Art photo frame manufacturing table

By designing an artistic photo frame production table including a cutting machine, a servo motor and a rubber clamping roller, the problem of inefficiency in the photo frame production process is solved, and automatic groove cutting of the inner wall and side wall of the photo frame is realized, and working efficiency is improved.

CN120170522AInactive Publication Date: 2025-06-20SHANDONG HUAYU UNIV OF TECH
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Patent Information

Application Number
CN202510615303.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-14
Publication Date
2025-06-20
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the production of artistic photo frames, phased operations require fixing the photo frames multiple times, which is inefficient.

Method used

An artistic photo frame production table was designed, including a bench, rack, cutting machine, curved plate rack, servo motor, meshing gear and rubber clamping roller. Through the transmission unit and magnetic plate rack, automatic groove cutting of the inner wall and side wall of the photo frame is achieved to improve working efficiency.

Benefits of technology

Through the automated cutting and fixing mechanism, the working efficiency of slotting the inner wall and side wall of the photo frame is effectively improved, the number of manual fixation is reduced, and the impact of resonance on the strength of the photo frame structure is avoided.

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Abstract

The invention relates to the technical field of photo frame manufacturing equipment, and discloses an art photo frame manufacturing table which comprises a rack and a rack, a first cutting machine is installed on the rack, an arc-shaped plate frame is further installed on the rack, a second cutting machine is arranged on the arc-shaped plate frame, a first partition plate and a second partition plate are further fixedly installed in the rack, and a servo motor is installed on the second partition plate. An arc-shaped plate frame is installed on the rack, an arc-shaped tooth row is installed on the side wall of the arc-shaped plate frame, a meshing gear meshed with the arc-shaped tooth row is arranged in the rack, and the meshing gear is connected with the servo motor through a transmission unit. Meanwhile, the side walls, cut by the first cutting machine and the second cutting machine, of the photo frame are not located on the same side wall, so that the influence of the resonance condition (generated in the cutting process) on the structural strength of the photo frame is avoided, the inner wall and the outer wall of the photo frame can be effectively slotted through the structural design, and the working efficiency is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of photo frame manufacturing equipment, and specifically to an art photo frame manufacturing table. Background Art

[0002] Art photo frames, as the frames for carrying and displaying art works, their manufacturing processes not only concern the practical functions of the photo frames, but also embody the perfect combination of aesthetics and craftsmanship. During the manufacturing process of art photo frames, first, the staff selects corresponding materials according to the specified requirements. Common materials include: wood, metal materials (such as aluminum alloy, stainless steel, etc.), synthetic materials such as plastics and glass. After the selection is completed, precise cutting and shaping operations need to be carried out on the selected materials according to detailed design drawings and specific requirements. After the cutting is completed, all materials must undergo strict pretreatment before painting, fitting or other subsequent processes, including thorough surface cleaning, such as removing substances that may affect the bonding strength, such as grease, dirt and oxide layers; for metal materials, rust removal and anti-oxidation treatment are also required to ensure that their surface conditions meet the painting requirements; non-metal materials such as plastics and glass need to ensure that the surfaces are smooth and free of defects for fitting or painting. After the processing is completed, the photo frame is assembled. After the photo frame is assembled, corresponding grooving work is usually required. Commonly, the grooving work is carried out on the inner side of the photo frame. Grooving on the inner wall of the photo frame is for embedding components such as glass, photos, and back panels to ensure firmness and replaceability; however, during the manufacturing process of art photo frames, in order to improve the appreciation degree, grooving is usually carried out on the side walls of the photo frame, and the side wall grooving can play roles such as decorative design or expansion of practical functions (for example, the side wall notch can embed a seamless tape, a magnetic device or a hook to achieve nail-free hanging or flexible replacement of ornaments). In actual use, the grooving on the inner wall and the side wall are often carried out in stages, but the staged operation requires multiple fixings of the photo frame, resulting in low efficiency. For this reason, we propose an art photo frame manufacturing table. Summary of the Invention

[0003] The purpose of the present invention is to provide an art photo frame manufacturing table to solve the problems raised in the above background art.

[0004] To achieve the above object, the present invention provides the following technical solution: An art photo frame production table, comprising a table frame, a machine frame fixedly installed on the table frame, and a first cutting machine for grooving the inner wall of the photo frame is installed on the machine frame. And a curved plate frame rotatably connected to the inner wall of the table frame is also installed on the table frame, and a second cutting machine for grooving the side wall of the photo frame is arranged on the curved plate frame. A first partition and a second partition located below the first partition are fixedly installed inside the table frame. The curved plate frame is rotatably connected to the first partition, and a servo motor is installed on the second partition. An arc-shaped tooth row is fixedly installed on the side wall of the curved plate frame, and a meshing gear meshing with the arc-shaped tooth row is arranged inside the table frame. Among them, the meshing gear is connected to the servo motor through a transmission unit. A through groove communicating with the inside of the table frame is also arranged on the table frame, and a moving plate frame slidably connected to the inner wall of the table frame is installed inside the table frame. Connecting plate frames are fixedly installed on each side wall of the moving plate frame, and rubber clamping rollers for fixing the photo frame are arranged on each connecting plate frame. And the connecting plate frame is connected to the rubber clamping roller through a driving part.

[0005] Preferably, the transmission unit includes a transmission disc installed on the second partition and rotatably connected to it, and a plurality of force-bearing plate frames are fixedly installed on the inner wall of the transmission disc. A moving sleeve slidably connected to the output end of the servo motor is installed on the output end of the servo motor. A circular disc frame is fixedly installed at the bottom of the moving sleeve, and a plurality of force-applying rod frames are fixedly installed on the outer wall of the circular disc frame. And the force-bearing plate frames are located on the movement track of the force-applying rod frames.

[0006] Preferably, a transmission shaft body rotatably connected to the first partition is installed on the first partition, and the meshing gear is fixedly installed on the transmission shaft body. The transmission shaft body is connected to the transmission disc through a belt transmission mechanism.

[0007] Preferably, the driving part includes square frames symmetrically installed on the connecting plate frame, and an extending plate frame slidably connected to the inner wall of the square frame is installed inside the square frame. One end of the extending plate frame is fixedly connected to the rubber clamping roller. Guide shaft bodies slidably connected to the inner wall of the square frame are symmetrically installed on the extending plate frame. A constant force spring connected to the guide shaft body is installed inside the square frame. One end of the extending plate frame away from the rubber clamping roller is a magnetic end, and a magnetic plate frame is fixedly installed on the inner wall of the top of the table frame. And the magnetic pole of the magnetic plate frame is the same as that of the magnetic end of the extending plate frame.

[0008] Preferably, a plurality of clamping plate frames are fixedly installed on the extension plate frame, and a clamping frame slidably connected to its inner wall is installed inside the square frame. A plurality of clamping rollers rotatably connected to the clamping frame are installed on the clamping frame. The clamping rollers are in contact with the clamping plate frames. A return spring is connected between the inner wall of the clamping frame and the inner wall of the square frame. A magnetic shaft body is installed on the side wall of the clamping frame, and the magnetic shaft body penetrates through the side wall of the square frame and extends to the outside thereof. A support plate frame is fixedly installed on the inner wall of the top of the platform frame, and a square magnet is fixedly installed on the support plate frame. The square magnet is located on the movement track of the magnetic shaft body, and the magnetic poles of the square magnet and the magnetic shaft body are opposite.

[0009] Preferably, a driving shaft body rotatably connected to the first partition is installed on the first partition. An electric magnetic group is fixedly installed at the bottom of the driving shaft body. A circular magnet is installed at the top of the moving sleeve. When the electric magnetic group is energized, an attractive force is generated on the circular magnet. A plurality of plastic springs I are connected between the circular disc frame at the bottom of the moving sleeve and the output end of the servo motor. A spiral groove is arranged on the outer wall of the driving shaft body.

[0010] Preferably, a strip-shaped frame is fixedly installed at the bottom of the moving plate frame, and the driving shaft body is located inside the strip-shaped frame. A plurality of rolling spheres located in the spiral groove are installed on the inner wall of the strip-shaped frame. When the electric magnetic group is not energized, the circular disc frame and a plurality of force-applying rod frames on its outer wall are located inside the transmission disc, and the force-receiving plate frame is located on the movement track of the force-applying rod frames; when the electric magnetic group is energized, the circular disc frame and a plurality of force-applying rod frames on its outer wall leave the inside of the transmission disc.

[0011] Preferably, a guiding slide rail is fixedly installed on the arc-shaped plate frame. A magnetic frame fixedly connected to the second cutting machine is installed in the guiding slide rail, and the magnetic frame is limited to slide in the guiding slide rail. An electromagnet is fixedly installed on the inner wall of one side of the guiding slide rail, and when the electromagnet is energized, a magnetic force is generated on the magnetic frame. A plastic spring II is connected between the other side of the guiding slide rail and the magnetic frame.

[0012] Preferably, an inclined plate frame is fixedly installed inside the platform frame. The inclined plate frame is located between the first partition and the second partition. A chip removal channel communicated with the outside is also installed inside the platform frame, and the chip removal channel is communicated with the inclined plate frame.

[0013] Preferably, one side of the clamping plate frame is an inclined surface and the other side is a right-angle surface.

[0014] Compared with the prior art, the beneficial effects of the present invention are: 1. The present invention utilizes the cutting machine one on the frame and the cutting machine two on the guiding slide rail to perform cutting and grooving operations on the photo frame. The servo motor drives the circular disc frame to rotate through the moving sleeve, so that the circular disc frame exerts a force on the force-bearing plate frame in the transmission disc through the force-applying rod frame. Thus, under the action of the belt transmission mechanism, the transmission shaft drives the meshing gear to rotate. Under the action of the meshing gear, the arc-shaped tooth row drives the arc-shaped plate frame to rotate. Furthermore, during the cutting process, the cutting machine two can perform grooving and cutting operations on the outer walls of each side of the photo frame. At the same time, the side walls of the photo frame cut by the cutting machine one and the cutting machine two are not on the same side wall, so as to avoid the influence of resonance (generated during the cutting process) on the structural strength of the photo frame. Furthermore, through the structural design of the present invention, the inner wall and outer wall of the photo frame can be effectively grooved to improve work efficiency; 2. The present invention uses rubber clamping rollers to limit the inner wall of the photo frame. Utilizing the magnetic relationship between the magnetic plate frame and the magnetic end of the extension plate frame, when the extension plate frame rises to one side of the magnetic plate frame, it is subjected to the repulsive force of the magnetic plate frame. Thus, the rubber clamping rollers at the end of the extension plate frame contact the inner wall of the photo frame and exert a force on it to play a fixing role. At the same time, the clamping rollers are used to limit the movement direction of the clamping plate frame, thereby further limiting the rubber clamping rollers to enhance the fixing strength of the rubber clamping rollers on the photo frame and avoid the situation of the photo frame shaking during the cutting process. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a schematic diagram of the overall structure of the present invention; Figure 2 is a schematic top view of the overall structure of the present invention; Figure 3 is a schematic diagram of the frame structure of the present invention; Figure 4 is a schematic diagram of the internal structure of the frame of the present invention; Figure 5 is a schematic diagram of the driving shaft body and the bar-shaped frame structure of the present invention; Figure 6 is a schematic front view of the driving shaft body and the bar-shaped frame of the present invention; Figure 7 is a schematic diagram of the bar-shaped frame and the moving plate frame structure of the present invention; Figure 8 is a schematic diagram of the moving plate frame and the connecting plate frame structure of the present invention; Figure 9 is a schematic top view of the internal structure of the square frame of the present invention; Figure 10 is a schematic diagram of the moving sleeve and the electromagnetic group structure of the present invention; Figure 11 is a schematic diagram of the circular disc frame and the transmission disc frame structure of the present invention; Figure 12 This is a top view schematic diagram of the guiding slide rail structure of the present invention.

[0016] In the figure: 1, bench; 1001, through groove; 1002, magnetic plate frame; 1003, support plate frame; 1004, square magnet; 1005, inclined plate frame; 1006, chip removal channel; 2, frame; 21, cutting machine 1; 3, arc plate frame; 31, cutting machine 2; 32, arc tooth row; 33, guiding slide rail; 34, magnetic frame; 35, electromagnet; 36, plastic spring 2; 4, partition 1; 5, partition 2; 51, servo motor; 6, meshing gear; 7, transmission unit; 71, transmission disc; 711, force-bearing plate frame; 712, moving sleeve; 713, circular disc frame; 714, force-applying rod frame; 715, transmission shaft body; 716, belt transmission mechanism; 717, circular magnet; 718, plastic spring 1; 8, moving plate frame; 81, connecting plate frame; 82, rubber clamping roller; 83, driving part; 831, square frame; 832, extension plate frame; 833, guiding shaft body; 834, constant force spring; 835, clamping plate frame; 836, clamping frame; 837, clamping roller; 838, return spring; 839, magnetic shaft body; 84, strip frame; 841, rolling sphere; 9, driving shaft body; 91, electric magnetic group; 92, spiral groove. Detailed implementation manners

[0017] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0018] Please refer to Figures 1-12, the present invention provides a technical solution: an art photo frame production table. The present invention solves the technical problems in the background art, including a table frame 1, a frame 2 fixedly installed on the table frame 1, and a cutting machine one 21 for grooving the inner wall of the photo frame installed on the frame 2. Moreover, an arc plate frame 3 rotatably connected to the inner wall of the table frame 1 is also installed on the table frame 1, and a cutting machine two 31 for grooving the side wall of the photo frame is provided on the arc plate frame 3. It should be noted that both the cutting machine one 21 and the cutting machine two 31 are cutting devices for grooving photo frames in the prior art, so the present invention does not describe them in detail. A partition one 4 and a partition two 5 located below the partition one 4 are also fixedly installed inside the table frame 1. The arc plate frame 3 is rotatably connected to the partition one 4, and a servo motor 51 is installed on the partition two 5. An arc tooth row 32 is fixedly installed on the side wall of the arc plate frame 3, and a meshing gear 6 meshing with the arc tooth row 32 is provided inside the table frame 1. Among them, the meshing gear 6 is connected to the servo motor 51 through a transmission unit 7. As a further limitation in the present invention, the transmission unit 7 includes a transmission disc 71 installed on and rotatably connected to the partition two 5, and a plurality of force-bearing plate frames 711 are fixedly installed on the inner wall of the transmission disc 71. A moving sleeve 712 slidably connected to the output end of the servo motor 51 is installed on the output end of the servo motor 51. Among them, a circular disc frame 713 is fixedly installed at the bottom of the moving sleeve 712, and a plurality of force-applying rod frames 714 are fixedly installed on the outer wall of the circular disc frame 713. A driving shaft body 9 rotatably connected to the partition one 4 is installed on the partition one 4, and an electric magnetic group 91 is also fixedly installed at the bottom of the driving shaft body 9. A circular magnet 717 is fixedly installed at the top of the moving sleeve 712. When the electric magnetic group 91 is energized, an attractive force is generated on the circular magnet 717. A plurality of plastic springs one 718 are connected between the circular disc frame 713 at the bottom of the moving sleeve 712 and the output end of the servo motor 51. Combined with Figure 4 and Figure 11 shown, when the electric magnetic group 91 is not energized, the circular disc frame 713 and the plurality of force-applying rod frames 714 on its outer wall are located inside the transmission disc 71, and the force-bearing plate frames 711 are located on the movement trajectories of the force-applying rod frames 714; when the electric magnetic group 91 is energized, the circular disc frame 713 and the plurality of force-applying rod frames 714 on its outer wall leave the transmission disc 71. Furthermore, the force-bearing plate frames 711 inside the transmission disc 71 are not on the rotation trajectories of the force-applying rod frames 714, and the force-bearing plate frames 711 are located on the movement trajectories of the force-applying rod frames 714. Among them, a transmission shaft body 715 rotatably connected to the partition one 4 is installed on the partition one 4, and the meshing gear 6 is fixedly installed on the transmission shaft body 715. The transmission shaft body 715 is connected to the transmission disc 71 through a belt transmission mechanism 716; Furthermore, combined with Figure 2As shown in the figure, when the first cutting machine 21 and the second cutting machine 31 in the present invention simultaneously groove the inner wall and the outer wall of the side wall of the photo frame, the side walls where the first cutting machine 21 and the second cutting machine 31 work are not on the same side wall. If the inner and outer walls of the same side are simultaneously grooved, resonance is likely to occur during the grooving process, which will affect the structural strength of the photo frame. However, since the first cutting machine 21 and the second cutting machine 31 in the present invention groove the inner and outer walls of different side walls of the photo frame, the influence of resonance on the structural strength of the photo frame can be effectively reduced. Among them, a guiding slide rail 33 is fixedly installed on the arc-shaped plate frame 3, a magnetic frame 34 fixedly connected to the second cutting machine 31 is installed in the guiding slide rail 33, and the magnetic frame 34 is limited to slide in the guiding slide rail 33. An electromagnet 35 is fixedly installed on one inner wall of the guiding slide rail 33, and the electromagnet 35 generates a magnetic acting force on the magnetic frame 34 when powered on. A second plastic spring 36 is connected between the other side of the guiding slide rail 33 and the magnetic frame 34.

[0019] Combined with the attached Figure 3As shown in the figure, a through groove 1001 communicating with the inside is provided on the bench 1, and an inclined plate frame 1005 is fixedly installed inside the bench 1. The inclined plate frame 1005 is located between the first partition 4 and the second partition 5. A chip removal channel 1006 communicating with the outside is also installed inside the bench 1, and the chip removal channel 1006 is in communication with the inclined plate frame 1005. Thus, during the slotting operation of the first cutting machine 21 and the second cutting machine 31 on the photo frame, the generated waste chips will fall into the through groove 1001 and enter the chip removal channel 1006 along the inclined plate frame 1005, and flow out of the bench 1 along the trajectory of the chip removal channel 1006. A moving plate frame 8 slidably connected to the inner wall is installed inside the bench 1, and a connecting plate frame 81 is fixedly installed on each side wall of the moving plate frame 8. A rubber clamping roller 82 for fixing the photo frame is provided on each connecting plate frame 81. The rubber clamping roller 82 is used to limit the inner wall of the photo frame, and the connecting plate frame 81 and the rubber clamping roller 82 are connected by a driving part 83. As a further limitation in the present invention, the driving part 83 includes a square frame 831 symmetrically installed on the connecting plate frame 81, and an extending plate frame 832 slidably connected to the inner wall is installed inside the square frame 831. One end of the extending plate frame 832 is fixedly connected to the rubber clamping roller 82. Guide shafts 833 slidably connected to the inner wall of the square frame 831 are symmetrically installed on the extending plate frame 832. A constant force spring 834 connected to the guide shafts 833 is installed inside the square frame 831. One end of the extending plate frame 832 away from the rubber clamping roller 82 is a magnetic end, and a magnetic plate frame 1002 is fixedly installed on the inner wall of the top of the bench 1, and the magnetic plate frame 1002 has the same magnetic pole as the magnetic end of the extending plate frame 832. In the initial state, the moving plate frame 8, the connecting plate frame 81, the square frame 831, and the rubber clamping roller 82 are all located in the through groove 1001. At this time, the magnetic end of the extending plate frame 832 is located below the magnetic plate frame 1002. A plurality of clamping plate frames 835 are fixedly installed on the extending plate frame 832. One side of the clamping plate frame 835 is an inclined surface and the other side is a right-angle surface. A clamping frame 836 slidably connected to the inner wall is installed inside the square frame 831, and a plurality of clamping rollers 837 rotatably connected to it are installed on the clamping frame 836. The clamping rollers 837 are in contact with the clamping plate frames 835. A return spring 838 is connected between the inner wall of the clamping frame 836 and the square frame 831, and a magnetic shaft 839 is installed on the side wall of the clamping frame 836. The magnetic shaft 839 penetrates the side wall of the square frame 831 and extends to the outside. A support plate frame 1003 is also fixedly installed on the inner wall of the top of the bench 1, and a square magnet 1004 is fixedly installed on the support plate frame 1003, and the square magnet 1004 is located on the movement trajectory of the magnetic shaft 839. The square magnet 1004 and the magnetic shaft 839 have opposite magnetic poles. In the initial state,That is, as mentioned above, "the moving plate frame 8, the connecting plate frame 81, the square frame 831, and the rubber clamping roller 82 are all located within the through groove 1001. At this time, the magnetic end of the extension plate frame 832 is located below the magnetic plate frame 1002". The square magnet 1004 is located on one side of the magnetic shaft body 839 to generate an attractive force on the magnetic shaft body 839. As a result, the clamping roller 837 is not on the movement trajectory of the clamping plate frame 835 at this time. A spiral groove 92 is provided on the outer wall of the drive shaft body 9. A strip-shaped frame 84 is fixedly installed at the bottom of the moving plate frame 8. The drive shaft body 9 is located within the strip-shaped frame 84, and a plurality of rolling spheres 841 located within the spiral groove 92 are installed on the inner wall of the strip-shaped frame 84; Specifically, in combination with the attached Figure 4 drawing and the attached Figure 10 As shown, when the photo frame is placed on the table frame 1, the electric magnetic group 91 is energized at this time. The electric magnetic group 91 generates an attractive force on the circular magnet 717 at the top of the moving sleeve 712. That is, the moving sleeve 712 moves directionally on the output end of the servo motor 51. During the movement, the circular disc frame 713 at the bottom of the moving sleeve 712 stretches the plastic spring 718, and the circular disc frame 713 and the plurality of force-applying rod frames 714 on its outer wall move out of the transmission disc 71. Therefore, when the circular disc frame 713 rotates in this state, the force-applying rod frames 714 on the outer wall of the circular disc frame 713 do not apply a force to the force-receiving rod frames within the transmission disc 71. Therefore, when the electric magnetic group 91 is energized, the circular magnet 717 is in close contact with the electric magnetic group 91. Subsequently, the servo motor 51 is started and rotates forward. Its output end drives the drive shaft body 9 to rotate within the strip-shaped frame 84 through the moving sleeve 712, the circular magnet 717, and the electric magnetic group 91. During the rotation of the drive shaft body 9, the spiral groove 92 on its outer wall applies a force to the rolling spheres 841 within the strip-shaped frame 84, thereby causing the strip-shaped frame 84 to drive the moving plate frame 8 to move upward directionally. That is, the moving plate frame 8 and the connecting plate frame 81 thereon move out of the through groove 1001 and enter the photo frame (as shown in the attached drawing). During the upward movement of the connecting plate frame 81, components such as the square frame 831, the extension plate frame 832, and the rubber clamping roller 82 thereon move synchronously with it. During the upward movement of the square frame 831, the magnetic shaft body 839 within it gradually moves away from the corresponding position of the square magnet 1004. When the magnetic shaft body 839 moves away from the corresponding position of the square magnet 1004, the clamping frame 836 causes the magnetic shaft body 839 to return to its initial position under the action of the return spring 838. It should be noted that when the square magnet 1004 is located on one side of the magnetic shaft body 839, the magnetic shaft body 839 is subjected to the attractive force of the square magnet 1004 and drives the clamping frame 836 to squeeze the return spring 838. Therefore, when the magnetic shaft body 839 moves away from the corresponding position of the square magnet 1004, the clamping roller 837 is located on the movement trajectory of the clamping plate frame 835; The driving shaft body 9 continues to rotate forward, that is, the strip-shaped frame 84 continues to move upward, so that the moving plate frame 8 and the connecting plate frame 81 move synchronously with it. When the rubber clamping roller 82 leaves the through groove 1001 and enters the photo frame, at this time, the magnetic end of the extension plate frame 832 moves to the corresponding position of the magnetic plate frame 1002, and the magnetic plate frame 1002 generates a repulsive force on the magnetic end of the extension plate frame 832, so that the extension plate frame 832 drives the rubber clamping roller 82 to move towards the inner wall of the photo frame. During the movement of the extension plate frame 832, the guiding shaft body 833 on it will squeeze the constant force spring 834. During the movement of the extension plate frame 832, the clamping plate frame 835 on it will contact the clamping roller 837. Combined with Attachment Figure 9 As shown, when the rubber clamping roller 82 moves towards the inner wall of the photo frame, the inclined surface of the clamping plate frame 835 contacts the clamping roller 837 and applies a force to it, so that the clamping roller 837 drives the clamping frame 836 to squeeze the return spring 838. Furthermore, the clamping roller 837 will not hinder the movement of the clamping plate frame 835. However, when the extension plate frame 832 moves, the right-angle surface of the clamping plate frame 835 will contact the clamping roller 837, and then the clamping roller 837 will hinder the movement of the clamping plate frame 835, so that the rubber clamping roller 82 always contacts the inner wall of the photo frame and applies a force to it to play a fixing role. This design is combined with the magnetic force of the magnetic plate frame to strengthen the fixing of the photo frame and prevent the photo frame from shaking during the cutting process. At the same time, if the magnetic force of the magnetic plate frame 1002 decays due to external factors, the rubber clamping roller 82 will still play a fixing role for the photo frame; and the rubber clamping roller 82 of the present invention can fix photo frames of various sizes to adapt to the cutting and grooving work of different models of photo frames; Combined with Attachment Figure 2 、Attachment Figure 4 、Attachment Figure 11 and Attachment Figure 12As shown, after the rubber clamping roller 82 fixes the photo frame, grooving work is carried out on the inner and outer walls of the photo frame. The electromagnetic group 91 is powered off, and the moving sleeve 712 will return to its initial position under the action of the plastic spring 718, that is, the circular disc frame 713 and the force-applying rod frame 714 on its outer wall are located inside the transmission disc 71. Subsequently, the servo motor 51 is started again. The output end of the servo motor 51 drives the moving sleeve 712 to rotate. During the rotation of the moving sleeve 712, the circular disc frame 713 at its bottom drives the force-applying rod frame 714 to apply a force to the force-receiving rod frame inside the transmission disc 71, thereby causing the transmission disc 71 to rotate on the partition 5. It should be noted that the axis of the transmission disc 71 coincides with the axis of the output end of the servo motor 51. When the transmission disc 71 does not contact the output end of the servo motor 51, when the transmission disc 71 rotates, it drives the transmission shaft body 715 to rotate through the belt transmission mechanism 716, thereby causing the meshing gear 6 to mesh with the arc-shaped tooth row 32, that is, the arc-shaped tooth row 32 drives the arc-shaped plate frame 3 to rotate, and the cutting machine 31 on the arc-shaped plate frame 3 rotates synchronously with it; thus, when grooving the inner and outer walls of the photo frame, the cutting machine 21 on the frame 2 grooves one inner wall of the photo frame. At the same time, the electromagnet 35 in the guide rail 33 is powered on to generate a repulsive force on the magnetic frame 34, so that the magnetic frame 34 moves in a limited way in the guide rail 33, and drives the cutting machine 31 to move in a fixed direction during the movement, that is, the cutting machine 31 cuts the outer wall of one side of the photo frame. And during the process of the magnetic frame 34 moving in a fixed direction in the guide rail 33, the magnetic frame 34 squeezes the plastic spring 36. It should be noted that the side walls of the photo frame cut by the cutting machine 21 and the cutting machine 31 mentioned above are not on the same side wall to avoid the resonance condition (generated during the cutting process) from affecting the structural strength of the photo frame. Thus, through the structural design of the present invention, the inner wall and the outer wall of the photo frame can be effectively grooved to improve work efficiency.

[0020] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or sequence between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.

[0021] Although embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An artistic photo frame production table, characterized in that: The invention comprises a stand (1), a frame (2) fixedly mounted on the stand (1), a cutting machine (21) for slotting the inner wall of a photo frame installed on the frame (2), an arc-shaped plate frame (3) rotatably connected to the inner wall of the frame installed on the stand (1), and a cutting machine (31) for slotting the side wall of the photo frame arranged on the arc-shaped plate frame (3), a partition (4) and a partition (5) located below the partition (4) are also fixedly mounted inside the stand (1), the arc-shaped plate frame (3) is rotatably connected to the partition (4), a servo motor (51) is installed on the partition (5), and an arc-shaped tooth row (32) is fixedly mounted on the side wall of the arc-shaped plate frame (3). ), and a meshing gear (6) meshing with the arc-shaped tooth row (32) is arranged inside the stand (1), wherein the meshing gear (6) is connected to the servo motor (51) via a transmission unit (7), and the stand (1) is also provided with a through groove (1001) in communication with the inside thereof, and a movable plate frame (8) is installed inside the stand (1) and is slidably connected to the inner wall thereof, and each side wall of the movable plate frame (8) is fixedly mounted with a connecting plate frame (81), and each connecting plate frame (81) is provided with a rubber clamping roller (82) for fixing the photo frame, and the connecting plate frame (81) and the rubber clamping roller (82) are connected via a driving unit (83).

2. The art photo frame production table according to claim 1, characterized in that: The transmission unit (7) comprises a transmission disc (71) mounted on the second partition (5) and rotatably connected thereto, a plurality of force-bearing plate frames (711) are fixedly mounted on the inner wall of the transmission disc (71), and a movable sleeve (712) slidably connected thereto is mounted on the output end of the servo motor (51), wherein a circular disc frame (713) is fixedly mounted on the bottom of the movable sleeve (712), and a plurality of force-applying rod frames (714) are fixedly mounted on the outer wall of the circular disc frame (713), and the force-bearing plate frames (711) are located on the movement trajectory of the force-applying rod frames (714).

3. The art photo frame production table according to claim 2, characterized in that: The partition plate 1 (4) is provided with a transmission shaft (715) rotatably connected thereto, and the meshing gear (6) is fixedly mounted on the transmission shaft (715), and the transmission shaft (715) and the transmission disc (71) are connected via a belt transmission mechanism (716).

4. The art photo frame production table according to claim 2, characterized in that: The driving part (83) comprises a square frame (831) symmetrically mounted on the connecting plate frame (81), and an extension plate frame (832) slidably connected to the inner wall of the square frame (831) is mounted inside the square frame (831), one end of the extension plate frame (832) is fixedly connected to the rubber clamping roller (82), a guide shaft body (833) slidably connected to the inner wall of the square frame (831) is symmetrically mounted on the extension plate frame (832), and a constant force spring (834) connected to the guide shaft body (833) is mounted inside the square frame (831), wherein one end of the extension plate frame (832) away from the rubber clamping roller (82) is a magnetic end, and a magnetic plate frame (1002) is fixedly mounted on the inner wall of the top of the stand (1), and the magnetic poles of the magnetic plate frame (1002) and the magnetic end of the extension plate frame (832) are the same.

5. The artistic photo frame production table according to claim 4, characterized in that: A plurality of clamping plate frames (835) are fixedly mounted on the extension plate frame (832), and a clamping frame (836) slidably connected to the inner wall of the square frame (831) is mounted inside the clamping frame (831), and a plurality of clamping rollers (837) rotatably connected to the clamping frame (836) are mounted on the clamping frame (836), and the clamping rollers (837) are in contact with the clamping plate frames (835), and a return spring (838) is connected between the clamping frame (836) and the inner wall of the square frame (831), and a return spring (838) is provided on the clamping frame. A magnetic shaft (839) is installed on the side wall of the frame (836), and the magnetic shaft (839) passes through the side wall of the square frame (831) and extends to the outside thereof, wherein a support plate frame (1003) is also fixedly installed on the inner wall of the top of the stand (1), and a square magnet (1004) is fixedly installed on the support plate frame (1003), and the square magnet (1004) is located on the movement trajectory of the magnetic shaft (839), wherein the magnetic poles of the square magnet (1004) and the magnetic shaft (839) are opposite.

6. The artistic photo frame production table according to claim 5, characterized in that: A driving shaft (9) rotatably connected thereto is mounted on the partition plate (4); an electric magnetic group (91) is fixedly mounted on the bottom of the driving shaft (9); a circular magnet (717) is mounted on the top of the movable sleeve (712); the electric magnetic group (91) generates an attractive force on the circular magnet (717) when power is supplied; a plurality of plastic springs (718) are connected between a circular disc frame (713) at the bottom of the movable sleeve (712) and an output end of a servo motor (51); and a spiral groove (92) is disposed on the outer wall of the driving shaft (9).

7. The artistic photo frame production table according to claim 6, characterized in that: A strip frame (84) is fixedly mounted on the bottom of the movable plate frame (8), and the driving shaft (9) is located in the strip frame (84). A plurality of rolling balls (841) located in a spiral groove (92) are mounted on the inner wall of the strip frame (84). When the electric magnetic group (91) is not energized, the circular plate frame (713) and a plurality of force-applying rod frames (714) on its outer wall are located in the transmission disc (71), and the force-bearing plate frame (711) is located on the movement trajectory of the force-applying rod frames (714); when the electric magnetic group (91) is energized, the circular plate frame (713) and the plurality of force-applying rod frames (714) on its outer wall leave the transmission disc (71).

8. An artistic photo frame production table according to any one of claims 1 to 7, characterized in that: A guide rail (33) is fixedly mounted on the arc-shaped plate frame (3), a magnetic frame (34) fixedly connected to the second cutting machine (31) is mounted inside the guide rail (33), and the magnetic frame (34) slides within the guide rail (33) in a limited manner, an electromagnet (35) is fixedly mounted on an inner wall of one side of the guide rail (33), and the electromagnet (35) generates a magnetic force on the magnetic frame (34) when energized, and a second plastic spring (36) is connected between the other side of the guide rail (33) and the magnetic frame (34).

9. The artistic photo frame production table according to claim 7, characterized in that: An inclined plate frame (1005) is fixedly installed inside the platform (1), and the inclined plate frame (1005) is located between the first partition (4) and the second partition (5), wherein a chip removal channel (1006) connected to the outside of the platform (1) is also installed inside the platform (1), and the chip removal channel (1006) is in a connected state with the inclined plate frame (1005).

10. The artistic photo frame production table according to claim 5, characterized in that: The clamping plate frame (835) has an inclined surface on one side and a right-angle surface on the other side.