Cement resistor dispensing mechanism and splicing type production line of cement resistor

By designing the cement resistor dispensing mechanism, the automatic production of cement resistors is achieved, the problem of low manual operation efficiency is solved, and the production efficiency and quality consistency is improved.

CN223221798UActive Publication Date: 2025-08-15DONGGUAN KAILIRUI INTELLIGENT TECH CO LTD +1
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Patent Information

Application Number
CN202422140472.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-02
Publication Date
2025-08-15
Estimated Expiration
2034-09-02

AI Technical Summary

Technical Problem

During the existing cement resistor manufacturing process, the step of filling cement slurry relies on manual operations, resulting in low efficiency and high labor costs.

Method used

A cement resistive dispensing mechanism is designed, including a dispensing workbench, a conveying mechanism and a clamping positioning mechanism, to realize the automated cement resistive dispensing process, and through the cooperation of the X, Y, and Z axis moving mechanisms and the dispensing part, the automatic conveying and dispensing operation of the material tray is realized.

Benefits of technology

It realizes automated production of cement resistors, reduces manual intervention, improves production efficiency, ensures stability and consistency of production quality, and reduces labor costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a cement resistor dispensing mechanism and a splicing type production line of cement resistor, the cement resistor dispensing mechanism comprises a dispensing workbench, the dispensing workbench is provided with a dispensing operation area, the dispensing workbench is provided with a conveying mechanism and clamping and positioning mechanisms, the clamping and positioning mechanisms are located at two sides of the conveying mechanism, and the clamping and positioning mechanisms are located at two sides of the conveying mechanism. And when the conveying mechanism conveys the product to the dispensing operation area for operation or finishes operation, the clamping and positioning mechanism fixes the position of the product or releases the position of the product. The cement resistor dispensing mechanism can be used as an independent production line single body, and meanwhile, the cement resistor dispensing mechanism and the production line single body are spliced into an assembly line of cement resistors.
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Description

Technical Field

[0001] The utility model relates to the technical field of glue dispensing machines, in particular to a cement resistor glue dispensing mechanism and a splicing production line of cement resistors. Background Art

[0002] Cement resistors are a commonly used electrical component, widely used in various related fields such as circuit board manufacturing. The structural components of cement resistors mainly include cement resistor materials, electrodes, leads, shells, and other components. Among them, the cement resistor material is the key part, which is generally composed of various materials such as iron oxide, quartz powder, cement and adhesives. The electrode is the part that connects the cement resistor material to other circuit components. The lead is the part that connects the electrode to the circuit. The shell is a protective structure covering the outer layer of the cement resistor, generally made of metal or plastic materials to ensure the safety and durability of the cement resistor. During the manufacturing process of cement resistors, the corresponding resistor device needs to be placed in a ceramic shell, and then the opening made in the ceramic shell is filled with cement slurry to seal it. In the existing manufacturing process, the above-mentioned filling process is carried out manually. Due to the waste of labor and low efficiency, a semi-automatic filling device for cement resistors has emerged. For example, Chinese patent publication No. CN207651276U discloses a semi-automatic filling device for cement resistors, which includes a workbench, a lifting screw and a guide column vertically installed on one side of the workbench, the lower end of the lifting screw passes through the workbench, the lower end of the lifting screw is installed with the output end of a motor installed under the workbench, the lifting screw and the guide column are arranged in parallel and spaced apart, and a lifting sleeve is jointly sheathed on the outer side of the lifting screw and the guide column, and a fixing frame is integrally installed on the outer wall of one side of the lifting sleeve, and a filling machine is fixedly installed on the fixing frame, and the lower end of the filling machine is provided with a discharge port, and an embedded seat is installed in the workbench below the discharge port, and the embedded seat is used to place the cement resistor to be filled.

[0003] Since the semi-automatic cement resistor filling device requires the operator to replace the new cement resistor after filling, in order to further improve production efficiency, the applicant and technicians in this field proposed a cement resistor dispensing mechanism and a cement resistor splicing production line to improve the efficiency of cement resistor production. Utility Model Content

[0004] In order to solve the above problems, the utility model provides a cement resistor dispensing mechanism and a dispensing production line.

[0005] To achieve the above-mentioned purpose, the present invention adopts the following technical solution: the present invention relates to a cement resistor dispensing mechanism, including a dispensing workbench, the dispensing workbench has a dispensing operation area, the dispensing workbench is provided with a conveying mechanism and a clamping and positioning mechanism, the clamping and positioning mechanism is located on both sides of the conveying mechanism, when the conveying mechanism transports the product to the dispensing operation area for operation or ends the operation, the clamping and positioning mechanism will fix or release the position of the product.

[0006] Preferably, the dispensing workbench includes a work surface, the conveying mechanism is installed on the work surface, and the conveying mechanism is provided with a material tray for placing the product, and the material tray moves in or out of the dispensing operation area as the conveying mechanism operates.

[0007] Preferably, the conveying mechanism includes a conveying motor, a conveyor belt, a conveying roller and a tensioning roller. Tensioning rollers are provided on both sides of the work surface. The conveying motor and the conveying roller are arranged below the work surface. The output end of the conveying motor is connected to the conveying roller through a crawler transmission. The conveyor belt surrounds the work surface, the tensioning roller and the conveying roller to form a closed loop.

[0008] Preferably, the transport route of the conveying mechanism is arranged along the Y-axis of the dispensing workbench, and the clamping and positioning mechanism is arranged on both sides of the transport direction of the conveying mechanism. When the material tray enters the dispensing operation area, the clamping and positioning mechanism clamps on both sides of the material tray.

[0009] Preferably, the clamping and positioning mechanism includes a plurality of clamping members, a plurality of push rod assemblies and a limit member. A first clamping mounting block and a second clamping mounting block are provided on both sides of the conveying route. The clamping member is slidably mounted on the first clamping mounting block, and the push rod assembly is slidably mounted on the second clamping mounting block. The limit member can be slidably mounted on the first clamping mounting block and / or the second clamping mounting block. The limit member is arranged at a position of the first clamping mounting block and / or the second clamping mounting block close to the outlet of the conveying route.

[0010] Preferably, the first clamping mounting block is provided with a first sliding groove for installing the clamping member, the clamping member includes a clamping slider and a clamping portion, the clamping slider can be slidably installed in the first sliding groove, the clamping portion is installed on the clamping slider, and a protective wheel is provided at the end of the clamping portion.

[0011] Preferably, the second clamping mounting block is provided with a second sliding groove for installing the push rod assembly, and the push rod assembly includes a push rod slider, a push rod base, a push rod and a push block. The push rod slider can be slidably installed in the second sliding groove, the push rod base is fixedly installed on the push rod slider, and the push rod can be telescopically installed on the push rod base. One end of the push rod is connected to the output end of the push rod motor, and the other end of the push rod is provided with a push block.

[0012] Preferably, the limiting member includes a limiting slider, a limiting base, a limiting push rod and a limiting plate, the limiting slider can be slidably mounted on the first clamping mounting block and / or the second clamping mounting block, the limiting base is mounted on the limiting slider, the limiting push rod can be telescopically mounted on the limiting base, one end of the limiting push rod is connected to the output end of the limiting motor, and the other end of the limiting push rod is connected to the limiting plate.

[0013] Preferably, it also includes an X-axis moving mechanism, a Y-axis moving mechanism, a Z-axis lifting mechanism and a glue dispensing unit. The X-axis moving mechanism is arranged on one side of the glue dispensing workbench. The X-axis moving mechanism is provided with a gantry. The Y-axis moving mechanism is installed on the gantry. A mobile bracket is installed on the Y-axis moving mechanism. The Z-axis lifting mechanism is arranged on the mobile bracket. The glue dispensing unit is installed on the Z-axis lifting mechanism. The lifting movement of the electric glue unit is controlled by the Z-axis lifting mechanism to move the electric glue unit above the glue dispensing operation area of the glue dispensing workbench.

[0014] The utility model also relates to a spliced production line for cement resistors, including a cement resistor dispensing mechanism. The dispensing mechanism is connected to individual production line units to form a cement resistor assembly line. The individual production line units, such as a resting area and a material storage area, are described in this embodiment. The spliced production line for cement resistors includes a first cement resistor dispensing mechanism, a resting area, a second cement resistor dispensing mechanism, and a material storage area, which are connected in sequence. The structures of the first and second cement resistor dispensing mechanisms are substantially identical. This reduces personnel turnover during the production process, significantly improving efficiency and increasing production capacity.

[0015] The beneficial effects of the present invention are as follows: the present invention relates to a cement resistor dispensing mechanism, which can be used as an independent production line unit, and can be spliced with other cement resistor production line units to form a production line. Moreover, after the production line is spliced together, it is also convenient to add or delete production line units between any two workstations according to production needs, so as to achieve the purpose of increasing or reducing workstations. In the present invention, the glue tray is clamped and fixed in the dispensing operation area by a clamping and positioning mechanism, so that the operation position of each material tray is unified, thereby ensuring the stability and consistency of production quality. The present invention is spliced with other production line units to form an assembly line for cement resistors. The production line transports the material tray to the dispensing workbench, moves the material tray to the dispensing operation area through the conveying mechanism, and after the dispensing operation, the material tray is moved out of the dispensing operation area again by the conveying mechanism and transported to the designated position for the next step. There is no need to manually place or remove the material tray, which reduces labor costs, realizes an automated production line, and can achieve continuous and high-speed production, significantly improving production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1It is a schematic diagram of the overall structure of the cement resistor dispensing mechanism of the utility model.

[0017] Figure 2 It is a structural schematic diagram of the glue dispensing workbench of the utility model.

[0018] Figure 3 It is a structural diagram of the conveying mechanism of the utility model.

[0019] Figure 4 It is a schematic diagram of the internal structure of the conveying mechanism of the utility model.

[0020] Figure 5 It is a structural diagram of the clamping and positioning mechanism of the utility model.

[0021] Figure 6 It is a structural schematic diagram of the clamping piece of the utility model.

[0022] Figure 7 It is a structural schematic diagram of the push rod assembly of the utility model.

[0023] Figure 8 It is a structural diagram of the limiter of the utility model.

[0024] Figure 9 It is a structural schematic diagram of the glue dispensing production line of the utility model.

[0025] Reference numerals

[0026] 1. Dispensing machine frame;

[0027] 2. Glue dispensing workbench; 21. Conveying mechanism; 211. Conveying motor; 212. Conveyor belt; 213. Conveying roller; 214. Tensioning roller;

[0028] 22. Clamping and positioning mechanism; 221. Clamping member; 2211. Clamping slider; 2212. Clamping portion; 222. Push rod assembly; 2221. Push rod slider; 2222. Push rod base; 2223. Push rod; 2224. Push block; 223. Limiting member; 2231. Limiting slider; 2232. Limiting base; 2233. Limiting ejector rod; 2234. Limiting plate; 2235. Auxiliary guide rail; 2236. Auxiliary slider;

[0029] 224. First clamping mounting block; 2241. First sliding slot; 225. Second clamping mounting block; 2251. Second sliding slot; 23. Work surface; 24. Material tray; 25. Guard wheel; 27. Conveyor route;

[0030] 3. X-axis moving mechanism; 4. Y-axis moving mechanism; 5. Z-axis lifting mechanism; 6. Dispensing unit; 7. Gantry; 8. Moving bracket; 100. First cement resistor dispensing mechanism; 200. Static storage area; 300. Second cement resistor dispensing mechanism; 400. Material storage area. DETAILED DESCRIPTION

[0031] See also Figure 1-9 As shown, the utility model relates to a cement resistor dispensing mechanism, which can perform cement resistor dispensing operations independently and can also be applied to a splicing production line of cement resistors. The cement resistor dispensing mechanism includes a dispensing machine frame 1 and a dispensing workbench 2. The dispensing machine frame 1 is provided with a dispensing workbench 2, and the dispensing workbench 2 has a dispensing operation area. The dispensing workbench 2 is provided with a conveying mechanism 21 and a clamping and positioning mechanism 22. The clamping and positioning mechanism 22 is located on both sides of the conveying mechanism 21, wherein the conveying mechanism 21 is connected to the production line, and the production line transports the product to the conveying mechanism 21. When the conveying mechanism 21 transports the product to the dispensing operation area, the clamping and positioning mechanism 22 fixes or releases the position of the product, so that the product is fixed on the dispensing operation area for convenient dispensing operation.

[0032] The cement resistor dispensing mechanism is connected to the production line of the subsequent process of cement resistors to receive or send the cement resistors that have been dispensed, which reduces manual participation and the chance of error.

[0033] The cement resistor dispensing mechanism also includes an X-axis moving mechanism 3, a Y-axis moving mechanism 4, a Z-axis lifting mechanism 5, and a dispensing unit 6. The X-axis moving mechanism 3 is arranged on one side of the dispensing workbench 2. A gantry 7 is provided on the X-axis moving mechanism 3. The Y-axis moving mechanism 4 is mounted on the gantry 7. A mobile bracket 8 is mounted on the Y-axis moving mechanism 4. The Z-axis lifting mechanism 5 is arranged on the mobile bracket 8. The dispensing unit 6 is cooperatively mounted on the Z-axis lifting mechanism 5. The lifting and lowering movement of the dispensing unit 6 is controlled by the Z-axis lifting mechanism 5. In the present utility model, the gantry 7 is driven to move along the X-axis direction by the X-axis moving mechanism 3, the mobile bracket 8 is driven to move along the Y-axis direction by the Y-axis moving mechanism 4, and the dispensing unit 6 is driven to move up and down along the Z-axis direction by the Z-axis lifting mechanism 5, thereby enabling the dispensing unit 6 to achieve three-axis movement above the dispensing operation area.

[0034] Furthermore, in this embodiment, the dispensing workbench 2 includes a work surface 23, the conveying mechanism 21 is installed on the work surface 23, and the conveying mechanism 21 is provided with a material tray 24 for placing products. The material tray 24 moves in or out of the dispensing operation area as the conveying mechanism 21 operates. The clamping and positioning mechanism 22 is arranged on both sides of the transportation direction of the conveying mechanism 21. When the material tray 24 enters the dispensing operation area, the clamping and positioning mechanism 22 fixes the position of the material tray 24. When the dispensing operation is completed, the clamping and positioning mechanism 22 will release the fixation of the material tray 24, and the material tray 24 leaves the dispensing workbench 2 along with the conveying mechanism 21.

[0035] Among them, the material tray 24 is fully loaded with a ceramic shell with a built-in resistor device, the dispensing part 6 provides cement resistor material and adjusts the height of the dispensing part 6 through the Z-axis lifting mechanism 5 to perform dispensing operation, and then the semi-finished product after the dispensing operation is placed statically, or air-dried or baked to accelerate the curing of the cement resistor material and finally form a cement resistor.

[0036] In this embodiment, the conveying mechanism 21 includes a conveying motor 211, a conveyor belt 212, a conveyor roller 213, and a tensioning roller 214. Tensioning rollers 214 are located on both sides of the work surface 23, with one tensioning roller 214 located adjacent to the production line. The conveying motor 211 and conveyor roller 213 are located below the work surface 23. The output end of the conveying motor 211 is connected to the conveyor roller 213 via a crawler belt transmission. The conveyor belt 212 loops around the work surface 23, the tensioning roller 214, and the conveyor roller 213, forming a closed loop. The output end of the conveying motor 211 drives the conveyor belt 212 to rotate via the conveyor roller 213. The tensioning rollers 214 located on both sides of the work surface 23 ensure that the conveyor belt 212 maintains tension during rotation, also ensuring smooth conveying. When the production line delivers a material tray 24 to the conveying mechanism 21, the material tray 24 moves as the conveyor belt 212 rotates.

[0037] In this embodiment, the clamping and positioning mechanism 22 includes a plurality of clamping members 221, a plurality of push rod assemblies 222 and a limit member 223. In this embodiment, the Y-axis direction of the conveyor belt 212 is the conveying route 27, and a first clamping mounting block 224 and a second clamping mounting block 225 are provided on both sides of the conveying route 27.

[0038] The first clamping mounting block 224 is provided with a first sliding groove 2241 for mounting the clamping member 221. The clamping member 221 is slidably mounted in the first sliding groove 2241. The clamping member 221 includes a clamping slider 2211 and a clamping portion 2212. The clamping slider 2211 is slidably mounted in the first sliding groove 2241. The clamping position can be adjusted by changing the position of the clamping slider 2211. The clamping portion 2212 is mounted on the clamping slider 2211. A protective wheel 25 is provided at the end of the clamping portion 2212. The protective wheel 25 abuts against the material tray 24 to ensure that the protective wheel 25 is in close contact with the surface of the material tray 24, thereby reducing direct pressure on the surface of the material tray 24 during clamping.

[0039] The second clamping and mounting block 225 is provided with a second sliding groove 2251 for mounting the push rod assembly 222 . The push rod assembly 222 is slidably mounted in the second sliding groove 2251 . Among them, the push rod assembly 222 includes a push rod slider 2221, a push rod base 2222, a push rod 2223 and a push block 2224. The push rod slider 2221 can be slidably installed in the second sliding groove 2251, and the clamping position can be adjusted by changing the position of the push rod slider 2221. The push rod base 2222 is fixedly installed on the push rod slider 2221, and the push rod 2223 can be telescopically installed on the push rod base 2222. One end of the push rod 2223 is connected to the output end of the push rod motor, and the other end of the push rod 2223 is provided with a push block 2224. When the push rod 2223 motor is driven, the push rod 2223 is pushed outward, and the push block 2224 is against the surface of the material tray 24. The push rod assembly 222 pushes the material tray 24 to the clamping member 221, thereby achieving the effect of clamping and fixing.

[0040] The limiting member 223 is slidably mounted on the first sliding groove 2241 and / or the second sliding groove 2251. The limiting member 223 is arranged at a position where the first sliding groove 2241 and / or the second sliding groove 2251 are close to the exit of the conveying route 27. The limiting member 223 includes a limiting slider 2231, a limiting base 2232, a limiting top rod 2233 and a limiting plate 2234. The limiting slider 2231 is slidably mounted on the first sliding groove 2241 and / or the second sliding groove 2251. By changing the limiting slider, the limiting member 223 is The position of the block 2231 is adjusted to adjust the position of the limit, the limit base 2232 is installed on the limit slider 2231, the limit push rod 2233 is telescopically installed on the limit base 2232, one end of the limit push rod 2233 is connected to the output end of the limit motor, and the other end of the limit push rod 2233 is connected to the limit plate 2234. When the limit motor is driven, the limit push rod 2233 is pushed outward, and the limit plate 2234 blocks the moving direction of the material tray 24, thereby limiting the moving position of the material tray 24.

[0041] Furthermore, a protective wheel 25 is provided at the end of the limiting plate 2234, and the protective wheel 25 is pressed against the material tray 24 to ensure that the protective wheel 25 is closely fitted to the surface of the material tray 24, thereby reducing the direct pressure on the surface of the material tray 24 during clamping.

[0042] Furthermore, an auxiliary guide rail 2235 is provided on the side of the limiting base 2232, and an auxiliary slider 2236 is provided on the side of the limiting plate 2234 to match the auxiliary guide rail 2235. The auxiliary slider 2236 is slidably mounted on the auxiliary guide rail 2235. When the limiting ejector pushes the limiting plate 2234 outward, the auxiliary slider 2236 moves outward according to the auxiliary guide rail 2235, thereby preventing the limiting ejector from deflecting when the limiting ejector is extended to a longer length.

[0043] In the present invention, when the production line transports the tray 24 containing the product to the conveying mechanism 21, the conveying mechanism 21 transports the tray 24 to the dispensing operation area via the conveyor belt 212. The clamping and positioning mechanism 22 clamps and fixes the tray 24 via the clamping member 221 and the push rod assembly 222, and further limits the movement direction of the tray 24 via the limiter 223, thereby fixing the tray 24 inside the dispensing operation area. When the dispensing operation is completed, the clamping member 221 and the push rod 2223 release the clamping and fixation of the tray 24, and the limiter 223 releases the limited movement of the tray 24. Therefore, the tray 24 will be removed from the dispensing operation area along with the conveyor belt 212, and the conveyor belt 212 will transport the tray 24 to the designated position for the static placement step.

[0044] The present invention relates to a cement resistor dispensing mechanism and a dispensing production line. In the present invention, a glue tray is clamped and fixed in a dispensing operation area by a clamping and positioning mechanism 22, so that the operation position of each material tray 24 is unified, thereby ensuring the stability and consistency of production quality. The present invention can be adapted to a production line. The production line conveys the material tray 24 to the dispensing workbench 2, moves the material tray 24 to the dispensing operation area by a conveying mechanism 21, and after the dispensing operation, the material tray 24 is again moved out of the dispensing operation area by the conveying mechanism 21 and conveyed to a designated position for the next step. There is no need to manually place or remove the material tray 24, which reduces labor costs, realizes an automated production line, and can achieve continuous and high-speed production, significantly improving production efficiency.

[0045] See also Figure 9As shown, the present invention also relates to a spliced production line for cement resistors, comprising a first cement resistor dispensing mechanism 100, a resting area 200, a second cement resistor dispensing mechanism 300, and a material storage area 400 connected in sequence. The structures of the first cement resistor dispensing mechanism 100 and the second cement resistor dispensing mechanism 300 are basically the same. A fan or dryer can be set in the resting area 200 to accelerate the curing of the cement resistor material. When the production line places a material tray 24 on the conveying mechanism 21, the conveying mechanism 21 conveys the material tray 24 to the dispensing operation area for dispensing. After the dispensing operation, the conveying mechanism 21 conveys the material tray 24 to the resting area 200 for resting. After the product on the material tray 24 has been resting for a period of time, the resting area 200 conveys the material tray 24 to the second cement resistor dispensing mechanism 300 via the conveyor belt 212 for a second dispensing operation. After the dispensing operation, the conveying mechanism 21 of the second cement resistor conveys the material tray 24 to the material storage area 400 for storage. In the glue dispensing production line of the utility model, there is no need for manual placement or removal of the material tray 24, which reduces labor costs and realizes automated production.

[0046] The above embodiments are merely descriptions of preferred embodiments of the present invention and do not limit the scope of the present invention. Without departing from the design spirit of the present invention, various modifications and improvements made to the technical solutions of the present invention by ordinary engineering technicians in this field should fall within the scope of protection determined by the claims of the present invention.

Claims

1. A cement resistor dispensing mechanism, characterized by: It includes a dispensing workbench, which has a dispensing operation area. The dispensing workbench is provided with a conveying mechanism and a clamping and positioning mechanism. The clamping and positioning mechanism includes a plurality of clamping parts, a plurality of push rod assemblies and a limit part. The clamping and positioning mechanism is located on both sides of the conveying mechanism. When the conveying mechanism transports the product to the dispensing operation area for operation or ends the operation, the clamping and positioning mechanism will fix or release the position of the product.

2. A cement resistor dispensing mechanism according to claim 1, characterized in that: The dispensing workbench includes a work surface, and the conveying mechanism is installed on the work surface. The material tray for placing the product moves into or out of the dispensing operation area as the conveying mechanism operates.

3. The cement resistor dispensing mechanism according to claim 2, characterized in that: The conveying mechanism includes a conveying motor, a conveyor belt, a conveying roller and a tensioning roller. Tensioning rollers are provided on both sides of the work surface. The conveying motor and the conveying roller are arranged below the work surface. The output end of the conveying motor is connected to the conveying roller through a crawler transmission. The conveyor belt surrounds the work surface, the tensioning roller and the conveying roller to form a closed loop.

4. The cement resistor dispensing mechanism according to claim 2, characterized in that: The transport route of the conveying mechanism is set along the Y-axis of the dispensing workbench, and the clamping and positioning mechanism is set on both sides of the transport direction of the conveying mechanism. When the material tray enters the dispensing operation area, the clamping and positioning mechanism clamps on both sides of the material tray.

5. The cement resistor dispensing mechanism according to claim 4, characterized in that: A first clamping mounting block and a second clamping mounting block are provided on both sides of the transport route of the conveying mechanism. The clamping member is slidably mounted on the first clamping mounting block, and the push rod assembly is slidably mounted on the second clamping mounting block. The limiting member can be slidably mounted on the first clamping mounting block and / or the second clamping mounting block, and the limiting member is arranged at a position where the first clamping mounting block and / or the second clamping mounting block are close to the outlet of the transport route of the conveying mechanism.

6. The cement resistor dispensing mechanism according to claim 5, characterized in that: The first clamping mounting block is provided with a first sliding groove for installing a clamping member, and the clamping member includes a clamping slider and a clamping portion. The clamping slider can be slidably installed in the first sliding groove, and the clamping portion is installed on the clamping slider. A protective wheel is provided at the end of the clamping portion.

7. The cement resistor dispensing mechanism according to claim 5, characterized in that: The second clamping mounting block is provided with a second sliding groove for installing the push rod assembly. The push rod assembly includes a push rod slider, a push rod base, a push rod and a push block. The push rod slider can be slidably installed in the second sliding groove, the push rod base is fixedly installed on the push rod slider, and the push rod can be telescopically installed on the push rod base. One end of the push rod is connected to the output end of the push rod motor, and the other end of the push rod is provided with a push block.

8. The cement resistor dispensing mechanism according to claim 5, characterized in that: The limiting component includes a limiting slider, a limiting base, a limiting push rod and a limiting plate. The limiting slider can be slidably installed on the first clamping mounting block and / or the second clamping mounting block. The limiting base is installed on the limiting slider. The limiting push rod can be telescopically installed on the limiting base. One end of the limiting push rod is connected to the output end of the limiting motor, and the other end of the limiting push rod is connected to the limiting plate.

9. The cement resistor dispensing mechanism according to claim 1, characterized in that: It also includes an X-axis moving mechanism, a Y-axis moving mechanism, a Z-axis lifting mechanism and a glue dispensing unit. The X-axis moving mechanism is arranged on one side of the glue dispensing workbench. The X-axis moving mechanism is provided with a gantry. The Y-axis moving mechanism is installed on the gantry. A mobile bracket is installed on the Y-axis moving mechanism. The Z-axis lifting mechanism is arranged on the mobile bracket. The glue dispensing unit is installed on the Z-axis lifting mechanism. The lifting movement of the electric glue unit is controlled by the Z-axis lifting mechanism to move the electric glue unit above the glue dispensing operation area of the glue dispensing workbench.

10. A splicing production line for cement resistors, characterized by: The invention comprises a cement resistor dispensing mechanism according to any one of claims 1 to 9, wherein the cement resistor dispensing mechanism is spliced with a production line unit to form an assembly line for cement resistors.

Citation Information

Patent Citations

  • Semi -automatic filling device for cement resistor

    CN207651276U