Industrial intelligent 3D printer and use method

Through the coordinated work of designing support mechanisms, positioning mechanisms, stabilizing mechanisms, drive mechanisms, limiting mechanisms, pushing mechanisms and alarm mechanisms, the problems of inconvenient adjustment of the installation height, insufficient stability of use and inability to automatically remind and repair in industrial intelligent 3D printers are solved, and convenient adjustment, stability enhancement and automatic alarm functions are achieved, and the 3D printing effect is improved.

CN119974520AInactive Publication Date: 2025-05-13JIANGSU YIXUANXIU TECH DEV CO LTD
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Patent Information

Application Number
CN202510136916.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-07
Publication Date
2025-05-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The installation height of existing industrial intelligent 3D printers is inconvenient to adjust, the stability of use is insufficient, and the staff cannot be automatically reminded for inspection, which affects the printing effect.

Method used

An industrial intelligent 3D printer including a support mechanism, a positioning mechanism, a stabilizing mechanism, a driving mechanism, a limiting mechanism, a pushing mechanism and an alarm mechanism are designed. Through the coordinated work of these mechanisms, the height adjustment, stability enhancement and automatic alarm functions of the U-shaped support plate are realized.

Benefits of technology

It realizes convenient adjustment of the height of the U-shaped support plate, improves the stability of the printer, and can automatically remind staff to perform maintenance, improving the 3D printing effect.

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Abstract

The invention provides an industrial intelligent 3D printer and a using method, and relates to the technical field of 3D printers, the industrial intelligent 3D printer comprises a supporting mechanism, a positioning mechanism, a stabilizing mechanism, a driving mechanism, a limiting mechanism, a pushing mechanism and an alarm mechanism; the positioning mechanism is mounted on the rear side of the supporting mechanism; the number of the stabilizing mechanisms is four, and the four stabilizing mechanisms are installed on the supporting mechanism. The driving mechanism is mounted on the supporting mechanism; the number of the limiting mechanisms is two, and the two limiting mechanisms are installed on the supporting mechanism. The pushing mechanism is mounted on the supporting mechanism; the alarm mechanism is installed on the supporting mechanism, the two limiting mechanisms and the pushing mechanism. A worker can conveniently and properly adjust the height of the U-shaped supporting plate, so that the worker can more conveniently operate the printer body; the problems that the installation height of the industrial intelligent 3D printer is inconvenient to adjust and subsequent use is not facilitated due to the lack of a height adjusting structure are solved.
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Description

Technical Field

[0001] The present invention belongs to the technical field of 3D printers, and more specifically, particularly relates to an industrial intelligent 3D printer and a method for using the same. Background Art

[0002] An industrial intelligent 3D printer refers to a 3D printer specially designed for industrial manufacturing and production fields. It has higher printing speed, larger printing size, higher precision and stronger stability, and can adapt to more stringent industrial environments and production requirements. An industrial intelligent 3D printer needs to be supported by a support base when in use.

[0003] For example, the patent with application number: CN202323132635.0 discloses a support base for a portable 3D printer, including a moving part, the moving part includes a base, the bottom of the base is fixedly connected to a fixed seat, the inside of the fixed seat is horizontally rotatably connected to a rotating shaft, the outer wall of the rotating shaft is fixedly connected to a roller seat, the outer wall of the roller seat is vertically fixedly connected to a clamping plate, the number of the clamping plates is two, the bottoms of the two clamping plates are rotatably connected to movable rollers, the inside of the clamping plates is horizontally penetrated with a first limiting hole, the outer side wall of the fixed seat is fixedly connected to an L-shaped plate, the inside of the L-shaped plate is horizontally penetrated and movably connected to a limiting rod, and one end of the limiting rod penetrates the first limiting hole; by arranging the moving part, the movable roller can be brought into contact with the ground when it is needed to move, which is convenient for movement and transportation and saves manpower; the support plate can be brought into contact with the ground during use, thereby enhancing stability.

[0004] Based on the above, the 3D printer support base currently in use still has the following problems: 1. It usually lacks a height adjustment structure, which makes it inconvenient to adjust the installation height of the industrial intelligent 3D printer, which is not conducive to subsequent use; 2. It is unable to increase the stability of use after installation, resulting in the industrial intelligent 3D printer shaking when the bolts are slightly loosened; 3. When the industrial intelligent 3D printer produces large vibrations during operation, it is unable to automatically remind the staff to perform maintenance, affecting the 3D printing effect. Summary of the invention

[0005] The disclosed embodiments relate to an industrial intelligent 3D printer and a method of using the same, which comprises a supporting mechanism, a positioning mechanism, a stabilizing mechanism, a driving mechanism, a limiting mechanism, a pushing mechanism and an alarm mechanism. The advantages of the invention are that the height of the U-shaped supporting plate can be appropriately adjusted by the staff, so that the staff can operate the printer body more conveniently. Even if the bolts for mounting the supporting base are slightly loosened, the supporting base can still ensure the stabilizing effect under the support of the four movable stabilizing heads. The invention can automatically remind the staff that the printer body has large vibrations when working, so that the staff can timely inspect and repair the printer body. The invention solves the problems that the installation height of the industrial intelligent 3D printer is inconvenient to adjust, the stability of use after installation cannot be increased, and the staff cannot be automatically reminded to perform inspection and repair.

[0006] In a first aspect, the present disclosure provides an industrial intelligent 3D printer, comprising: a support mechanism, a positioning mechanism, a printer body, a stabilizing mechanism, a driving mechanism, a limiting mechanism, a pushing mechanism and an alarm mechanism; the positioning mechanism is installed at the rear side of the support mechanism, and the positioning mechanism is used to position the adjusted support mechanism; the printer body is installed on the top of the support mechanism; The stabilizing mechanism is provided with four groups in total, and the four groups of stabilizing mechanisms are installed on the supporting mechanism, and the four groups of stabilizing mechanisms are used to improve the stability of the supporting mechanism when in use; the driving mechanism is installed on the supporting mechanism, and the driving mechanism is used to rotate the four groups of stabilizing mechanisms; the limiting mechanism is provided with two groups in total, and the two groups of limiting mechanisms are installed on the supporting mechanism, and the two groups of limiting mechanisms are used to limit the printer body; The pushing mechanism is installed on the supporting mechanism, and the pushing mechanism is used to move two sets of limiting mechanisms; the alarm mechanism is installed on the supporting mechanism, the two sets of limiting mechanisms and the pushing mechanism, and the alarm mechanism is used to remind the staff to inspect the printer body.

[0007] In at least some embodiments, the support mechanism includes: a support base, a rectangular guide sleeve, a movable support frame and a U-shaped support plate; the rectangular guide sleeve is fixedly installed on the top of the support base; the movable support frame is slidably installed inside the rectangular guide sleeve, and a row of positioning grooves is provided on the rear side of the movable support frame; the U-shaped support plate is fixedly installed on the top of the movable support frame.

[0008] In at least some embodiments, the positioning mechanism includes: a positioning frame, a positioning pin, a reset ring and a reset spring; the positioning frame is fixedly mounted on the rear side of the rectangular guide sleeve; the positioning pin is slidably mounted on the positioning frame and the rectangular guide sleeve, and the inner end of the positioning pin is provided with a chamfer, and the inner end of the positioning pin is inserted into the corresponding positioning groove; the reset ring is fixedly mounted on the outside of the positioning pin; the reset spring sleeve is arranged on the outside of the positioning pin, and the reset spring is located between the positioning frame and the reset ring.

[0009] In at least some embodiments, the stabilizing mechanism includes: a hollow threaded barrel, a connecting gear, a movable stabilizing head and a supporting spring; the hollow threaded barrel is threadedly connected to the supporting base; the connecting gear is fixedly installed on the top of the hollow threaded barrel; the movable stabilizing head is slidably installed inside the hollow threaded barrel; the supporting spring is installed inside the hollow threaded barrel and the movable stabilizing head.

[0010] In at least some embodiments, the driving mechanism includes: a mounting bracket, a driving gear and a driving handle; the mounting bracket is fixedly mounted on the outside of the rectangular guide sleeve; the driving gear is rotatably mounted on the outside of the mounting bracket, and the driving gear is also threadedly connected to four connecting gears; the driving handle is provided with a total of one circle, and one circle of the driving handle is fixedly mounted on the top of the driving gear.

[0011] In at least some embodiments, the limiting mechanism includes: a movable guide frame, a limiting baffle, a limiting clamp ring and a limiting spring; the movable guide frame is slidably mounted on the U-shaped support plate; the limiting baffle is fixedly mounted on the inner end of the movable guide frame, and the inner side of the limiting baffle is also in contact with the printer body; there are two limiting clamp rings, and the two limiting clamp rings are fixedly mounted on the outside of the movable guide frame; there are two limiting springs, and the two limiting springs are sleeved on the outside of the movable guide frame, and the two limiting springs are located between the U-shaped support plate and the limiting baffle.

[0012] In at least some embodiments, the pushing mechanism includes: a circular guide shaft, a movable extrusion rod, a rubber anti-slip sleeve and a triangular extrusion plate; there are two circular guide shafts, and the two circular guide shafts are fixedly installed at the bottom of the U-shaped support plate; the movable extrusion rod is slidably installed on the outside of the two circular guide shafts; there are two rubber anti-slip sleeves, and the two rubber anti-slip sleeves are fixedly installed on the outside of the movable extrusion rod; there are two triangular extrusion plates, and the two triangular extrusion plates are fixedly installed on the movable extrusion rod, and the outer sides of the two triangular extrusion plates are also in contact with two movable guide frames.

[0013] In at least some embodiments, the pushing mechanism also includes: a multifunctional rod, a supporting disc and an extrusion spring; there are two multifunctional rods, which are fixedly mounted on the top of the movable extrusion rod, and the tops of the two multifunctional rods are also in contact with the U-shaped support plate; there are two supporting discs, which are fixedly mounted on the bottom ends of the two circular guide shafts; there are two extrusion springs, which are sleeved on the outside of the two circular guide shafts, and the two extrusion springs are located between the movable extrusion rod and the two supporting discs.

[0014] In at least some embodiments, the alarm mechanism includes: a lithium battery, an alarm, a first switch and a second switch; the lithium battery is fixedly mounted on the front side of the rectangular guide sleeve; the alarm is fixedly mounted on the front side of the rectangular guide sleeve, and the negative pole of the lithium battery is connected to the negative pole of the alarm through a wire; there are two first switches in total, and the two first switches are fixedly mounted inside the two multi-function rods, and the positive poles of the two first switches are connected to the positive pole of the lithium battery through wires; there are two second switches in total, and the two second switches are fixedly mounted on the outside of the two limit baffles; the positive poles of the two second switches are connected to the positive pole of the alarm through wires, and the negative poles of the two first switches are connected to the negative poles of the two second switches through wires.

[0015] A method for using an industrial intelligent 3D printer: 1) Install the support base on the workbench with bolts, pull the positioning pin outward, adjust the height of the U-shaped support plate appropriately, and then insert the inner end of the positioning pin into the corresponding positioning groove; 2) Use one of the driving handles to rotate the driving gear, so that the four hollow threaded cylinders drive the four movable stabilizing heads to move downward at the same time, ensuring that the four supporting springs are in a compressed state; 3) Pull down the movable extrusion rod, then place the printer body on the top of the U-shaped support plate, ensure that the printer body is between the two limit baffles, and then release the movable extrusion rod.

[0016] Compared with the prior art, the present invention has the following beneficial effects: 1. The present invention facilitates the staff to appropriately adjust the height of the U-shaped support plate, so that the staff can operate the printer body more conveniently; the setting of the positioning pin plays a positioning role on the movable support frame, so that the movable support frame is more stable after the height is adjusted; the setting of the reset spring has an anti-falling effect on the positioning pin, avoids the separation of the positioning pin and the corresponding positioning groove, and ensures the positioning effect.

[0017] 2. According to the present invention, when the staff rotates the driving gear through one of the driving handles, the four hollow threaded cylinders can rotate clockwise or counterclockwise at the same time; when the four hollow threaded cylinders move downward at the same time, the four movable stabilizing heads can always be in elastic contact with the workbench under the elastic force of the four supporting springs, thereby playing a stabilizing role. Even if the bolts for installing the supporting base are slightly loosened, the supporting base can still ensure the stabilizing effect under the supporting action of the four movable stabilizing heads.

[0018] 3. The two limit baffles of the present invention have a limiting effect on the printer body; the four limit springs realize elastic limiting of the printer body to avoid pinching of the printer body.

[0019] 4. When one or both of the second switches are in the pressed state, the alarm will work, which can automatically remind the staff that the printer body has a large vibration when working, so that the staff can repair the printer body in time; In addition, when the staff needs to install or remove the printer body, the staff pulls down the movable extrusion rod. At this time, the two triangular extrusion plates drive the two movable guide frames to move outward at the same time; when the staff pulls down the movable extrusion rod, the pressure of the two first switches is automatically released, ensuring that the alarm will not work when the printer body is installed or removed. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] In order to more clearly illustrate the technical solution of the embodiment of the present invention, the drawings of the embodiment are briefly introduced below.

[0021] The drawings described below only relate to some embodiments of the present invention and are not intended to limit the present invention.

[0022] In the attached picture: Figure 1 A schematic diagram of the three-dimensional structure of the present invention is shown; Figure 2 The present invention is shown Figure 1 Schematic diagram of the bottom perspective structure; Figure 3 A schematic structural diagram of the support mechanism of the present invention is shown; Figure 4 The present invention is shown Figure 2 A schematic diagram of the local enlarged structure of the middle A area; Figure 5 A schematic diagram of the structure of the stabilizing mechanism of the present invention is shown; Figure 6 The present invention is shown Figure 1 A schematic diagram of the local enlarged structure of the middle B area; Figure 7 The present invention is shown Figure 1 Schematic diagram of the right side perspective structure; Figure 8 The present invention is shown Figure 2 Schematic diagram of the local enlarged structure of the middle C area; Fig. 9 The present invention is shown Figure 1 Schematic diagram of the central section structure; Fig.10 The present invention is shown Fig. 9 Schematic diagram of the local enlarged structure of area D in the middle.

[0023] List of reference numerals: 100, support mechanism; 101, support base; 102, rectangular guide sleeve; 103, movable support frame; 1031, positioning groove; 104, U-shaped support plate; 200, positioning mechanism; 201, positioning frame; 202, positioning latch; 203, reset ring; 204, reset spring; 300, printer body; 400, stabilizing mechanism; 401, hollow threaded cylinder; 402, connecting gear; 403, movable stabilizing head; 404, supporting spring; 500, driving mechanism; 501, mounting bracket; 502, driving gear; 503, driving handle; 600, limit mechanism; 601, movable guide frame; 602, limit baffle; 603, limit clamp ring; 604, limit spring; 700, pushing mechanism; 701, circular guide shaft; 702, movable extrusion rod; 703, rubber anti-slip sleeve; 704, triangular extrusion plate; 705, multifunctional rod; 706, supporting disc; 707, extrusion spring; 800, alarm mechanism; 801, lithium battery; 802, alarm; 803, first switch; 804, second switch. DETAILED DESCRIPTION

[0024] In order to make the purpose, scheme and advantages of the technical solution of the present invention clearer, the technical solution of the embodiment of the present invention will be clearly and completely described in conjunction with the drawings of the specific embodiments of the present invention. Unless otherwise specified, the terms used herein have the usual meanings in the art. The same reference numerals in the drawings represent the same components.

[0025] Example: Please refer to Figures 1 to 10As shown: The present invention provides an industrial intelligent 3D printer, comprising: a support mechanism 100, a positioning mechanism 200, a printer body 300, a stabilizing mechanism 400, a driving mechanism 500, a limiting mechanism 600, a pushing mechanism 700 and an alarm mechanism 800; the positioning mechanism 200 is installed at the rear side of the support mechanism 100, and the positioning mechanism 200 is used to position the adjusted support mechanism 100; the printer body 300 is installed on the top of the support mechanism 100; the stabilizing mechanism 400 is provided with four groups, and the four groups of stabilizing mechanisms 400 are installed on the support mechanism 100, and the four groups of stabilizing mechanisms 400 are used to improve the support mechanism 10 0 stability during use; the driving mechanism 500 is installed on the supporting mechanism 100, and the driving mechanism 500 is used to rotate the four groups of stabilizing mechanisms 400; there are two groups of limiting mechanisms 600, and the two groups of limiting mechanisms 600 are installed on the supporting mechanism 100, and the two groups of limiting mechanisms 600 are used to limit the printer body 300; the pushing mechanism 700 is installed on the supporting mechanism 100, and the pushing mechanism 700 is used to move the two groups of limiting mechanisms 600; the alarm mechanism 800 is installed on the supporting mechanism 100, the two groups of limiting mechanisms 600 and the pushing mechanism 700, and the alarm mechanism 800 is used to remind the staff to inspect the printer body 300.

[0026] In the present disclosure, Figure 3 and Figure 4 As shown, the support mechanism 100 includes: a support base 101, a rectangular guide sleeve 102, a movable support frame 103 and a U-shaped support plate 104; the rectangular guide sleeve 102 is fixedly installed on the top of the support base 101; the movable support frame 103 is slidably installed inside the rectangular guide sleeve 102, and a row of positioning grooves 1031 are provided on the rear side of the movable support frame 103; the U-shaped support plate 104 is fixedly installed on the top of the movable support frame 103; The positioning mechanism 200 includes: a positioning frame 201, a positioning pin 202, a reset ring 203 and a reset spring 204; the positioning frame 201 is fixedly mounted on the rear side of the rectangular guide sleeve 102; the positioning pin 202 is slidably mounted on the positioning frame 201 and the rectangular guide sleeve 102, and the inner end of the positioning pin 202 is provided with a chamfer, and the inner end of the positioning pin 202 is inserted into the corresponding positioning groove 1031; the reset ring 203 is fixedly mounted on the outside of the positioning pin 202; the reset spring 204 is sleeved on the outside of the positioning pin 202, and the reset spring 204 is located between the positioning frame 201 and the reset ring 203; Its specific functions are as follows: because the rectangular guide sleeve 102 is fixedly mounted on the top of the support base 101, and the movable support frame 103 is slidably mounted inside the rectangular guide sleeve 102, and the U-shaped support plate 104 is fixedly mounted on the top of the movable support frame 103, it is convenient for the staff to appropriately adjust the height of the U-shaped support plate 104, so that the staff can operate the printer body 300 more conveniently; and because the positioning pin 202 is slidably mounted on the positioning frame 201 and the rectangular guide sleeve 102, and the inner end of the positioning pin 202 is provided with a chamfer, and the inner end of the positioning pin 202 is inserted into the corresponding positioning groove 1031, it plays a positioning role on the movable support frame 103, making the movable support frame 103 more stable after the height adjustment; the setting of the reset spring 204 has an anti-falling effect on the positioning pin 202, avoids the separation of the positioning pin 202 and the corresponding positioning groove 1031, and ensures the positioning effect.

[0027] In the present disclosure, Figure 5 and Figure 6 As shown, the stabilizing mechanism 400 includes: a hollow threaded barrel 401, a connecting gear 402, a movable stabilizing head 403 and a supporting spring 404; the hollow threaded barrel 401 is threadedly connected to the supporting base 101; the connecting gear 402 is fixedly installed on the top of the hollow threaded barrel 401; the movable stabilizing head 403 is slidably installed inside the hollow threaded barrel 401; the supporting spring 404 is installed inside the hollow threaded barrel 401 and the movable stabilizing head 403; The driving mechanism 500 includes: a mounting bracket 501, a driving gear 502 and a driving handle 503; the mounting bracket 501 is fixedly mounted on the outside of the rectangular guide sleeve 102; the driving gear 502 is rotatably mounted on the outside of the mounting bracket 501, and the driving gear 502 is also threadedly connected to four connecting gears 402; the driving handle 503 is provided with a circle, and the circle of driving handles 503 is fixedly mounted on the top of the driving gear 502; Its specific function is as follows: because the four connecting gears 402 are fixedly mounted on the tops of the four hollow threaded cylinders 401, and the driving gear 502 is rotatably mounted on the outside of the mounting bracket 501, and the driving gear 502 is also threadedly connected to the four connecting gears 402, when the staff rotates the driving gear 502 through one of the driving handles 503, the four hollow threaded cylinders 401 can rotate clockwise or counterclockwise at the same time; and because the four movable stabilizing heads 403 are slidably mounted inside the four hollow threaded cylinders 401, and the four supporting springs 404 are mounted inside the four hollow threaded cylinders 401 and the four movable stabilizing heads 403, when the four hollow threaded cylinders 401 move downward at the same time, the four movable stabilizing heads 403 can always be in elastic contact with the workbench under the elastic force of the four supporting springs 404, thereby playing a stabilizing role. Even if the bolts for mounting the support base 101 are slightly loosened, the support base 101 can ensure a stabilizing effect under the support of the four movable stabilizing heads 403.

[0028] In the present disclosure, Figure 8 and Fig.10 As shown, the limiting mechanism 600 includes: a movable guide frame 601, a limiting baffle 602, a limiting collar 603 and a limiting spring 604; the movable guide frame 601 is slidably mounted on the U-shaped support plate 104; the limiting baffle 602 is fixedly mounted on the inner end of the movable guide frame 601, and the inner side of the limiting baffle 602 is also in contact with the printer body 300; there are two limiting collars 603, and the two limiting collars 603 are fixedly mounted on the outside of the movable guide frame 601; there are two limiting springs 604, and the two limiting springs 604 are sleeved on the outside of the movable guide frame 601, and the two limiting springs 604 are located between the U-shaped support plate 104 and the limiting baffle 602; Its specific function is as follows: because the two limit baffles 602 are fixedly mounted on the inner ends of the two movable guide frames 601, and the inner sides of the two limit baffles 602 are also in contact with the printer body 300, they play a limiting role on the printer body 300; and because the four limit springs 604 are sleeved on the outside of the two movable guide frames 601, and the four limit springs 604 are located between the U-shaped support plate 104 and the two limit baffles 602, the elastic limitation of the printer body 300 is achieved to avoid the printer body 300 from being pinched.

[0029] In the present disclosure, Figure 1 , Figure 8 and Fig.10As shown, the pushing mechanism 700 includes: a circular guide shaft 701, a movable extrusion rod 702, a rubber anti-skid sleeve 703 and a triangular extrusion plate 704; there are two circular guide shafts 701, and the two circular guide shafts 701 are fixedly installed at the bottom of the U-shaped support plate 104; the movable extrusion rod 702 is slidably installed on the outside of the two circular guide shafts 701; there are two rubber anti-skid sleeves 703, and the two rubber anti-skid sleeves 703 are fixedly installed on the outside of the movable extrusion rod 702; there are two triangular extrusion plates 704, and the two triangular extrusion plates 704 are fixedly installed on the movable extrusion rod 702, and the outer sides of the two triangular extrusion plates 704 are also connected to the two movable guide frames. 601 contact; the pushing mechanism 700 also includes: a multifunctional rod 705, a supporting disc 706 and an extrusion spring 707; there are two multifunctional rods 705, and the two multifunctional rods 705 are fixedly mounted on the top of the movable extrusion rod 702, and the tops of the two multifunctional rods 705 are also in contact with the U-shaped support plate 104; there are two supporting discs 706, and the two supporting discs 706 are fixedly mounted on the bottom ends of the two circular guide shafts 701; there are two extrusion springs 707, and the two extrusion springs 707 are sleeved on the outside of the two circular guide shafts 701, and the two extrusion springs 707 are located between the movable extrusion rod 702 and the two supporting discs 706; The alarm mechanism 800 includes: a lithium battery 801, an alarm 802, a first switch 803 and a second switch 804; the lithium battery 801 is fixedly mounted on the front side of the rectangular guide sleeve 102; the alarm 802 is fixedly mounted on the front side of the rectangular guide sleeve 102, and the negative electrode of the lithium battery 801 is connected to the negative electrode of the alarm 802 through a wire; there are two first switches 803, and the two first switches 803 are fixedly mounted inside the two multi-function rods 705, and the positive electrodes of the two first switches 803 are connected to the positive electrode of the lithium battery 801 through wires; there are two second switches 804, and the two second switches 804 are fixedly mounted on the outside of the two limit baffles 602; the positive electrodes of the two second switches 804 are connected to the positive electrode of the alarm 802 through wires, and the negative electrodes of the two first switches 803 are connected to the negative electrodes of the two second switches 804 through wires; The specific function is as follows: since the negative electrode of the lithium battery 801 is connected to the negative electrode of the alarm 802 through a wire, and the positive electrodes of the two first switches 803 are connected to the positive electrode of the lithium battery 801 through wires, and the negative electrodes of the two first switches 803 are connected to the negative electrodes of the two second switches 804 through wires, when one or both of the second switches 804 are in a pressed state, the alarm 802 works, which can automatically remind the staff that there is a large vibration when the printer body 300 is working, so that the staff can timely inspect the printer body 300; In addition, because the two triangular extrusion plates 704 are fixedly mounted on the movable extrusion rod 702, and the outer sides of the two triangular extrusion plates 704 are also in contact with the two movable guide frames 601, when the staff needs to install or remove the printer body 300, the staff pulls the movable extrusion rod 702 downward, and at this time, the two triangular extrusion plates 704 drive the two movable guide frames 601 to move outward at the same time; and because the two multi-function rods 705 are fixedly mounted on the top of the movable extrusion rod 702, and the tops of the two multi-function rods 705 are also in contact with the U-shaped support plate 104, and the two first switches 803 are fixedly mounted inside the two multi-function rods 705, when the staff pulls the movable extrusion rod 702 downward, the pressure of the two first switches 803 is automatically released, ensuring that the alarm 802 will not work when the printer body 300 is installed or removed.

[0030] A method for using an industrial intelligent 3D printer: 1) Install the support base 101 on the workbench by means of bolts, then pull the positioning pin 202 outward, then properly adjust the height of the U-shaped support plate 104, and then insert the inner end of the positioning pin 202 into the corresponding positioning groove 1031; 2) Rotate the driving gear 502 through one of the driving handles 503, so that the four hollow threaded cylinders 401 drive the four movable stabilizing heads 403 to move downward at the same time, ensuring that the four supporting springs 404 are in a compressed state; 3) Pull the movable squeezing rod 702 downward, then place the printer body 300 on the top of the U-shaped support plate 104 to ensure that the printer body 300 is between the two limit baffles 602, and then release the movable squeezing rod 702.

[0031] The specific usage and function of this embodiment are as follows: When the present invention is used, the support base 101 is first installed on the workbench by bolts, and then the positioning pin 202 is pulled outward, and then the height of the U-shaped support plate 104 is appropriately adjusted, so that the staff can operate the printer body 300 more conveniently, and then the inner end of the positioning pin 202 is inserted into the corresponding positioning groove 1031; the movable support frame 103 is positioned, so that the movable support frame 103 is more stable after the height adjustment; the setting of the reset spring 204 has an anti-falling effect on the positioning pin 202, avoiding the positioning The latch 202 is separated from the corresponding positioning groove 1031 to ensure the positioning effect; the driving gear 502 is rotated by one of the driving handles 503, so that the four hollow threaded cylinders 401 drive the four movable stabilizing heads 403 to move downward at the same time, ensuring that the four supporting springs 404 are in a compressed state; the four movable stabilizing heads 403 can always be in elastic contact with the workbench under the elastic force of the four supporting springs 404, playing a stabilizing role, even if the bolts for installing the supporting base 101 are slightly loosened, the supporting base 101 can be in the four movable stabilizing state. The stability effect can also be guaranteed under the support of the fixed head 403; the movable extrusion rod 702 is pulled downward, and then the printer body 300 is placed on the top of the U-shaped support plate 104 to ensure that the printer body 300 is between the two limit baffles 602, which has a limiting effect on the printer body 300, realizes the elastic limit of the printer body 300, and avoids the printer body 300 from being pinched, and then releases the movable extrusion rod 702; when one or two of the second switches 804 are in a pressed state, the alarm 802 works, which can automatically remind the staff that there is a large vibration when the printer body 300 is working, so that the staff can repair the printer body 300 in time; when the staff needs to install or remove the printer body 300, the staff pulls the movable extrusion rod 702 downward, and at this time, the two triangular extrusion plates 704 drive the two movable guide frames 601 to move outward at the same time; when the staff pulls the movable extrusion rod 702 downward, the pressing of the two first switches 803 is automatically released, ensuring that the alarm 802 will not work when the printer body 300 is installed or removed.

[0032] In this article, there are a few points to note: 1. The drawings of the embodiments of the present disclosure only involve structures related to the embodiments of the present disclosure, and other structures may refer to general designs.

[0033] 2. In the absence of conflict, the embodiments of the present disclosure and the features therein may be combined with each other to obtain new embodiments.

[0034] The above are only specific embodiments of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any technician familiar with the technical field can easily think of changes or substitutions within the technical scope disclosed in the present disclosure, which should be included in the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be based on the protection scope of the claims.

Claims

1. An industrial intelligent 3D printer, comprising: A support mechanism (100), a positioning mechanism (200), a printer body (300), a stabilizing mechanism (400), a driving mechanism (500), a limiting mechanism (600), a pushing mechanism (700) and an alarm mechanism (800); characterized in that the positioning mechanism (200) is installed on the rear side of the support mechanism (100), and the positioning mechanism (200) is used to position the support mechanism (100) after adjustment; and the printer body (300) is installed on the top of the support mechanism (100); The stabilizing mechanisms (400) are provided in four groups, and the four groups of stabilizing mechanisms (400) are mounted on the supporting mechanism (100), and the four groups of stabilizing mechanisms (400) are used to improve the stability of the supporting mechanism (100) when in use; the driving mechanism (500) is mounted on the supporting mechanism (100), and the driving mechanism (500) is used to rotate the four groups of stabilizing mechanisms (400); the limiting mechanisms (600) are provided in two groups, and the two groups of limiting mechanisms (600) are mounted on the supporting mechanism (100), and the two groups of limiting mechanisms (600) are used to limit the printer body (300); The pushing mechanism (700) is mounted on the supporting mechanism (100), and the pushing mechanism (700) is used to move the two sets of limiting mechanisms (600); the alarm mechanism (800) is mounted on the supporting mechanism (100), the two sets of limiting mechanisms (600), and the pushing mechanism (700), and the alarm mechanism (800) is used to remind staff to inspect the printer body (300).

2. An industrial intelligent 3D printer according to claim 1, characterized in that: The support mechanism (100) comprises: a support base (101), a rectangular guide sleeve (102), a movable support frame (103) and a U-shaped support plate (104); the rectangular guide sleeve (102) is fixedly mounted on the top of the support base (101); the movable support frame (103) is slidably mounted inside the rectangular guide sleeve (102), and a row of positioning grooves (1031) is provided on the rear side of the movable support frame (103); and the U-shaped support plate (104) is fixedly mounted on the top of the movable support frame (103).

3. An industrial intelligent 3D printer according to claim 2, characterized in that: The positioning mechanism (200) comprises: a positioning frame (201), a positioning pin (202), a reset ring (203) and a reset spring (204); the positioning frame (201) is fixedly mounted on the rear side of a rectangular guide sleeve (102); the positioning pin (202) is slidably mounted on the positioning frame (201) and the rectangular guide sleeve (102), and the inner end of the positioning pin (202) is provided with a chamfer, and the inner end of the positioning pin (202) is inserted into a corresponding positioning groove (1031); the reset ring (203) is fixedly mounted on the outside of the positioning pin (202); the reset spring (204) is sleeved on the outside of the positioning pin (202), and the reset spring (204) is located between the positioning frame (201) and the reset ring (203).

4. The industrial intelligent 3D printer according to claim 3, characterized in that: The stabilizing mechanism (400) comprises: a hollow threaded barrel (401), a connecting gear (402), a movable stabilizing head (403) and a supporting spring (404); the hollow threaded barrel (401) is threadedly connected to the supporting base (101); the connecting gear (402) is fixedly mounted on the top of the hollow threaded barrel (401); the movable stabilizing head (403) is slidably mounted inside the hollow threaded barrel (401); and the supporting spring (404) is mounted inside the hollow threaded barrel (401) and the movable stabilizing head (403).

5. An industrial intelligent 3D printer according to claim 4, characterized in that: The driving mechanism (500) comprises: a mounting bracket (501), a driving gear (502) and a driving handle (503); the mounting bracket (501) is fixedly mounted on the outside of a rectangular guide sleeve (102); the driving gear (502) is rotatably mounted on the outside of the mounting bracket (501), and the driving gear (502) is also threadedly connected to four connecting gears (402); the driving handle (503) is provided with a circle, and the circle of driving handles (503) is fixedly mounted on the top of the driving gear (502).

6. An industrial intelligent 3D printer according to claim 5, characterized in that: The limiting mechanism (600) comprises: a movable guide frame (601), a limiting baffle (602), a limiting clamp ring (603) and a limiting spring (604); the movable guide frame (601) is slidably mounted on the U-shaped support plate (104); the limiting baffle (602) is fixedly mounted on the inner end of the movable guide frame (601), and the inner side of the limiting baffle (602) is also in contact with the printer body (300); there are two limiting clamp rings (603) in total, and the two limiting clamp rings (603) are fixedly mounted on the outside of the movable guide frame (601); there are two limiting springs (604) in total, and the two limiting springs (604) are sleeved on the outside of the movable guide frame (601), and the two limiting springs (604) are located between the U-shaped support plate (104) and the limiting baffle (602).

7. An industrial intelligent 3D printer according to claim 6, characterized in that: The pushing mechanism (700) comprises: a circular guide shaft (701), a movable extrusion rod (702), a rubber anti-slip sleeve (703) and a triangular extrusion plate (704); two circular guide shafts (701) are provided, and the two circular guide shafts (701) are fixedly mounted on the bottom of the U-shaped support plate (104); the movable extrusion rod (702) is slidably mounted on the outside of the two circular guide shafts (701); two rubber anti-slip sleeves (703) are provided, and the two rubber anti-slip sleeves (703) are fixedly mounted on the outside of the movable extrusion rod (702); two triangular extrusion plates (704) are provided, and the two triangular extrusion plates (704) are fixedly mounted on the movable extrusion rod (702), and the outer sides of the two triangular extrusion plates (704) are also in contact with the two movable guide frames (601).

8. An industrial intelligent 3D printer according to claim 7, characterized in that: The pushing mechanism (700) further comprises: a multifunctional rod (705), a supporting disc (706) and a squeezing spring (707); two multifunctional rods (705) are provided, and the two multifunctional rods (705) are fixedly mounted on the top of the movable squeezing rod (702), and the tops of the two multifunctional rods (705) are also in contact with the U-shaped supporting plate (104); two supporting discs (706) are provided, and the two supporting discs (706) are fixedly mounted on the bottom ends of the two circular guide shafts (701); two squeezing springs (707) are provided, and the two squeezing springs (707) are sleeved on the outside of the two circular guide shafts (701), and the two squeezing springs (707) are located between the movable squeezing rod (702) and the two supporting discs (706).

9. The industrial intelligent 3D printer according to claim 8, characterized in that: The alarm mechanism (800) comprises: a lithium battery (801), an alarm (802), a first switch (803) and a second switch (804); the lithium battery (801) is fixedly mounted on the front side of the rectangular guide sleeve (102); the alarm (802) is fixedly mounted on the front side of the rectangular guide sleeve (102), and the negative electrode of the lithium battery (801) is connected to the negative electrode of the alarm (802) via a wire; two first switches (803) are provided, and the two first switches (803) are fixedly mounted Inside the two multifunctional rods (705), the positive electrodes of the two first switches (803) are connected to the positive electrode of the lithium battery (801) through a wire; two second switches (804) are provided, and the two second switches (804) are fixedly installed on the outside of the two limit baffles (602); the positive electrodes of the two second switches (804) are connected to the positive electrode of the alarm (802) through a wire, and the negative electrodes of the two first switches (803) are connected to the negative electrodes of the two second switches (804) through a wire.

10. A method for using an industrial intelligent 3D printer, applied to an industrial intelligent 3D printer as claimed in claim 7, characterized in that: The steps are as follows: 1) Install the support base (101) on the workbench by means of bolts, then pull the positioning pin (202) outward, then appropriately adjust the height of the U-shaped support plate (104), and then insert the inner end of the positioning pin (202) into the corresponding positioning groove (1031); 2) Rotate the driving gear (502) through one of the driving handles (503), so that the four hollow threaded cylinders (401) drive the four movable stabilizing heads (403) to move downward at the same time, ensuring that the four supporting springs (404) are in a compressed state; 3) Pull the movable squeezing rod (702) downward, then place the printer body (300) on top of the U-shaped support plate (104), ensure that the printer body (300) is between the two limit baffles (602), and then release the movable squeezing rod (702).

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