Horizontal integrated continuous laser marking machine with built-in power supply

By incorporating a built-in power supply, a horizontal integrated structure, and a dual heat dissipation system, the problems of large size and low heat dissipation efficiency in laser marking machines have been solved, achieving miniaturization and efficient heat dissipation, thus ensuring the stability of laser marking and the service life of the equipment.

CN223557513UActive Publication Date: 2025-11-18SHENZHEN FRAIS LASER TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423028570.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-11-18
Estimated Expiration
2034-12-09

AI Technical Summary

Technical Problem

Existing laser marking machines are large in size and have low heat dissipation efficiency, which affects their service life.

Method used

It adopts a horizontal integrated structure with built-in power supply, and utilizes two heat dissipation systems and a gap design. The winding disc and laser generator are placed in the gap, and the power supply system is placed in another gap. The connecting wire is connected to the galvanometer through a flange connecting pipe, which reduces electromagnetic interference and enhances heat dissipation.

Benefits of technology

This has enabled the miniaturization and efficient heat dissipation of the laser marking machine, thereby improving the equipment's lifespan and marking effect.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223557513U_ABST
    Figure CN223557513U_ABST
Patent Text Reader

Abstract

The utility model discloses a horizontal integrated continuous laser marking machine with a built-in power supply, which comprises a case, a flange connecting pipe fixedly connected with one end of the case and a galvanometer fixedly connected with the flange connecting pipe, a partition plate is arranged in the case, and a first heat dissipation system and a second heat dissipation system are fixed in the case. And a line pipe passing through the galvanometer is arranged on the side surface of the case. A power supply system is arranged on the top of the second heat dissipation system, heat air emitted by the power supply system is conveniently and rapidly dissipated out of the second heat dissipation system, and a wire pipe penetrating through the galvanometer is arranged on the side face of the machine box. And the electromagnetic influence on the optical fiber line of the laser generator is reduced to the minimum when the connecting line of the power supply system and the connecting line of the laser control panel are electrified, so that the laser marking effect is ensured. Heat emitted by the heating device in the second space enters the first space through the first heat dissipation system and the second heat dissipation system and is dissipated to the outside through the heat dissipation opening, the influence of the heat on the galvanometer is reduced, and the service life of the galvanometer is prolonged.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to laser technology field especially a built-in power supply horizontal integrated continuous laser marking machine. BACKGROUND

[0002] In recent years, based on the laser technology market rapid development and are widely concerned, the demand for laser also greatly increases, and the laser is the important part in the laser equipment, and its design is good or bad directly determines the whole laser equipment performance, the existing laser marking machine model volume is big, one is because the laser marking machine inside the device is more, cannot accommodate all the device in the limited space, another is because the heat dissipation efficiency is not high, and the space is too small more restricts the heat dissipation efficiency, thereby reduces the service life. UTILITY MODEL CONTENTS

[0003] In order to overcome the prior art's insufficient, the utility model provides a built-in power supply horizontal integrated continuous laser marking machine, including the case, with the one end fixed connection of flange connection pipe of case, with the fixed connection of flange connection pipe of galvano mirror, be equipped with the baffle in the case, the fixed opposite and stand of heat dissipation system no.

[0004] Preferably, the case includes a front end face, a rear end face, a circumferential side face connecting the front end face and the rear end face, the circumferential side face includes a bottom side face fixedly connected with the front end face and the rear end face, a left side face fixedly connected with the bottom side face, a top side face fixedly connected with the left side face, a right side face fixedly connected with the top side face and the bottom side face, the front end face includes a lower front end face fixedly connected with the bottom side face, and an upper front end face fixedly connected with the lower front end face, and the flange connection pipe is fixedly connected with the lower front end face and the upper front end face.

[0005] Preferably, the lower front end face includes a base part fixedly connected with the bottom side face, and a connecting part fixedly connected with the base part, the flange connection pipe is fixedly connected with the outside of the base part facing the direction of the galvano mirror, a gap three is arranged between the outside of the connecting part facing the direction of the galvano mirror and the outside of the base part facing the direction of the galvano mirror, the upper front end face is sleeved on the outside of the connecting part, the outside of the upper front end face facing the direction of the galvano mirror is flush with the outside of the base part facing the direction of the galvano mirror, the flange connection pipe is fixedly connected with the outside of the upper front end face facing the direction of the galvano mirror, and the base part is provided with a through hole for the wire tube to pass through.

[0006] Preferably, the flange connecting pipe comprises a connecting pipe, the outer sides of the two ends of the connecting pipe are respectively fixed with flange connecting disc one and flange connecting disc two, the flange connecting disc one is fixedly connected with the cabinet, and the flange connecting disc two is fixedly connected with the galvanometer.

[0007] Preferably, the partition plate forms space one between the front end face and the peripheral side face, forms space two between the rear end face and the peripheral side face, and the heat dissipation system one and the heat dissipation system two are arranged in the space two and close to the partition plate, the laser control board, the fiber winding disc and the laser generator are arranged in the space two, the partition plate is provided with an opening communicating with the heat dissipation system one, and the left side face is provided with a heat dissipation opening at the position of the space one.

[0008] The utility model discloses a built-in power horizontal integrated continuous laser marking machine, the winding disc and laser generator set up in the clearance one, the top of heat dissipation system no. 2 is equipped with the clearance no. 2 between the cabinet, the top of heat dissipation system no. 2 is equipped with power system, the heat that power system sent goes out conveniently and quickly from heat dissipation system no. 2, power system sets up in the clearance no. 2, the side of cabinet is equipped with with the galvanometer through the wire pipe. The connecting line of power system and the connecting line of laser control board pass through the wire pipe and are connected with the galvanometer, the fiber optic line of laser generator passes through the flange connecting pipe and is connected with the galvanometer after winding the winding disc to complete laser marking, and the connecting line of power system and the connecting line of laser control board are away from the fiber optic line of laser generator, ensure that the electromagnetic influence of the connecting line of power system and the connecting line of laser control board to the fiber optic line of laser generator is reduced to the minimum when electrifying, thereby ensuring the effect of laser marking. The setting of space one ensures that the heat of the heating device in space no. 2 is emitted into space one through the heat dissipation of heat dissipation system one and heat dissipation system no. 2, the heat in space one is dissipated to the outside through the heat dissipation opening, the influence of heat on the galvanometer is reduced, and the service life of the embodiment is improved.

[0009] The utility model discloses volume is small, and the heat dissipation efficiency is high, and laser marking is stable. ACCURATE DRAWINGS

[0010] Figure 1 It is a structure schematic diagram of the utility model discloses a built-in power horizontal integrated continuous laser marking machine.

[0011] Figure 2 It is a side structure schematic diagram of the utility model discloses a built-in power horizontal integrated continuous laser marking machine.

[0012] Figure 3 It is a partial structure schematic diagram of the utility model discloses a built-in power horizontal integrated continuous laser marking machine.

[0013] Figure 4Another part structure schematic view of the utility model of a built-in power supply horizontal integrated continuous laser marking machine.

[0014] Figure 5 Another structure schematic view of the utility model of a built-in power supply horizontal integrated continuous laser marking machine. DETAILED DESCRIPTION

[0015] The embodiment of the utility model will be described below in combination with the drawings and related examples, and the embodiment of the utility model is not limited to the following examples, and the utility model relates to the necessary components in the related technical field, which should be regarded as the known technology in the technical field and can be known and mastered by the technical personnel in the technical field.

[0016] In the description of the utility model, it should be explained that the position or location relationship indicated by the terms "upper", "lower", "inner", "outer" and the like is based on the position or location relationship shown in the drawings or the position or location relationship usually placed when the utility model product is used, which is only for the convenience of describing the utility model and simplifying the description, and does not indicate or imply that the indicated device or element must have a particular orientation, structure and operation, so it cannot be understood as a limitation on the utility model. In addition, the terms "one", "two" and the like are only used for description, and cannot be understood as indicating or implying relative importance. It should be explained in the description of the utility model that, unless otherwise explicitly specified and limited, the terms "set", "connected" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected, it can be mechanically connected, or it can be electrically connected, it can be directly connected, or indirectly connected through an intermediate medium, or it can be the communication inside two elements. For ordinary skilled personnel in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0017] Referring to Figures 1 to 5 The utility model is realized as follows: a built-in power supply horizontal integrated continuous laser marking machine, including the case 1, with the flange connection pipe 2 of one end fixed connection of case 1, with the galvanometer 3 of flange connection pipe 2 fixed connection, the case 1 is equipped with the baffle 11, the case 1 is fixedly opposite and stands the heat dissipation system one 12 and heat dissipation system two 13, the heat dissipation system one 12 and heat dissipation system two 13 between the gap one 14 are equipped with, the heat dissipation system one 12 one side is equipped with laser control panel 15, the other side of heat dissipation system one 12 is fixedly equipped with around the fiber disc 16 and laser generator 17, the heat dissipation system one 12 of laser control panel 15, laser generator 17 emits the heat more conveniently and quickly from the heat dissipation system one 12 and emits.

[0018] The winding disc 16 and the laser generator 17 are arranged in the gap 14, a gap 18 is arranged between the top of the heat dissipation system 13 and the cabinet 1, the top of the heat dissipation system 13 is provided with a power supply system 19, the heat generated by the power supply system 19 is conveniently and quickly dissipated from the heat dissipation system 13, the power supply system 19 is arranged in the gap 18, the side of the cabinet 1 is provided with a wire tube 19 through which the galvanometer 3 passes, the connecting lines of the power supply system 19 and the connecting lines of the laser control panel 15 pass through the wire tube 19 and are connected with the galvanometer 3, the optical fiber line of the laser generator 17 passes through the flange connecting pipe 2 and is connected with the galvanometer 3 after winding through the winding disc 16, so as to complete the laser marking, at the same time, the connecting lines of the power supply system 19 and the connecting lines of the laser control panel 15 are away from the optical fiber line of the laser generator 17, so as to ensure that the electromagnetic influence of the connecting lines of the power supply system 19 and the connecting lines of the laser control panel 15 on the optical fiber line of the laser generator 17 is reduced to the minimum when the connecting lines of the power supply system 19 and the connecting lines of the laser control panel 15 are electrified, so as to ensure the effect of laser marking.

[0019] In the embodiment, two heat dissipation mechanisms are adopted, the heat dissipation efficiency is better, the galvanometer 3 is arranged outside the cabinet 1, the volume is small, and the use is convenient.

[0020] In the embodiment, the power supply system adopts 220V alternating current power supply, and the heat dissipation system 13 is specially arranged to dissipate the heat generated by the power supply system 19, and the heat dissipation efficiency is high.

[0021] Further technical solutions, the cabinet 1 includes a front end face 111, a rear end face 112, a circumferential side face 113 connecting the front end face 111 and the rear end face 112, the circumferential side face 113 includes a bottom side face 114 fixedly connected with the front end face 111 and the rear end face 112, a left side face 115 fixedly connected with the bottom side face 114, a top side face 116 fixedly connected with the left side face 115, and a right side face 117 fixedly connected with the top side face 116 and the bottom side face 114, the front end face 111 includes a lower front end face 1111 fixedly connected with the bottom side face 114 and an upper front end face 1112 fixedly connected with the lower front end face 1111, and the flange connecting pipe 2 is fixedly connected with the lower front end face 1111 and the upper front end face 1112.

[0022] The lower front end surface 1111 includes a base 1113 fixedly connected with the bottom side surface 114, a connecting portion 1114 fixedly connected with the base 1113, the flange connecting pipe 2 is fixedly connected with the outer side of the base 1113 facing the direction of the galvanometer 3, a gap 1115 is arranged between the outer side of the connecting portion 1114 facing the direction of the galvanometer 3 and the outer side of the base 1113 facing the direction of the galvanometer 3, the upper front end surface 1112 is sleeved on the outer side of the connecting portion 1114, the outer side of the upper front end surface 1112 facing the direction of the galvanometer 3 is flush with the outer side of the base 1113 facing the direction of the galvanometer 3, the thickness of the lower front end surface 1111 is greater than the thickness of the upper front end surface 1112, the flange connecting pipe 2 is fixedly connected with the outer side of the lower front end surface 1111 facing the direction of the galvanometer 3, so that the flange connecting pipe 2 is more firmly connected with the lower front end surface 1111. The outer side of the upper front end surface 1112 facing the direction of the galvanometer 3 is flush with the outer side of the base 1113 facing the direction of the galvanometer 3, so that the flange connecting pipe 2 is fixedly connected with the upper front end surface 1112. The base 1113 is provided with a through hole 1116 for the wire passing pipe 19 to pass through.

[0023] The front end surface 111 in the embodiment is divided into the base 1113 and the connecting portion 1114, which facilitates the screw connection of the flange connecting pipe 2 with the base 1113 and the connecting portion 1114, and the width of the base 1113 is slightly greater than the width of the connecting portion 1114, so as to enhance the strength of the base 1113, and the gap facilitates the sleeving of the connecting portion 1114 with the base 1113 and the screw connection with the flange connecting pipe 2.

[0024] The space one 118 is formed between the partition plate 11 and the front end surface 111 and the peripheral side surface 113, the space two 119 is formed between the partition plate 11 and the rear end surface 112 and the peripheral side surface 113, the heat dissipation system one 12 and the heat dissipation system two 13 are arranged in the space two 119 and are adjacent to the partition plate 11, the laser control board 15, the fiber winding disc 16 and the laser generator 17 are all arranged in the space two 119, and the partition plate 11 is provided with an opening 110 communicating with the heat dissipation system one 12. The left side surface 115 arranged at the position of the space one 118 is provided with a heat dissipation opening 1151.

[0025] The arrangement of the space one 118 ensures that the heat generated by the heat generating devices in the space two 119 is dissipated into the space one 118 through the heat dissipated by the heat dissipation system one 12 and the heat dissipation system two 13, and the heat in the space one 118 is dissipated to the outside through the heat dissipation opening 1151, so as to reduce the influence of the heat on the galvanometer 3 and improve the service life of the embodiment.

[0026] Further technical solutions, the flange connecting pipe 2 includes law connection pipe 21, the outer side of both ends of the connecting pipe 21 is fixed with flange connecting disc one 22 and flange connecting disc two 23 respectively, the flange connecting disc one 22 is fixedly connected with the case 1, and the flange connecting disc two 23 is fixedly connected with the galvanometer 3.

[0027] The setting of the flange connecting pipe 2 connects the galvanometer 3 and the case 1, and simultaneously provides a connecting channel position for the optical fiber line connecting the laser generator 17 and the galvanometer 3.

[0028] The above only is the preferred embodiment of the present application, it should be pointed out that, for the ordinary skilled person in the art, without departing from the principles of the present application, can make a number of improvements and refinements, these improvements and refinements should also be considered as the protection scope of the present application.

Claims

1. A horizontal integrated continuous laser marking machine with built-in power supply, characterized in that: Includes a chassis (1), a flange connecting pipe (2) fixedly connected to one end of the chassis (1), and a galvanometer (3) fixedly connected to the flange connecting pipe (2). The chassis (1) is provided with a partition (11). The chassis (1) is provided with a heat dissipation system one (12) and a heat dissipation system two (13) fixedly facing each other. A gap one (14) is provided between the heat dissipation system one (12) and the heat dissipation system two (13). A laser control board (15) is provided on one side of the heat dissipation system one (12). A fiber winding disc (16) and a laser generator (17) are fixedly provided on the other side of the first (12). The fiber winding disc (16) and the laser generator (17) are located in the first gap (14). A second gap (18) is provided between the top of the second heat dissipation system (13) and the chassis (1). A power supply system (19) is provided on the top of the second heat dissipation system (13). The power supply system (19) is located in the second gap (18). A conduit (10) is provided on the side of the chassis (1) to pass through the galvanometer (3).

2. The horizontal integrated continuous laser marking machine with built-in power supply as described in claim 1, characterized in that: The chassis (1) includes a front face (111), a rear face (112), and a peripheral face (113) connecting the front face (111) and the rear face (112). The peripheral face (113) includes a bottom face (114) fixedly connected to the front face (111) and the rear face (112), a left side face (115) fixedly connected to the bottom face (114), a top face (116) fixedly connected to the left side face (115), and a right side face (117) fixedly connected to the top side face (116) and the bottom side face (114). The front face (111) includes a lower front face (1111) fixedly connected to the bottom face (114) and an upper front face (1112) fixedly connected to the lower front face (1111). The flange connecting pipe (2) is fixedly connected to the lower front face (1111) and the upper front face (1112).

3. The horizontal integrated continuous laser marking machine with built-in power supply as described in claim 2, characterized in that... The lower front end face (1111) includes a base (1113) fixedly connected to the bottom side face (114) and a connecting part (1114) fixedly connected to the base (1113). The flange connecting pipe (2) is fixedly connected to the outer side of the base (1113) facing the galvanometer (3). A gap (1115) is provided between the outer side of the connecting part (1114) facing the galvanometer (3) and the outer side of the base (1113) facing the galvanometer (3). The upper front end face (1112) is sleeved on the outer side of the connecting part (1114). The outer side of the upper front end face (1112) facing the galvanometer (3) is flush with the outer side of the base (1113) facing the galvanometer (3). The flange connecting pipe (2) is fixedly connected to the outer side of the upper front end face (1112) facing the galvanometer (3). The base (1113) is provided with a through hole (1116) for the conduit (10) to pass through.

4. The horizontal integrated continuous laser marking machine with built-in power supply as described in claim 1, characterized in that... The flange connecting pipe (2) includes a connecting pipe (21). Flange connecting plate one (22) and flange connecting plate two (23) are fixed on the outer sides of both ends of the connecting pipe (21). Flange connecting plate one (22) is fixedly connected to the chassis (1), and flange connecting plate two (23) is fixedly connected to the galvanometer (3).

5. The horizontal integrated continuous laser marking machine with built-in power supply as described in claim 2, characterized in that... The partition (11) forms a space one (118) with the front end face (111) and the peripheral side face (113). The partition (11) forms a space two (119) with the rear end face (112) and the peripheral side face (113). The heat dissipation system one (12) and the heat dissipation system two (13) are adjacent to the partition (11) and are located in the space two (119). The laser control board (15), the fiber winding disc (16) and the laser generator (17) are all located in the space two (119). The partition (11) is provided with a notch (110) communicating with the heat dissipation system one (12). The left side face (115) is provided with a heat dissipation vent (1151) at the position of the space one (118).