Desktop type flexible material full-automatic laser printer
By employing an internal horizontal movement mechanism and cooling fan system in the fully automatic laser printer, the problems of overheating and air pollution have been solved, achieving excellent heat dissipation and protection.
Patent Information
- Application Number
- CN202422976322.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-12-04
AI Technical Summary
The heat, smoke, aerosols, or microparticles generated by fully automatic laser printers during operation can cause equipment overheating and air pollution, affecting equipment heat dissipation and the health of staff.
The position of the fusion printing nozzle is adjusted by first and second horizontal moving mechanisms inside the housing, and it is equipped with a nozzle protective shell, a cooling fan and a radiator. The cooling fan blows air to remove heat, and works in conjunction with the first cooling fan to cool the nozzle and enhance heat dissipation performance.
After the housing is installed, good heat dissipation performance is maintained, heat accumulation is avoided, protection is enhanced, smoke and particulate matter are prevented from spreading, and the health of equipment and personnel is protected.
Smart Images

Figure CN223466712U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to laser printing technical field, especially relate to a desktop flexible material full-automatic laser printer. BACKGROUND
[0002] Because full-automatic laser printer can produce certain heat when working, in order to ensure that the equipment internal air circulation, avoid the emergence of overheating problem, especially when using small full-automatic laser printer, most adopt the full-automatic laser printer without installing protective shell.If install protective shell, it can influence ventilation, increase the risk of heat gathering.
[0003] And in the working process, smoke, aerosol or small particles can be produced, if not install protective shell, the equipment is in exposed condition for a long time, can lead to these substances diffuse to the air.Under long time trial, can endanger the health of the staff.
[0004] In view of this, how to solve the defects existing in the prior art, become one of the problems to be solved in laser printing technical field. INVENTION CONTENTS
[0005] In view of the problems in the background art, the utility model provides a desktop flexible material full-automatic laser printer on one hand, including the casing, and the first horizontal moving mechanism and the second horizontal moving mechanism are arranged in the casing, and the equipment for adjusting the position of the fused printing nozzle is formed by the combination of the first horizontal moving mechanism and the second horizontal moving mechanism;And the fused printing nozzle is installed on the moving seat of the second horizontal moving mechanism;The fused printing nozzle includes nozzle protective shell, and the through hole for the flexible wire to extend is formed on the nozzle protective shell, and the flexible wire is wound on the feeding mechanism, and the feeding mechanism is fixedly installed on the casing;The first cooling fan is installed on the nozzle protective shell, and two groups of oppositely arranged radiators are installed on the both side end faces of the nozzle protective shell, and the radiator and the nozzle protective shell are detachably connected, and the second cooling fan is installed in the radiator.
[0006] Optionally, the casing is internally provided with a base, and at least one group of rotary motors is installed on the base, and the driving end of the rotary motor is connected with a lead screw through a bearing assembly, a lead screw nut is cooperatively installed on the lead screw, and the lead screw nut is installed in the positioning hole of the workbench.
[0007] Optionally, a jacking rod is arranged on one side of the lead screw, and a moving seat is installed on the jacking rod, so that the moving seat can move longitudinally along the jacking rod, and the moving seat is installed on the workbench.
[0008] Optionally, the shell comprises two sets of oppositely arranged first shell and second shell, and the first shell and the second shell are connected by a connecting piece.
[0009] Optionally, the connecting piece comprises two sets of separable clamping pieces and clamping groove bodies for clamping connection of the clamping pieces; the clamping pieces are arranged in at least one set and are uniformly distributed along the Y direction of the second shell,
[0010] The clamping groove bodies are arranged in at least one set and are uniformly distributed along the Y direction of the first shell.
[0011] Optionally, the clamping piece is integrally arranged with the first shell, and the clamping piece comprises a connecting end portion integrally arranged in a T shape, the connecting end portion away from the side end face of the first shell is provided with an insertion end, the insertion end is 6-13mm long, the end portion of the connecting end portion away from the insertion end is 8-21mm long, two sets of outwardly protruding protruding end portions are arranged at both sides of the insertion end, and the angle of the protruding end portion is 35°-145°.
[0012] Optionally, the shell further comprises a third shell, an inclined end portion integrally arranged with the third shell is arranged on the inner wall near the position of the control display screen, and a rectangular groove is arranged on the side wall of the bottom end of the first shell and the second shell for the insertion of the inclined end portion; when the inclined end portion is inserted into the rectangular groove, the rectangular clamping block arranged on the inclined end portion automatically passes through the rectangular clamping slot arranged on the first shell and the second shell, and hooking connection is realized.
[0013] In summary, the beneficial effects of the present application are:
[0014] The two sets of oppositely arranged second heat dissipation fans are arranged oppositely, so that the air flows against each other, the air is blown along the two sides of the melting printer nozzle, and a large amount of heat is carried away, thereby playing a certain heat dissipation role. By cooperating with the use of the first heat dissipation fan, the front cooling is further strengthened, and the generation of excessive heat is avoided. Therefore, after the desktop flexible material full-automatic laser printer is provided with the shell, the desktop flexible material full-automatic laser printer can still maintain good heat dissipation performance, thereby greatly improving the heat dissipation performance and enhancing the protection. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is an embodiment of the desktop flexible material full-automatic laser printer of the present application.
[0016] Figure 2 It is an embodiment of the desktop flexible material full-automatic laser printer of the present application.
[0017] Figure 3The utility model discloses a desktop formula flexible material full -automatic laser printer one embodiment second casing structure schematic diagram
[0018] Figure 4 The utility model discloses a desktop formula flexible material full -automatic laser printer one embodiment second casing structure schematic diagram Figure 3 The utility model discloses a desktop formula flexible material full -automatic laser printer one embodiment second casing structure schematic diagram
[0019] Figure 5 The utility model discloses a desktop formula flexible material full -automatic laser printer one embodiment second casing structure schematic diagram
[0020] Figure 6 The utility model discloses a desktop formula flexible material full -automatic laser printer one embodiment second casing structure schematic diagram Figure 5 The utility model discloses a desktop formula flexible material full -automatic laser printer one embodiment second casing structure schematic diagram
[0021] Figure 7 The utility model discloses a desktop formula flexible material full -automatic laser printer one embodiment second casing structure schematic diagram
[0022] Figure 8 The utility model discloses a desktop formula flexible material full -automatic laser printer one embodiment second casing structure schematic diagram
[0023] Figure 9 The utility model discloses a desktop formula flexible material full -automatic laser printer one embodiment second casing structure schematic diagram
[0024] Figure 10 The utility model discloses a desktop formula flexible material full -automatic laser printer one embodiment second casing structure schematic diagram Figure 3 The utility model discloses a desktop formula flexible material full -automatic laser printer one embodiment second casing structure schematic diagram
[0025] Reference signs:
[0026] 100, full -automatic laser printer
[0027] 10, casing
[0028] 101, first casing, 1012, convex end, 1013, stretch into end, 1014, connecting end, 1015, clamping piece
[0029] 102, second casing, 1021, first end, 1022, clamping groove
[0030] 103, mounting plate
[0031] 104, base
[0032] 105, third casing, 1051, inclined end
[0033] 20, connecting piece
[0034] 30, feeding mechanism
[0035] 40, control display screen
[0036] 50, jacking mechanism; 501, moving seat; 502, jacking rod; 503, base; 504, rotary motor; 505, screw rod;
[0037] 60, workbench;
[0038] 701, first horizontal moving mechanism;
[0039] 702, melting printing nozzle; 7021, nozzle protection shell; 7022, first heat dissipation fan; 7023, heat sink; 7024, second heat dissipation fan;
[0040] 703, second horizontal moving mechanism. DETAILED DESCRIPTION
[0041] In order to make the purpose, technical scheme and advantages of the utility model more clear, the utility model will be further explained in detail below by combining with the drawings and specific embodiments. Although the example embodiments are disclosed in the drawings, it should be understood that the utility model can be implemented in various forms and should not be limited by the embodiments described herein. On the contrary, these embodiments are provided to facilitate a thorough understanding of the utility model and to convey the complete concept of the utility model to those skilled in the art.
[0042] In the description of the present application, the description of the terms "some embodiments", "one embodiment", "some embodiments", "example", "specific example" or "some examples" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms is not necessarily for the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any suitable manner in any one or more embodiments or examples. In addition, those skilled in the art can combine and combine different embodiments or features of different embodiments or examples described in the present application without contradiction.
[0043] In the present application, the terms "first", "second", "third" are only for the purpose of description, and cannot be understood as indicating or implying relative importance; the term "a plurality of" means two or more, unless otherwise specified. The terms "mounting", "connection", "connection", "fixing" and the like should be understood in a broad sense, for example, "connection" can be fixed connection, or detachable connection, or integral connection; "connection" can be direct connection, or indirect connection through intermediate medium. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0044] As Figures 1-10 shown, the embodiment provides a desktop flexible material full-automatic laser printer 100, comprising a shell 10, and a first horizontal moving mechanism 701 and a second horizontal moving mechanism 703 are arranged inside the shell 10, the first horizontal moving mechanism 701 and the second horizontal moving mechanism 703 are combined to form a device for adjusting the position of a fused printing nozzle 702, and the fused printing nozzle 702 is fixedly installed on a moving base of the second horizontal moving mechanism 703.
[0045] In the embodiment, the first horizontal moving mechanism 701 and the second horizontal moving mechanism 703 can be combined by a lead screw and a stepping motor, or other horizontal moving mechanisms capable of realizing the horizontal movement of the fused printing nozzle 702 in the X or Y direction. Since the horizontal moving mechanism is a prior art, it is not described in detail here.
[0046] Please refer to Figures 1-9 shown, a base 503 is arranged inside the shell 10, at least one set of rotary motors 504 is installed on the base 503, the driving end of the rotary motor 504 is connected with a lead screw 505 through a bearing assembly, a lead screw nut is cooperatively installed on the lead screw 505, so that the lead screw nut and the lead screw 505 form a screw transmission, and the lead screw nut 505 is fixedly installed in a positioning hole of a workbench 60.
[0047] In the embodiment, the rotary motor 504 is started to drive the lead screw 505 to rotate, thereby driving the workbench 60 to displace in the Z direction of the lead screw 505.
[0048] In actual application, in order to prevent the position from deviating when the workbench displaces in the Z direction along the lead screw, a jacking rod 502 is arranged on one side of the lead screw 505, a moving base 501 is installed on the jacking rod 502, so that the moving base 501 can move longitudinally along the jacking rod 502, and the moving base 501 is fixedly installed on the workbench 60 through fastening screws.
[0049] Since the full-automatic laser printer generates a certain amount of heat during work, in order to ensure the air circulation inside the device and avoid overheating, especially when a small full-automatic laser printer is used, a full-automatic laser printer without a protective shell is mostly used. If the protective shell is installed, the ventilation will be affected, and the risk of heat accumulation will be increased.
[0050] During the work process, smoke, aerosol or small particles will be generated, if the protective shell is not installed, the device will be exposed for a long time, which will cause these substances to diffuse into the air. After a long period of use, the health of the workers will be harmed. In order to solve the above technical problems, please refer to Figure 1 andFigure 9 As shown in the figure, the melt printing nozzle 702 comprises a nozzle protection shell 7021, and the nozzle protection shell 7021 is provided with a through hole for the flexible wire to extend into, and the flexible wire is wound on the feeding mechanism 30, and the feeding mechanism is fixedly installed on the shell 20;
[0051] The first heat dissipation fan 7022 is fixedly installed on the nozzle protection shell 7021 by a fastening screw,
[0052] And two groups of oppositely arranged heat sinks 7023 are installed on the both side end faces of the nozzle protection shell 7021, and the heat sinks 7023 and the nozzle protection shell 7021 are detachably connected, and the second heat dissipation fan 7024 is installed in the heat sink 7023;
[0053] The first heat dissipation fan 7022 and the second heat dissipation fan are preferably a small heat dissipation fan of a DC series.
[0054] In the embodiment, the two groups of oppositely arranged second heat dissipation fans 7024 are arranged oppositely, so that the air flows against each other, and the blowing air flows along the both sides of the melt printer nozzle, thereby taking away a large amount of heat, playing a certain heat dissipation role, and by cooperating with the use of the first heat dissipation fan, the front cooling is further strengthened, and the generation of excessive heat is avoided, so that the desktop type flexible material full-automatic laser printer can still maintain good heat dissipation performance after the shell 10 is added, thereby greatly improving the heat dissipation performance and enhancing the protection.
[0055] Please refer to Figures 1-9 As shown in the figure, the shell 10 comprises two groups of oppositely arranged first shell 101 and second shell 102, and the first shell 101 and the second shell 102 are connected by the connecting piece 20;
[0056] The connecting piece 20 comprises two groups of separable clamping pieces 105 and clamping groove bodies 1022 for the clamping pieces 105 to extend into and be clamped and connected;
[0057] The clamping piece 105 is arranged in at least one group and is uniformly distributed along the Y direction of the second shell 102,
[0058] The clamping groove body 1022 is arranged in at least one group and is uniformly distributed along the Y direction of the first shell 101.
[0059] In the embodiment, by abutting the first shell 101 and the second shell 102 and clamping and connecting, the first shell and the second shell are combined to form a surrounding supporting mechanism.
[0060] Furthermore, the clamping member 1015 is integrated with the first shell 101, and the clamping member 1015 includes a connecting end 1014 that is arranged in an I-shape as a whole. The connecting end away from the side end surface of the first shell 101 is provided with an insertion end 1013, the insertion end 1013 is 6-13 mm long, and the end of the connecting end 1014 away from the insertion end 1013 is 8-21 mm long. Two groups of outwardly protruding protruding ends 1012 are provided at both sides of the insertion end 1013, and the angle of the protruding end 1012 is 35°-145°.
[0061] In actual application, when docking the first shell 101 and the second shell 102, it is only necessary to push the clamping part 1015 of the first shell into the clamping groove 1022 of the second shell 102, so that the insertion end 1013 extends into the clamping groove 1022. At this time, the arc-shaped end automatically snaps into the arc-shaped groove of the clamping groove 1022, thereby realizing the connection between the first shell and the second shell 102.
[0062] Furthermore, the shell 10 also includes a third shell 105 and a fourth shell (not annotated in the figure) arranged opposite to the third shell 105, and the fourth shell is installed on the first shell and the second shell by fastening screws; the inner wall of the third shell 105 near the control display screen 40 is provided with an inclined end 1051 integrated with it, and the bottom side walls of the first shell 101 and the second shell 102 are provided with a rectangular groove for the inclined end 1051 to extend into; when the inclined end 1051 extends into the rectangular groove, the rectangular block provided on the inclined end 1051 automatically passes through the rectangular groove provided on the first shell 101 and the second shell 102 to achieve a hook connection, thereby realizing the connection between the third shell 105 and the first shell 101 and the second shell 102.
[0063] In this embodiment, a detachable shell 10 is added for splicing and connecting, and in actual application, the four groups of shells can be disassembled separately. Therefore, when it is used in a smaller area in a short period of time, or when one side of the shell needs to be disassembled, the shell can be disassembled, thereby improving practicality.
[0064] Finally, it should be noted that the above embodiments are intended only to illustrate the technical solutions of the present invention and are not intended to be limiting. Although the present invention has been described in detail with reference to the embodiments, those skilled in the art will appreciate that modifications or equivalent substitutions to the technical solutions of the present invention do not depart from the spirit and scope of the technical solutions of the present invention and are intended to be encompassed by the claims of the present invention.
Claims
1. A desktop flexible material full automatic laser printer characterized in that, The shell is internally provided with a first horizontal moving mechanism and a second horizontal moving mechanism, which are combined to form a device for adjusting the position of a fused printing nozzle; the fused printing nozzle is mounted on a moving seat of the second horizontal moving mechanism; the fused printing nozzle comprises a nozzle protection shell, a first heat dissipation fan is mounted on the nozzle protection shell, and two groups of oppositely arranged heat sinks are mounted on the two side end faces of the nozzle protection shell, and the heat sinks and the nozzle protection shell are detachably connected, and the heat sinks are internally provided with a second heat dissipation fan.
2. The desktop flexible material full-automatic laser printer according to claim 1, wherein the shell is internally provided with a base, and at least one group of rotary motors is mounted on the base, and the driving end of the rotary motor is connected with a lead screw through a bearing assembly, a lead screw nut is mounted on the lead screw, and the lead screw nut is mounted in a positioning hole of the workbench.
3. The desktop flexible material full-automatic laser printer according to claim 2, wherein a jacking rod is arranged on one side of the lead screw, a moving seat is mounted on the jacking rod, so that the moving seat can move longitudinally along the jacking rod, and the moving seat is mounted on the workbench.
4. The desktop flexible material full-automatic laser printer according to claim 1, wherein the shell comprises two groups of oppositely arranged first and second shells, and the first and second shells are connected through a connecting piece.
5. The desktop flexible material full-automatic laser printer according to claim 4, wherein the connecting piece comprises two groups of separable clamping pieces and clamping groove bodies for clamping connection, the clamping pieces are arranged in at least one group and are uniformly distributed along the Y direction of the second shell, and the clamping groove bodies are arranged in at least one group and are uniformly distributed along the Y direction of the first shell.
6. The desktop flexible material full-automatic laser printer according to claim 5, wherein the clamping pieces are integrally arranged with the first shell, the clamping pieces comprise a connecting end portion integrally arranged in a T shape, the connecting end portion away from the side end face of the first shell is provided with an insertion end, the insertion end is 6-13 mm long, the end portion of the connecting end portion away from the insertion end is 8-21 mm long, two groups of outward protruding protruding end portions are arranged at the two side end portions of the insertion end, and the angle of the protruding end portions is 35°-145°.
7. The desktop flexible material full-automatic laser printer according to claim 4, wherein the shell further comprises a third shell, an inclined end portion integrally arranged with the third shell is arranged on the inner wall near the position of the control display screen, and a rectangular groove is formed in the bottom side wall of the first and second shells for the insertion of the inclined end portion; when the inclined end portion is inserted into the rectangular groove, a rectangular clamping block arranged on the inclined end portion automatically passes through a rectangular clamping slot formed in the first and second shells, so as to realize hooking connection.