Integrated assembly equipment for electronic information engineering and use method of integrated assembly equipment
The integration of a motor-driven conveyor belt, processing clamps, and storage compartments in electronic information engineering assembly devices addresses inefficiencies in processing and storage, enhancing efficiency and stability while simplifying operations.
Patent Information
- Application Number
- CN202510346309.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2025-07-15
AI Technical Summary
The existing electronic information engineering integrated assembly equipment has problems such as low processing and transmission efficiency, difficulty in positioning and processing, and inconvenient collection and storage.
An integrated assembly equipment including conveying and conveying components, machining clamping components and placing storage components is designed, using motor-driven rotating shafts and belts for rapid transmission, precise clamping processing using telescopic rods and clamping plates, and rapid collection and storage through chutes and placing boxes.
It improves processing and transmission efficiency, enhances the stability and convenience of positioning and processing, simplifies the collection and storage process of equipment, and reduces the workload of personnel.
Smart Images

Figure CN120308525A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of electronic information engineering equipment, and specifically relates to an integrated assembly device for electronic information engineering and a using method thereof. Background Art
[0002] The major of electronic information engineering can be engaged in the design, development, system integration, production, marketing, service of digital electronic systems, embedded systems, Internet of Things products, etc. in related fields and industries such as industrial manufacturing, communication engineering, intelligent control equipment, etc., as well as the specific construction, operation and maintenance of engineering projects. The major of electronic information engineering trains senior engineering and management talents who have the basic knowledge and application ability of electronic technology and information systems, can be engaged in the research, design, development, application and management of various electronic devices, information systems, and radio and television systems, are familiar with new disciplines and new technologies in the field of electronic information engineering, have the basic ability to research, design, develop, manage, and apply integrated electronic devices and information systems, and have knowledge and ability in preliminary technical and economic analysis, enterprise management and e-commerce. The industry of electronic information product processing is gradually emerging.
[0003] Publication No. CN108199282A discloses a floating shock-absorbing electrical cabinet for electronic information engineering, including an outer cabinet body. Two groups of cabinet doors are symmetrically installed on both sides of the front wall of the outer cabinet body through hinges. A display and a regulation component are embedded in the front wall of the right cabinet door. The display is located above the regulation component. The regulation component includes an integrated board, a control button module and a speaker. The control button module and the speaker are installed on the integrated board. The integrated board is embedded in the cabinet door. Two groups of slide rails are symmetrically installed on the upper sides of the left and right side walls of the inner cavity of the outer cabinet body. Through the combination of structures, this solution can achieve the function of shock absorption and buffering for the inner cabinet body, play a protective role for the inner cabinet body. The inner cabinet body can achieve a ventilation effect through an unclosed setting. Through the assembly method, the installation is relatively convenient.
[0004] However, there are some problems in the use of existing integrated assembly devices for electronic information engineering. 1. When the existing integrated assembly devices for electronic information engineering on the market are in use, the overall processing and transmission efficiency is relatively low, reducing the overall processing convenience, making it inconvenient for processing, and increasing the workload of personnel. 2. When the existing integrated assembly devices for electronic information engineering on the market are in processing, there is a lack of a measure for rapid positioning processing, thus making it inconvenient for precise processing and reducing the overall stability. 3. After the existing integrated assembly devices for electronic information engineering on the market are processed, the placement property is poor, lacking a device for rapid collection and storage, and it is relatively difficult and inconvenient to collect. Summary of the Invention
[0005] The object of the present invention is to provide an integrated assembly device for electronic information engineering and its usage method, so as to solve the problems raised in the above-mentioned background technology.
[0006] To solve the above technical problems, the present invention provides the following technical solutions: It includes a cabinet body, a conveyor and transportation component arranged on the surface of the cabinet body, a processing and clamping component arranged at one end of the cabinet body, and a placement and storage component arranged on the surface of the cabinet body;
[0007] The conveyor and transportation component includes a motor cooperatively connected to one side of the top of the cabinet body. The output end of the motor is connected to the input end of a rotating shaft. One end of the rotating shaft is cooperatively connected to a cross column. One end of the cross column is fixedly connected to a rotating roller. The surface of the rotating roller is cooperatively connected to a belt. Through the belt, the integrated device for electronic information engineering to be processed is transported;
[0008] The processing and clamping component includes a housing detachably connected to one side of the surface of the cabinet body. The surface of the housing is cooperatively connected to a welding device. The welding device is cooperatively connected inside the housing. A slot is opened on the surface of the housing. The welding device is cooperatively connected inside the slot. Embedding grooves are opened on both sides inside the slot. Through the welding device, the integrated components are processed;
[0009] The placement and storage component includes a box body arranged on one side of the bottom of the housing. A placement box is arranged inside the box body. An inclined slot is opened inside the placement box. Through the inclined slot, the integrated device of the information engineering after processing is transmitted.
[0010] Preferably, the conveyor and transportation component further includes a connection head fixedly connected to one end of the rotating shaft. A connection port is opened at one end of the cross column.
[0011] Preferably, the connection head is cooperatively connected inside the connection port. Threads are opened on both the inside of the connection port and the surface of the connection head.
[0012] Preferably, the processing and clamping component further includes a first telescopic rod detachably connected to one side inside the embedding groove. One end of the first telescopic rod is cooperatively connected to an embedding block. The embedding block is movably connected inside the embedding groove.
[0013] Preferably, one end of the surface of the embedding block is detachably connected to a second telescopic rod. One end of the second telescopic rod is detachably connected to a clamping plate.
[0014] Preferably, there are multiple embedding grooves and they are distributed oppositely. The integrated processing parts are movably connected to the surface of the belt. The integrated processing parts are movably connected to the surface of the clamping plate
[0015] Preferably, the placement and storage component further includes an inner cavity opened inside the box body. The placement box is detachably connected inside the inner cavity.
[0016] Preferably, one side of the surface of the box body is fitted with a cabinet door. There are multiple cabinet doors, and the inclined grooves are through-shaped.
[0017] Preferably, an opening is formed at the bottom of the surface of the housing. A conduit is fitted at the bottom of the opening. One end of the conduit is detachably connected to the top of the box body, and the inside of the conduit communicates with the inside of the inclined groove.
[0018] A usage method of a bridge with an intelligent safety detection function includes the following steps:
[0019] Step 1: When carrying out transmission and transportation, motors are installed on both sides of the surface of the cabinet body. The user connects the power current output end of the motor through an external power supply. The motor works to drive the input end of the rotating shaft connected to its output end to rotate. The rotating shaft is connected to the connection port formed on the surface of the cross-column through a connector fitted at one end for disassembly and installation. When the rotating shaft rotates, the rotating shaft drives the cross-column to rotate.
[0020] Step 2: When the cross-column rotates, it drives the rotating shaft roller fitted on the surface of the cross-column to rotate. The rotation of the rotating roller drives the belt fitted on the surface of the rotating roller to rotate. The user can place the integrated processed parts on the surface of the belt, and the belt rotates to transport the integrated processed parts into the housing.
[0021] Step 3: The integrated processed parts enter the housing through the opening formed on the surface of the housing. Embedded grooves are formed on both sides inside the opening. A first telescopic rod is installed at the bottom inside the embedded groove. The user connects the power current output end of the first telescopic rod through an external power supply. The first telescopic rod works to drive the embedded block fitted at one end to move in the embedded groove, and a second telescopic rod is installed on the surface of the embedded block.
[0022] Step 4: When the integrated processed parts are located inside the opening, the user connects the power current output end of the second telescopic rod through an external power supply. The second telescopic rod works to drive the clamping plate fitted at one end to move. The integrated processed parts are clamped by the two clamping plates. After clamping, the integrated processed parts are processed by the welding device fitted on the surface of the housing, and the processed integrated processed parts are discharged through the opening formed at one end of the bottom of the housing.
[0023] Step 5: The processed integrated processed parts enter the inside of the conduit through the opening, and then enter the inside of the box body through the conduit. After entering the inside of the box body, they enter the detachable placement box inside the box body. The placement box guides the processed integrated processed parts through the inclined groove formed inside. The placement box is installed through the inner cavity formed inside the box body, and the inside of the box body is opened and closed through the cabinet door.
[0024] Compared with the prior art, the beneficial effects of the present invention are:
[0025] 1. When conducting transportation, motors are installed on both sides of the cabinet surface. The user connects the power current output terminal of the motor through an external power supply. The motor operates to drive the input end of the rotating shaft connected to its output end to rotate. The rotating shaft is connected to the connection port opened on the surface of the cross-column through a connector at one end, which facilitates disassembly and installation. It can be quickly assembled and used inside the cabinet, increasing usability. When the rotating shaft rotates, it drives the cross-column to rotate. When the cross-column rotates, it drives the rotating shaft roller connected to the surface of the cross-column to rotate. The rotation of the rotating roller drives the belt connected to the surface of the rotating roller to rotate. The user can place the integrated processing part on the surface of the belt, and the belt rotates to transport the integrated processing part into the shell, making the transportation relatively fast. Therefore, when the integrated assembly equipment of electronic information engineering is in use, its overall processing and transportation efficiency is relatively high, improving the overall processing convenience, facilitating processing, and reducing the workload of personnel.
[0026] 2. The integrated processing part enters the shell through the slot opened on the surface of the shell. Embedding grooves are opened on both sides inside the slot. A first telescopic rod is installed at the bottom of the inner side of the embedding groove. The user connects the power current output terminal of the first telescopic rod through an external power supply. The first telescopic rod operates to drive the embedding block connected to one end to move in the embedding groove. A second telescopic rod is installed on the surface of the embedding block. When the first telescopic rod moves the embedding block, it also moves the second telescopic rod on the surface of the embedding block at the same time to quickly position it. When the integrated processing part is located inside the slot, the user connects the power current output terminal of the second telescopic rod through an external power supply. The second telescopic rod operates to drive the clamping plate connected to one end to move. The integrated processing part is clamped by two clamping plates. The clamping plates increase the overall clamping stability, facilitating the clamping work. After clamping, the integrated processing part is processed by the welding device connected to the surface of the shell. The processed integrated processing part is discharged through the opening opened at one end of the bottom of the shell. Therefore, when the integrated assembly equipment of electronic information engineering is in processing, it has a measure for quickly positioning and processing, facilitating precise processing and improving the overall stability.
[0027] 3. The processed integrated workpiece enters the interior of the conduit through the opening, then enters the interior of the box through the conduit, and after entering the interior of the box, it enters the detachable placement box inside the box. The placement box guides the processed integrated workpiece through the inclined slot opened inside it, installs the placement box through the inner cavity opened inside the box, opens and closes the interior of the box through the cabinet door. The inclined slot facilitates the guiding and storage of the processed integrated workpiece. The cabinet door communicates with the interior of the box, facilitating the taking out of the placement box. Then, the integrated assembly equipment for electronic information engineering has good placement performance after processing, has a device for rapid collection and storage, and the collection is relatively simple and convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 FIG. is a schematic diagram of the overall structure of an integrated assembly device and its usage method for electronic information engineering according to the present invention;
[0029] Figure 2 FIG. is a schematic diagram of the belt structure of an integrated assembly device and its usage method for electronic information engineering according to the present invention;
[0030] Figure 3 FIG. is a schematic diagram of the internal structure of the slotted opening of an integrated assembly device and its usage method for electronic information engineering according to the present invention;
[0031] Figure 4 FIG. is a schematic diagram of the clamping plate structure of an integrated assembly device and its usage method for electronic information engineering according to the present invention;
[0032] Figure 5 FIG. is a schematic diagram of the bottom structure of the opening of an integrated assembly device and its usage method for electronic information engineering according to the present invention;
[0033] Figure 6 FIG. is a schematic diagram of the internal structure of the box of an integrated assembly device and its usage method for electronic information engineering according to the present invention.
[0034] In the figure: 1, cabinet; 2, conveyor and conveying assembly; 201, motor; 202, rotating shaft; 203, connecting head; 204, connecting port; 205, cross column; 206, rotating roller; 207, belt; 3, integrated workpiece; 4, processing and clamping assembly; 401, housing; 402, welder; 403, slotted opening; 404, embedded groove; 405, first telescopic rod; 406, embedded block; 407, second telescopic rod; 408, clamping plate; 5, opening; 6, conduit; 7, placement and storage assembly; 701, box; 702, inner cavity; 703, placement box; 704, inclined slot; 705, cabinet door. DETAILED DESCRIPTION OF THE INVENTION
[0035] To make the technical means, creative features, achieved purposes and effects of the present invention easy to understand, the present invention will be further described below in conjunction with specific embodiments.
[0036] Please refer to Figures 1-6 As shown, a schematic diagram of the overall structure of an integrated assembly device for electronic information engineering and its usage method includes a cabinet 1, a conveyor assembly 2 disposed on the surface of the cabinet 1, a processing and clamping assembly 4 disposed at one end of the cabinet 1, and a placement and storage assembly 7 disposed on the surface of the cabinet 1. The conveyor assembly 2 includes a motor 201 connected to one side of the top of the cabinet 1 in a mating manner. The output end of the motor 201 is connected to the input end of a rotating shaft 202. One end of the rotating shaft 202 is connected to a cross column 205 in a mating manner. One end of the cross column 205 is fixedly connected to a rotating roller 206. The surface of the rotating roller 206 is connected to a belt 207 in a mating manner. The integrated device for electronic information engineering to be processed is conveyed through the belt 207. The processing and clamping assembly 4 includes a housing 401 detachably connected to one side of the surface of the cabinet 1. A soldering device 402 is connected to the surface of the housing 401 in a mating manner. The soldering device 402 is connected to the inside of the housing 401 in a mating manner. A slot 403 is formed on the surface of the housing 401. The soldering device 402 is connected to the inside of the slot 403 in a mating manner. Embedding grooves 404 are formed on both sides inside the slot 403. The integrated components are processed through the soldering device 402. The placement and storage assembly 7 includes a box body 701 disposed on one side of the bottom of the housing 401. A placement box 703 is disposed inside the box body 701. An inclined slot 704 is formed inside the placement box 703. The integrated device of the information engineering after processing is transmitted through the inclined slot 704.
[0037] Specifically, the conveyor assembly 2 further includes a connection head 203 fixedly connected to one end of the rotating shaft 202. A connection port 204 is formed at one end of the cross column 205.
[0038] Specifically, the connection head 203 is connected to the inside of the connection port 204 in a mating manner. Threads are formed on both the inside of the connection port 204 and the surface of the connection head 203.
[0039] Specifically, the processing and clamping assembly 4 further includes a first telescopic rod 405 detachably connected to one side inside the embedding groove 404. One end of the first telescopic rod 405 is connected to an embedding block 406 in a mating manner. The embedding block 406 is movably connected to the inside of the embedding groove 404.
[0040] Specifically, one end of the surface of the embedding block 406 is detachably connected to a second telescopic rod 407. One end of the second telescopic rod 407 is detachably connected to a clamping plate 408.
[0041] Specifically, there are multiple such grooves 404 which are distributed oppositely. An integrated processing part 3 is movably connected to the surface of the belt 207, and an integrated processing part 3 is movably connected to the surface of the clamping plate 408.
[0042] Specifically, the placement and storage assembly 7 further includes an inner cavity 702 opened inside the box body 701, and a placement box 703 is detachably connected inside the inner cavity 702.
[0043] Specifically, one side of the surface of the box body 701 is fitted with a cabinet door 705. There are multiple cabinet doors 705, and the inclined groove 704 is through-shaped.
[0044] A usage method of an integrated assembly device for electronic information engineering according to any one of claims 1 - 6 includes the following steps:
[0045] Step 1: When performing transmission and transportation, motors 201 are installed on both sides of the surface of the cabinet body 1. The user connects the power current output end of the motor 201 through an external power source. The motor 201 works to drive the input end of the rotating shaft 202 connected to its output end to rotate. The rotating shaft 202 is connected to the connection port 204 opened on the surface of the cross column 205 through a connection head 203 at one end for disassembly and installation. When the rotating shaft 202 rotates, the rotating shaft 202 drives the cross column 205 to rotate.
[0046] Step 2: When the cross column 205 rotates, it can drive the rotating rollers 202 on the surface of the cross column 205 to rotate. The rotation of the rotating roller 206 drives the belt 207 connected to the surface of the rotating roller 206 to rotate. The user can place the integrated processing part 3 on the surface of the belt 207, and the belt 207 rotates to transport the integrated processing part 3 into the housing 401.
[0047] Step 3: The integrated processing part 3 enters the housing 401 through the slot 403 opened on the surface of the housing 401. Embedded grooves 404 are opened on both sides inside the slot 403. A first telescopic rod 405 is installed at the inner bottom of the embedded groove 404. The user connects the power current output end of the first telescopic rod 405 through an external power source. The first telescopic rod 405 works to drive the embedded block 406 connected to one end to move in the embedded groove 404, and a second telescopic rod 407 is installed on the surface of the embedded block 406.
[0048] Step 4: When the integrated workpiece 3 is located inside the slot 403, the power current output terminal of the second telescopic rod 407 is connected to an external power supply. The second telescopic rod 407 operates to drive the clamping plate 408 connected to one end thereof to move, and the integrated workpiece 3 is clamped by the two clamping plates 408. After clamping, the integrated workpiece 3 is processed by the welder 402 connected to the surface of the housing 401. The processed integrated workpiece 3 is discharged through the opening 5 provided at one end of the bottom of the housing 401;
[0049] Step 5: The processed integrated workpiece 3 enters the conduit 6 through the opening 5, and then enters the interior of the box body 701 through the conduit 6. After entering the interior of the box body 701, it enters the detachable placement box 703 inside the box body 701. The placement box 703 guides the processed integrated workpiece 3 through the inclined slot 704 provided inside. The placement box 703 is installed through the inner cavity 702 provided inside the box body 701, and the interior of the box body 701 is opened and closed through the cabinet door 705.
[0050] Working principle: When conducting transportation, motors 201 are installed on both sides of the surface of the cabinet body 1. The user connects the power current output end of the motor 201 through an external power supply. The motor 201 operates to drive the input end of the rotating shaft 202 connected to its output end to rotate. The rotating shaft 202 is connected to the connection port 204 opened on the surface of the cross-column 205 through a connector 203 at one end, which facilitates disassembly and installation. It can be quickly assembled and used inside the cabinet body 1, increasing usability. When the rotating shaft 202 rotates, the rotating shaft 202 drives the cross-column 205 to rotate. When the cross-column 205 rotates, it can drive the rotating shaft 202 roller connected to the surface of the cross-column 205 to rotate. The rotation of the rotating roller 206 drives the belt 207 connected to the surface of the rotating roller 206 to rotate. The user can place the integrated processing part 3 on the surface of the belt 207, and the belt 207 rotates to transport the integrated processing part 3 into the interior of the housing 401, making the transportation relatively fast. Then, when the integrated assembly equipment for electronic information engineering is in use, its overall processing, transmission, and conveying efficiency is relatively high, improving the overall processing convenience, making it easy to carry out processing, reducing the workload of personnel. The integrated processing part 3 enters the interior of the housing 401 through the slot 403 opened on the surface of the housing 401. Both sides of the slot 403 are provided with embedded slots 404. A first telescopic rod 405 is installed at the inner bottom of the embedded slot 404. The user connects the power current output end of the first telescopic rod 405 through an external power supply. The first telescopic rod 405 operates to drive the embedded block 406 connected to one end to move in the embedded slot 404. A second telescopic rod 407 is installed on the surface of the embedded block 406. When the first telescopic rod 405 moves the embedded block 406, it also moves the second telescopic rod 407 on the surface of the embedded block 406 at the same time, enabling quick positioning. When the integrated processing part 3 is located inside the slot 403, the user connects the power current output end of the second telescopic rod 407 through an external power supply. The second telescopic rod 407 operates to drive the clamping plate 408 connected to one end to move. The integrated processing part 3 is clamped by two clamping plates 408. The clamping plates 408 increase the overall clamping stability, making it easy to carry out the clamping work. After clamping, the integrated processing part 3 is processed by the welding device 402 connected to the surface of the housing 401. The processed integrated processing part 3 is discharged through the opening 5 opened at one end of the bottom of the housing 401. Then, the integrated assembly equipment for electronic information engineering has a measure for quick positioning and processing during processing, facilitating precise processing, improving the overall stability. The processed integrated processing part 3 enters the interior of the conduit 6 through the opening 5 and then enters the interior of the box body 701 through the conduit 6. After entering the interior of the box body 701, it enters the detachable placement box 703 inside the box body 701. The placement box 703 guides the processed integrated processing part 3 through the inclined slot 704 opened inside.The placement box 703 is installed through the inner cavity 702 opened inside the box body 701. The inside of the box body 701 is opened and closed through the cabinet door 705. The inclined chute 704 facilitates the guiding and storage of the processed integrated workpiece 3. The cabinet door 705 communicates with the inside of the box body 701, which is convenient for taking out the placement box 703. Then, the integrated assembly equipment for electronic information engineering has a better placement performance after processing, and has a device for quickly collecting and storing, and the collection is relatively simple and convenient.
[0051] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principle of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.
Claims
1. An integrated assembly device for electronic information engineering, characterized in that: It includes a cabinet body (1), a conveying and transporting component (2) arranged on the surface of the cabinet body (1), a processing and clamping component (4) arranged at one end of the cabinet body (1), and a placing and storing component (7) arranged on the surface of the cabinet body (1); The conveying and transporting component (2) includes a motor (201) connected in cooperation on one side of the top of the cabinet body (1). The output end of the motor (201) is connected to the input end of a rotating shaft (202). One end of the rotating shaft (202) is connected in cooperation with a cross column (205). One end of the cross column (205) is fixedly connected to a rotating roller (206). The surface of the rotating roller (206) is connected in cooperation with a belt (207). The integrated equipment of electronic information engineering to be processed is conveyed through the belt (207); The processing and clamping component (4) includes a housing (401) detachably connected to one side of the surface of the cabinet body (1). The surface of the housing (401) is connected in cooperation with a welding machine (402). The welding machine (402) is connected in cooperation inside the housing (401). A slot (403) is opened on the surface of the housing (401). The welding machine (402) is connected in cooperation inside the slot (403). Embedding grooves (404) are opened on both sides inside the slot (403). The integrated components are processed through the welding machine (402); The placing and storing component (7) includes a box body (701) arranged on one side of the bottom of the housing (401). A placing box (703) is arranged inside the box body (701). An inclined slot (704) is opened inside the placing box (703). The integrated equipment of information engineering after processing is transmitted through the inclined slot (704).
2. An integrated assembly device for electronic information engineering according to claim 1, characterized in that: The conveying and transporting component (2) further includes a connection head (203) fixedly connected to one end of the rotating shaft (202). A connection port (204) is opened at one end of the cross column (205).
3. An integrated assembly device for electronic information engineering according to claim 2, characterized in that: The connection head (203) is connected in cooperation inside the connection port (204). Threads are opened on both the inside of the connection port (204) and the surface of the connection head (203).
4. An integrated assembly device for electronic information engineering according to claim 1, characterized in that: The processing and clamping component (4) further includes a first telescopic rod (405) detachably connected to one side inside the embedding groove (404). One end of the first telescopic rod (405) is connected in cooperation with an embedding block (406). The embedding block (406) is movably connected inside the embedding groove (404).
5. An integrated assembly device for electronic information engineering according to claim 4, characterized in that: One end of the surface of the embedding block (406) is detachably connected to a second telescopic rod (407). One end of the second telescopic rod (407) is detachably connected to a clamping plate (408).
6. An integrated assembly device for electronic information engineering according to claim 5, characterized in that: There are multiple embedding grooves (404) and they are distributed oppositely. An integrated processing part (3) is movably connected to the surface of the belt (207). An integrated processing part (3) is movably connected to the surface of the clamping plate (408).
7. An integrated assembly device for electronic information engineering according to claim 1, characterized in that: The placing and storing component (7) further includes an inner cavity (702) opened inside the box body (701). The placing box (703) is detachably connected inside the inner cavity (702).
8. An integrated assembly device for electronic information engineering according to claim 7, characterized in that: One side of the surface of the box body (701) is connected in cooperation with a cabinet door (705). There are multiple cabinet doors (705). The inclined slot (704) is through-shaped.
9. An integrated assembly device for electronic information engineering according to claim 1, characterized in that: An opening (5) is formed at the bottom of the surface of the housing (401). A conduit (6) is connected to the bottom of the opening (5) in a mating manner. One end of the conduit (6) is detachably connected to the top of the box body (701), and the interior of the conduit (6) communicates with the interior of the inclined groove (704).
10. A method for using an integrated assembly device for electronic information engineering according to any one of claims 1-9, characterized in that: It includes the following steps: Step 1: During transportation, motors (201) are installed on both sides of the surface of the cabinet (1). The user connects the power current output end of the motor (201) through an external power source. The motor (201) operates to drive the input end of the rotating shaft (202) connected to its output end to rotate. The rotating shaft (202) is connected to the connection port (204) formed on the surface of the cross-column (205) through a connection head (203) connected thereto in a mating manner for disassembly and installation. When the rotating shaft (202) rotates, the rotating shaft (202) drives the cross-column (205) to rotate; Step 2: When the cross-column (205) rotates, it drives the rotating roller (206) connected to the surface of the cross-column (205) to rotate. The rotation of the rotating roller (206) drives the belt (207) connected to the surface of the rotating roller (206) to rotate. The user can place the integrated processed part (3) on the surface of the belt (207), and the belt (207) rotates to transport the integrated processed part (3) into the housing (401); Step 3: The integrated processed part (3) enters the housing (401) through the slot (403) formed on the surface of the housing (401). Embedding grooves (404) are formed on both sides of the slot (403). A first telescopic rod (405) is installed at the inner bottom of the embedding groove (404). The user connects the power current output end of the first telescopic rod (405) through an external power source. The first telescopic rod (405) operates to drive the embedding block (406) connected to one end thereof to move in the embedding groove (404), and a second telescopic rod (407) is installed on the surface of the embedding block (406); Step 4: When the integrated processed part (3) is located inside the slot (403), the user connects the power current output end of the second telescopic rod (407) through an external power source. The second telescopic rod (407) operates to drive the clamping plate (408) connected to one end thereof to move. The integrated processed part (3) is clamped by the two clamping plates (408). After clamping, the integrated processed part (3) is processed by the welding device (402) connected to the surface of the housing (401). The processed integrated processed part (3) is discharged through the opening (5) formed at one end of the bottom of the housing (401); Step Five: The processed integrated workpiece (3) enters the interior of the conduit (6) through the opening (5), and then enters the interior of the box body (701) through the conduit (6). After entering the interior of the box body (701), it enters the detachable placement box (703) inside the box body (701). The placement box (703) guides the processed integrated workpiece (3) through the inclined slot (704) opened inside. The placement box (703) is installed through the inner cavity (702) opened inside the box body (701), and the interior of the box body (701) is opened and closed through the cabinet door (705).
Citation Information
Patent Citations
Floating shock-absorbing electrical cabinet for electronic information engineering
CN108199282A