Case structure of laser equipment
By separating the laser components and electrical components in the laser equipment and dissipating heat independently, and combining dustproof and ventilation components to handle debris, the problems of poor heat dissipation and debris handling in traditional laser equipment are solved, thereby improving the stability of the equipment and the processing quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-12
- Publication Date
- 2026-03-24
AI Technical Summary
The traditional laser equipment chassis design suffers from unreasonable layout of laser and electrical components, resulting in poor heat dissipation, severe mutual interference, and incomplete debris handling, which affects equipment stability and processing quality.
The laser components are housed in the laser housing, while the electrical components are housed in the electrical control housing. An independent heat dissipation design is adopted, and dust is isolated by dust-proof and exhaust components. The exhaust components are used for dust removal to reduce the accumulation of debris in the processing cavity.
It improves the stability and reliability of the equipment, enhances the cleanliness of the processing chamber, avoids contamination of laser and electrical components by debris, and ensures the safety and high-quality processing of the equipment.
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Figure CN224026708U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to mechanical equipment technical field especially is a laser equipment's case structure. BACKGROUND
[0002] With the continuous development of modern manufacturing technology, laser equipment has been widely used in industrial production due to its high precision and high efficiency processing characteristics. However, the structure design and function layout of laser equipment have important influence on its performance and processing quality. The traditional laser equipment often has some problems in the case structure design, such as unreasonable layout of laser components and electrical components, which leads to poor heat dissipation effect, serious mutual interference, affects the stability and reliability of the equipment; in addition, in the laser processing process, the debris generated by the workpiece to be processed is easy to splash everywhere, not only affects the cleanliness of the processing cavity, reduces the product quality, but also may pollute the laser components and electrical components, and further affects their normal work. The traditional laser equipment often adopts simple collection method in the debris treatment, the effect is not good, and lacks effective exhaust dust removal measures, which leads to the difficulty in completely removing the debris in the processing cavity.
[0003] In view of the above problems, it is necessary to optimize the case structure of laser equipment to improve the stability and reliability of the equipment, improve the debris treatment effect, improve the cleanliness of the processing cavity, and enhance the function layout flexibility of the case. Therefore, the application provides a case structure of laser equipment, which aims at solving the problems in the case structure design of traditional laser equipment. SUMMARY
[0004] The utility model provides a case structure of laser equipment to the prior art problem, separates the processing cavity and electrical components, laser components respectively, and independently dissipates heat between each other, the exhaust assembly carries out the exhaust dust removal to the processing cavity, in order to reduce the debris in the processing cavity, improves the processing cleanliness, is favorable to improve the product quality, avoids that the laser components and electrical components are polluted by the debris, guarantees the safety and reliability of the laser components and electrical components work.
[0005] In order to solve the above technical problem, the utility model adopts the following technical scheme:
[0006] The utility model provides a kind of cabinet structure of laser equipment, it includes cabinet shell, the rear end of the cabinet shell is provided with laser box, the two sides of the cabinet shell are provided with electrical control box respectively, the front end of the cabinet shell is provided with front door body, the upper end of the cabinet shell is provided with transparent door plate, the transparent door plate can be reversibly arranged in the upper end of the cabinet shell, laser box, front door body, transparent door plate and two electrical control box form processing cavity between, processing platform is additionally arranged in the cabinet shell, and the processing platform is located in the processing cavity;The front door body can be reversibly arranged in the front end of the cabinet shell, the bottom in the processing cavity is slidably provided with chip carrier, the processing platform is provided with multiple hollow grooves, and the chip carrier is located below the processing platform;Dustproof assembly is arranged between the inner wall of the processing cavity and the laser box and the electrical control box;The rear end of the cabinet shell is additionally provided with an exhaust component, and the exhaust component is used for air draft and dust removal inside the processing cavity.
[0007] Among them, the dustproof assembly includes a rear dustproof plate and two side dustproof plates, the two side dustproof plates are respectively arranged on the two sides of the inside of the processing cavity, and the side dustproof plate is used to isolate the processing cavity and the electrical control box, and the rear dustproof plate is used to isolate the processing cavity and the laser box.
[0008] Among them, the rear dustproof plate is provided with multiple exhaust slots, the exhaust component includes an exhaust duct and an exhaust fan, the rear end of the cabinet shell is additionally provided with an exhaust cavity, the exhaust slots are communicated with the exhaust cavity, one end of the exhaust duct is communicated with the exhaust cavity, and the other end of the exhaust duct is connected with the exhaust fan.
[0009] Among them, the laser box includes a laser box main body and a laser box shell, the laser box main body is arranged on the cabinet shell, a laser installer cavity is formed between the laser box shell and the laser box main body, one side of the laser box shell is reversibly connected with the laser box main body through a hinge, and the other side of the laser box shell is detachably connected with the laser box main body.
[0010] Among them, the other side of the laser box shell is provided with a first door lock, and the other side of the laser box shell is detachably connected with the upper end of the laser box main body through the first door lock.
[0011] Among them, the electrical control box includes an electrical box main body and an electrical box door, one side of the electrical box door is reversibly connected with the electrical box main body, the other side of the electrical box door is provided with a second door lock, and the other side of the electrical box door is detachably connected with the electrical box main body through the second door lock.
[0012] The lower end of the front door body is rotationally connected with the case shell, and the upper end of the front door body is detachably connected with the case shell through a third door lock.
[0013] The case shell is further provided with a storage cavity, and a storage opening is formed in the front end of the case shell and communicates with the storage cavity.
[0014] The horizontal partition plate is further arranged in the storage cavity.
[0015] The bottom corners of the case shell are respectively detachably connected with supporting feet, and the bottom corners of the case shell are respectively provided with pulley frames, and the bottom of each pulley frame is rotationally provided with a pulley body.
[0016] The utility model discloses the beneficial effect:
[0017] The utility model discloses a laser equipment's laser material layout is in laser box body, and electrical component layout is in electrical control box body, and under the setting, can separate the processing cavity and electrical component, laser component respectively, and independent heat dissipation between each other, the laser equipment of the utility model is in processing, and the workpiece is placed on the processing platform, and the workpiece generates the scrap from the hollow groove and falls to the scrap platform and is collected when processing, simultaneously, and the air draft component carries out air draft dust removal to the processing cavity, to reduce the scrap in the processing cavity, improve the processing cleanliness, and it is favorable to improve product quality, further, because of the function of dustproof component, the scrap in the processing cavity also can not splash to the laser box body and electrical control box body, avoids the laser component and electrical component being contaminated by the scrap, guarantees the safety and reliability of laser component and electrical component work. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is the structure schematic diagram of the case structure of the laser equipment of the utility model.
[0019] Figure 2 It is another visual angle structure schematic diagram of the case structure of the laser equipment of the utility model.
[0020] Figure 3 It is the structure schematic diagram of the utility model hidden transparent door plate, front door body and electrical cabinet door behind.
[0021] Figure 4 It is the structure schematic diagram of the utility model hidden transparent door plate, laser box shell and electrical cabinet door behind.
[0022] Figure 5 The utility model discloses a hidden transparent door plate, front door body and the structure diagram behind processing platform. In Figures 1 to 5 The reference signs in the drawings include:
[0023] 100, case shell, 200, laser box, 300, electrical control box, 400, front door body, 500, transparent door plate, 600, processing cavity,
[0024] 1, processing platform, 2, scrap platform, 3, hollow groove, 4, rear dust baffle, 5, side dust baffle, 6, exhaust slot, 7, exhaust duct, 8, exhaust cavity, 9, exhaust fan, 10, laser box main body, 11, laser box shell, 12, hinge, 13, first door lock, 14, electrical box main body, 15, electrical box cabinet door, 16, second door lock, 17, third door lock, 18, storage cavity, 19, storage opening, 20, horizontal partition plate, 21, pulley frame, 22, pulley main body, 23, connecting screw, 24, foot main body, 25, connecting screw hole. DETAILED DESCRIPTION
[0025] In order to facilitate the understanding of those skilled in the art, the utility model is further explained below in combination with examples and drawings, and the content mentioned in the implementation manner is not the limitation of the utility model. The utility model is described in detail below in combination with drawings.
[0026] As Figures 1 to 5The casing structure of a laser device shown includes a casing shell 100, the rear end of the casing shell 100 is provided with a laser casing 200, both sides of the casing shell 100 are respectively provided with electrical control casings 300, the front end of the casing shell 100 is provided with a front door body 400, the upper end of the casing shell 100 is provided with a transparent door plate 500, the transparent door plate 500 can be reversibly arranged at the upper end of the casing shell 100, a processing cavity 600 is formed between the laser casing 200, the front door body 400, the transparent door plate 500 and the two electrical control casings 300, a processing platform 1 is further arranged in the casing shell 100, and the processing platform 1 is located in the processing cavity 600; the front door body 400 can be reversibly arranged at the front end of the casing shell 100, a debris platform 2 is slidably arranged at the bottom of the processing cavity 600, the processing platform 1 is provided with a plurality of hollow grooves 3, and the debris platform 2 is located below the processing platform 1; a dust blocking assembly is arranged between the inner wall of the processing cavity 600 and the laser casing 200 and the electrical control casing 300; the rear end of the casing shell 100 is further provided with an air extraction assembly, and the air extraction assembly is used for air extraction and dust removal in the processing cavity 600. Specifically, the laser equipment of the embodiment of the present application arranges the laser equipment in the laser casing 200 and arranges the electrical components in the electrical control casing 300, so that the processing cavity 600, the electrical components and the laser components can be separated and independently heat dissipated from each other; when the laser equipment of the embodiment of the present application is processed, the workpiece to be processed is placed on the processing platform 1, the debris generated during the processing of the workpiece falls from the hollow groove 3 to the debris platform 2 for collection, and at the same time, the air extraction assembly performs air extraction and dust removal in the processing cavity 600, so as to reduce the debris in the processing cavity 600 and improve the processing cleanliness, which is beneficial to improve the product quality; further, due to the action of the dust blocking assembly, the debris in the processing cavity 600 will not splash into the laser casing 200 and the electrical control casing 300, so as to avoid the pollution of the debris to the laser components and the electrical components and ensure the safety and reliability of the working of the laser components and the electrical components.
[0027] In the embodiment of the present application, the dust blocking assembly includes a rear dust blocking plate 4 and two side dust blocking plates 5, the two side dust blocking plates 5 are respectively arranged on the two sides of the inside of the machining cavity 600, the side dust blocking plates 5 are used to isolate the machining cavity 600 and the electrical control box, and the rear dust blocking plate 4 is used to isolate the machining cavity 600 and the laser box 200. Specifically, the rear dust blocking plate 4 and the two side dust blocking plates 5 play a role of isolation, so that the debris in the machining cavity 600 cannot splash into the laser box 200 and the electrical control box 300; further, in order to reduce the influence of the debris in the machining cavity 600 on the machining quality of the workpiece, the rear dust blocking plate 4 is provided with a plurality of air suction grooves 6, the air suction assembly includes an air suction pipe 7 and an air suction fan 9, the rear end of the case shell 100 is further provided with an air suction cavity 8, the air suction grooves 6 are in communication with the air suction cavity 8, one end of the air suction pipe 7 is in communication with the air suction cavity 8, and the other end of the air suction pipe 7 is connected with the air suction fan 9; under the above arrangement, the air suction fan 9 works, so that the debris in the machining cavity 600 can enter the air suction cavity 8 and the air suction pipe 7 through the air suction grooves 6, and the debris in the machining cavity 600 can be conveniently discharged.
[0028] In the embodiment of the present application, the laser box 200 includes a laser box main body 10 and a laser box shell 11, the laser box main body 10 is arranged on the case shell 100, a laser installation cavity is formed between the laser box main body 10 and the laser box shell 11, one side of the laser box shell 11 is flip-connected with the laser box main body 10 through a hinge 12, and the other side of the laser box shell 11 is detachably connected with the laser box main body 10; further, the other side of the laser box shell 11 is provided with a first door lock 13, and the other side of the laser box shell 11 is detachably connected with the upper end of the laser box main body 10 through the first door lock 13. Specifically, under the above arrangement, the laser box shell 11 is used to close the laser box main body 10 to form a laser installation cavity, and a laser component is installed in the laser installation cavity, after installation, the laser box shell 11 is flipped, and then the first door lock 13 is locked to realize the locking of the laser box shell 11 and the laser box main body 10.
[0029] In the embodiment of the present application, the electrical control box 300 comprises an electrical box body 14 and an electrical box cabinet door 15, one side of the electrical box cabinet door 15 is reversely connected with the electrical box body 14, the other side of the electrical box cabinet door 15 is provided with a second door lock 16, and the other side of the electrical box cabinet door 15 is detachably connected with the electrical box body 14 through the second door lock 16. Specifically, under the above setting, an electrical component mounting cavity is formed between the electrical box cabinet door 15 and the electrical box body 14, the electrical components are accommodated in the electrical component mounting cavity, and isolation from the machining cavity 600 and the laser components is realized; the electrical box cabinet door 15 is locked with the electrical box body 14 through the second door lock 16, facilitating the opening and closing of the electrical box cabinet door 15.
[0030] In the embodiment of the present application, the lower end of the front door body 400 is rotationally connected with the case shell 100, and the upper end of the front door body 400 is detachably connected with the case shell 100 through a third door lock 17. Specifically, under the above setting, the front door body 400 is opened, facilitating the removal of the debris carrier 2 for cleaning the debris in the debris carrier 2; when the laser equipment is machining, the front door body 400 is closed and locked through the third door lock 17, playing a protection role to prevent the operator from being injured, and the work is reliable and safe.
[0031] In the embodiment of the present application, the case shell 100 is further provided with a storage cavity 18, the front end of the case shell 100 is further provided with a storage opening 19, and the storage opening is in communication with the storage cavity 18. The storage cavity 18 is further provided with a horizontal partition plate 20. Specifically, under the above setting, the storage cavity 18 can be used to place different tools for the operator to use and store, and the horizontal partition plate 20 plays a role in separating the tools, facilitating the operator to store them in categories.
[0032] In the embodiment of the present application, support pads are detachably connected to the bottom corners of the case shell 100; pulley frames 21 are further arranged at the bottom corners of the case shell 100, and pulley bodies 22 are rotationally arranged at the bottom of each pulley frame 21; each support pad comprises a connecting screw 23 and a pad body 24 arranged at the lower end of the connecting screw 23; connecting screw holes 25 are arranged at the bottom corners of the case shell 100, and the connecting screw holes 25 correspond to the support pads one by one, and the connecting screw holes 25 are screwed with the connecting screws 23. Specifically, under the above setting, the support pads are assembled and disassembled through the cooperation of the connecting screws 23 and the connecting screw holes 25, facilitating replacement and maintenance; in addition, when the embodiment of the present application needs to be moved, the connecting screws 23 are rotated to lift the support pads until they are separated from the ground, and the pulley bodies 22 slide against the ground, facilitating the pushing of the embodiment of the present application, so as to facilitate the transfer and handling of the laser equipment, and the use is flexible and convenient.
[0033] The above is only the preferred embodiment of the present application, and does not limit the present application in any form. Although the present application is disclosed as above with the preferred embodiment, it is not intended to limit the present application. Any person skilled in the art can make some changes or modifications to the above disclosed technical content without departing from the technical solution of the present application, and any equivalent embodiment with equivalent changes is equivalent to the above embodiment. Any simple modification, equivalent change and modification of the above embodiment within the technical solution of the present application are within the scope of the technical solution of the present application.
Claims
1. A chassis structure for a laser device, characterized in that: The system includes a housing, with a laser enclosure at the rear end, electrical control enclosures on both sides, a front door at the front end, and a transparent door panel at the top. The transparent door panel is rotatable and positioned at the top of the housing. A processing cavity is formed between the laser enclosure, the front door, the transparent door panel, and the two electrical control enclosures. A processing platform is also installed inside the housing, located within the processing cavity. The front door is rotatable and positioned at the front end of the housing. A debris carrier with multiple perforated slots is slidably mounted at the bottom of the processing cavity, positioned below it. A dust-blocking assembly is installed between the inner wall of the processing cavity and the laser enclosure and electrical control enclosures. An exhaust assembly is located at the rear end of the housing for venting and dust removal from the processing cavity.
2. The chassis structure of a laser device according to claim 1, characterized in that: The dust-proof assembly includes a rear dust-proof plate and two side dust-proof plates. The two side dust-proof plates are respectively disposed on both sides of the interior of the processing cavity. The side dust-proof plates are used to isolate the processing cavity from the electrical control box, and the rear dust-proof plate is used to isolate the processing cavity from the laser box.
3. The chassis structure of a laser device according to claim 2, characterized in that: The rear dust baffle is provided with multiple exhaust slots, the exhaust assembly includes an exhaust duct and an exhaust fan, and the rear end of the chassis is also provided with an exhaust cavity. The exhaust slots are connected to the exhaust cavity, one end of the exhaust duct is connected to the exhaust cavity, and the other end of the exhaust duct is connected to the exhaust fan.
4. The chassis structure of a laser device according to claim 1, characterized in that: The laser housing includes a laser housing body and a laser housing shell. The laser housing body is mounted on the housing shell. A laser mounting cavity is formed between the laser housing shell and the laser housing body. One side of the laser housing shell is hinged to the laser housing body for flipping connection, and the other side of the laser housing shell is detachably connected to the laser housing body.
5. The chassis structure of a laser device according to claim 4, characterized in that: A first door lock is provided on the other side of the laser box shell, and the other side of the laser box shell is detachably connected to the upper end of the laser box body through the first door lock.
6. The chassis structure of a laser device according to claim 1, characterized in that: The electrical control box includes an electrical box body and an electrical box cabinet door. One side of the electrical box cabinet door is flip-connected to the electrical box body, and the other side of the electrical box cabinet door is provided with a second door lock. The other side of the electrical box cabinet door is detachably connected to the electrical box body through the second door lock.
7. The chassis structure of a laser device according to claim 1, characterized in that: The lower end of the front door is rotatably connected to the chassis housing, and the upper end of the front door is detachably connected to the chassis housing via a third door lock.
8. The chassis structure of a laser device according to claim 1, characterized in that: The chassis shell is also provided with a storage cavity, and the front end of the chassis shell is also provided with a storage opening, which is connected to the storage cavity.
9. The chassis structure of a laser device according to claim 8, characterized in that: The storage cavity is also equipped with a horizontal partition plate.
10. The chassis structure of a laser device according to claim 1, characterized in that: The bottom corners of the chassis housing are detachably connected to support feet; the bottom corners of the chassis housing are also equipped with pulley frames, and each pulley frame has a pulley body rotatably mounted at its bottom; the support feet include connecting screws and pad bodies disposed at the lower end of the connecting screws; the bottom corners of the chassis housing are respectively provided with connecting screw holes, and the connecting screw holes correspond one-to-one with the support feet, and the connecting screw holes are screwed to the connecting screws.