An electromagnetic cooker component assembly flipping device
By designing a component assembly flip device for induction cooker, using structures such as clamping plates and engaging connecting frames to achieve stable flip and discharge of induction cooker, the problems of low assembly quality and flip shaking in the prior art are solved, and assembly efficiency and equipment stability are improved.
Patent Information
- Application Number
- CN202310301390.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-27
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2043-03-27
AI Technical Summary
In the prior art, the assembly of induction cookers often relies on manual assembly and flipped through flip equipment, resulting in low assembly quality and high labor intensity. In addition, the induction cooker is easy to shake during flipping, damaging the stove panel.
A flip device for assembly of induction cooker assembly is designed, including the main body, rotating cylinder, flip rack, clamping plate, telescopic rod and engaging connecting frame. The induction cooker is transported into the flip rack through the feeding conveyor belt, and clamping and flipping is used to use the gravity of the induction cooker and the conveyor belt force to ensure the stability of the flip process.
The stable flip and convenient discharge of the induction cooker are achieved, which avoids damage caused by the induction cooker shaking during the flip process, and improves assembly quality and working efficiency.
Smart Images

Figure CN116638463B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of electromagnetic oven assembly, in particular to an electromagnetic oven assembly turning device. Background Art
[0002] The induction cooker is also called the electromagnetic stove. The principle of the induction cooker is the electromagnetic induction phenomenon, that is, using alternating current to pass through the coil to generate an alternating magnetic field with a constantly changing direction. Eddy current will appear inside the conductor in the alternating magnetic field (the reason can be found in Faraday's law of electromagnetic induction). This is caused by the eddy electric field pushing the carriers in the conductor (the ones in the pot are electrons, not iron atoms) to move. The Joule heating effect of the eddy current causes the conductor to heat up, thereby achieving heating.
[0003] The outer shell of the induction cooker consists of two parts: an upper cover and a base. The upper cover of the outer shell of the induction cooker is assembled together with the stove panel and the base, and is fixedly connected by fixing screws and buckles. A heat dissipation port is arranged at the bottom of the induction cooker to ensure that the induction cooker can dissipate heat well when working. After fixing the upper cover of the outer shell and the base with buckles, it is also necessary to turn it over as a whole and tighten the fixing screws inside the base to further fix it.
[0004] In the prior art, the assembly of induction cookers is often performed manually, and then the induction cooker is turned over and the screws are tightened. Not only is the assembly quality low, but it also increases the labor intensity of the staff. If the induction cooker is turned over by the existing turning equipment, the induction cooker will shake to a certain extent during the overall turning process, and the shaking will cause a certain degree of damage to the internal electrical components of the induction cooker and a certain degree of damage to the stove panel after turning over. Summary of the invention
[0005] Based on this, the purpose of the present invention is to provide an induction cooker assembly flipping device to solve the problem that in the prior art, the induction cooker is often assembled manually, and then the induction cooker is flipped over and the screws are tightened. Not only is the assembly quality low, but it also increases the labor intensity of the staff. If the induction cooker is flipped over by the existing flipping equipment, the induction cooker will shake to a certain extent during the overall flipping process, and the shaking will cause a certain degree of damage to the internal electrical components of the induction cooker and a certain degree of damage to the stove panel after flipping.
[0006] To achieve the above object, the present invention provides the following technical solution: an electromagnetic cooker assembly turning device, comprising a main body, a rotating cylinder is rotatably connected at the middle position inside the main body, a turning frame is fixed to one side of the rotating cylinder, and clamping plates are movably connected at the four corners inside the turning frame;
[0007] The four groups of clamping plates and the turning frame are slidably connected by clamping rods, and clamping springs located on the outside of the clamping rods are fixed between the ends of the four groups of clamping rods and the turning frame, the top and the bottom of the inner ends of the turning frame are rotatably connected with the turning telescopic frame, and the ends of the multiple groups of turning telescopic frames are rotatably connected with the engaging connecting frame, and the inside of the engaging connecting frame is rotatably connected with a rotating gear, and a lifting tooth plate meshing with the rotating gear is slidably connected at the middle position of one side of the inner part of the engaging connecting frame, and the two ends of the inner part of the engaging connecting frame are slidably connected with the engaging tooth plates meshing with the rotating gear;
[0008] A fixed shaft is fixed at the center of the rotating cylinder, and fixed protrusions are fixed at both ends of the outer side of the fixed shaft. Both ends of the interior of the flip frame are slidably connected with sliding inclined blocks that fit with the inner side surfaces of each two groups of flip telescopic frames. A telescopic rod that penetrates the rotating cylinder is fixed on one side of the two groups of sliding inclined blocks, and the end of the telescopic rod is in contact with the surface of the fixed protrusion;
[0009] The rotating gear and the engaging connecting frame are connected by a first torsion spring, and the number of the first torsion springs is four groups. Guide rods that penetrate the engaging connecting frame are fixed at the four corners on the inner side of the flip frame, and a first return spring located on the outer side of the guide rod is fixed between the flip frame and the four groups of engaging connecting frames. A second return spring is fixed between the flip frame and the telescopic rod, and the two sides of the second return spring are respectively fixedly connected to the flip frame and the telescopic rod.
[0010] By adopting the above technical scheme, the induction cooker after the clamping connection is transported into the inside of the flip frame through the feeding conveyor belt, and the two sides of the induction cooker compress the clamping plates respectively through the gravity of the induction cooker itself and the conveying force of the feeding conveyor belt. When the induction cooker completely enters between the clamping plates for clamping, the top of each group of clamping plates lifts the lifting tooth plate, and then drives the two groups of clamping tooth plates to move to the inside of the clamping plates through the rotating gear. At this time, there is a certain distance between the clamping tooth plate and the clamping plate. At this time, the rotating cylinder drives the flip frame and the induction cooker to flip 180 degrees. At this time, the two groups of telescopic rods are retracted toward the inside of the flip frame under the action of the fixed protrusions, and then the telescopic rods drive the sliding bevel blocks to make the two groups of flip telescopic frames flip and unfold to the top and bottom respectively, and then the clamping tooth plates of each group of flip telescopic frames After moving to fit with the clamping plate, the clamping plate is squeezed again, so that the engaging tooth plate drives each group of corresponding clamping plates to move again to a position close to the flipping frame, so that the clamping force of the multiple groups of clamping plates on the induction cooker disappears, and the flipped induction cooker now contacts the discharging conveyor belt, and the discharging conveyor belt can drive the flipped induction cooker to perform the discharging operation. It can be seen from the above that the present invention as a whole is more stable when flipping and clamping the induction cooker, and after flipping, the clamping force of the induction cooker can disappear through the above series of structures, so that the flipped induction cooker can be more convenient to discharge. The present invention as a whole makes flipping of the induction cooker more convenient and stable, and effectively avoids the problem of shaking of the induction cooker during the flipping process of the induction cooker by the flipping equipment in the prior art.
[0011] The present invention is further configured such that the flip telescopic frame and the flip frame are rotatably connected via a first hinge seat, and the flip telescopic frame and the snap-fit connection frame are rotatably connected via a second hinge seat.
[0012] By adopting the above technical solution, when a group of sliding inclined blocks squeeze and expand the two groups of flip and telescopic frames, the flip and telescopic frames rotate along the first hinge seat. Since the snap-fitting connecting frame is slidably connected to the flip frame through the guide rod, and the flip and telescopic frames and the snap-fitting connecting frame are rotationally connected through the second hinge seat, when the flip and telescopic frames rotate, the flip and telescopic frames themselves will contract to a certain extent to avoid interference problems.
[0013] The present invention is further configured such that the ends of one side of the plurality of groups of clamping plates are rotatably connected to a rotating guide plate, and the two ends of the rotating guide plate and the clamping plates are rotatably connected via a second torsion spring.
[0014] By adopting the above technical solution, the rotating guide plate and the clamping plate are rotationally connected by the second torsion spring. The rotating guide plate can guide the induction cooker when it enters the turning frame. When the induction cooker leaves the turning frame, the rotating guide plate is reset under the action of the second torsion spring, which is convenient for guiding the next group of induction cookers when loading.
[0015] The present invention is further configured as follows: a dual-axis motor is installed at the middle position inside the main body, transmission gears are fixed to the outside of the output shafts at both ends of the dual-axis motor, gear rings meshing with two sets of transmission gears are fixed to both ends of the outside of the rotating cylinder, conveyor belt mechanisms are provided on both sides of the main body, and the two sets of conveyor belt mechanisms are respectively a loading conveyor belt and a discharging output belt, and the conveyor belt mechanism is driven by an external driving device.
[0016] By adopting the above technical solution, the dual-axis motor drives the rotating drum, and the conveyor belt mechanism transports the loading and unloading materials of the induction cooker.
[0017] In summary, the present invention mainly has the following beneficial effects: the present invention conveys the induction cooker after the clamping connection into the interior of the flip frame through the loading conveyor belt, and the two sides of the induction cooker compress the clamping plates respectively through the gravity of the induction cooker itself and the conveying force of the loading conveyor belt. When the induction cooker completely enters between the clamping plates for clamping, the top of each group of clamping plates lifts the lifting tooth plate, and then drives the two groups of clamping tooth plates to move to the inner side of the clamping plates through the rotating gear. At this time, there is a certain distance between the clamping tooth plate and the clamping plate. At this time, the rotating cylinder drives the flip frame and the induction cooker to flip 180 degrees. At this time, the two groups of telescopic rods are retracted toward the inside of the flip frame under the action of the fixed protrusions, and then the telescopic rods drive the sliding inclined blocks to make the two groups of flip telescopic frames flip and unfold to the top and bottom respectively, and then each group of flip telescopic frames After the engaging tooth plate moves to fit with the clamping plate, the clamping plate is squeezed again, so that the engaging tooth plate drives each group of corresponding clamping plates to move again to a position close to the flipping frame, so that the clamping force of the multiple groups of clamping plates on the induction cooker disappears, and the flipped induction cooker now contacts the discharging conveyor belt, and the discharging conveyor belt can drive the flipped induction cooker to perform the discharging operation. It can be seen from the above that the present invention as a whole is more stable when flipping and clamping the induction cooker, and after flipping, the clamping force of the induction cooker can disappear through the above series of structures, so that the flipped induction cooker can be more convenient to discharge the materials. The present invention as a whole makes the flipping of the induction cooker more convenient and stable, and effectively avoids the problem of shaking of the induction cooker caused by the flipping equipment in the prior art during the flipping of the induction cooker. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0019] Figure 2 It is a schematic diagram of the internal structure of the present invention;
[0020] Figure 3 is a cross-sectional view of the present invention;
[0021] Figure 4 For the present invention Figure 3 A magnified image of point A;
[0022] Figure 5 It is a schematic diagram of the local structure of the present invention;
[0023] Figure 6 For the present invention Figure 5 The enlarged view of point B;
[0024] Figure 7 For the present invention Figure 5 Enlarged view of point C;
[0025] Figure 8 It is a partial exploded schematic diagram of the present invention.
[0026] In the figure: 1. main body; 2. rotating cylinder; 3. turning frame; 4. clamping plate; 5. clamping rod; 6. clamping spring; 7. turning telescopic frame; 8. engaging connecting frame; 9. rotating gear; 10. lifting gear plate; 11. engaging gear plate; 12. first torsion spring; 13. guide rod; 14. first return spring; 15. sliding inclined block; 16. telescopic rod; 17. second return spring; 18. first hinge seat; 19. second hinge seat; 20. fixed shaft; 21. fixed protrusion; 22. rotating guide plate; 23. second torsion spring; 24. double-axis motor; 25. transmission gear; 26. gear ring; 27. conveyor belt mechanism. DETAILED DESCRIPTION
[0027] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and cannot be understood as limiting the present invention.
[0028] The following describes an embodiment of the present invention based on its overall structure.
[0029] An induction cooker assembly flipping device, such as Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 and Figure 8 As shown, it comprises a main body 1, a rotating cylinder 2 is rotatably connected at the middle position inside the main body 1, a turning frame 3 is fixed to one side of the rotating cylinder 2, and clamping plates 4 are movably connected at the four corners inside the turning frame 3;
[0030] The four groups of clamping plates 4 and the turning frame 3 are slidably connected by clamping rods 5, and clamping springs 6 located on the outside of the clamping rods 5 are fixed between the ends of the four groups of clamping rods 5 and the turning frame 3. The top and bottom of the inner ends of the turning frame 3 are both rotatably connected with turning telescopic frames 7. The ends of the multiple groups of turning telescopic frames 7 are rotatably connected with a clamping connection frame 8. The inside of the clamping connection frame 8 is rotatably connected with a rotating gear 9. A lifting tooth plate 10 meshing with the rotating gear 9 is slidably connected at the middle position of one side of the inside of the clamping connection frame 8. The inside of the clamping connection frame 8 is slidably connected with a clamping tooth plate 11 meshing with the rotating gear 9.
[0031] A fixed shaft 20 is fixed at the center position of the rotating cylinder 2, and fixed protrusions 21 are fixed at both ends of the outer side of the fixed shaft 20. Both ends of the interior of the turning frame 3 are slidably connected with sliding inclined blocks 15 that fit the inner side surfaces of each two groups of turning telescopic frames 7. A telescopic rod 16 that penetrates the rotating cylinder 2 is fixed on one side of the two groups of sliding inclined blocks 15, and the end of the telescopic rod 16 is in contact with the surface of the fixed protrusion 21. The electromagnetic cooker after the clamping connection is transported into the turning frame 3 through the feeding conveyor belt. Through the gravity of the electromagnetic cooker itself and the conveying force of the feeding conveyor belt, the two sides of the electromagnetic cooker compress the clamping plates 4 respectively. When the electromagnetic cooker completely enters between the clamping plates 4 for clamping, the top of each group of clamping plates 4 lifts the lifting tooth plate 10. When the lifting tooth plate 10 is completely lifted and compressed, the rotating gear 9 will drive the two groups of clamping tooth plates 11 to move to the inner side of the clamping plate 4 for limiting. At this time, the clamping tooth plate 11 is at a certain distance from the clamping plate 4.
[0032] At this time, after the rotating drum 2 drives the turning frame 3 and the induction cooker to turn over 180 degrees, the two sets of telescopic rods 16 are retracted into the turning frame 3 under the action of the fixed protrusion 21, and then the telescopic rods 16 drive the sliding inclined blocks 15 to turn over and unfold the two sets of turning telescopic frames 7 to the top and bottom respectively. After the turning telescopic frames 7 are turned over and unfolded, they drive the engaging connecting frames 8 to move at the same time, so that the engaging tooth plates 11 inside each set of engaging connecting frames 8 push each set of clamping plates 4, so that each set of clamping plates 4 moves toward the direction of the turning frame 3 again, so that the clamping force of each set of clamping plates 4 and the clamping spring 6 disappears, so as to facilitate the discharge operation of the induction cooker;
[0033] The rotating gear 9 and the engaging connecting frame 8 are connected by a first torsion spring 12, and the number of the first torsion springs 12 is four groups. Guide rods 13 that penetrate the engaging connecting frame 8 are fixed at the four corners on the inner side of the flip frame 3, and a first return spring 14 located on the outside of the guide rod 13 is fixed between the flip frame 3 and the four groups of engaging connecting frames 8. A second return spring 17 is fixed between the flip frame 3 and the telescopic rod 16, and the two sides of the second return spring 17 are respectively fixedly connected to the flip frame 3 and the telescopic rod 16.
[0034] See also Figure 4The flip telescopic frame 7 is rotatably connected to the flip frame 3 through the first hinge seat 18, and the flip telescopic frame 7 is rotatably connected to the snap-fit connection frame 8 through the second hinge seat 19. The present invention sets the above structure, wherein when a group of sliding inclined blocks 15 squeeze and expand the two groups of flip telescopic frames 7, the flip telescopic frame 7 rotates along the first hinge seat 18. Since the snap-fit connection frame 8 is slidably connected to the flip frame 3 through the guide rod 13, and the flip telescopic frame 7 is rotatably connected to the snap-fit connection frame 8 through the second hinge seat 19, when the flip telescopic frame 7 rotates, the flip telescopic frame 7 itself will contract to a certain extent to avoid interference problems.
[0035] See also Figure 7 The ends of one side of the multiple groups of clamping plates 4 are rotatably connected with a rotating guide plate 22, and the two ends of the rotating guide plate 22 and the clamping plate 4 are rotatably connected by a second torsion spring 23. The present invention sets the above structure, wherein the rotating guide plate 22 and the clamping plate 4 are rotatably connected by the second torsion spring 23. The rotating guide plate 22 can guide the induction cooker when it enters the turning frame 3. When the induction cooker is separated from the turning frame 3, the rotating guide plate 22 is reset under the action of the second torsion spring 23, which is convenient for guiding the next group of induction cookers when loading.
[0036] See also Figure 2 A double-axis motor 24 is installed at the middle position inside the main body 1, and transmission gears 25 are fixed on the outer sides of the output shafts at both ends of the double-axis motor 24. Gear rings 26 meshing with two sets of transmission gears 25 are fixed at both ends of the outer side of the rotating cylinder 2. Conveyor belt mechanisms 27 are arranged on both sides of the main body 1, and the two sets of conveyor belt mechanisms 27 are respectively a loading conveyor belt and a discharging output belt. The conveyor belt mechanism 27 is driven by an external driving device. The present invention sets the above structure, wherein the double-axis motor 24 plays a driving role in the rotating cylinder 2, and the conveyor belt mechanism 27 plays a role in conveying the loading and unloading materials of the induction cooker.
[0037] The working principle of the present invention is as follows: when in use, the power is turned on, and conveyor belt mechanisms 27 are arranged on both sides of the main body 1, wherein the two sets of conveyor belt mechanisms 27 are respectively a feeding conveyor belt and a discharging conveyor belt, wherein the two sets of conveyor belt mechanisms 27 are driven by an external driving device, so that the induction cooker is driven to perform step-by-step operation;
[0038] The induction cooker after the clamping connection is transported into the inside of the turning frame 3 by the feeding conveyor belt. The two sides of the induction cooker compress the clamping plates 4 respectively by the gravity of the induction cooker itself and the conveying force of the feeding conveyor belt. When the induction cooker completely enters between the clamping plates 4 for clamping, the top of each group of clamping plates 4 lifts the lifting tooth plate 10. When the lifting tooth plate 10 is completely lifted and compressed, the rotating gear 9 will drive the two groups of clamping tooth plates 11 to move to the inner side of the clamping plate 4 for limiting. At this time, the clamping tooth plate 11 is at a certain distance from the clamping plate 4.
[0039] At this time, after the rotating drum 2 drives the turning frame 3 and the induction cooker to turn over 180 degrees, the two sets of telescopic rods 16 are retracted into the turning frame 3 under the action of the fixed protrusion 21, and then the telescopic rods 16 drive the sliding inclined blocks 15 to turn over and unfold the two sets of turning telescopic frames 7 to the top and bottom respectively. After the turning telescopic frames 7 are turned over and unfolded, they drive the engaging connecting frames 8 to move at the same time, so that the engaging tooth plates 11 inside each set of engaging connecting frames 8 push each set of clamping plates 4, so that each set of clamping plates 4 moves toward the direction of the turning frame 3 again, so that the clamping force of each set of clamping plates 4 and the clamping spring 6 disappears, so as to facilitate the discharge operation of the induction cooker;
[0040] Specifically, when the flip telescopic frame 7 flips and unfolds, the engaging tooth plate 11 of each group of flip telescopic frames 7 moves to fit with the clamping plate 4, and then moves again to squeeze the clamping plate 4, so that the engaging tooth plate 11 drives each group of corresponding clamping plates 4 to move again to a position close to the flip frame 3, so that the clamping force of the multiple groups of clamping plates 4 on the induction cooker disappears, and then the flipped induction cooker contacts the discharge conveyor belt at this time, and then the discharge conveyor belt can drive the flipped induction cooker to perform the discharge operation;
[0041] Furthermore, when a set of sliding inclined blocks 15 squeeze and expand the two sets of flip telescopic frames 7, the flip telescopic frames 7 rotate along the first hinge seat 18. Since the snap-fit connection frame 8 is slidably connected to the flip frame 3 through the guide rod 13, and the flip telescopic frame 7 and the snap-fit connection frame 8 are rotationally connected through the second hinge seat 19, when the flip telescopic frame 7 rotates, the flip telescopic frame 7 itself will contract to a certain extent to avoid interference.
[0042] When the induction cooker moves to discharge the material under the action of the discharge conveyor belt, the induction cooker will not compress the clamping plates 4 at the top and bottom. At this time, the clamping plates 4 are first reset to a certain distance under the action of the clamping springs 6. When the clamping plates 4 are reset to a certain distance and completely disengage from the limit of the lifting toothed plate 10, the rotating gear 9, under the action of the first torsion spring 12, drives the engaging toothed plate 11 to reset and slide, just synchronously disengaging from the limit of the clamping plates 4, so that the multiple groups of clamping plates 4 are reset to the initial state;
[0043] When the rotating drum 2 drives the flip frame 3 to rotate 180 degrees in the opposite direction to reset, the fixed protrusion 21 is released from the limit of the telescopic rod 16, and then the telescopic rod 16 is driven to reset under the action of the second reset spring 17. Each group of flip telescopic frames 7 is reset under the action of the clamping connection frame 8 and the first reset spring 14, so that the flip telescopic frame 7 and the clamping connection frame 8 are reset to the initial state, so as to facilitate the clamping and flipping operation of the next group of induction cookers;
[0044] One side of each group of clamping plates 4 is rotatably connected with a rotating guide plate 22, wherein the rotating guide plate 22 and the clamping plate 4 are rotatably connected via a second torsion spring 23, and the rotating guide plate 22 can guide the induction cooker when it enters the inside of the turning frame 3. When the induction cooker is separated from the turning frame 3, the rotating guide plate 22 is reset under the action of the second torsion spring 23, so as to facilitate the guiding function when the next group of induction cookers are loaded;
[0045] From the above, it can be seen that the present invention as a whole is more stable when flipping and clamping the induction cooker, and after flipping, the clamping force of the induction cooker can disappear through the above series of structures, so that the flipped induction cooker can be more convenient to discharge materials. The present invention as a whole makes flipping of the induction cooker more convenient and stable, and effectively avoids the problem of shaking of the induction cooker caused by the flipping equipment in the prior art during the flipping process.
[0046] Although an embodiment of the present invention has been shown and described, this specific embodiment is merely an explanation of the present invention and is not a limitation of the invention. The specific features, structures, materials or characteristics described may be combined in a suitable manner in any one or more embodiments or examples. After reading this specification, those skilled in the art may make modifications, substitutions and variations to the embodiments without creative contributions as needed without departing from the principles and purpose of the present invention. However, as long as they are within the scope of the claims of the present invention, they are protected by patent law.
Claims
1. An induction cooker assembly flipping device, comprising a main body (1), Features: A rotating cylinder (2) is rotatably connected at a middle position inside the main body (1), a turning frame (3) is fixed to one side of the rotating cylinder (2), and clamping plates (4) are movably connected at the four corners inside the turning frame (3); The four groups of clamping plates (4) and the flip frame (3) are slidably connected via clamping rods (5), and a clamping spring (6) sleeved on the outside of the clamping rod (5) is fixed between the end of the clamping rod (5) and the flip frame (3), the top and bottom of the inner ends of the flip frame (3) are both rotatably connected to flip telescopic frames (7), and the ends of the multiple groups of flip telescopic frames (7) are rotatably connected to engaging connecting frames (8), the inside of the engaging connecting frames (8) is rotatably connected to a rotating gear (9), a lifting tooth plate (10) meshing with the rotating gear (9) is slidably connected to the middle position of one side of the inside of the engaging connecting frame (8), and engaging tooth plates (11) meshing with the rotating gear (9) are slidably connected to the inner ends of the engaging connecting frame (8); A fixed shaft (20) is fixed at the center position inside the rotating cylinder (2), and fixed protrusions (21) are fixed at both ends of the outer side of the fixed shaft (20). Both ends of the interior of the flip frame (3) are slidably connected with sliding inclined blocks (15) that fit with the inner side surfaces of each two sets of flip telescopic frames (7). A telescopic rod (16) that passes through the rotating cylinder (2) is fixed on one side of the two sets of sliding inclined blocks (15), and the end of the telescopic rod (16) fits and contacts with the surface of the fixed protrusion (21).
2. The induction cooker assembly turning device according to claim 1, Features: The rotating gear (9) and the engaging connecting frame (8) are connected via first torsion springs (12), and the number of first torsion springs (12) is four groups.
3. The induction cooker assembly turning device according to claim 1, Features: Guide rods (13) penetrating the snap-fit connection frames (8) are fixed at the four inner corners of the flip frame (3), and first return springs (14) located outside the guide rods (13) are fixed between the flip frame (3) and the four sets of snap-fit connection frames (8).
4. The induction cooker assembly turning device according to claim 1, Features: A second return spring (17) is fixed between the flip frame (3) and the telescopic rod (16), and two sides of the second return spring (17) are respectively fixedly connected to the flip frame (3) and the telescopic rod (16).
5. The induction cooker assembly turning device according to claim 1, Features: The flip telescopic frame (7) and the flip frame (3) are rotatably connected via a first hinge seat (18), and the flip telescopic frame (7) and the snap-fit connection frame (8) are rotatably connected via a second hinge seat (19).
6. The induction cooker assembly turning device according to claim 1, Features: The ends of one side of the plurality of groups of clamping plates (4) are rotatably connected to a rotating guide plate (22), and the two ends of the rotating guide plate (22) and the clamping plates (4) are rotatably connected via a second torsion spring (23).
7. The induction cooker assembly turning device according to claim 1, Features: A double-shaft motor (24) is installed at a middle position inside the main body (1), transmission gears (25) are fixed to the outside of the output shafts at both ends of the double-shaft motor (24), and gear rings (26) meshing with the two sets of transmission gears (25) are fixed to both ends of the outside of the rotating cylinder (2).
8. The induction cooker assembly turning device according to claim 1, Features: Conveyor belt mechanisms (27) are provided on both sides of the main body (1), and the two sets of conveyor belt mechanisms (27) are respectively a loading conveyor belt and a discharging output belt, and the conveyor belt mechanisms (27) are driven by external driving equipment.
Citation Information
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Turnover support structure of induction cooker
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