CN119926751B - A dispensing device for new energy batteries - Google Patents
A dispensing device for new energy batteriesInfo
- Publication number
- CN119926751B CN119926751B CN202510351122.3A CN202510351122A CN119926751B CN 119926751 B CN119926751 B CN 119926751B CN 202510351122 A CN202510351122 A CN 202510351122A CN 119926751 B CN119926751 B CN 119926751B
- Authority
- CN
- China
- Prior art keywords
- frame
- dispensing
- swinging
- rotating
- new energy
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Active
Links
Classifications
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E60/00—Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
- Y02E60/10—Energy storage using batteries
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P70/00—Climate change mitigation technologies in the production process for final industrial or consumer products
- Y02P70/50—Manufacturing or production processes characterised by the final manufactured product
Landscapes
- Coating Apparatus (AREA)
Abstract
The invention discloses a dispensing device for a new energy battery, which belongs to the technical field of dispensing devices, wherein a battery bin to be dispensed is arranged at the top of a dispensing seat, a horizontal sliding frame is arranged at the top of a meshing groove in a sliding manner, a vertical sliding frame is arranged on the side wall of the horizontal sliding frame in a sliding manner, a lifting frame for intermittently lifting and conveying the battery bin is fixedly arranged at the top of the vertical sliding frame, the dispensing mechanism comprises a track and a moving frame positioned above the conveying mechanism, a linkage swinging part I is rotatably arranged on a transverse frame I, a toothed ring is rotatably arranged in the middle of the transverse frame II, a linkage swinging part II is rotatably arranged in the middle of the transverse frame III, a rotating part is rotatably arranged at the bottom of the transverse frame III, a rotating table is fixedly arranged at the bottom of the rotating part, and a glue injecting device is movably arranged below the rotating table. When the lifting motor drives the swing arm to rotate clockwise, the track of the lifting frame can be regarded as lifting upwards, translating downwards and falling downwards, so that the lifting frame is processed by the glue injection equipment, and the design improves the degree of automation and the response speed.
Description
Technical Field
The invention relates to the technical field of dispensing equipment, in particular to dispensing equipment for a new energy battery.
Background
The new energy battery comprises a lithium ion battery, a nickel-hydrogen battery, a fuel cell, a lead-acid battery and a super capacitor, wherein the lithium iron phosphate battery is a novel rechargeable battery with high voltage and high energy density, and has unique physical and electrochemical properties. The battery dispensing mechanism is used for controlling fluid and dripping and coating the fluid on an automatic machine on the electrode surface of the battery, and when the battery dispensing mechanism is used for dispensing batteries with different specifications, the dispensing heads of the single needle heads are used for dispensing in the traditional battery production process because the positions of the dispensing positions of the batteries with different specifications are different.
The utility model discloses a special-shaped battery profile UV point gum machine constructs, including transportation drive assembly, transportation platform, first rubber coating mechanism and second rubber coating mechanism, transportation platform fixes the power take off end at transportation drive assembly, transportation drive assembly drive transportation platform moves along X axle direction, first rubber coating mechanism includes X axle drive assembly, bottom rubber coating subassembly and top rubber coating subassembly, X axle drive assembly is fixed to be set up in transportation drive assembly one side, top rubber coating subassembly and bottom rubber coating subassembly are fixed respectively on two sets of power take off ends of transportation drive assembly, second rubber coating mechanism is the same with first rubber coating mechanism structure, first rubber coating structure and second rubber coating mechanism central symmetry set up in transportation drive assembly both sides, its advantage lies in that can adapt to various special-shaped batteries and carry out the rubber coating, and the rubber coating precision is high moreover.
However, the degree of flexibility and the degree of freedom of the dispensing mechanism disclosed above are generally not capable of adaptively adjusting the position and the angle of dispensing according to the actual specification of the battery, and the degree of automation is generally high, and a large amount of colloid remains on the conveyor belt after long-time use.
Disclosure of Invention
The invention aims to solve the problems that the flexibility and the degree of freedom of the conventional dispensing mechanism are general, the position and the angle of dispensing cannot be adaptively adjusted according to the actual specification of a battery, the degree of automation is general, a large amount of colloid remains on a conveyor belt after long-time use, and the like, and provides dispensing equipment for a new energy battery.
The technical scheme is that the dispensing equipment for the new energy battery comprises a conveying mechanism and a dispensing mechanism, wherein the conveying mechanism comprises symmetrical dispensing seats, two sides of each dispensing seat are respectively provided with a conveying mechanism and a discharging mechanism, the top of each dispensing seat is provided with a battery bin to be dispensed, the side face of each dispensing seat is provided with a vertical plate, the outer wall of each vertical plate is provided with a rectangular meshing groove, the top of each meshing groove is provided with a horizontal sliding frame in a sliding mode, the side wall of each horizontal sliding frame is provided with a vertical sliding frame in a sliding mode, the top of each vertical sliding frame is fixedly provided with a lifting frame for intermittently lifting and conveying the battery bins, the outer wall of each vertical sliding frame is fixedly provided with a meshing seat matched with each meshing groove, each dispensing mechanism comprises a track and a moving frame positioned above the conveying mechanism, the inner wall of the top of each moving frame is movably provided with a plurality of groups of adjusting mechanisms, each adjusting mechanism comprises a mounting frame, a first transverse frame, a second transverse frame and a third transverse frame are sequentially arranged from top to bottom, a second transverse frame and a third transverse frame are arranged, a third transverse frame is arranged at the middle of each transverse frame is rotatably, and the second transverse frame is rotatably provided with a third transverse frame is rotatably arranged, and the third transverse frame is rotatably provided with a movable transverse frame, and the middle of the third transverse frame is rotatably arranged.
As a still further scheme of the invention, a horizontal sliding rail positioned above the meshing groove is arranged on the vertical plate, a horizontal sliding seat matched with the horizontal sliding rail is arranged on the horizontal sliding frame, a vertical sliding rail is arranged on the side wall of the horizontal sliding frame, and a vertical sliding seat matched with the vertical sliding frame is arranged on the vertical sliding frame.
As a still further scheme of the invention, a lifting motor is arranged on the inner wall of the vertical plate, a swing arm is arranged at the output end of the lifting motor, a meshing cavity matched with the meshing groove is formed in the swing arm, a meshing rod matched with the meshing cavity is fixedly arranged on the outer wall of the vertical sliding frame, and the meshing rod and the meshing seat are coaxially arranged.
As still further scheme of the invention, the moving frame is arranged on the track in a sliding way, a plurality of groups of air cylinders are arranged at the top of the moving frame, and the output ends of the air cylinders are fixedly connected with the mounting frame.
The linkage swinging part I comprises a swinging gear and a swinging bevel gear I positioned at the bottom of the swinging gear, a cross rod is fixedly arranged at the diameter position of the middle part of the toothed ring, linkage bevel gears meshed with the swinging bevel gear I are movably arranged on the cross rod, an upper bevel gear meshed with the linkage bevel gears is arranged at the top of the linkage swinging part II, a lower bevel gear positioned below the rotating table is arranged at the bottom of the linkage swinging part II, symmetrical swinging frames are arranged at the bottom of the rotating table, swinging shafts are movably arranged between the swinging frames, and swinging bevel gears II meshed with the lower bevel gears are arranged on the swinging shafts.
As a still further scheme of the invention, a rotating gear is arranged on the outer wall of the rotating piece, a boss is fixedly arranged on the outer wall of the transverse frame III, an engaging shaft is rotatably arranged on the boss, a first engaging tooth engaged with the rotating gear is arranged at the bottom of the engaging shaft, and a second engaging tooth engaged with the toothed ring is arranged at the top of the engaging shaft.
As a still further scheme of the invention, a swing motor is arranged on the mounting frame, a first threaded rod meshed with the swing gear is arranged at the output end of the swing motor, a rotating motor is arranged on the third transverse frame, and a second threaded rod meshed with the rotating gear is arranged at the output end of the rotating motor.
As a still further scheme of the invention, a rotating cavity matched with the toothed ring is formed in the middle of the transverse frame II, a T-shaped rail is arranged at the top of the rotating piece, and a T-shaped groove matched with the transverse frame III is formed in the bottom of the transverse frame III.
As a still further proposal of the invention, the motion frame is also provided with a control panel.
Compared with the prior art, the invention has the following beneficial effects:
1. when the invention is operated, a plurality of groups of battery bins to be glued can be placed on the material conveying mechanism at intervals, and the battery bins can slide onto the glue dispensing seat under the inertia effect. When the lifting motor drives the swing arm to rotate clockwise, the track of the lifting frame can be regarded as lifting upwards, translating downwards and falling downwards, so that the lifting frame can convey a battery bin to be dispensed to the middle part of the dispensing seat, and therefore the battery bin to be dispensed can be processed through a plurality of groups of dispensing equipment. After the dispensing is completed, the battery bin falls into the upper part of the discharging mechanism under the action of the lifting frame, and the design improves the automation degree and the response speed of the dispensing equipment for the new energy battery.
2. According to the invention, the angle and the position of the glue injection equipment can be quickly adjusted through the swing motor and the rotation motor, so that glue injection treatment is carried out on different positions and structures of the battery bin. When the swing motor drives the swing gear to rotate and the rotating motor is not started, the linkage bevel gear drives the linkage swinging part II to rotate but the toothed ring keeps static, and the glue injection equipment is driven by the lower bevel gear and the swing bevel gear II to swing rapidly. When the rotating motor drives the rotating piece to rotate but the swing motor is not started, the toothed ring drives the linkage bevel gear to rotate but the linkage swinging piece I and the linkage swinging piece II keep static, and at the moment, the rotating table drives the glue injection equipment to freely rotate.
Drawings
The invention is further explained below with reference to the drawings and examples:
FIG. 1 is a perspective view of the present invention;
FIG. 2 is a perspective view of the adjusting mechanism of the present invention;
FIG. 3 is a perspective view of the mounting bracket of the present invention;
FIG. 4 is an internal perspective view of the adjustment mechanism of the present invention;
FIG. 5 is a cross-sectional view of an adjustment mechanism of the present invention;
FIG. 6 is a partial perspective view of a first embodiment of the conveyor of the present invention;
FIG. 7 is a partial perspective view of a second embodiment of the conveyor of the present invention;
fig. 8 is an internal perspective view of the conveying mechanism according to the present invention.
Reference numerals illustrate:
1. The device comprises a conveying mechanism, a dispensing seat, a 102, a material conveying mechanism, a 103, a discharging mechanism, a 104, a battery bin, a 105, a vertical plate, a 106, an engagement groove, a 107, a lifting motor, a 108, a horizontal slide rail, a 109, a horizontal sliding frame, a 110, a vertical slide rail, a 111, a vertical sliding frame, a 112, a vertical sliding seat, a 113, a lifting frame, a 114, a horizontal sliding seat, a 115, a swing arm, a 116, an engagement cavity, a 117, an engagement rod and a 118, and an engagement seat;
2. The device comprises a dispensing mechanism, 201, a track, 202, a moving frame, 203, a control panel, 204, a cylinder, 205, an adjusting mechanism, 206, a mounting frame, 207, a first transverse frame, 208, a second transverse frame, 209, a third transverse frame, 210, a linkage pendulum, 211, a swinging gear, 212, a swinging cone, 213, a rotating cavity, 214, a toothed ring, 215, a cross rod, 216, a linkage cone, 217, a swinging motor, 218, a threaded rod, 219, a linkage pendulum, 220, an upper cone, 221, a lower cone, 222, a rotating part, 223, a rotating table, 224, a swinging frame, 225, a swinging shaft, 226, a swinging cone, 227, a glue injection device, 228, a T-shaped groove, 229, a T-shaped rail, 230, a rotating gear, 231, a rotating motor, 232, a threaded rod, 233, a boss, 234, a meshing shaft, 235, a first meshing gear, 236 and a second meshing gear.
Detailed Description
The technical solutions of the present invention will be clearly and completely described below with reference to fig. 1 to 8, and it is obvious that the described embodiments are only some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
The invention provides dispensing equipment for a new energy battery through improvement, as shown in fig. 1-8, the dispensing equipment comprises a conveying mechanism 1 and a dispensing mechanism 2, wherein the conveying mechanism 1 comprises a symmetrical dispensing seat 101, two sides of the dispensing seat 101 are respectively provided with a conveying mechanism 102 and a discharging mechanism 103, the top of the dispensing seat 101 is provided with a battery compartment 104 to be dispensed, the side surface of the dispensing seat 101 is provided with a vertical plate 105, the outer wall of the vertical plate 105 is provided with a rectangular meshing groove 106, the top of the meshing groove 106 is slidably provided with a horizontal sliding frame 109, the side wall of the horizontal sliding frame 109 is slidably provided with a vertical sliding frame 111, the top of the vertical sliding frame 111 is fixedly provided with a lifting frame 113 for intermittently lifting and conveying the battery compartment 104, the outer wall of the vertical sliding frame 111 is fixedly provided with a meshing seat 118 matched with the meshing groove 106, the dispensing mechanism 2 comprises a track 201 and a moving frame 202 positioned above the conveying mechanism 1, the top inner wall of the moving frame 202 is movably provided with a plurality of groups of adjusting mechanisms 205, the adjusting mechanisms 205 comprise a mounting frame 206, the upper side wall of the mounting frame 206 is provided with a first transverse frame 207 and a second transverse frame 207, the second transverse frame 207 and a third transverse frame 207 are sequentially arranged on the outer wall of the moving frame 208, the first transverse frame 207 and the second transverse frame 207 are arranged on the transverse frame 223 and the transverse frame 223 is provided with a third transverse frame 222, the middle part is provided with a rotary frame 222, and a rotary frame 222 is provided with a rotary frame 209, and a rotary frame 209 is provided with a middle part.
In the embodiment, the dispensing device for the new energy battery is mainly divided into two parts, namely a conveying mechanism 1 and a dispensing mechanism 2. When the device is used, firstly, a plurality of groups of battery bins 104 to be glued are placed on the material conveying mechanism 102 at intervals, and under the inertia effect, the battery bins 104 can slide onto the glue dispensing seat 101. When the lift motor 107 drives the swing arm 115 to rotate clockwise, the trajectory of the lift frame 113 can be considered as lifting up-translating-lowering down. The lifting frame 113 can convey the battery compartment 104 to be dispensed to the middle of the dispensing base 101, so that the battery compartment is processed by a plurality of groups of glue injecting devices 227. When the swing motor 217 drives the swing gear 211 to rotate and the rotation motor 231 is not started, the linkage bevel gear 216 drives the linkage swinging part two 219 to rotate but the gear ring 214 is kept still, and the glue injection device 227 is driven by the lower bevel gear 221 and the swing bevel gear two 226 to swing rapidly. When the rotating motor 231 drives the rotating member 222 to rotate but the swinging motor 217 is not started, the toothed ring 214 drives the linkage bevel gear 216 to rotate but the linkage swing member I210 and the linkage swing member II 219 remain stationary, and at the moment, the rotating table 223 drives the glue injection device 227 to freely rotate, so that the glue is quickly dispensed at different positions of the battery compartment 104. When dispensing is completed, the engagement seat 118 moves from top to bottom along the short side of the right side of the rectangular engagement slot 106, and the vertical slide rail 110 slides downward along the horizontal rack 109, at this time, the horizontal rack 109 remains stationary, and the battery compartment 104 falls above the discharge mechanism 103 under the action of the lifting rack 113.
Referring to fig. 6-8, a horizontal sliding rail 108 above the engagement groove 106 is arranged on the vertical plate 105, a horizontal sliding seat 114 matched with the horizontal sliding rail 109 is arranged on the horizontal sliding rail 109, a vertical sliding rail 110 is arranged on the side wall of the horizontal sliding rail 109, and a vertical sliding seat 112 matched with the vertical sliding rail 111 is arranged on the vertical sliding rail 111.
In the embodiment, the engagement groove 106 is of a rectangular structure, so that in order to convert the motion track of the lifting frame 113 into a shape consistent with the engagement groove 106, the battery compartment 104 to be dispensed is lifted and moved, and the glue is prevented from accidentally falling on the material conveying mechanism 102 and the material discharging mechanism 103 during dispensing, and the horizontal sliding frame 109 and the vertical sliding rail 110 which are arranged in a sliding manner are designed.
Referring to fig. 6-8, a lifting motor 107 is installed on the inner wall of the vertical plate 105, a swing arm 115 is installed at the output end of the lifting motor 107, an engagement cavity 116 matched with the engagement groove 106 is formed in the swing arm 115, an engagement rod 117 matched with the engagement cavity 116 is fixedly arranged on the outer wall of the vertical sliding frame 111, and the engagement rod 117 and an engagement seat 118 are coaxially arranged.
In this embodiment, a plurality of groups of battery bins 104 to be dispensed are placed on the feeding mechanism 102 at intervals, and under the action of inertia, the battery bins 104 slide onto the dispensing base 101. When the lift motor 107 drives the swing arm 115 to rotate clockwise, the trajectory of the lift frame 113 can be considered as lifting up-translating-lowering down. When the engagement seat 118 moves from bottom to top along the short side of the rectangular engagement groove 106, the vertical slide rail 110 slides upward along the horizontal shelf 109 while the horizontal shelf 109 remains stationary. When the engagement seat 118 moves from left to right along the long side of the rectangular engagement groove 106, the horizontal carriage 109 slides rightward along the vertical slide rail 110 while the vertical slide rail 110 remains stationary, and while the height of the lifting frame 113 is slightly higher than the dispensing seat 101.
The lifting frame 113 can convey the battery compartment 104 to be dispensed to the middle of the dispensing base 101, so that the battery compartment is processed by a plurality of groups of glue injecting devices 227. When dispensing is completed, the engagement seat 118 moves from top to bottom along the short side of the right side of the rectangular engagement slot 106, and the vertical slide rail 110 slides downward along the horizontal rack 109, at this time, the horizontal rack 109 remains stationary, and the battery compartment 104 falls above the discharge mechanism 103 under the action of the lifting rack 113.
Referring to fig. 1, a moving frame 202 is slidably disposed on a rail 201, a plurality of groups of cylinders 204 are mounted on the top of the moving frame 202, and output ends of the cylinders 204 are fixedly connected with a mounting frame 206.
In this embodiment, in order to adjust the vertical height between the glue injection device 227 and the battery compartment 104 to be glued, a cylinder 204 structure is designed.
Referring to fig. 2-5, the first linkage swinging part 210 comprises a swinging gear 211 and a first swinging conical tooth 212 positioned at the bottom of the swinging gear 211, a cross rod 215 is fixedly arranged at the middle diameter position of the toothed ring 214, the cross rod 215 is movably provided with a second linkage conical tooth 216 meshed with the first swinging conical tooth 212, the top of the second linkage swinging part 219 is provided with an upper conical tooth 220 meshed with the second linkage conical tooth 216, the bottom of the second linkage swinging part is provided with a lower conical tooth 221 positioned below a rotating table 223, the bottom of the rotating table 223 is provided with symmetrical swinging frames 224, swinging shafts 225 are movably arranged between the swinging frames 224, and second swinging conical teeth 226 meshed with the lower conical tooth 221 are arranged on the swinging shafts 225.
In the present embodiment, when the swing motor 217 drives the swing gear 211 to rotate and the rotation motor 231 is not started, the linkage bevel gear 216 drives the linkage swinging member two 219 to rotate but the gear ring 214 is kept still, and the glue injection device 227 is driven by the lower bevel gear 221 and the swing bevel gear two 226 to swing rapidly.
Referring to fig. 2-5, a rotating gear 230 is mounted on the outer wall of the rotating member 222, a boss 233 is fixedly arranged on the outer wall of the third transverse frame 209, an engaging shaft 234 is rotatably arranged on the boss 233, a first engaging tooth 235 engaged with the rotating gear 230 is mounted on the bottom of the engaging shaft 234, and a second engaging tooth 236 engaged with the toothed ring 214 is mounted on the top of the engaging shaft 234.
In the present embodiment, when the rotation motor 231 drives the rotation member 222 to rotate but the swing motor 217 is not started, the toothed ring 214 drives the linkage bevel gear 216 to rotate but the linkage first swing member 210 and the linkage second swing member 219 remain stationary, and the rotary table 223 drives the glue injection device 227 to freely rotate.
Referring to fig. 2 to 3, a swing motor 217 is mounted on the mounting frame 206, a first threaded rod 218 engaged with the swing gear 211 is mounted at an output end of the swing motor 217, a second threaded rod 232 engaged with the rotation gear 230 is mounted at an output end of the rotation motor 231 is mounted on the third traverse 209.
In this embodiment, the swing motor 217 is designed to rotate the first swing 210, thereby adjusting the angle of the injection molding apparatus 227. In order to rotate the rotary member 222 and thereby rotate the injection molding apparatus 227, a rotary motor 231 is designed.
Referring to fig. 3-5, a rotation cavity 213 matching with the toothed ring 214 is provided in the middle of the second cross frame 208, a T-shaped rail 229 is provided at the top of the rotation member 222, and a T-shaped groove 228 matching with the third cross frame 209 is provided at the bottom of the third cross frame 209.
In this embodiment, to mount the swivel 222 and ensure that the swivel 222 rotates freely relative to the bottom of the third cross frame 209, a cooperating T-rail 229 and T-slot 228 configuration is provided. In order to ensure that the toothed ring 214 rotates freely relative to the second cross-frame 208, a rotation chamber 213 is provided.
Referring to fig. 1, a control panel 203 is further provided on the moving frame 202.
In this embodiment, the control panel 203 is designed to control the operation of the device.
When the device is used, a plurality of groups of battery bins 104 to be glued are firstly placed on the material conveying mechanism 102 at intervals, and under the action of inertia, the battery bins 104 can slide onto the glue dispensing seat 101. When the lift motor 107 drives the swing arm 115 to rotate clockwise, the trajectory of the lift frame 113 can be considered as lifting up-translating-lowering down. The lifting frame 113 can convey the battery compartment 104 to be dispensed to the middle of the dispensing base 101, so that the battery compartment is processed by a plurality of groups of glue injecting devices 227. When the swing motor 217 drives the swing gear 211 to rotate and the rotation motor 231 is not started, the linkage bevel gear 216 drives the linkage swinging part two 219 to rotate but the gear ring 214 is kept still, and the glue injection device 227 is driven by the lower bevel gear 221 and the swing bevel gear two 226 to swing rapidly. When the rotating motor 231 drives the rotating member 222 to rotate but the swinging motor 217 is not started, the toothed ring 214 drives the linkage bevel gear 216 to rotate but the linkage swing member I210 and the linkage swing member II 219 remain stationary, and at the moment, the rotating table 223 drives the glue injection device 227 to freely rotate, so that the glue is quickly dispensed at different positions of the battery compartment 104. When dispensing is completed, the engagement seat 118 moves from top to bottom along the short side of the right side of the rectangular engagement slot 106, and the vertical slide rail 110 slides downward along the horizontal rack 109, at this time, the horizontal rack 109 remains stationary, and the battery compartment 104 falls above the discharge mechanism 103 under the action of the lifting rack 113.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims (10)
1. The dispensing equipment for the new energy battery comprises a conveying mechanism (1) and a dispensing mechanism (2) and is characterized in that the conveying mechanism (1) comprises symmetrical dispensing bases (101), two sides of each dispensing base (101) are respectively provided with a conveying mechanism (102) and a discharging mechanism (103), a battery bin (104) to be dispensed is arranged at the top of each dispensing base (101), a vertical plate (105) is arranged on the side face of each dispensing base (101), a rectangular meshing groove (106) is formed in the outer wall of each vertical plate (105), a horizontal sliding frame (109) is slidably arranged at the top of each meshing groove (106), a vertical sliding frame (111) is slidably arranged on the side wall of each horizontal sliding frame (109), a lifting frame (113) for intermittently lifting and conveying the battery bin (104) is fixedly arranged at the top of each vertical sliding frame (111), and a meshing seat (118) matched with the corresponding meshing groove (106) is fixedly arranged on the outer wall of each vertical sliding frame (111);
the glue dispensing mechanism (2) comprises a track (201) and a moving frame (202) arranged above the conveying mechanism (1), a plurality of groups of adjusting mechanisms (205) are movably mounted on the inner wall of the top of the moving frame (202), each adjusting mechanism (205) comprises a mounting frame (206), glue injecting equipment (227) is movably arranged below each mounting frame (206), and the positions and angles of the glue injecting equipment (227) are freely adjusted by the adjusting mechanisms (205).
2. The dispensing device for the new energy battery according to claim 1, wherein the mounting frame (206) is sequentially provided with a first transverse frame (207), a second transverse frame (208) and a third transverse frame (209) from top to bottom, the first transverse frame (207) is rotatably provided with a linkage swinging part (210), the middle part of the second transverse frame (208) is rotatably provided with a toothed ring (214), the middle part of the third transverse frame (209) is rotatably provided with a linkage swinging part (219), the bottom of the third transverse frame (209) is further rotatably provided with a rotating part (222), the bottom of the rotating part (222) is fixedly provided with a rotating table (223), and the glue injection device (227) is movably arranged below the rotating table (223).
3. The dispensing device for the new energy battery according to claim 1, wherein the vertical plate (105) is provided with a horizontal sliding rail (108) above the meshing groove (106), the horizontal sliding carriage (109) is provided with a horizontal sliding seat (114) matched with the horizontal sliding rail, the side wall of the horizontal sliding carriage (109) is provided with a vertical sliding rail (110), and the vertical sliding carriage (111) is provided with a vertical sliding seat (112) matched with the vertical sliding rail.
4. The dispensing device for the new energy battery according to claim 1, wherein a lifting motor (107) is installed on the inner wall of the vertical plate (105), a swing arm (115) is installed at the output end of the lifting motor (107), an engagement cavity (116) matched with the engagement groove (106) is formed in the swing arm (115), an engagement rod (117) matched with the engagement cavity (116) is fixedly arranged on the outer wall of the vertical sliding frame (111), and the engagement rod (117) and the engagement seat (118) are coaxially arranged.
5. The dispensing device for new energy batteries according to any one of claims 1-4, wherein the moving frame (202) is slidably arranged on the track (201), a plurality of groups of air cylinders (204) are mounted on the top of the moving frame (202), and the output ends of the air cylinders (204) are fixedly connected with the mounting frame (206).
6. The dispensing device for the new energy battery according to claim 2, wherein the first linkage swinging part (210) comprises a swinging gear (211) and a first swinging conical tooth (212) positioned at the bottom of the swinging gear, a cross rod (215) is fixedly arranged at the middle diameter position of the toothed ring (214), the cross rod (215) is movably provided with a second linkage conical tooth (216) meshed with the first swinging conical tooth (212), the top of the second linkage swinging part (219) is provided with an upper conical tooth (220) meshed with the second linkage conical tooth (216), the bottom of the second linkage swinging part is provided with a lower conical tooth (221) positioned below the rotating table (223), the bottom of the rotating table (223) is provided with symmetrical swinging frames (224), swinging shafts (225) are movably arranged between the swinging frames (224), and the second swinging conical tooth (226) meshed with the lower conical tooth (221) is arranged on the swinging shafts (225).
7. The dispensing device for a new energy battery according to claim 6, wherein a rotating gear (230) is mounted on the outer wall of the rotating member (222), a boss (233) is fixedly arranged on the outer wall of the cross frame III (209), an engagement shaft (234) is rotatably arranged on the boss (233), a first engagement tooth (235) engaged with the rotating gear (230) is mounted at the bottom of the engagement shaft (234), and a second engagement tooth (236) engaged with the toothed ring (214) is mounted at the top of the engagement shaft (234).
8. The dispensing device for the new energy battery according to claim 7, wherein a swing motor (217) is mounted on the mounting frame (206), a first threaded rod (218) meshed with the swing gear (211) is mounted at the output end of the swing motor (217), a rotating motor (231) is mounted on the third transverse frame (209), and a second threaded rod (232) meshed with the rotating gear (230) is mounted at the output end of the rotating motor (231).
9. The dispensing device for the new energy battery according to claim 2, wherein a rotating cavity (213) matched with the toothed ring (214) is formed in the middle of the second transverse frame (208), a T-shaped rail (229) is arranged at the top of the rotating piece (222), and a T-shaped groove (228) matched with the third transverse frame (209) is formed in the bottom of the third transverse frame.
10. A dispensing apparatus for new energy batteries according to any one of claims 1-4, characterized in that said movement frame (202) is further provided with a control panel (203).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202510351122.3A CN119926751B (en) | 2025-03-24 | 2025-03-24 | A dispensing device for new energy batteries |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202510351122.3A CN119926751B (en) | 2025-03-24 | 2025-03-24 | A dispensing device for new energy batteries |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| CN119926751A CN119926751A (en) | 2025-05-06 |
| CN119926751B true CN119926751B (en) | 2025-11-18 |
Family
ID=95538007
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202510351122.3A Active CN119926751B (en) | 2025-03-24 | 2025-03-24 | A dispensing device for new energy batteries |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN119926751B (en) |
Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN114701837A (en) * | 2022-04-08 | 2022-07-05 | 湖南晶讯光电股份有限公司 | Automatic slot inserting device for glass cleaning and using method thereof |
| CN117644575A (en) * | 2024-01-30 | 2024-03-05 | 山东广发建材制品有限公司 | Building engineering concrete forming device |
Family Cites Families (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN112024284A (en) * | 2020-08-21 | 2020-12-04 | 南京禹智智能科技有限公司 | Dispensing device for rear cover of vehicle motor and dispensing method thereof |
| CN112808531B (en) * | 2021-01-29 | 2025-09-02 | 常州铭赛机器人科技股份有限公司 | Workpiece dispensing and placement equipment |
| CN116532317A (en) * | 2023-06-27 | 2023-08-04 | 袁芳华 | Electronic device adhesive deposite device |
-
2025
- 2025-03-24 CN CN202510351122.3A patent/CN119926751B/en active Active
Patent Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN114701837A (en) * | 2022-04-08 | 2022-07-05 | 湖南晶讯光电股份有限公司 | Automatic slot inserting device for glass cleaning and using method thereof |
| CN117644575A (en) * | 2024-01-30 | 2024-03-05 | 山东广发建材制品有限公司 | Building engineering concrete forming device |
Also Published As
| Publication number | Publication date |
|---|---|
| CN119926751A (en) | 2025-05-06 |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| LU506065B1 (en) | A tea rolling processing equipment for tea pretreatment and a processing method thereof | |
| CN207267327U (en) | Liftable sponge foaming moulding box bottom plate | |
| CN119926751B (en) | A dispensing device for new energy batteries | |
| CN219566769U (en) | Battery cell bottom supporting device | |
| CN221253866U (en) | Filling bottle direction adjustment mechanism | |
| CN215711709U (en) | Needle frame tracking and lifting mechanism for penicillin bottle filling machine | |
| CN208394174U (en) | A kind of liftable carriage | |
| CN220661293U (en) | Rotary table | |
| CN219382992U (en) | Box opening device for rotary disc box sucking | |
| CN212833901U (en) | Feeding device of magnetic field heat treatment furnace and magnetic field heat treatment system | |
| CN223720148U (en) | Feeding device of bottle blowing machine | |
| CN221955219U (en) | Belt feeder head structure with guide mechanism | |
| CN222497840U (en) | Automatic blanking mechanism of Tray | |
| CN220077922U (en) | Small accessory feeding mechanism | |
| CN219859235U (en) | Double-speed chain conveying mechanism with limiting function | |
| CN219669270U (en) | High-efficient loading attachment of rosin size production raw materials | |
| CN222934698U (en) | Automatic rotating device for oral liquid tray | |
| CN222243444U (en) | A switching storage mechanism for vehicle body assembly | |
| CN217315293U (en) | Multifunctional section bar rolling machine | |
| CN219029944U (en) | Bag feeding packaging machine | |
| CN112978473A (en) | Super gentle flower bud silk cloth processingequipment | |
| CN217777526U (en) | Plastic products is cooperation device for flow direction of packaging line | |
| CN221418776U (en) | Capsule filling machine material loading subassembly | |
| CN223468181U (en) | Filling device is used in essence cream production | |
| CN223703059U (en) | Moon cake disc arranging machine |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| PB01 | Publication | ||
| PB01 | Publication | ||
| SE01 | Entry into force of request for substantive examination | ||
| SE01 | Entry into force of request for substantive examination | ||
| GR01 | Patent grant | ||
| GR01 | Patent grant |