Baking machine with multi-layer adjustable structure
By introducing a threaded rod and a positioning rod system driven by a servo motor into the baking machine, the problem of complex disassembly and adjustment of the screen is solved, enabling convenient disassembly and flexible adjustment of the screen and improving the ease of use of the baking machine.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HUBEI CHUTIAN DAOBO NEW MATERIAL CO LTD
- Filing Date
- 2025-04-28
- Publication Date
- 2026-04-21
AI Technical Summary
The disassembly and adjustment process of the partition screen in the existing baking machine is complicated, and it is difficult to quickly replace or adjust the number of partition screens.
The positioning rod system, driven by a threaded rod and a servo motor, uses the servo motor to drive the sliding block of the threaded rod to release the positioning rod from the mesh, making the mesh easy to disassemble. The sliding stability is improved by the guide hole and the fixed block structure.
It enables convenient disassembly and quick adjustment of the mesh, improving the flexibility of adjusting the number of meshes inside the baking machine.
Smart Images

Figure CN224140633U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of baking machines, specifically, it relates to a baking machine with a multi-layer adjustable structure. Background Technology
[0002] Ovens are popular household appliances, especially in Western countries such as the United States and Europe, where they are very common and most family kitchens have at least one. Ovens with various designs and functions have been developed.
[0003] Patent application CN218635830U discloses a baking machine with a multi-layer adjustable structure. Paragraph 0031 of the specification discloses that: under normal working conditions, the positioning block and the positioning hole engage to ensure the stability of the mesh body. When the mesh body is pulled out, the positioning block is squeezed and drives the inner column to retract into the receiving cavity, squeezing the return spring to a tight state. At this time, the positioning block disengages from the positioning hole. After the mesh body is pulled out a certain distance, another set of positioning holes will align with the positioning block. Under the reaction force of the return spring, the positioning block engages with the other set of positioning holes. This process is repeated, so that the mesh body has a fixed point after being pulled out a certain distance, thus ensuring the stability of the mesh body after being pulled out. It has good practicality.
[0004] However, in practical applications, the main body of the partition net needs to be fixed inside the machine body through the first connecting block and the second connecting block. Because the disassembly method of the first connecting block and the second connecting block is relatively complicated, the main body of the partition net cannot be quickly disassembled, and therefore the number of the main body of the partition net inside the machine body cannot be adjusted.
[0005] To address these shortcomings, a baking machine with a multi-layer adjustable structure is proposed. Utility Model Content
[0006] The technical problem to be solved by this utility model is to overcome the shortcomings of the prior art and provide a baking machine with a multi-layer adjustable structure.
[0007] To solve the above-mentioned technical problems, the basic concept of the technical solution adopted by this utility model is as follows:
[0008] A baking machine with a multi-layer adjustable structure includes a body, wherein multiple placement plates are fixedly fitted inside the body, and a positioning cylinder is fixedly fitted on one side of each placement plate.
[0009] Multiple partitions are located inside the body of the machine. The bottom of each partition is rotatably fitted with threaded rods with opposite thread directions on both sides. Each threaded rod has a sliding block threadedly fitted on both sides. The bottom of the partition is elastically and slidably fitted with four positioning rods. One end of each positioning rod is engaged with one end of a positioning cylinder. A rotating plate is rotatably fitted between the positioning rod and one side of the sliding block.
[0010] Optionally, the bottom of the mesh is fixedly fitted with two fixing plates, one of which has a servo motor fixedly fitted on one side. A first through hole is opened on one side of the fixing plate, and one end of the threaded rod is rotatably fitted inside the first through hole. The other end of the threaded rod is fixedly fitted on the output end of the servo motor.
[0011] Optionally, a threaded hole is provided on one side of the sliding block, the threaded hole is threadedly engaged with the threaded rod, and a rubber pad is fixedly fitted around the periphery of the threaded rod.
[0012] Optionally, two first fixing rods are fixedly fitted on one side of the sliding block, and a second through hole is opened at the first end of the rotating plate, with the first fixing rods located inside the second through hole.
[0013] Optionally, a fixing block is fixedly fitted around the periphery of the positioning rod, and a second fixing rod is fixedly fitted on one side of the fixing block. A third through hole is provided at the second end of the rotating plate, and the second fixing rod is located inside the third through hole.
[0014] Optionally, four guide blocks are fixedly fitted at the bottom of the mesh, and a guide hole is provided on one side of each guide block, with the positioning rod slidably fitted inside the guide hole.
[0015] Optionally, a sliding disk is fixedly fitted to one end of the positioning rod, and a spring is fixedly fitted between one side of the sliding disk and one side of the guide block, with the spring sleeved around the periphery of the positioning rod.
[0016] Optionally, the opening of the machine body is rotatably fitted with a sealing door, and two hinges are fixedly fitted between one side of the sealing door and one side of the machine body. Multiple support feet are fixedly fitted at the bottom of the machine body.
[0017] By adopting the above technical solution, the present invention has the following beneficial effects compared with the prior art. Of course, any product implementing the present invention does not necessarily need to achieve all of the following advantages at the same time:
[0018] The positioning rod is designed so that it slides out of the positioning cylinder under the action of the rotating plate, and the positioning of the partition is released through one end of the positioning rod, making the disassembly of the partition more convenient and the adjustment of the number of partitions inside the machine body more convenient.
[0019] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings. Attached Figure Description
[0020] The accompanying drawings described below are merely some embodiments. Those skilled in the art can obtain other drawings based on these drawings without any creative effort.
[0021] In the picture:
[0022] Figure 1 This is a three-dimensional structural diagram of an embodiment of the present utility model;
[0023] Figure 2 This is a bottom view of an embodiment of the present invention.
[0024] Figure 3 This is a schematic diagram of a mesh structure according to an embodiment of the present invention;
[0025] Figure 4 This is a schematic diagram of the rotating plate structure according to an embodiment of the present invention.
[0026] The attached diagram lists the components represented by each number as follows:
[0027] Body 100, support foot 101, sealing door 102, hinge 103, placement plate 104, positioning cylinder 105, partition 200, fixing plate 201, first through hole 202, threaded rod 203, rubber pad 204, sliding block 205, threaded hole 206, guide block 207, guide hole 208, positioning rod 209, sliding disc 210, spring 211, fixing block 212, first fixing rod 213, second fixing rod 214, rotating plate 215, second through hole 216, third through hole 217.
[0028] It should be noted that these accompanying drawings and textual descriptions are not intended to limit the scope of the present invention in any way, but rather to illustrate the concept of the present invention to those skilled in the art by referring to specific embodiments. Detailed Implementation
[0029] The present invention will now be described in further detail with reference to the accompanying drawings.
[0030] Please see Figure 1-4 As shown, this embodiment provides a baking machine with a multi-layer adjustable structure, including a body 100, a plurality of placement plates 104 are fixedly fitted inside the body 100, and a positioning cylinder 105 is fixedly fitted on one side of the placement plate 104.
[0031] Multiple partitions 200 are located inside the body 100. The bottom of each partition 200 is rotatably fitted with a threaded rod 203 with opposite thread directions on both sides. Both sides of the threaded rod 203 are threadedly fitted with sliding blocks 205. The bottom of the partition 200 is elastically and slidably fitted with four positioning rods 209. One end of the positioning rod 209 is engaged with one end of the positioning cylinder 105. A rotating plate 215 is rotatably fitted between the positioning rod 209 and one side of the sliding block 205.
[0032] Working principle:
[0033] First, rotate the threaded rod 203. The threaded rod 203 drives the two sliding blocks 205 to slide. Since the threads on both sides of the threaded rod 203 are opposite, the two sliding blocks 205 slide away from each other. The sliding blocks 205 move through the rotating plate 215. One end of the rotating plate 215 drives one end of the positioning rod 209 to slide out from the inside of the positioning cylinder 105 and release the positioning of the partition 200. Then, the partition 200 can be taken out from the inside of the machine body 100.
[0034] The positioning rod 209 is set so that it slides out of the positioning cylinder 105 under the action of the rotating plate 215, and releases the positioning of the partition 200 through one end of the positioning rod 209, making the disassembly of the partition 200 more convenient and the adjustment of the number of partitions 200 inside the machine body 100 more convenient.
[0035] To make the sliding process of the positioning rod 209 on one side of the guide block 207 more stable in this embodiment, the following improvements are made, such as... Figure 1-4As shown, in this embodiment, the bottom of the partition 200 is fixedly fitted with two fixing plates 201. A servo motor is fixedly fitted to one side of one of the fixing plates 201. A first through hole 202 is opened on one side of the fixing plate 201. One end of the threaded rod 203 is rotatably fitted inside the first through hole 202. One end of the threaded rod 203 is fixedly fitted to the output end of the servo motor. A threaded hole 206 is opened on one side of the sliding block 205. The threaded hole 206 is threadedly fitted with the threaded rod 203. A rubber pad 204 is fixedly fitted around the periphery of the threaded rod 203. Two first fixing rods 213 are fixedly fitted to one side of the sliding block 205. A second through hole 216 is opened at the first end of the rotating plate 215. The first fixing rods 213 are located inside the second through hole 216. A fixing block 212 is fixedly fitted around the periphery of the positioning rod 209. A second fixing rod 214 is fixedly fitted to one side of the rotating plate 215. A third through hole 217 is opened at the second end of the rotating plate 215. The second fixing rod 214 is located inside the third through hole 217. Four guide blocks 207 are fixedly fitted to the bottom of the partition net 200. A guide hole 208 is opened on one side of the guide block 207. The positioning rod 209 is slidably fitted inside the guide hole 208. A sliding plate 210 is fixedly fitted to one end of the positioning rod 209. A spring 211 is fixedly fitted between one side of the sliding plate 210 and one side of the guide block 207. The spring 211 is sleeved on the periphery of the positioning rod 209. A sealing door 102 is rotatably fitted at the opening of the machine body 100. Two hinges 103 are fixedly fitted between one side of the sealing door 102 and one side of the machine body 100. Multiple support feet 101 are fixedly fitted to the bottom of the machine body 100.
[0036] In this embodiment, the servo motor is first started. The output end of the servo motor drives the two sliding blocks 205 to slide through the threaded rod 203. Since the threads on both sides of the threaded rod 203 are opposite, the two sliding blocks 205 slide away from each other. The sliding blocks 205 drive the positioning rod 209 to slide inside the guide hole 208. One end of the positioning rod 209 drives the sliding disk 210 to slide and stretches the spring 211. The other end of the positioning rod 209 slides out from inside the positioning cylinder 105 and releases the positioning of the partition 200 through one end of the positioning rod 209. Then the partition 200 can be taken out from inside the machine body 100.
[0037] The guide hole 208 is provided so that the positioning rod 209 can slide inside the guide hole 208 under the action of the fixing block 212, and the sliding direction of the positioning rod 209 is guided by the guide hole 208, which reduces the problem of tilting of the positioning rod 209 when sliding and improves the stability of the positioning rod 209 when sliding.
[0038] This utility model is not limited to the above-described embodiments. Anyone should know that structural changes made under the guidance of this utility model, and any technical solutions that are the same as or similar to this utility model, fall within the protection scope of this utility model. Technical aspects, shapes, and structures not described in detail in this utility model are all publicly known technologies.
Claims
1. A toasting machine having a multi-layer adjustable structure, characterized by, include: The body (100) has multiple placement plates (104) fixedly fitted inside, and a positioning cylinder (105) is fixedly fitted on one side of each placement plate (104). Multiple partitions (200) are located inside the body (100). The bottom of each partition (200) is rotatably fitted with threaded rods (203) with opposite thread directions on both sides. Each threaded rod (203) has a sliding block (205) threadedly fitted on both sides. The bottom of each partition (200) is elastically and slidably fitted with four positioning rods (209). One end of each positioning rod (209) is engaged with one end of the positioning cylinder (105). A rotating plate (215) is rotatably fitted between the positioning rod (209) and one side of the sliding block (205).
2. The roaster having a multi-layer adjustable structure according to claim 1, characterized in that, The bottom of the partition (200) is fixedly fitted with two fixing plates (201), one of which is fixedly fitted with a servo motor on one side. A first through hole (202) is opened on one side of the fixing plate (201), and one end of the threaded rod (203) is rotatably fitted inside the first through hole (202). One end of the threaded rod (203) is fixedly fitted on the output end of the servo motor.
3. The roaster having a multi-layer adjustable structure according to claim 1, characterized in that, The sliding block (205) has a threaded hole (206) on one side, the threaded hole (206) is threadedly engaged with the threaded rod (203), and a rubber pad (204) is fixedly fitted around the periphery of the threaded rod (203).
4. The roaster having a multi-layer adjustable structure according to claim 1, wherein, Two first fixing rods (213) are fixedly fitted on one side of the sliding block (205), and a second through hole (216) is opened at the first end of the rotating plate (215), with the first fixing rods (213) located inside the second through hole (216).
5. The roaster of claim 1 having a multi-layer adjustable structure, wherein, The positioning rod (209) is fixedly fitted with a fixing block (212) on its periphery, and a second fixing rod (214) is fixedly fitted on one side of the fixing block (212). The second end of the rotating plate (215) is provided with a third through hole (217), and the second fixing rod (214) is located inside the third through hole (217).
6. The roaster having a multi-layer adjustable structure according to claim 1, wherein, The bottom of the partition (200) is fixedly fitted with four guide blocks (207), and a guide hole (208) is opened on one side of the guide block (207). The positioning rod (209) is slidably fitted inside the guide hole (208).
7. The roaster having a multi-layer adjustable structure according to claim 6, characterized in that, One end of the positioning rod (209) is fixedly fitted with a sliding disk (210), and a spring (211) is fixedly fitted between one side of the sliding disk (210) and one side of the guide block (207). The spring (211) is sleeved on the periphery of the positioning rod (209).
8. The roaster having a multi-layer adjustable structure according to claim 1, wherein, The opening of the body (100) is rotatably fitted with a sealing door (102), and two hinges (103) are fixedly fitted between one side of the sealing door (102) and one side of the body (100). Multiple support feet (101) are fixedly fitted at the bottom of the body (100).