical Field
The invention relates to the technical field of conveying, in particular to a conveying device for producing new energy automobile parts.
Background
When the new energy automobile parts are produced and manufactured, the parts are required to be transported to various working procedures for various machining, and a conveying device is required for transporting the new energy automobile parts.
When the existing conveying device for the production of the parts of the new energy automobile is used, because partial impurities possibly exist on the parts, if the impurities cannot be cleaned in time, the impurities are not only easy to bring inconvenience to subsequent processing procedures, but also are easy to leave on the conveying device, so that the impurities are secondarily adhered to the other parts when the conveying device conveys the other parts, and vicious circle in the conveying process is formed.
Disclosure of Invention
In view of the above, the invention provides a conveying device for producing parts of a new energy automobile, which solves the problems that the parts may have partial impurities, and if the impurities cannot be cleaned in time, the impurities are not only easy to bring inconvenience to the subsequent processing procedures, but also easy to leave on the conveying device.
The invention provides a conveying device for producing new energy automobile parts, which specifically comprises the following components: the conveying motor is arranged at the right end of the front side of the conveying bracket; a transmission connecting wheel A is arranged on an output shaft of the conveying motor; the front end and the rear end of the conveying support are provided with conveying rollers; a conveying belt is arranged on the outer wall of the conveying roller; the conveying rollers are symmetrically provided with transmission connecting wheels B; a transmission connecting wheel C is arranged at the right end of the conveying roller positioned at the front side; the transmission connecting wheel C is connected with the transmission connecting wheel A through a chain; a cleaning mounting plate is arranged on the conveying support; a transmission shaft is arranged on the cleaning mounting plate; the circumference outer wall of the transmission shaft is symmetrically provided with a transmission connecting wheel D; the transmission connecting wheel D is connected with the transmission connecting wheel B through a chain; the left end and the right end of the transmission shaft are provided with transmission turntables; a transmission gear is arranged on the circumferential outer wall of the transmission turntable; the transmission gear is an incomplete gear; the outer side of the transmission turntable is eccentrically provided with a transmission convex column; the transmission convex column is of a cylindrical structure.
Further, a guide groove is formed in the cleaning mounting plate; a sliding plate is slidably arranged in the guide groove; one end of the restoring spring A is embedded and installed at the rear side of the sliding plate; the other end of the restoring spring A is embedded and arranged in the guide groove; the left end and the right end of the sliding plate are provided with follow-up racks; the follow-up rack is intermittently meshed with the transmission gear; the top of the sliding plate is provided with a scraping and cleaning piece; the front side and the rear side of the scraping and cleaning piece are of inclined structures.
Further, the inclined surface of the scraping and cleaning piece is in fit contact with the outer wall of the conveying belt; a guide supporting plate is arranged at the top of the cleaning mounting plate; the guide supporting plate is of a rectangular structure; a travel groove is formed in the guide supporting plate; a stroke sliding plate is slidably arranged in the stroke groove; the stroke sliding plate is of a rectangular structure; a cleaning extrusion piece is arranged at the bottom of the stroke sliding plate; the cleaning extrusion piece is of a T-shaped structure.
Further, the left end and the right end of the stroke sliding plate are provided with transmission connecting rods; cleaning pull columns are arranged on the front side and the rear side of the transmission connecting rod; the cleaning pull column is of a cylindrical structure; the bottom of the transmission connecting rod is provided with a driven sliding frame; the transmission convex column is also slidably arranged in the driven sliding frame; a guide carrier plate is arranged on the inner side of the guide supporting plate; a cleaning triggering air bag is arranged at the top of the guide carrier plate; the cleaning trigger air bag is located below the cleaning extrusion.
Further, a connecting pipe is arranged on the air outlet of the cleaning triggering air bag; the bottom of the connecting pipe is provided with an air flow cleaning spray head; the release direction of the air flow cleaning spray head is inclined; the guide carrier plate is provided with a cleaning sliding frame in a sliding manner; the top of the cleaning sliding frame is provided with an embedded baffle; the embedded baffle is of a rectangular structure; a restoring spring B is embedded and installed between the embedded baffles adjacent to each other; the bottom of the cleaning sliding frame is provided with a brushing cleaning soft brush; a stressed transmission plate is arranged on the outer side of the top of the cleaning sliding frame; the stress transmission plate is provided with a driven pull groove; the driven pull groove is of an inclined structure; the cleaning pull column is also slidably mounted in the driven pull groove.
The beneficial effects are that: 1. the cleaning structure of the cleaning brush is arranged in the invention, and through the arrangement of the cleaning structure of the cleaning brush, the cleaning sliding frame can automatically drive the brush to reciprocate left and right to drive the cleaning soft brush to simulate the action of the cleaning brush by reciprocating left and right when the conveying belt conveys and transports the parts of the new energy automobile, so that impurities on the parts of the new energy automobile are cleaned by utilizing the cleaning action of the cleaning soft brush, the cleanliness of the parts of the new energy automobile is ensured, and the influence of the impurities on the processing of the parts of the new energy automobile by other procedures is avoided.
2. According to the invention, the air flow cleaning structure is arranged, and through the arrangement of the air flow cleaning structure, when the conveyor belt conveys and transports the new energy automobile parts, the cleaning extrusion piece can automatically start to vertically and reciprocally extrude the cleaning triggering air bag, so that the cleaning triggering air bag continuously generates air flow under the influence of the reciprocal extrusion, and the air flow is released on the surfaces of the new energy automobile parts through the connecting pipe and the air flow cleaning nozzle, so that impurities on the new energy automobile parts are cleaned, and the cleaning effect on the impurities on the parts is improved by utilizing air injection.
3. The scraping and cleaning structure is arranged in the invention, and can automatically lead the scraping and cleaning piece to reciprocate back and forth when the conveyor belt conveys and transports new energy automobile parts, and the scraping and cleaning piece can continuously scrape the outer wall of the conveyor belt by utilizing the self inclined structure in the process of reciprocating back and forth, thereby completing the cleaning of impurities on the conveyor belt by utilizing the scraping of the scraping and cleaning piece, ensuring the cleanliness of the conveyor belt and preventing the impurities from being secondarily adhered to other parts due to the falling of the impurities on the conveyor belt so as to form vicious circle.
4. The invention is provided with the linkage structure, and through the arrangement of the linkage structure, the scraping cleaning piece can be automatically driven to reciprocate back and forth when the conveying motor drives the conveying roller and the conveying belt to run, and meanwhile, the cleaning extrusion piece can be driven to reciprocate to extrude the cleaning triggering air bag in a linkage manner, so that the left and right reciprocating sweeping action of the brushing cleaning soft brush can be realized, and further, the conveying of parts, the sweeping cleaning, the air flow cleaning and the scraping cleaning are combined together, so that a plurality of structures share the same conveying motor, the arrangement quantity of power equipment is effectively reduced, and the production cost of the conveying device is reduced.
Drawings
In order to more clearly illustrate the technical solution of the embodiments of the present invention, the drawings of the embodiments will be briefly described below.
The drawings described below are only for illustration of some embodiments of the invention and are not intended to limit the invention.
In the drawings:
FIG. 1 is a schematic overall structure of an embodiment of the present invention;
FIG. 2 is an enlarged schematic view of the portion A of FIG. 1 in accordance with an embodiment of the present invention;
FIG. 3 is a schematic view of a cleaning mounting plate and a transfer roll configuration according to an embodiment of the present invention;
FIG. 4 is a schematic view of a doctoring cleaning member and cleaning extrusion in accordance with an embodiment of the present invention;
FIG. 5 is a schematic diagram of the front view of FIG. 4 in accordance with an embodiment of the invention;
FIG. 6 is a schematic view of a cleaning slide frame and an airflow cleaning nozzle according to an embodiment of the present invention;
FIG. 7 is another perspective structural schematic diagram of FIG. 6 in accordance with an embodiment of the present invention;
fig. 8 is a schematic view of a cleaning slide frame and a transmission turntable according to an embodiment of the invention.
List of reference numerals
1. A conveying support; 101. a conveying motor; 102. a transmission connecting wheel A; 103. a conveying roller; 104. a conveyor belt; 105. a transmission connecting wheel B; 106. a transmission connecting wheel C; 2. cleaning the mounting plate; 201. a transmission shaft; 202. a transmission connecting wheel D; 203. a transmission turntable; 204. a transmission gear; 205. a transmission convex column; 206. a guide groove; 207. a sliding plate; 208. a restoring spring A; 209. a follow-up rack; 2010. scraping the cleaning piece; 2011. a guide support plate; 2012. a travel groove; 2013. a stroke sliding plate; 2014. cleaning the extrusion; 2015. a transmission link; 2016. cleaning a pull column; 2017. a driven slide frame; 2018. a guide carrier plate; 2019. cleaning a trigger air bag; 2020. a connecting pipe; 2021. an air flow cleaning spray head; 2022. cleaning a sliding frame; 2023. embedding a baffle; 2024. a restoring spring B; 2025. brushing and cleaning a soft brush; 2026. a force-bearing transmission plate; 2027. and a driven draw groove.
Detailed Description
In order to make the objects, aspects and advantages of the technical solution of the present invention more clear, the technical solution of the embodiment of the present invention will be clearly and completely described below with reference to the accompanying drawings of the specific embodiment of the present invention.
Example 1: the utility model provides a conveyor is used in production of new energy automobile spare part, as shown in fig. 1 through 8, includes: the conveying device comprises a conveying bracket 1, wherein a conveying motor 101 is arranged at the right end of the front side of the conveying bracket 1; a transmission connecting wheel A102 is arranged on an output shaft of the conveying motor 101; the front end and the rear end of the conveying support 1 are provided with conveying rollers 103; a conveyor belt 104 is mounted on the outer wall of the conveyor roller 103; the conveying roller 103 is symmetrically provided with a transmission connecting wheel B105; a transmission connecting wheel C106 is arranged at the right end of the front conveying roller 103; the transmission connecting wheel C106 is connected with the transmission connecting wheel A102 through a chain; a cleaning mounting plate 2 is arranged on the conveying bracket 1; the cleaning mounting plate 2 is provided with a transmission shaft 201; a transmission connecting wheel D202 is symmetrically arranged on the circumferential outer wall of the transmission shaft 201; the transmission connecting wheel D202 is connected with the transmission connecting wheel B105 through a chain; the left end and the right end of the transmission shaft 201 are provided with transmission turntables 203; a transmission gear 204 is arranged on the circumferential outer wall of the transmission turntable 203; the transmission gear 204 is an incomplete gear; the outer side of the transmission turntable 203 is eccentrically provided with a transmission convex column 205; the transmission convex column 205 is of a cylindrical structure, the transmission motor 101 is started to drive the transmission connecting wheel A102 to rotate by placing new energy automobile parts on the conveying belt 104, the transmission connecting wheel A102 drives the transmission connecting wheel C106 and the conveying roller 103 positioned on the front side to rotate through a chain, so that the conveying roller 103 drives the conveying belt 104 to operate, the conveying belt 104 starts conveying the new energy automobile parts, meanwhile, the conveying roller 103 also drives the transmission connecting wheel D202 and the transmission shaft 201 to rotate under the action of the transmission connecting wheel B105 and the chain, and the transmission shaft 201 drives the transmission turntable 203, the transmission gear 204 and the transmission convex column 205 to rotate, so that operation power is indirectly provided for the scraping and cleaning structure, the airflow cleaning structure and the sweeping and cleaning structure.
Example 2: on the basis of the embodiment 1, as shown in fig. 1 to 8, a guide groove 206 is formed on the cleaning mounting plate 2; a slide plate 207 is slidably mounted in the guide groove 206; the rear side of the slide plate 207 is embedded with one end of the restoring spring a 208; the other end of the restoring spring A208 is embedded and installed in the guide groove 206; the left and right ends of the sliding plate 207 are provided with follower racks 209; the follower rack 209 is intermittently engaged with the transmission gear 204; the top of the sliding plate 207 is provided with a scraping cleaning member 2010; the front side and the rear side of the scraping cleaning piece 2010 are inclined structures; the inclined surface of the scraping cleaning member 2010 is in contact with the outer wall of the conveyor belt 104; a guide support plate 2011 is arranged at the top of the cleaning mounting plate 2; the guide support plate 2011 has a rectangular structure; the guide support plate 2011 is provided with a travel groove 2012; a stroke slide plate 2013 is slidably mounted in the stroke groove 2012; the stroke sliding plate 2013 has a rectangular structure; the bottom of the stroke sliding plate 2013 is provided with a cleaning extrusion 2014; cleaning extrusion 2014 is a T-shaped structure; the left and right ends of the stroke sliding plate 2013 are provided with transmission connecting rods 2015; cleaning pull posts 2016 are arranged on the front side and the rear side of the transmission connecting rod 2015; the cleaning pull column 2016 has a cylindrical structure; the bottom of the transmission link 2015 is provided with a driven sliding frame 2017; the transmission convex column 205 is also slidably arranged in the driven sliding frame 2017; a guide carrier plate 2018 is provided on the inner side of the guide support plate 2011; the top of the guide carrier plate 2018 is provided with a cleaning triggering air bag 2019, when the transmission rotary table 203 drives the transmission convex column 205 to rotate, the transmission convex column 205 is positioned in the driven sliding frame 2017, so that the driven sliding frame 2017 and the transmission connecting rod 2015 are pulled down reciprocally when the transmission convex column 205 rotates, the transmission connecting rod 2015 drives the travel sliding plate 2013 and the cleaning extrusion part 2014 to reciprocate along the travel groove 2012, the cleaning extrusion part 2014 starts to extrude the cleaning triggering air bag 2019 positioned below the cleaning extrusion part 2014 reciprocally, the cleaning triggering air bag 2019 is enabled to generate air flow under the influence of extrusion, and the air flow is released to the new energy automobile parts through the connecting pipe 2020 and the air flow cleaning spray head 2021, so that the air jet cleaning of the new energy automobile parts is realized, impurities on the new energy automobile parts are removed to a certain extent, and when the transmission rotary table 203 rotates, the transmission rotary table 203 is matched with the restoring spring A208 to drive the sliding plate 207 and the scraping part 2010 to reciprocate back along the guide groove 206 under the action of the intermittent meshing of the transmission gear 204, so that the scraping part 2010 is enabled to utilize the scraping part to adhere to the cleaning part 104 on the cleaning belt, and the cleaning part 104 to prevent the adhesion of the impurities on the new energy automobile parts from being adhered to the new energy automobile parts.
Example 3: on the basis of embodiment 2, as shown in fig. 1 to 8, a cleaning trigger air bag 2019 is located below the cleaning extrusion 2014; a connecting pipe 2020 is arranged on the air outlet of the cleaning triggering air bag 2019; the bottom of the connecting tube 2020 is provided with an air flow cleaning shower 2021; the release direction of the air flow cleaning nozzle 2021 is inclined; a cleaning slide frame 2022 is slidably mounted on the guide carrier 2018; a built-in baffle 2023 is arranged at the top of the cleaning sliding frame 2022; the embedded baffle 2023 is of a rectangular structure; a restoring spring B2024 is embedded and installed between the left and right adjacent embedded baffles 2023; the bottom of the cleaning slide frame 2022 is provided with a brushing cleaning soft brush 2025; a stressed transmission plate 2026 is arranged on the outer side of the top of the cleaning sliding frame 2022; the stress transmission plate 2026 is provided with a driven pull groove 2027; the driven pull groove 2027 is of an inclined structure; the cleaning pull column 2016 is further slidably mounted in the driven pull groove 2027, when the transmission link 2015 descends, the transmission link 2015 further drives the cleaning pull column 2016 to descend, and because the cleaning pull column 2016 is further slidably mounted in the driven pull groove 2027, and because the driven pull groove 2027 is of an inclined structure, the inclined surface of the driven pull groove 2027 can be pushed when the cleaning pull column 2016 descends, the driven pull groove 2027 is driven by the action of the inclined surface to drive the forced transmission plate 2026 and the cleaning sliding frame 2022 to move outwards relatively, the cleaning sliding frame 2022 drives the cleaning soft brush 2025 to move outwards, so that the cleaning action of the cleaning soft brush 2025 is reciprocally realized, the cleaning soft brush 2025 cleans and removes impurities on new energy automobile parts by the aid of the cleaning action, and the cleaning effect of the impurities on the new energy automobile parts is improved.
Specific use and action of the embodiment: when in use, firstly, the new energy automobile parts are placed on the conveying belt 104, then the conveying motor 101 is started to drive the transmission connecting wheel A102 to rotate, the transmission connecting wheel A102 drives the transmission connecting wheel C106 and the conveying roller 103 positioned at the front side to rotate through the chain, so that the conveying roller 103 drives the conveying belt 104 to operate, the conveying belt 104 starts conveying the new energy automobile parts, meanwhile, the conveying roller 103 drives the transmission connecting wheel D202 and the transmission shaft 201 to rotate under the action of the transmission connecting wheel B105 and the chain, the transmission shaft 201 drives the transmission turntable 203, the transmission gear 204 and the transmission convex column 205 to rotate, at the moment, the transmission convex column 205 is positioned in the driven sliding frame 2017 and the transmission connecting rod 2015 to be reciprocally pulled down during rotation of the transmission convex column 205, the transmission connecting rod 2013 drives the stroke sliding plate 2013 and the cleaning extrusion part 2014 to reciprocally move along the stroke groove 2012, the cleaning extrusion part 2014 is made to start to reciprocally extrude the cleaning triggering air bag 2019 positioned below the cleaning extrusion part 2014, the cleaning triggering air bag 2019 is made to generate air flow under the influence of extrusion, the air flow is released to the parts of the new energy automobile through the connecting pipe 2020 and the air flow cleaning nozzle 2021, the air injection cleaning of the parts of the new energy automobile is realized, impurities on the parts of the new energy automobile are removed to a certain extent, when the transmission turntable 203 rotates, the transmission turntable 203 is engaged with the follow-up rack 209 intermittently under the action of the transmission gear 204 and the recovery spring A208 to drive the sliding plate 207 and the scraping cleaning part 2010 to reciprocally move back and forth along the guide groove 206, the scraping cleaning part 2010 is made to scrape and clean the impurities adhered on the conveying belt 104 by the reciprocal cleaning, the impurities on the conveying belt 104 are prevented from adhering to the other parts of the new energy automobile to a certain extent, and when the transmission link 2015 descends, the transmission link 2015 also drives the cleaning pull column 2016 to descend, and as the cleaning pull column 2016 is also slidably mounted in the driven pull groove 2027, and as the driven pull groove 2027 is of an inclined structure, the inclined surface of the driven pull groove 2027 is pushed when the cleaning pull column 2016 descends, the driven pull groove 2027 is pushed by the inclined surface to drive the forced transmission plate 2026 and the cleaning sliding frame 2022 to move outwards relatively, the cleaning sliding frame 2022 drives the cleaning soft brush 2025 to move outwards, so that the cleaning soft brush 2025 is cleaned by the cleaning action, and the cleaning soft brush 2025 cleans impurities on parts of the new energy automobile by the cleaning action, thereby improving the cleaning effect on the impurities on the parts of the new energy automobile.

Claims (10)

1. The conveying device for the production of the new energy automobile parts is characterized by comprising a conveying bracket (1), wherein a conveying motor (101) is arranged at the right end of the front side of the conveying bracket (1); a transmission connecting wheel A (102) is arranged on an output shaft of the conveying motor (101); the front end and the rear end of the conveying support (1) are provided with conveying rollers (103); a conveying belt (104) is arranged on the outer wall of the conveying roller (103); the conveying rollers (103) are symmetrically provided with transmission connecting wheels B (105); a transmission connecting wheel C (106) is arranged at the right end of the conveying roller (103) positioned at the front side; the transmission connecting wheel C (106) is connected with the transmission connecting wheel A (102) through a chain; a cleaning mounting plate (2) is arranged on the conveying support (1); a transmission shaft (201) is arranged on the cleaning mounting plate (2); a transmission connecting wheel D (202) is symmetrically arranged on the circumferential outer wall of the transmission shaft (201); the transmission connecting wheel D (202) is connected with the transmission connecting wheel B (105) through a chain; the left end and the right end of the transmission shaft (201) are provided with transmission turntables (203); a transmission gear (204) is arranged on the circumferential outer wall of the transmission turntable (203); the transmission gear (204) is an incomplete gear; a transmission convex column (205) is eccentrically arranged on the outer side of the transmission rotary table (203); the transmission convex column (205) is of a cylindrical structure.
2. The conveying device for producing new energy automobile parts according to claim 1, wherein: a guide groove (206) is formed in the cleaning mounting plate (2); a sliding plate (207) is slidably mounted in the guide groove (206); one end of a restoring spring A (208) is embedded and installed at the rear side of the sliding plate (207); the other end of the restoring spring A (208) is embedded and installed in the guide groove (206).
3. The conveying device for producing new energy automobile parts according to claim 2, wherein: the left end and the right end of the sliding plate (207) are provided with follow-up racks (209); the follow-up rack (209) is intermittently meshed with the transmission gear (204); a scraping cleaning piece (2010) is arranged at the top of the sliding plate (207); the front side and the rear side of the scraping cleaning piece (2010) are of inclined structures.
4. The conveying device for producing new energy automobile parts according to claim 3, wherein: the inclined surface of the scraping cleaning piece (2010) is in fit contact with the outer wall of the conveying belt (104); a guide supporting plate (2011) is arranged at the top of the cleaning mounting plate (2); the guide support plate (2011) is of a rectangular structure; a travel groove (2012) is formed in the guide support plate (2011).
5. The conveying device for producing new energy automobile parts according to claim 4, wherein: a stroke slide plate (2013) is slidably mounted in the stroke groove (2012); the stroke sliding plate (2013) is of a rectangular structure; the bottom of the stroke sliding plate (2013) is provided with a cleaning extrusion piece (2014); the cleaning extrusion (2014) is a T-shaped structure.
6. The conveying device for producing new energy automobile parts according to claim 5, wherein: the left end and the right end of the stroke sliding plate (2013) are provided with transmission connecting rods (2015); cleaning pull columns (2016) are arranged on the front side and the rear side of the transmission connecting rod (2015); the cleaning pull column (2016) is of a cylindrical structure; the bottom of the transmission connecting rod (2015) is provided with a driven sliding frame (2017).
7. The conveying device for producing new energy automobile parts according to claim 6, wherein: the transmission convex column (205) is also slidably arranged in the driven sliding frame (2017); a guide carrier plate (2018) is arranged on the inner side of the guide support plate (2011); a cleaning trigger air bag (2019) is arranged at the top of the guide carrier plate (2018); the purge triggering bladder (2019) is located below the purge extrusion (2014).
8. The conveying device for producing new energy automobile parts according to claim 7, wherein: a connecting pipe (2020) is arranged on an air outlet of the cleaning triggering air bag (2019); an air flow cleaning spray head (2021) is arranged at the bottom of the connecting pipe (2020); the release direction of the air flow cleaning spray head (2021) is inclined; the guide carrier plate (2018) is provided with a cleaning sliding frame (2022) in a sliding mode.
9. The conveying device for producing new energy automobile parts according to claim 8, wherein: a built-in baffle (2023) is arranged at the top of the cleaning sliding frame (2022); the embedded baffle plate (2023) is of a rectangular structure; a restoring spring B (2024) is embedded and installed between the embedding baffles (2023) adjacent to the left and the right; the bottom of the cleaning sliding frame (2022) is provided with a brushing cleaning soft brush (2025).
10. The conveying device for producing new energy automobile parts according to claim 9, wherein: a stress transmission plate (2026) is arranged on the outer side of the top of the cleaning sliding frame (2022); a driven draw groove (2027) is formed in the stress transmission plate (2026); the driven draw groove (2027) is of an inclined structure; the cleaning pull post (2016) is also slidably mounted within the driven pull groove (2027).
CN202310987214.1A 2023-08-08 2023-08-08 Conveying device for production of new energy automobile parts Active CN116729884B (en)

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Application Number Priority Date Filing Date Title
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CN116729884B CN116729884B (en) 2023-10-17

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