Fuse carrier assembling equipment
By introducing a mobile and positioning structure into the fuse carrier assembly equipment, the problem of inaccurate module and workstation positioning was solved, the processing quality and efficiency were improved, and a higher degree of automation was achieved.
Patent Information
- Application Number
- CN202511195508.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-26
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2045-08-26
AI Technical Summary
Existing fuse-carrying assembly equipment has difficulty in achieving precise positioning of modules and workstations, resulting in unstable processing quality and a high defective rate.
An assembly device including a base, a moving module, a stamping module, a hole-opening module and a pin module is used. The pushing block is driven to slide on the slide rail by the first lifting component and the first pushing component, and the work station is precisely positioned using the first positioning structure. Automated processing is achieved in conjunction with the reset component and the rotary module.
The yield rate of the melt-carrying parts processing and the degree of automation of the equipment are improved, the processing failure caused by positioning errors is reduced, and the processing efficiency is improved.
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Figure CN120690642A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of fuse carriers, and in particular to a fuse carrier assembly device. Background Art
[0002] A fuse is an electrical safety device that works based on the principle of thermal effect of electric current. The fuse carrier is an important component of the fuse. The fuse carrier is used to fix and install the fuse. The fuse carrier is usually assembled manually by workers through multiple assembly modules.
[0003] Reference Figure 1 The melt carrier includes a melt tube 300, a pressure relief tube 301, an upper ring pressure relief cap assembly 302, and a lower ring swivel plate assembly 303. The upper ring pressure relief cap assembly 302 and the lower ring swivel plate assembly 303 are respectively fixed to both sides of the melt tube 300 by stamping. A pipe cap 304 is provided on the pressure relief tube 301. The pressure relief tube 301 is inserted into the melt tube 300, and the pipe cap 304 is threadedly connected to the melt tube 300. Finally, four through holes 305 are opened on the outer surface of the melt tube 300. The staff inserts the pin 306 through the upper ring pressure relief cap assembly 302 or the lower ring swivel plate assembly 303 into the through holes 305 to complete the assembly of the melt carrier.
[0004] The assembly equipment includes a base, on which are provided a work station, a stamping module, a hole-opening module, and a pin module. The work station is used for placing the melt carrier, the stamping module is used for stamping and fixing the melt tube, the upper ring pressure relief cap assembly and the lower ring swivel plate assembly, the hole-opening module is used for opening a hole on the melt tube, and the pin module is used for inserting the pin through the upper ring pressure relief cap assembly or the lower ring swivel plate assembly into the through hole.
[0005] For assembly equipment, it is difficult to achieve precise positioning of workstations and multiple modules, making it difficult for different modules to accurately process products in the workstations. That is, there are certain defective products in the processed products, and therefore the quality of the processed products is difficult to guarantee. Summary of the Invention
[0006] In order to improve the problem that it is difficult for assembly equipment to accurately achieve module and workstation positioning, the present application provides a fuse carrier assembly equipment.
[0007] The present application provides a fuse carrier assembly device, which adopts the following technical solution: A melt carrier assembly device includes a base, on which a workstation, a moving module, a stamping module, a hole-opening module and a pin module are provided. The moving module is used to transport the workstation among the stamping module, the hole-opening module and the pin module. The workstation is used for placing products. The stamping module is used to stamp and fix the melt tube, the upper ring pressure relief cap assembly and the lower ring swivel plate assembly. The hole-opening module is used to perform hole-opening processing on the melt tube. The pin module is used to insert the pin into the through-hole through the upper ring pressure relief cap assembly or the lower ring swivel plate assembly. The moving module includes a first moving structure and a first positioning structure. The moving structure includes a first pushing component, a first lifting component and a pushing block, the pushing block is arranged on the first lifting component, the first lifting component is arranged on the first pushing component, the first pushing component is arranged on the base, the first lifting component is used to drive the pushing block to rise and fall, the first pushing component is used to drive the pushing block to move a fixed distance, the base is provided with a slide rail for the workstation to slide, the two adjacent workstations abut against each other, and the first positioning structure is used to limit the movement of the workstation; when the first pushing component is started, the first positioning structure is used to position the workstation in the stamping module, the opening module and the pin module.
[0008] By adopting the above technical solution, the first lifting component drives the pushing block to be lifted, and the first pushing component drives the pushing block to move, so that the pushing block can push the workstation to slide on the slide rail, and the two adjacent workstations abut against each other, so that the workstation can move a fixed distance on the slide rail, and the first positioning structure limits the workstation so that the workstation will not move after moving a fixed distance, so that the workstation can be stably located in the stamping module, the opening module and the pin module, so that the product in the workstation can be stably processed, so as to reduce the failure of the melt carrier processing due to positioning errors, thereby increasing the yield rate of the processed products.
[0009] Optionally, the work station includes a mounting seat, a moving block and a fixed block, the mounting seat is slidably connected to the slide rail, the moving block is slidably connected to the mounting seat, and the fixed block is fixedly connected to the mounting seat, the moving block and the fixed block are both used to place the melting tube, the upper ring pressure release cap assembly and the lower ring swivel plate assembly, and the stamping module is used to push the moving block.
[0010] By adopting the above technical solution, the moving block is slidably connected to the mounting seat, and the fixed block is fixedly connected to the mounting seat, so that the stamping module can move the moving block to drive the upper ring pressure relief cap assembly and the melt tube to be stamped in the direction of the lower ring rotating seat plate assembly, so that the product can complete the stamping action, reducing the possibility of the upper ring pressure relief cap assembly detaching from the moving block during the stamping process, so that the upper ring pressure relief cap assembly can stably perform stamping operations on the melt tube; at the same time, the moving block slides on the mounting seat, so that the work station can adapt to melt carriers of different lengths, so that the work station can adapt to more products.
[0011] Optionally, the base is provided with an upper ring pressure release cap assembly installation module, the upper ring pressure release cap assembly installation module includes an upper ring pressure release cap assembly loading structure and an upper ring pressure release cap assembly installation structure, the upper ring pressure release cap assembly loading structure is used to transport the upper ring pressure release cap assembly to the upper ring pressure release cap assembly installation structure, the upper ring pressure release cap assembly installation structure includes an upper ring pressure release cap assembly installation assembly and a reset assembly, the upper ring pressure release cap assembly installation assembly is used to install the upper ring pressure release cap assembly in the moving block, the reset assembly includes a reset moving part and a reset block, the reset moving part is arranged on the base, the reset block is arranged on the reset moving part, and the reset block is used to drive the moving block to move on the mounting seat.
[0012] By adopting the above technical solution, the reset block is driven to move by the reset moving part, and the reset block drives the moving block to move on the mounting seat. Since the position of the moving block changes after the stamping module stamps the product, a reset component is required to reset the moving block, so that the upper ring pressure relief cap assembly installation component can place the upper ring pressure relief cap assembly on the moving block, so that the melt tube can be placed between the moving block and the fixed block, so that the staff does not need to adjust the moving block after the stamping module, thereby increasing the full automation level of the equipment and further improving the efficiency of the equipment in product processing.
[0013] Optionally, the upper ring pressure release cap assembly loading structure includes an upper ring pressure release cap assembly loading assembly and an upper ring pressure release cap rotating assembly, the upper ring pressure release cap assembly loading assembly is used to move the upper ring pressure release cap assembly to the upper ring pressure release cap rotating assembly, the upper ring pressure release cap rotating assembly is used to rotate the upper ring pressure release cap assembly to a suitable angle, and the upper ring pressure release cap assembly installation assembly is used to remove the upper ring pressure release cap assembly from the upper ring pressure release cap rotating assembly.
[0014] By adopting the above technical solution, since the upper ring pressure release cap assembly is placed at a certain angle in the placement box, and the angle is different from the angle at which the upper ring pressure release cap assembly is placed on the moving block, the upper ring pressure release cap assembly cannot be directly moved to the moving block. Therefore, the upper ring pressure release cap rotating assembly is required to adjust the upper ring pressure release cap assembly to a certain angle, so that the adjusted upper ring pressure release cap assembly can be placed on the moving block, thereby realizing the automatic placement of the upper ring pressure release cap assembly by the equipment.
[0015] Optionally, the upper ring pressure release cap assembly loading assembly includes a loading drive and a loading clamp, the loading movable member is arranged on the base, the loading clamp is arranged on the loading drive, the upper ring pressure release cap rotating assembly includes a rotating drive and a rotating clamp, the rotating drive is arranged on the base, the rotating clamp is arranged on the rotating drive, the rotating drive is used to drive the rotating clamp to rotate to a suitable angle, the loading clamp clamps the upper half of the upper ring pressure release cap assembly, and the rotating clamp clamps the lower half of the upper ring pressure release cap assembly.
[0016] By adopting the above technical solution, the upper ring pressure release cap assembly is driven by the upper ring pressure release cap assembly loading assembly to move to the rotating clamp, and then the rotating driving member drives the rotating clamp to rotate, so that the upper ring pressure release cap assembly is rotated to a suitable angle, and then the upper ring pressure release cap assembly installation assembly moves the upper ring pressure release cap assembly to the moving block to realize the placement of the upper ring pressure release cap assembly; the loading clamp clamps the upper half of the upper ring pressure release cap assembly, and the rotating clamp clamps the lower half of the upper ring pressure release cap assembly, and the upper ring pressure release cap assembly installation assembly has space for clamping the upper ring pressure release cap assembly, so as to facilitate the placement of the upper ring pressure release cap assembly on the moving block.
[0017] Optionally, the first positioning structure includes a positioning assembly and a positioning block, the positioning block is arranged on the positioning assembly, the positioning assembly is arranged on the base, a positioning groove for inserting the positioning block is opened on the work station, and the positioning assembly is used to drive the positioning block to be inserted into the positioning groove; when the positioning block is inserted into the positioning groove, the work station is located at the position corresponding to the stamping module, the hole opening module or the pin module.
[0018] By adopting the above technical solution, the positioning block is driven to move by the positioning component, so that the positioning block can be inserted into the positioning groove, thereby realizing the positioning of the work station by the positioning block, reducing the movement of the work station on the slide rail, and enabling the work station to be stably located at the position corresponding to the stamping module, the opening module or the pin module, reducing the possibility of small-scale displacement of the work station due to inertia, and improving the stability of the work station on the slide rail.
[0019] Optionally, a rotary module is provided on the base, and the rotary module includes a rotary transport structure and two rotary moving structures. The rotary transport structure is arranged on the base, and the rotary moving structure is used to move the work station between the rotary transport structure and the slide rail. The rotary moving structure includes a rotary lifting assembly and a rotary pushing assembly, and the rotary lifting assembly and the rotary pushing assembly are both arranged on the base. The rotary lifting assembly is used to realize the vertical movement of the work station, and the rotary pushing assembly is used to push the work station to the rotary transport structure or to the slide rail.
[0020] By adopting the above technical solution, the work station can be pushed by the first moving structure, so that the work station can move from the slide rail to the rotary lifting assembly, the rotary lifting assembly can drive the work station to fall, and then the rotary pushing assembly can drive the work station to move from the rotary lifting assembly to the rotary transport structure. The rotary transport structure moves the work station from one rotary lifting assembly to another rotary lifting assembly, and the work station is driven to lift by another rotary lifting assembly. In addition, the rotary pushing assembly drives the work station to move to the slide rail, thereby realizing the circular movement of the work station between the slide rail, the rotary lifting assembly, the rotary transport structure, and the rotary lifting assembly, so that the work station can be stably recycled, avoiding the manual operation of resetting the work station by the staff, and further accelerating the processing efficiency of the product.
[0021] Optionally, a moving bar is provided on the workstation, and the rotary transport structure includes a conveyor belt and a support frame, the support frame is for the workstation to slide, the conveyor belt and the support frame are both arranged on a base, and a plurality of conveyor blocks are provided on the conveyor belt; when the moving bar is located between two adjacent conveyor blocks, the conveyor belt can drive the workstation to move.
[0022] By adopting the above technical solution, when the conveyor belt rotates, the moving bar is located between two adjacent transmission blocks, and the work station slides on the support frame. The transmission block can drive the moving bar to move, so that the transmission block can drive the work station to move, thereby realizing the reset movement of the work station.
[0023] Optionally, the surface of the moving bar away from the workstation is a moving slope, the distance between the moving slope and the workstation gradually decreases along the direction in which the rotary transport structure drives the workstation to move, and the moving slope is located on the moving path of the transmission block.
[0024] By adopting the above technical solution, when the rotary pushing component pushes the work station, the distance between the moving inclined surface and the work station gradually decreases along the direction in which the rotary transport structure drives the work station to move, and the moving inclined surface is located on the moving path of the transmission block. The moving inclined surface can abut the transmission block, so that the moving bar can be smoothly located between two adjacent transmission blocks, reducing the possibility of the moving bar being located on the side of the transmission block away from the conveyor belt, so that the transmission block can stably drive the work station to move; since the moving bar is set at an angle, when the transmission block abuts the moving bar, the force of the transmission block on the moving bar is dispersed, that is, the transmission block can generate a positive moving force and a force in the direction away from the support frame on the moving bar, so that the force between the work station and the support frame can be reduced, which facilitates the transmission block to better push the work station to move.
[0025] Optionally, the stamping module includes a stamping structure, a first limiting structure and a second limiting structure, the stamping structure is used to realize the stamping fixation of the melting tube, the upper ring pressure release cap assembly and the lower ring swivel plate assembly, the first limiting structure is used to fix the upper ring pressure release cap assembly, and the second limiting structure is used to fix the lower ring swivel plate assembly, the first limiting structure includes a first limiting driving member and a first limiting block, the first limiting driving member is arranged on the stamping structure, the first limiting block is arranged on the first limiting driving member, and the first limiting driving member is used to abut the upper ring pressure release cap assembly through the first limiting block.
[0026] By adopting the above technical solution, the first limiting block is driven to move by the first limiting driving member, so that the first limiting block abuts against the upper ring pressure release cap assembly, so that the first limiting structure fixes the upper ring pressure release cap assembly, and the second limiting structure fixes the lower ring swivel plate assembly, so that the upper ring pressure release cap assembly, the melting tube and the lower ring swivel plate assembly are fixed together, thereby realizing the stamping fixation of the product; since the first limiting structure is arranged in the stamping structure, when the stamping structure drives the moving block to move, the first limiting structure can still stably fix the upper ring pressure release cap assembly, thereby reducing the situation in which the first limiting structure is difficult to fix the upper ring pressure release cap assembly due to the displacement of the moving block during the stamping process.
[0027] In summary, this application includes at least one of the following beneficial technical effects: 1. The first lifting component drives the pushing block to be lifted, and the first pushing component drives the pushing block to move, so that the pushing block can push the workstation to slide on the slide rail, and the two adjacent workstations abut against each other, so that the workstation can move a fixed distance on the slide rail, and the first positioning structure limits the workstation so that the workstation will not move after moving a fixed distance, so that the workstation can be stably located in the stamping module, the opening module and the pin module, so that the product in the workstation can be stably processed, so as to reduce the failure of the melt carrier processing due to positioning errors, thereby increasing the yield rate of the processed products.
[0028] 2. The reset block is driven to move by the reset moving part, and the reset block drives the moving block to move on the mounting seat. Since the position of the moving block changes after the stamping module stamps the product, the reset component is required to reset the moving block, so that the upper ring pressure relief cap assembly installation component can place the upper ring pressure relief cap assembly on the moving block, so that the melt tube can be placed between the moving block and the fixed block, so that the staff does not need to adjust the moving block after the stamping module, thereby increasing the full automation level of the equipment and further improving the efficiency of the equipment in product processing. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 It is a structural diagram of background technology; Figure 2 It is a structural diagram of an embodiment of the present application; Figure 3 This is a structural diagram highlighting the mobile module in an embodiment of the present application; Figure 4 This is a structural diagram highlighting the rotary transport structure in an embodiment of the present application; Figure 5 This is a structural diagram highlighting the placement of the upper ring pressure relief cap assembly in an embodiment of the present application; Figure 6 This is a structural diagram highlighting the copper tube installation structure in an embodiment of the present application; Figure 7 This is a structural diagram highlighting the rotating part of the upper ring pressure release cap assembly in an embodiment of the present application; Figure 8 This is a structural diagram highlighting the stamping module in an embodiment of the present application; Figure 9 This is a structural diagram highlighting the pressure relief tube feeding structure in an embodiment of the present application; Figure 10 It is a structural schematic diagram highlighting the pressure relief tube installation module in an embodiment of the present application.
[0030] Figure numerals: 100, base; 101, slide rail; 102, moving module; 103, rotation module; 104, upper ring pressure relief cap assembly installation module; 105, lower ring rotation seat release plate assembly installation module; 106, melting tube installation module; 107, stamping module; 108, detection module; 109, opening module; 110, pin module; 111, pressure relief tube installation module; 112, blanking module; 113, work station; 114, mounting seat; 115, moving block; 116, fixed block; 117, mounting block; 118, first placement slot; 119, first placement hole; 120, second placement slot; 121, second placement hole; 122, first moving structure; 123, first positioning structure; 124, first pushing assembly ;125. First lifting assembly;126. Pushing block;127. Positioning assembly;128. Positioning block;129. Positioning slot;130. Rotary transport structure;131. Rotary moving structure;132. Conveyor belt;133. Support frame;134. Conveyor block;135. Moving bar;136. Moving inclined plane;137. Rotary lifting assembly;138. Rotary pushing assembly;139. Rotary motor;140. Rotary screw rod;141. Rotary light rod;142. Rotary bracket;143. Rotary plate;144. Upper ring pressure release cap assembly moving structure;145. Upper ring pressure release cap assembly placing assembly;146. Upper ring pressure release cap assembly moving assembly;147. Upper ring pressure release cap assembly placing box;148. Upper ring pressure release cap assembly bracket ;149. Upper ring pressure relief cap assembly limiter;151. Horizontal moving member;152. Longitudinal moving member;153. Melt tube feeding structure;154. Upper ring pressure relief cap assembly feeding structure;155. Copper tube installation structure;156. Upper ring pressure relief cap assembly installation structure;157. Turntable;158. Accommodating block;159. Upper ring pressure relief cap assembly feeding assembly;160. Upper ring pressure relief cap rotating assembly;161. Turnaround assembly;162. Feeding drive member;163. Feeding jaw;164. Rotational drive member;165. Rotational jaw;166. Turnaround drive member;167. Turnaround jaw;168. Copper tube feeding assembly;169. Copper tube installation assembly;170. Copper tube stamping assembly;171. Upper ring pressure relief cap assembly installation assembly; 172. Reset assembly; 173. Reset moving member; 174. Reset block; 175. Reset bracket; 176. Reset transverse slide; 177. Reset longitudinal cylinder; 178. Reset limit block; 179. Upper ring pressure release cap assembly moving member; 180. Upper ring pressure release cap assembly rotating member; 181. Upper ring pressure release cap assembly placing member; 182. First clamping jaw; 183. Second cylinder; 184. Rotating cylinder; 185. Second clamping jaw; 186. Third clamping jaw; 187. Lower ring swivel plate assembly moving structure; 188. Lower ring swivel plate assembly driving member; 189. Lower ring swivel plate assembly driving jaw; 191. Melt tube installation structure; 192. Stamping structure; 193. First limit structure; 194. Second limit structure;195. Third limiting structure; 196. First limiting driving member; 197. First limiting block; 198. First limiting groove; 199. Pressure relief tube feeding structure; 200. Rotating plate; 201. First feeding assembly; 202. Second feeding assembly; 203. Pressure relief tube stamping assembly; 204. Pressure relief tube unloading assembly; 205. Accommodating block; 206. Pressure relief tube driving member; 207. Pressure relief tube moving member; 20 8. Pressure relief tube driving jaw; 209. Moving hole; 210. Pressure relief tube moving structure; 211. Pressure relief tube mounting structure; 212. Pressure relief tube positioning structure; 213. Pressure relief tube moving jaw; 214. Pressure relief tube mounting jaw; 215. Pressure relief tube rotating assembly; 216. Material discharge structure; 217. Material discharge transport structure; 218. Material discharge driving assembly; 219. Material discharge jaw; 220. Fourth limiting structure; 300, melting tube; 301, pressure relief tube; 302, upper ring pressure relief cap assembly; 303, lower ring swivel seat plate assembly; 304, tube cap; 305, perforation; 306, pin. DETAILED DESCRIPTION
[0031] The following is combined with Figure 2-Figure 10 This application is described in further detail.
[0032] This embodiment discloses a fuse carrier assembly device. Figure 2 A melt carrier assembly device includes a base 100 equipped with a slide rail 101, a moving module 102, a rotating module 103, an upper ring pressure relief cap assembly installation module 104, a lower ring swivel base plate assembly installation module 105, a melt pipe installation module 106, a punching module 107, an inspection module 108, a hole drilling module 109, a pinning module 110, a pressure relief pipe installation module 111, and a blanking module 112. Multiple workstations 113 are slidably connected to the slide rail 101, where the melt pipe, upper ring pressure relief cap assembly, and lower ring swivel base plate assembly are placed. The moving module 102 is used to realize the sliding of the station 113 on the slide rail 101, the rotating module 103 is used to realize the movement of the station 113 from the end position of the slide rail 101 to the beginning position of the slide rail 101, the upper ring pressure relief cap assembly installation module 104 is used to install the upper ring pressure relief cap assembly on the station 113, the lower ring swivel seat plate assembly installation module 105 is used to install the lower ring swivel seat plate assembly on the station 113, the melting tube installation module 106 is used to install the melting tube on the station 113, and the stamping Module 107 is used to realize the stamping and fixing of the upper ring pressure relief cap assembly, the melting tube and the lower ring swivel plate assembly; the inspection module 108 is used to inspect the product after stamping; the opening module 109 is used to perform hole opening processing on the melting tube; the pin module 110 is used to insert the pin into the upper ring pressure relief cap assembly, the melting tube and the lower ring swivel plate assembly and the melting tube; the pressure relief tube installation module 111 is used to install the pressure relief tube in the upper ring pressure relief cap assembly; and the blanking module 112 is used to realize the blanking processing of the product.
[0033] Reference Figure 3 The workstation 113 includes a mounting base 114, a moving block 115, and a fixed block 116. The mounting base 114 is slidably connected to the slide rail 101. The moving block 115 is slidably connected to the mounting base 114, and the fixed block 116 is fixedly connected to the mounting base 114. The moving block 115 slides along the length of the mounting base 114. Four mounting blocks 117 are fixedly connected to the mounting base 114. The mounting base 114 and the four mounting blocks 117 form an I-shape, that is, two mounting blocks 117 are located on one side of the mounting base 114, and the other two mounting blocks 117 are located on the other side of the mounting base 114. Adjacent workstations 113 abut each other.
[0034] Reference Figure 3 The surface of the movable block 115 is provided with a first placement groove 118 for placing the upper ring pressure relief cap assembly. The surface of the movable block 115 near the fixed block 116 is provided with a first placement hole 119 that communicates with the first placement groove 118 and is used to place the melt pipe. The surface of the fixed block 116 is provided with a second placement groove 120 for placing the upper ring pressure relief cap assembly. The surface of the fixed block 116 near the movable block 115 is provided with a second placement hole 121 that communicates with the second placement groove 120 and is used to place the melt pipe. One end of the melt pipe can be positioned in the first placement hole 119, and the other end of the melt pipe can be positioned in the second placement hole 121.
[0035] Reference Figure 3 Two slide rails 101 are provided, and the slide rails 101 extend along the length direction of the base 100. The mounting seats 114 are slidably connected to the slide rails 101. The mounting blocks 117 in two adjacent mounting seats 114 abut against each other, and the mounting blocks 117 are all slidably connected to the slide rails 101, that is, two adjacent workstations 113 abut against each other.
[0036] Reference Figure 2 and Figure 3 The moving module 102 includes multiple first moving structures 122 and multiple first positioning structures 123. The first moving structure 122 is used to realize the movement of the work station 113 on the slide rail 101, and the first positioning structure 123 is used to position the work station 113 between the rotation module 103, the upper ring pressure relief cap assembly installation module 104, the lower ring rotation seat plate assembly installation module 105, the melting tube installation module 106, the stamping module 107, the opening module 109, the pin module 110 or the pressure relief tube installation module 111.
[0037] Reference Figure 3The first moving structure 122 includes a first pushing assembly 124, a first lifting assembly 125, and a pushing block 126. The first pushing assembly 124 includes a pushing drive member, which can be a slide. The slide is disposed on the base 100. The first lifting assembly 125 includes a lifting cylinder. The lifting cylinder is disposed on the slide. The slide is used to drive the lifting cylinder to move along the length direction of the slide rail 101. The pushing block 126 is fixedly connected to the driving shaft of the lifting cylinder. The lifting cylinder is used to drive the pushing block 126 to lift it between the two slide rails 101, allowing the slide to drive the mounting seat 114 to move through the pushing block 126, so that the first moving structure 122 drives the workstation 113 to move a fixed distance.
[0038] Reference Figure 3 The first positioning structure 123 includes a positioning assembly 127 and two positioning blocks 128. The positioning assembly 127 includes a positioning cylinder. The two positioning blocks 128 are fixedly connected to the drive shaft of the positioning cylinder. The positioning blocks 128 are cylindrical. Two positioning slots 129 are defined on the side of the mounting seat 114. The positioning slots 129 are for inserting the positioning blocks 128. When the mounting seat 114 is moved to the appropriate position, the positioning cylinder drives the positioning blocks 128 to move, allowing the positioning blocks 128 to insert into the positioning slots 129, thereby fixing the mounting seat 114 to the slide rail 101 and improving the precision of the mounting seat 114 on the slide rail 101.
[0039] Reference Figure 3 and Figure 4 The rotary module 103 includes a rotary transport structure 130 and two rotary moving structures 131 . The rotary transport structure 130 is used to realize the movement of the workstation 113 , and the rotary moving structure 131 is used to realize the movement of the workstation 113 in the slide rail 101 and the rotary transport structure 130 .
[0040] Reference Figure 4 The rotary transport structure 130 includes a conveyor belt 132 and a support frame 133. Both the conveyor belt 132 and the support frame 133 are mounted on the base 100 and are located on the side of the slide rail 101 closest to the ground. A plurality of conveyor blocks 134 are fixedly connected to the outer surface of the conveyor belt 132 and arranged in an array along the length of the conveyor belt 132.
[0041] Reference Figure 3 and Figure 4Two movable bars 135 are fixedly connected to the surface of the mounting base 114 near the ground. These bars 135 can be inserted between two adjacent transmission blocks 134. The surfaces of the bars 135 facing toward and away from the mounting base 114 are each inclined, i.e., the bars 135 are tilted toward one side. The distance between the inclined surfaces 136 and the mounting base 114 gradually increases as the workstation 113 moves along the slide rail 101. The inclined surfaces 136 are located in the path of the transmission blocks 134.
[0042] Reference Figure 3 and Figure 4 When the rotary moving structure 131 moves the mounting seat 114 into the rotary transport structure 130, the moving bar 135 can be inserted between two adjacent transmission blocks 134, allowing the conveyor belt 132 to stably drive the mounting seat 114 to move. At this time, the moving direction of the mounting seat 114 in the conveyor belt 132 is opposite to the moving direction of the mounting seat 114 in the slide rail 101.
[0043] Reference Figure 3 The rotary moving structure 131 includes a rotary lifting assembly 137 and a rotary pushing assembly 138. The rotary lifting assembly 137 includes a rotary motor 139, a rotary screw 140 and two rotary light rods 141. The rotary screw 140 is rotatably connected to the base 100, and the two rotary light rods 141 are fixedly connected to the base 100. The rotary screw 140 is fixedly connected to the drive shaft of the rotary motor 139. A rotary bracket 142 is fixedly connected to the base 100, and the rotary motor 139 is fixedly connected to the rotary bracket 142. A rotary plate 143 is threadedly connected to the rotary screw 140, and the rotary plate 143 is slidably connected to the rotary light rod 141, and the rotary plate 143 is placed on the work station 113.
[0044] Reference Figure 3 and Figure 4 When the rotary motor 139 is started, the rotary motor 139 drives the rotary plate 143 to move in the vertical direction through the rotary screw 140, so that the work station 113 can move from the slide rail 101 or the conveyor belt 132 to the rotary plate 143, or the work station 113 can move from the rotary plate 143 to the slide rail 101 or the conveyor belt 132.
[0045] Reference Figure 3 The rotary push assembly 138 includes a rotary push cylinder, which is arranged on the base 100. The rotary push cylinder is used to push the station 113 to move on the rotary plate 143.
[0046] Reference Figure 3 and Figure 4, workstation 113 moves from slide rail 101 to rotary plate 143, and rotary motor 139 is activated, allowing rotary screw 140 to drive rotary plate 143 to move. In addition, the rotary push cylinder drives workstation 113 to move on rotary plate 143, allowing workstation 113 to move smoothly onto conveyor belt 132. Workstation 113 moves from conveyor belt 132 to rotary plate 143, and rotary motor 139 is activated, allowing rotary screw 140 to drive rotary plate 143 to move. At this time, first push assembly 124 drives workstation 113 to move, and then the rotary push cylinder drives workstation 113 to move onto slide rail 101.
[0047] Reference Figure 5 The base 100 is fixedly connected to an upper ring pressure release cap assembly moving structure 144. The upper ring pressure release cap assembly moving structure 144 includes an upper ring pressure release cap assembly placement assembly 145, an upper ring pressure release cap assembly moving assembly 146, and multiple upper ring pressure release cap assembly placement boxes 147. The upper ring pressure release cap assembly placement boxes 147 are used to place multiple upper ring pressure release cap assemblies. The upper ring pressure release cap assembly placement assembly 145 allows multiple upper ring pressure release cap assembly placement boxes 147 to be stacked. The upper ring pressure release cap assembly moving assembly 146 is used to individually place the upper ring pressure release cap assembly placement boxes 147, making it easier for the upper ring pressure release cap assembly installation module 104 to remove the upper ring pressure release cap assemblies.
[0048] Reference Figure 5 The upper ring pressure release cap assembly placement assembly 145 includes an upper ring pressure release cap assembly bracket 148 and an upper ring pressure release cap assembly limiter 149. The upper ring pressure release cap assembly bracket 148 allows multiple upper ring pressure release cap assembly placement boxes 147 to fall vertically, and the upper ring pressure release cap assembly limiter 149 is used to limit the upper ring pressure release cap assembly placement boxes 147 from falling.
[0049] Reference Figure 5 The upper ring pressure relief cap assembly stopper 149 includes an upper ring pressure relief cap assembly stopper cylinder. A stopper hole is defined on the surface of the upper ring pressure relief cap assembly placement box 147 for inserting the drive shaft of the upper ring pressure relief cap assembly stopper cylinder. When the upper ring pressure relief cap assembly stopper cylinder is inserted into the stopper hole, the upper ring pressure relief cap assembly stopper cylinder prevents the upper ring pressure relief cap assembly placement box 147 from further descending.
[0050] Reference Figure 5 The upper ring pressure relief cap assembly moving assembly 146 includes a transverse moving member 151 and a longitudinal moving member 152. The structure of the transverse moving member 151 is similar to that of the slide, and is formed by a motor screw structure. The longitudinal moving member 152 includes a longitudinal moving cylinder fixedly connected to the transverse moving member 151. The longitudinal plate is fixedly connected to the drive shaft of the longitudinal moving cylinder, and the longitudinal plate is used to place the upper ring pressure relief cap assembly placement box 147.
[0051] Reference Figure 2and Figure 5 When the driving shaft of the upper ring pressure release cap assembly limit cylinder is out of the limiting hole, the upper ring pressure release cap assembly placement box 147 falls along the upper ring pressure release cap assembly bracket 148, allowing the upper ring pressure release cap assembly placement box 147 to fall onto the longitudinal plate, and then the transverse moving part 151 drives the longitudinal moving part 152 to move, allowing the upper ring pressure release cap assembly placement box 147 to be placed alone, so that the subsequent upper ring pressure release cap assembly installation module 104 can clamp the upper ring pressure release cap assembly.
[0052] Reference Figure 3 and Figure 6 The upper ring pressure relief cap assembly installation module 104 includes an upper ring pressure relief cap assembly loading structure 154, a copper tube installation structure 155, and an upper ring pressure relief cap assembly installation structure 156. The upper ring pressure relief cap assembly loading structure 154 is used to move the loading pressure relief cap assembly to the upper ring pressure relief cap assembly installation structure 156. The copper tube installation structure 155 is used to install the copper tube into the upper ring pressure relief cap assembly. The upper ring pressure relief cap assembly installation structure 156 is used to move the upper ring pressure relief cap assembly into the moving block 115. The copper tube installation structure 155 can choose whether to install the copper tube in the upper ring pressure relief cap assembly. If the product does not require a copper tube, the copper tube installation structure 155 can be skipped, allowing the upper ring pressure relief cap assembly to pass directly through the upper ring pressure relief cap assembly loading structure 154 to the upper ring pressure relief cap assembly installation structure 156.
[0053] Reference Figure 6 A turntable 157 is rotatably connected to the base 100, and a plurality of accommodating blocks 158 are provided on the turntable 157 for placing the loading pressure relief cap assembly. The accommodating blocks 158 are located between the upper ring pressure relief cap assembly loading structure 154, the copper tube mounting structure 155 and the upper ring pressure relief cap assembly mounting structure 156.
[0054] Reference Figure 5 The upper ring pressure release cap assembly loading structure 154 includes an upper ring pressure release cap assembly loading assembly 159, an upper ring pressure release cap rotating assembly 160 and a turnover assembly 161. The upper ring pressure release cap assembly loading assembly 159 is used to move the upper ring pressure release cap assembly to the upper ring pressure release cap rotating assembly 160. The upper ring pressure release cap rotating assembly 160 is used to rotate the upper ring pressure release cap assembly to a suitable angle. The turnover assembly 161 is used to place the loading pressure release cap assembly on the accommodating block 158.
[0055] Reference Figure 5 The upper ring pressure release cap assembly loading assembly 159 includes a loading drive 162 and a loading clamp 163. The loading clamp 163 is arranged on the loading drive 162. The loading drive 162 is arranged on the base 100. The loading drive 162 can drive the loading clamp 163 to move in the vertical and horizontal directions. The loading clamp 163 is used to clamp the upper ring pressure release cap assembly.
[0056] Reference Figure 5 The upper ring pressure release cap rotating assembly 160 includes a rotating driving member 164 and a rotating clamp 165. The rotating driving member 164 is arranged on the base 100, and the rotating clamp 165 is arranged on the rotating driving member 164. The rotating driving member 164 is used to drive the rotating clamp 165 to rotate so as to adjust the angle of the upper ring pressure release cap assembly.
[0057] Reference Figure 5 The turnover assembly 161 includes a turnover drive 166 and a turnover clamp 167. The turnover drive 166 is arranged on the base 100, and the turnover clamp 167 is arranged on the turnover drive 166. The turnover drive 166 is used to drive the upper ring pressure release cap assembly from the rotating clamp 165 to the accommodating block 158 through the turnover clamp 167.
[0058] Reference Figure 5 The loading clamp 163 clamps the upper part of the upper ring pressure release cap assembly, and then the loading drive 162 drives the upper ring pressure release cap assembly to move to the rotating clamp 165 through the loading clamp 163, and the rotating clamp 165 clamps the lower part of the upper ring pressure release cap assembly, and the rotating clamp 165 drives the upper ring pressure release cap assembly to rotate one hundred and eighty degrees, and then one side of the circulating clamp 167 extends into the upper ring pressure release cap assembly, and the other side of the circulating clamp 167 is located outside the upper ring pressure release cap assembly, so that the circulating clamp 167 clamps the upper ring pressure release cap assembly.
[0059] Reference Figure 6 The copper tube installation structure 155 includes a copper tube loading assembly 168, a copper tube installation assembly 169 and a copper tube stamping assembly 170. The copper tube loading assembly 168 is used to move the copper tube into the copper tube installation assembly 169. The copper tube installation assembly 169 is used to install the copper tube on the upper ring pressure relief cap assembly. The copper tube stamping assembly 170 is used to stamp the copper tube and the upper ring pressure relief cap assembly.
[0060] Reference Figure 2 and Figure 3 The upper ring pressure relief cap assembly mounting structure 156 includes an upper ring pressure relief cap assembly mounting assembly 171 and a reset assembly 172. The upper ring pressure relief cap assembly mounting assembly 171 is used to place the upper ring pressure relief cap assembly on the movable block 115. Since the stamping module 107 moves the movable block 115, the position of the movable block 115 in the work station 113 caused by the rotary module 103 is changed. The reset assembly 172 is used to reset the movable block 115.
[0061] Reference Figure 7The reset assembly 172 includes a reset moving part 173 and a reset block 174. The reset moving part 173 includes a reset bracket 175, a reset transverse slide 176 and a reset longitudinal cylinder 177. The reset bracket 175 is fixedly connected to the base 100, the reset transverse slide 176 is fixedly connected to the reset bracket 175, and the reset longitudinal cylinder 177 is arranged on the reset transverse slide 176. The reset transverse slide 176 drives the reset longitudinal cylinder 177 to move laterally. The reset block 174 is fixedly connected to the drive shaft of the reset longitudinal cylinder 177, and two reset limit blocks 178 are fixedly connected to the surface of the reset block 174. The movable block 115 is inserted between the two reset limit blocks 178. When the movable block 115 is inserted between the two reset limit blocks 178, the two reset limit blocks 178 can drive the movable block 115 to move.
[0062] Reference Figure 7 , the reset transverse slide 176 and the reset longitudinal cylinder 177 drive the reset block 174 to move, so that the moving block 115 is located between the two reset limit blocks 178, and the reset transverse slide 176 drives the reset block 174 to move, so that the reset limit block 178 can drive the moving block 115 to slide on the mounting seat 114, so that the upper ring pressure release cap assembly installation assembly 171 places the upper ring pressure release cap assembly on the moving block 115, and then the reset transverse slide 176 drives the reset block 174 to move, so that the reset block 174 can smoothly drive the moving block 115 to reset.
[0063] Reference Figure 6 and Figure 7 The upper ring pressure release cap assembly installation assembly 171 includes an upper ring pressure release cap assembly moving part 179, an upper ring pressure release cap assembly rotating part 180 and an upper ring pressure release cap assembly placing part 181. The upper ring pressure release cap assembly moving part 179 is used to remove the upper ring pressure release cap assembly from the accommodating block 158, the upper ring pressure release cap assembly rotating part 180 is used to adjust the angle of the upper ring pressure release cap assembly, and the upper ring pressure release cap assembly placing part 181 is used to place the upper ring pressure release cap assembly on the moving block 115.
[0064] Reference Figure 7 The structure of the upper ring pressure release cap assembly moving part 179 is the same as that of the reset moving part 173. The upper ring pressure release cap assembly moving part 179 is provided with a first clamping claw 182. The upper ring pressure release cap assembly moving part 179 drives the upper ring pressure release cap assembly to move to the upper ring pressure release cap assembly rotating part 180 through the first clamping claw 182.
[0065] Reference Figure 7The upper ring pressure relief cap assembly rotating member 180 includes a second cylinder 183 and a rotating cylinder 184. The second cylinder 183 is fixedly connected to the base 100, and the rotating cylinder 184 is fixedly connected to the drive shaft of the second cylinder 183. The second cylinder 183 can drive the rotating cylinder 184 to move horizontally. The drive shaft of the rotating cylinder 184 is fixedly connected to a second clamping jaw 185, which is used to clamp the upper ring pressure relief cap assembly.
[0066] Reference Figure 7 The structure of the upper ring pressure release cap assembly placement piece 181 is the same as that of the reset moving piece 173. The upper ring pressure release cap assembly placement piece 181 is provided with a third clamping jaw 186. The upper ring pressure release cap assembly placement piece 181 drives the upper ring pressure release cap to move from the second clamping jaw 185 to the moving block 115 through the third clamping jaw 186.
[0067] Reference Figure 7 , the upper ring pressure release cap assembly moving part 179 drives the first clamping jaw 182 to clamp the upper part of the upper ring pressure release cap assembly, and moves the upper ring pressure release cap assembly to the second clamping jaw 185, and the second clamping jaw 185 grabs the lower part of the upper ring pressure release cap assembly. At this time, the rotating cylinder 184 drives the second clamping jaw 185 to rotate ninety degrees to adjust the angle of the upper ring pressure release cap assembly, and then the upper ring pressure release cap assembly placing part 181 drives the third clamping jaw 186 to clamp the upper ring pressure release cap assembly, so that the upper ring pressure release cap assembly is installed on the moving block 115.
[0068] Reference Figure 6 The base 100 is provided with a lower ring swivel launch plate assembly moving structure 187. The specific structure of the lower ring swivel launch plate assembly moving structure 187 is the same as that of the upper ring pressure release cap assembly moving structure 144. The lower ring swivel launch plate assembly moving structure 187 is used to load the lower ring swivel launch plate assembly and facilitate the lower ring swivel launch plate assembly module to move the lower ring swivel launch plate assembly to the fixed block 116.
[0069] Reference Figure 2 and Figure 6 The lower ring swivel plate assembly installation module 105 includes a lower ring swivel plate assembly driving member 188 and a lower ring swivel plate assembly driving clamp 189. The lower ring swivel plate assembly driving clamp 189 is provided on the lower ring swivel plate assembly driving member 188. The lower ring swivel plate assembly driving member 188 moves the lower ring swivel plate assembly onto the fixed block 116 via the lower ring swivel plate assembly driving clamp 189.
[0070] Reference Figure 2 and Figure 6The melt tube installation module 106 includes a melt tube loading structure 153 and a melt tube installation structure 191. The melt tube loading structure 153 is used to move the melt tube into the melt tube installation structure 191, and the melt tube installation structure 191 is used to install the melt tube in the movable block 115 and the fixed block 116. The melt tube installation structure 191 is used to place one end of the melt tube in the first placement hole 119 and the other end of the melt tube in the second placement hole 121.
[0071] Reference Figure 8 The stamping module 107 includes a stamping structure 192, a first limiting structure 193, a second limiting structure 194, a third limiting structure 195 and a fourth limiting structure 220. The stamping structure 192 is used to realize the stamping of the upper ring pressure release cap assembly, the melting tube and the lower ring rotating seat plate assembly. The first limiting structure 193 is used to realize the fixation between the upper ring pressure release cap assembly and the moving block 115. The third limiting structure 195 is used to realize the fixation between the melting tube and the fixed block 116. The second limiting structure 194 is used to realize the fixation between the lower ring rotating seat plate assembly and the fixed block 116. The fourth limiting structure 220 is used to abut the melting tube to realize the fixation between the melting tube and the moving block 115.
[0072] Reference Figure 8 The first limiting structure 193 includes a first limiting driver 196 and a first limiting block 197. The first limiting driver 196 includes a first limiting cylinder. The first limiting block 197 is fixedly connected to the drive shaft of the first limiting cylinder. A first limiting groove 198 is defined on the surface of the first limiting block 197 away from the first limiting cylinder. The upper ring pressure relief cap assembly is inserted into the first limiting groove 198, so that the first limiting block 197 can better fit the upper ring pressure relief cap assembly.
[0073] Reference Figure 8 The first limiting cylinder is fixedly connected to the stamping structure 192, and the first limiting cylinder drives the first limiting block 197 to abut against the upper ring pressure release cap assembly. The stamping structure 192 drives the moving block 115 to slide on the mounting seat 114, and the first limiting block 197 can limit the upper ring pressure release cap assembly from separating from the moving block 115.
[0074] Reference Figure 8 The structure of the second limiting structure 194 is the same as that of the first limiting structure 193 , the structure of the third limiting structure 195 is the same as that of the first limiting structure 193 , and the structure of the fourth limiting structure 220 is the same as that of the first limiting structure 193 .
[0075] Reference Figure 8When the stamping structure 192 drives the moving block 115 to move, the first limiting structure 193 limits the upper ring pressure release cap assembly, the third limiting structure 195 limits the melting tube, and the second limiting structure 194 limits the lower ring rotating seat release plate assembly, so that the upper ring pressure release cap assembly, the melting tube, and the lower ring rotating seat release plate assembly can be stamped.
[0076] Reference Figure 9 The base 100 is provided with a pressure relief tube loading structure 199, which includes a rotating disk 200, a first loading assembly 201, a second loading assembly 202, a pressure relief tube stamping assembly 203, and a pressure relief tube blanking assembly 204. The rotating disk 200 is mounted on the base 100 and is provided with a plurality of accommodating blocks 205 for placing the pressure relief tube. The first loading assembly 201 is used to load the cap into the pressure relief tube, the second loading assembly 202 is used to load the rod into the pressure relief tube, the pressure relief tube stamping assembly 203 is used to stamp the pressure relief tube, and the pressure relief tube blanking assembly 204 is used to move the pressure relief tube into the pressure relief tube installation module 111. The pressure relief tube loading structure 199 is used to load the pressure relief tube, so that the pressure relief tube installation module 111 can subsequently install the pressure relief tube into the upper ring pressure relief cap assembly.
[0077] Reference Figure 9 The pressure relief tube blanking assembly 204 includes a pressure relief tube driving member 206 and a pressure relief tube moving member 207. The pressure relief tube driving member 206 is used to move the pressure relief tube from the accommodating block 205 to the pressure relief tube moving member 207. The pressure relief tube moving member 207 is used to transport the pressure relief tube to the pressure relief tube installation module 111.
[0078] Reference Figure 9 The specific structure of the pressure relief tube driving member 206 is the same as that of the reset moving member 173. The pressure relief tube driving member 206 is provided with a pressure relief tube driving claw 208, which is used to clamp the pressure relief tube.
[0079] Reference Figure 9 The pressure relief tube moving member 207 includes a pressure relief tube bracket, which is provided with a moving hole 209 for the pressure relief tube rod to pass through, and the pressure relief tube cover cannot pass through the moving hole 209. The pressure relief tube bracket is provided with a linear vibrator, which realizes the movement of the pressure relief tube in the moving hole 209 through vibration.
[0080] Reference Figure 10 The pressure relief tube installation module 111 includes a pressure relief tube moving structure 210, a pressure relief tube installation structure 211 and a pressure relief tube positioning structure 212. The pressure relief tube moving structure 210 is used to move the pressure relief tube from the pressure relief tube bracket to the pressure relief tube installation structure 211. The pressure relief tube installation structure 211 is used to thread the pressure relief tube to the upper ring pressure relief cap assembly. The pressure relief tube positioning structure 212 is used to insert the pressure relief tube into the upper ring pressure relief cap assembly.
[0081] Reference Figure 10 The specific structure of the pressure relief tube moving structure 210 is the same as the structure of the reset moving member 173. The pressure relief tube moving structure 210 is provided with a pressure relief tube moving claw 213, which can clamp the pressure relief tube. The pressure relief tube moving structure 210 removes the pressure relief tube from the pressure relief tube bracket through the pressure relief tube moving claw 213, and then the pressure relief tube moving structure 210 moves the pressure relief tube to the pressure relief tube installation structure 211.
[0082] Reference Figure 10 The pressure relief tube mounting structure 211 includes a pressure relief tube mounting clamp 214 and a pressure relief tube rotating assembly 215. The pressure relief tube mounting clamp 214 is disposed on the pressure relief tube rotating assembly 215. The pressure relief tube rotating assembly 215 is used to drive the pressure relief tube mounting clamp 214 to rotate.
[0083] Reference Figure 10 The pressure relief tube positioning structure 212 includes a pressure relief tube positioning claw, which is used to clamp the rod of the pressure relief tube to ensure that the rod in the pressure relief tube can be inserted into the upper ring pressure relief cap assembly.
[0084] Reference Figure 9 The unloading module 112 includes a unloading structure 216 and a unloading transport structure 217. The unloading structure 216 is used to move the product to the unloading transport structure 217, and the unloading transport structure 217 is used to transport the product.
[0085] Reference Figure 9 The unloading structure 216 includes an unloading drive assembly 218 and an unloading clamp 219. The structure of the unloading drive assembly 218 is the same as that of the reset assembly 172. The unloading clamp 219 is mounted on the unloading drive assembly 218, which drives the unloading clamp 219 to move horizontally or vertically. The unloading drive assembly 218 removes the product from the workstation 113 and then moves the product to the unloading transport structure 217. The unloading transport structure 217 includes a conveyor belt for moving the product.
[0086] Reference Figure 2 and Figure 9 If the detection module 108 detects that the product is good, the conveyor belt rotates forward, allowing the product to move along the length of the conveyor belt. If the detection module 108 detects that the product is defective, the conveyor belt can rotate backward, allowing the defective product to fall from the conveyor belt, thus achieving the unloading of the defective product.
[0087] The implementation principle of a fuse assembly device in an embodiment of the present application is: the lifting cylinder drives the pushing block 126 to lift, and then the slide drives the pushing block 126 to move along the length direction of the base 100, so that the pushing block 126 can smoothly drive the work station 113 to move, so that the work station 113 moves on the slide rail 101, and then the positioning cylinder drives the positioning block 128 to move, so that the positioning block 128 is inserted into the positioning groove 129, so as to realize the positioning of the work station 113 by the positioning block 128, reduce the possibility of the work station 113 continuing to move on the slide rail 101, and realize the precise positioning of the work station 113 on the slide rail 101.
[0088] Unless otherwise defined, the technical or scientific terms used in this application shall have the usual meanings understood by persons of ordinary skill in the field to which this application belongs. The words "first", "second", "third" and similar terms used in the specification and claims of this application do not indicate any order, quantity or importance, but are only used to distinguish different components. Words such as "one" or "a" do not indicate a quantity limitation, but rather indicate the existence of at least one. Words such as "include" or "comprise" mean that the elements or objects appearing before "include" or "comprises" cover the elements or objects listed after "include" or "comprises" and their equivalents, and do not exclude other elements or objects. "Up", "down", "left", "right" and the like are only used to indicate relative positional relationships. When the absolute position of the described object changes, the relative positional relationship may also change accordingly.
[0089] The above description is only a preferred embodiment of the present application and is not intended to limit the present application. Any modifications, equivalent replacements, improvements, etc. made within the design concept of the present application should be included in the scope of protection of the present application.
Claims
1. A melt carrier assembly device, characterized by: The invention comprises a base (100), wherein a workstation (113), a moving module (102), a punching module (107), a hole-opening module (109) and a pin module (110) are provided on the base (100), wherein the moving module (102) is used to transport the workstation (113) among the punching module (107), the hole-opening module (109) and the pin module (110), wherein the workstation (113) is used for placing products, and the punching module (107) is used for realizing melting. The tube, the upper ring pressure relief cap assembly and the lower ring swivel plate assembly are stamped and fixed, the hole opening module (109) is used to realize hole opening processing on the melting tube, the pin module (110) is used to realize the pin passing through the upper ring pressure relief cap assembly or the lower ring swivel plate assembly and inserting it into the hole, the moving module (102) includes a first moving structure (122) and a first positioning structure (123), the first moving structure (122) includes a first pushing assembly (124), A first lifting component (125) and a pushing block (126), wherein the pushing block (126) is arranged on the first lifting component (125), the first lifting component (125) is arranged on the first pushing component (124), the first pushing component (124) is arranged on the base (100), the first lifting component (125) is used to drive the pushing block (126) to rise and fall, the first pushing component (124) is used to drive the pushing block (126) to move a fixed distance, the base (100) is provided with a slide rail (101) for the work station (113) to slide, two adjacent work stations (113) abut against each other, and the first positioning structure (123) is used to limit the movement of the work station (113); when the first pushing component (124) is started, the first positioning structure (123) is used to position the work station (113) in the stamping module (107), the hole opening module (109) and the pin module (110).
2. The melt carrier assembly equipment according to claim 1, characterized in that: The workstation (113) includes a mounting seat (114), a moving block (115) and a fixed block (116); the mounting seat (114) is slidably connected to the slide rail (101); the moving block (115) is slidably connected to the mounting seat (114); the fixed block (116) is fixedly connected to the mounting seat (114); the moving block (115) and the fixed block (116) are both used to place the melting tube, the upper ring pressure release cap assembly and the lower ring rotating seat plate assembly; the stamping module (107) is used to push the moving block (115).
3. The melt carrier assembly equipment according to claim 2, characterized in that: The base (100) is provided with an upper ring pressure relief cap assembly installation module (104), the upper ring pressure relief cap assembly installation module (104) comprising an upper ring pressure relief cap assembly loading structure (154) and an upper ring pressure relief cap assembly installation structure (156), the upper ring pressure relief cap assembly loading structure (154) being used to transport the upper ring pressure relief cap assembly to the upper ring pressure relief cap assembly installation structure (156), the upper ring pressure relief cap assembly installation structure (156) comprising an upper ring pressure relief cap assembly installation assembly (171) and a reset assembly (172); the upper ring pressure release cap assembly mounting assembly (171) is used to mount the upper ring pressure release cap assembly in the moving block (115); the reset assembly (172) comprises a reset moving member (173) and a reset block (174); the reset moving member (173) is arranged on the base (100); the reset block (174) is arranged on the reset moving member (173); and the reset block (174) is used to drive the moving block (115) to move on the mounting seat (114).
4. The melt carrier assembly equipment according to claim 3, characterized in that: The upper ring pressure release cap assembly loading structure (154) includes an upper ring pressure release cap assembly loading assembly (159) and an upper ring pressure release cap rotating assembly (160), wherein the upper ring pressure release cap assembly loading assembly (159) is used to move the upper ring pressure release cap assembly to the upper ring pressure release cap rotating assembly (160), the upper ring pressure release cap rotating assembly (160) is used to rotate the upper ring pressure release cap assembly to a suitable angle, and the upper ring pressure release cap assembly installation assembly (171) is used to take the upper ring pressure release cap assembly from the upper ring pressure release cap rotating assembly (160).
5. The melt carrier assembly equipment according to claim 4, characterized in that: The upper ring pressure release cap assembly feeding assembly (159) includes a feeding drive member (162) and a feeding clamp (163), the feeding moving member is arranged on the base (100), the feeding clamp (163) is arranged on the feeding drive member (162), the upper ring pressure release cap rotating assembly (160) includes a rotating drive member (164) and a rotating clamp (165), the rotating drive member (164) is arranged on the base (100), the rotating clamp (165) is arranged on the rotating drive member (164), the rotating drive member (164) is used to drive the rotating clamp (165) to rotate to a suitable angle, the feeding clamp (163) clamps the upper half of the upper ring pressure release cap assembly, and the rotating clamp (165) clamps the lower half of the upper ring pressure release cap assembly.
6. The melt carrier assembly equipment according to claim 1, characterized in that: The first positioning structure (123) includes a positioning component (127) and a positioning block (128), wherein the positioning block (128) is arranged on the positioning component (127), and the positioning component (127) is arranged on the base (100). A positioning groove (129) for inserting the positioning block (128) is provided on the work station (113), and the positioning component (127) is used to drive the positioning block (128) to be inserted into the positioning groove (129); when the positioning block (128) is inserted into the positioning groove (129), the work station (113) is located at a position corresponding to the stamping module (107), the hole opening module (109) or the pin module (110).
7. The melt carrier assembly equipment according to claim 1, characterized in that: The base (100) is provided with a rotary module (103), and the rotary module (103) includes a rotary transport structure (130) and two rotary moving structures (131). The rotary transport structure (130) is arranged on the base (100), and the rotary moving structure (131) is used to move the work station (113) between the rotary transport structure (130) and the slide rail (101). The rotary moving structure (131) includes a rotary lifting component (137) and a rotary pushing component (138). The rotary lifting component (137) and the rotary pushing component (138) are both arranged on the base (100). The rotary lifting component (137) is used to realize the vertical movement of the work station (113), and the rotary pushing component (138) is used to push the work station (113) to move to the rotary transport structure (130) or to the slide rail (101).
8. The melt carrier assembly equipment according to claim 7, characterized in that: The workstation (113) is provided with a moving bar (135), the rotary transport structure (130) comprises a conveyor belt (132) and a support frame (133), the support frame (133) is used for the workstation (113) to slide, the conveyor belt (132) and the support frame (133) are both arranged on a base (100), and a plurality of conveyor blocks (134) are provided on the conveyor belt (132); when the moving bar (135) is located between two adjacent conveyor blocks (134), the conveyor belt (132) can drive the workstation (113) to move.
9. The melt carrier assembly equipment according to claim 8, characterized in that: The surface of the moving bar (135) away from the workstation (113) is a moving inclined surface (136). The distance between the moving inclined surface (136) and the workstation (113) gradually decreases along the direction in which the rotary transport structure (130) drives the workstation (113) to move. The moving inclined surface (136) is located on the moving path of the transmission block (134).
10. The melt carrier assembly equipment according to claim 8, characterized in that: The stamping module (107) includes a stamping structure (192), a first limiting structure (193) and a second limiting structure (194). The stamping structure (192) is used to realize the stamping fixation of the melting tube, the upper ring pressure release cap assembly and the lower ring rotating seat plate assembly. The first limiting structure (193) is used to fix the upper ring pressure release cap assembly. The second limiting structure (194) is used to fix the lower ring rotating seat plate assembly. The first limiting structure (193) includes a first limiting driving member (196) and a first limiting block (197). The first limiting driving member (196) is arranged on the stamping structure (192). The first limiting block (197) is arranged on the first limiting driving member (196). The first limiting driving member (196) is used to abut the upper ring pressure release cap assembly through the first limiting block (197).
Citation Information
Patent Citations
Feeding and clamping device of windscreen wiper connecting rod and clamping method of feeding and clamping device
CN113385976A
Material arranging equipment
CN119774241A
Punch press for punching a cylindrical flexible metal endless band
GB1321049A
Wear test device for solar panel mounted on photovoltaic system and test method therefor
WO2022021492A1