Push tray type bread baking equipment
By designing a push-plate bread baking equipment, the clamping mechanism and drive mechanism are used to achieve automatic rotation and flip, and combined with the pallet structure to perform multi-directional heating, the problems of complex bread baking process, uneven baking and large energy consumption in the prior art are solved, and efficient and uniform bread baking effect is achieved.
Patent Information
- Application Number
- CN202510357013.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2025-05-16
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing bread baking equipment has complex processes, uneven baking, high energy consumption, and time-consuming and labor-intensive operation, which affects the taste and sales of bread.
A push-tray bread baking equipment is designed, using a clamping mechanism and a driving mechanism to realize the automatic rotation and flip of the bread assembly, and combined with the pallet structure to perform multi-directional heating to avoid heat loss.
The bread baking process is simplified, the baking efficiency and the taste of the bread are improved, manpower and time are saved, and energy consumption is reduced.
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Figure CN119999721A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of food processing, in particular to a push-plate type bread baking device. Background Art
[0002] A hamburger is mainly composed of two small buns with a beef patty or other fillings in between. In the prior art, the two small buns before being processed into hamburgers are prepared through multiple processes such as flour fermentation, molding, baking and cutting. In order to make the hamburger taste more crispy, baking is a key process to enhance the taste of the hamburger. After baking, the bread is cut into two small buns.
[0003] However, after the above processes are formed, multiple processes such as baking and cutting are required, and the process is complicated. In the process of bread preparation, the more complicated the process is, the greater the impact on the taste of the bread. In addition, there will be uneven baking and gelatinization marks during the baking and cutting process, and the cutting will not be beautiful in the subsequent cutting process, which will affect sales and customer experience.
[0004] In addition, the existing method of baking the surface of bread usually involves heating one side of the bread first, then taking it out and turning it over to heat the other side. Although this method is simple to operate and convenient to use, a large amount of heat will be lost when the sealed door of the baking equipment is opened and closed, which will cause a large amount of energy consumption. Moreover, the turning operation is not only time-consuming and laborious, but also affects the speed of baking the bread surface. In view of this, the present invention proposes a push-plate bread baking equipment. Summary of the invention
[0005] In view of one of the deficiencies of the prior art, the present invention provides a push-plate type bread baking device.
[0006] To achieve the above object, the present invention provides the following technical solution: a push-plate bread baking device, comprising:
[0007] The box body has a horizontal side which is an open side, and a plurality of heating chambers are arranged inside the box body;
[0008] A heating component is arranged inside the box body, and the heating component can heat the interior of each heating cavity;
[0009] A placing rack is arranged on a horizontal side of the box body, and the placing rack can move toward or away from the open side of the box body; a plurality of placing boxes are arranged on the side of the placing rack facing the box body, and processing grooves for placing bread components to be baked are provided inside the placing boxes;
[0010] A clamping mechanism is arranged in the placement box, and one end of the clamping mechanism extends to the outside of the placement box, and the clamping mechanism can clamp the bread assembly in the placement box;
[0011] The driving mechanism is arranged inside the box body, and the driving mechanism can drive the clamping mechanism to rotate.
[0012] Preferably, the heating chambers in the box are arranged in a rectangular array; the placement boxes correspond to the heating chambers;
[0013] The outer side of the placement rack is provided with a handle;
[0014] The device also includes:
[0015] A base, the box and the placement rack are both arranged on the base, the box and the base are fixedly connected, and the placement rack and the base are slidably connected;
[0016] The base comprises:
[0017] A base slide groove is provided on the upper surface of the base;
[0018] The placement rack also includes:
[0019] A bottom rod is arranged at the bottom of the placement rack, and the bottom rod is slidably connected with the base slide groove;
[0020] The rolling ball is arranged at the bottom end of the bottom rod, the rolling ball and the bottom end of the bottom rod are rotatably connected, and the rolling ball and the bottom of the base slide groove are in contact with each other.
[0021] Preferably, the heating component comprises:
[0022] A heating plate is provided in each of the heating chambers; the heating plate is a plate body with a hollow interior;
[0023] A heating pipeline is connected to the interior of the heating plate;
[0024] The control box is arranged outside the box body, and the heating pipeline extends into the control box.
[0025] Preferably, the upper end surface of the processing groove is an open opening; and the placement rack further comprises:
[0026] A support plate is fixedly arranged inside the processing tank, the support plate is an arc-shaped plate body with a variable diameter, and the support plate is concave downward;
[0027] The clamping mechanism is located above the support plate. When the clamping mechanism clamps the bread assembly, the side edge of the bread assembly is in contact with the upper surface of the support plate.
[0028] Preferably, two vertical plates are symmetrically fixedly arranged between two upper and lower adjacent placement boxes, and plate grooves are arranged on the box body corresponding to the vertical plates.
[0029] Preferably, the clamping mechanism comprises:
[0030] The first clamping part is a frame, and a first clamping structure is arranged inside the frame;
[0031] A second clamping portion is slidably connected to the first clamping portion, and the second clamping portion includes a second clamping structure; the first clamping structure and the second clamping structure are arranged opposite to each other, and can respectively clamp the two opposite sides of the bread assembly;
[0032] A tension spring is disposed between the first clamping portion and the second clamping portion, and the tension spring can drive the first clamping structure to move toward the second clamping structure;
[0033] The linkage component is linked with the first clamping part or the second clamping part, and the driving mechanism can drive the first clamping part or the second clamping part to rotate through the linkage component.
[0034] Preferably, the first clamping portion further comprises:
[0035] Two frame plates are arranged in parallel; the first clamping structure is arranged on one of the frame plates; a connecting groove is opened on the plate body of the other frame plate; the second clamping structure is connected to the first clamping part through the connecting groove;
[0036] Two rack rods are arranged in parallel, and the ends of the two rack rods are respectively fixedly connected to the two rack plates; the distance between the two rack rods is greater than the thickness of the bread assembly to be baked.
[0037] Preferably, the first clamping structure comprises two clamping plates arranged in parallel, with a spacing between the two clamping plates corresponding to the thickness of the edge of the bread assembly;
[0038] The first clamping portion further comprises:
[0039] The first rotating member is arranged between the two clamping plates of the first clamping structure; the first rotating member is cylindrical, and its axial ends are respectively facing the two clamping plates.
[0040] The second clamping structure is a block with a groove, and the open end of the groove faces the first clamping structure;
[0041] The second clamping portion further comprises:
[0042] The second rotating member is rotatably disposed in the groove of the second clamping structure, and the rotation axis direction of the second rotating member is parallel to the axial direction of the first rotating member.
[0043] Preferably, the linkage component comprises:
[0044] The main shaft is fixedly connected to the second clamping structure; the main shaft passes through the connecting groove of the frame plate, and the second clamping structure is located on the side of the frame plate facing the first clamping structure;
[0045] A tension spring connecting plate is fixedly arranged on the main shaft, one end of the tension spring is fixedly connected to the first clamping portion, and the other end is fixedly connected to the tension spring connecting plate;
[0046] A sleeve, sleeved with the main shaft, and the sleeve and the driving mechanism are linked;
[0047] The driving mechanism comprises:
[0048] The inserting sleeve is arranged corresponding to the sleeve, and the sleeve can be plugged into the inserting sleeve; the inserting sleeve is rotatably connected to the cavity wall of the heating cavity;
[0049] The motor shaft of the motor is linked with the insert cylinder through a sprocket chain combination.
[0050] Preferably, the linkage component further includes:
[0051] A spring, arranged between the end of the main shaft and the inner bottom of the sleeve;
[0052] Wing plates are symmetrically arranged on both sides of the sleeve; a paddle is arranged on the inner wall of the insert corresponding to the wing plates;
[0053] A first adsorption member is arranged at the end of the sleeve; a second adsorption member is arranged inside the insert tube corresponding to the first adsorption member, and the first adsorption member and the second adsorption member can attract each other through magnetism.
[0054] Preferably, the second clamping portion further comprises:
[0055] The positioning assembly can position the first clamping portion on the main shaft; the positioning assembly includes:
[0056] A card slot, disposed inside the connecting slot;
[0057] A card block is arranged corresponding to the card slot, and the card block can be inserted into the card slot; the card block is slidably connected to the second clamping structure, and its sliding mode is perpendicular to the length direction of the main shaft;
[0058] A slide plate is arranged inside the second clamping structure, the slide plate is slidably connected to the second clamping structure, and the sliding direction thereof is the length direction of the main axis;
[0059] A rotating frame, both ends of which are rotatably connected to the slide plate and the clamping block respectively;
[0060] A reset member is arranged between the clamping block and the slide plate, and the reset member can reset the clamping block.
[0061] Compared with the prior art, the present invention has the following beneficial effects: the present invention is provided with a clamping mechanism, which not only plays the basic effect of limiting the bread assembly from falling out of the heating chamber, but also can smoothly complete the automatic flipping during the baking process when the bread assembly to be processed rotates under the drive mechanism. In addition, under the action of the support plate structure, the overlapping part of the bread assembly and the limiting mechanism can also be fully baked, and multi-directional heating is performed, which not only avoids the problem of heat loss caused by unpacking and flipping; at the same time, the bread assembly is used to directly bake semi-circular prefabricated bread or bake into prefabricated circular bread, saving manpower and time, improving processing efficiency, and reducing the difficulty of operation, and the design is ingenious. BRIEF DESCRIPTION OF THE DRAWINGS
[0062] Figure 1 This is a schematic diagram of the overall structure of an embodiment of the present application;
[0063] Figure 2 This is a schematic cross-sectional structural diagram of a placement rack according to an embodiment of the present application;
[0064] Figure 3 This is a schematic cross-sectional structural diagram of a placement box according to an embodiment of the present application;
[0065] Figure 4 This is a schematic diagram of the exploded structure of the clamping mechanism of an embodiment of the present application;
[0066] Figure 5 for Figure 4 A partial enlarged view of;
[0067] Figure 6 This is a schematic diagram of the main shaft cross-sectional structure of an embodiment of the present application;
[0068] Figure 7 This is a schematic diagram of a cross-sectional structure of a box body according to an embodiment of the present application;
[0069] Figure 8 This is a schematic diagram of the driving mechanism structure of an embodiment of the present application;
[0070] Fig. 9 This is a schematic diagram of the heating component structure of an embodiment of the present application;
[0071] Fig.10 Illustration of the use of the clamping mechanism and bread assembly Figure 1 ;
[0072] Fig.11 A schematic diagram of the bread assembly structure consisting of an annular shell and a mold base;
[0073] Fig.12 Illustration of the use of the clamping mechanism and bread assembly Figure 2 ;
[0074] In the figure:
[0075] 1. Box body; 11. Heating chamber; 12. Plate slot;
[0076] 2. Heating assembly; 21. Heating plate; 22. Heating pipeline; 23. Control box;
[0077] 3. Placement rack; 31. Placement box; 32. Processing slot; 33. Support plate; 34. Bottom rod; 35. Rolling ball; 36. Handle; 37. Vertical board;
[0078] 4. Clamping mechanism; 41. First clamping part; 411. First clamping structure; 412. Frame plate; 413. Frame rod; 414. Connecting groove; 415. First rotating member; 416. Clamping groove; 42. Second clamping part; 421. Second clamping structure; 422. Second rotating member; 423. Clamping block; 424. Slide plate; 425. Slideway; 426. Rotating frame; 427. Resetting member; 428. Guide groove; 429. Accommodating chamber; 43. Tension spring; 44. Linkage assembly; 441. Main shaft; 442. Tension spring connecting plate; 443. Sleeve; 444. Spring; 445. Wing plate;
[0079] 5. driving mechanism; 51. inserting tube; 511. shifting plate; 512. second adsorption member; 52. motor; 53. sprocket and chain combination;
[0080] 6. base, 61. base slide;
[0081] 71. annular shell; 72. partition frame; 73. mold base; 74. wing plate; DETAILED DESCRIPTION
[0082] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0083] See also Figure 1-Figure 3 as well as Figure 10-12 , this application provides the following technical solutions:
[0084] A push tray type bread baking device comprises a base 6, a box body 1 is fixedly arranged on the base 6, a placement rack 3 is arranged on a horizontal side of the box body 1, the placement rack 3 and the base 6 are slidably connected, and a heating component 2 is arranged inside the box body 1.
[0085] The horizontal side of the box body 1 facing the placement rack 3 is an open side, and a plurality of heating chambers 11 are arranged inside the box body 1, and the heating chambers 11 are arranged in a rectangular array. The heating assembly 2 can heat the interior of each heating chamber 11. The placement rack 3 can move toward or away from the open side of the box body 1; the placement rack 3 is provided with a plurality of placement boxes 31 on the side facing the box body 1, and the number and position of the placement boxes 31 correspond to the heating chamber 11. A processing groove 32 for placing the bread assembly to be baked is provided inside the placement box 31. A clamping mechanism 4 is provided in each processing groove 32, and the clamping mechanism 4 can clamp the bread assembly in the processing groove 32. One end of the clamping mechanism 4 extends to the outside of the placement box 31, and the outer end of the clamping mechanism 4 can be linked with a driving mechanism 5 arranged inside the box body 1, and the clamping mechanism 4 is driven to rotate by the driving mechanism 5. Specifically, the bread assembly is a semicircular metal tray. The prepared bread is directly white on one side and golden on the other side. The present invention can directly bake prefabricated bread for hamburgers, replacing the traditional baking + cutting process.
[0086] Specifically, when in use, as an embodiment, the bread assembly includes an annular shell 71 and a mold base 73. When in use, a hemispherical bread with a flat surface on one side and a protruding surface on the other side is directly placed in the bread assembly mold composed of the annular shell 71 and the mold base 73. A gap is provided between the annular shell 71 and the mold base 73 to facilitate heat transfer during heating and baking, and is used to bake half a loaf of bread. The edge of the mold of the annular shell 71 is correspondingly provided with a wing plate 74. The thickness of the wing plate 74 is slightly smaller than the height of the inside of the clamp. When flipping during baking, it will vibrate slightly, so that the baked dough and the bottom surface of the mold will not stick together, which is convenient for later removal.
[0087] As another embodiment, the bread assembly includes an annular shell 71, which is a bottomless mold. A dividing frame 72 is arranged in an annular shape inside the annular shell 71. The dividing frame 72 corresponds to the position where the bread is to be cut. This inner frame can, on the one hand, allow the dough to be stressed after being put in, so that it is not easy to fall out of the mold. On the other hand, this inner frame leaves a waist mark on the entire baked bread, and it can be cut from this waist position, so that two halves of hamburger are formed after cutting.
[0088] In addition, through the structure of the present solution, the bread component is clamped by the clamping mechanism 4, and the bread component to be baked is driven to rotate by the driving mechanism 5. Combined with the box 1 and the heating component 2, the bread component is automatically flipped during the baking process, thereby completing the baking process of the bread component more quickly and comprehensively.
[0089] On the basis of the above implementation scheme, a handle 36 is provided on the outer side of the placement rack 3 ; a plurality of handles 36 can be provided as required, as long as it is convenient for the staff to hold and push the placement rack 3 .
[0090] The base 6 is a table-top structure, and a plurality of base slide grooves 61 are provided on the upper surface of the base 6. A bottom rod 34 is fixedly provided at the bottom of the placement rack 3, and the bottom rod 34 is slidably connected to the base slide groove 61; a rolling ball 35 is rotatably connected to the bottom end of the bottom rod 34, and the rolling ball 35 is attached to the bottom of the base slide groove 61.
[0091] As for the closing method of the placement rack 3 relative to the box body 1, a hinged structure-type rotation closing, a linear translation and sliding closing, or a combination of the two can be adopted. It is only necessary to ensure that the placement rack 3 can be covered on the outer side of the box body 1 through the movement of the placement rack 3, and the placement box 31 can be inserted into the heating chamber 11.
[0092] The attached drawings of this solution show a sliding mode of rotation and translation. Three base slide grooves 61 are set on the base 6, and the bottom of the placement rack 3 is provided with a bottom rod 34 and a rolling ball 35 corresponding to each base slide groove 61.
[0093] This structure can ensure the stability of the placement rack 3 and the mobility of the placement rack 3.
[0094] Based on the above implementation scheme, see Fig. 9 The heating assembly 2 includes a plurality of heating plates 21, one of which is disposed at the top of each heating chamber 11. A heating pipeline 22 is also disposed inside the box body 1, and the heating pipeline 22 is connected to the inside of the heating plate 21. A control box 23 is disposed outside the box body 1, and the heating pipeline 22 extends into the control box 23.
[0095] The control box 23 is provided with a control system and control components for controlling the heating plate 21 to supply heat to the heating chamber 11, thereby achieving the purpose of baking the surface of the bread.
[0096] Based on the above implementation scheme, see Figure 2 and Figure 3 ,, the upper end surface of the processing groove 32 is an open mouth; the processing groove 32 is a bowl-shaped groove as a whole, and its shape is about three-fifths of a spherical structure. A support plate 33 is fixedly arranged inside the processing groove 32, and the support plate 33 is an arc-shaped plate body with a variable diameter, and the support plate 33 is concave downward. The clamping mechanism 4 is located above the support plate 33. When the clamping mechanism 4 clamps the bread assembly, the side of the bread assembly is attached to the upper surface of the support plate 33. The clamping mechanism 4 satisfies that after clamping the bread assembly, the bread assembly can slide in the clamping mechanism 4.
[0097] In addition, two vertical plates 37 are symmetrically fixedly arranged between two upper and lower adjacent placement boxes 31 , and plate grooves 12 are arranged on the box body 1 corresponding to the vertical plates 37 .
[0098] Through the structure of this solution, the plate groove 12 and the vertical plate 37 of the box body 1 can better ensure the sealing of each heating chamber 11, so that the heating effect of the bread assembly is better. And by providing the support plate 33, its function is to use the rotation of the clamping mechanism 4, and at the same time, the edge of the bread assembly is attached to the support plate 33. Under the action of the variable diameter structure of the support plate 33, the bread assembly will be pushed by the support plate 33 to slide in the clamping mechanism 4, thereby avoiding the problem of uneven heating.
[0099] As a further explanation, the variable diameter structure of the support plate 33 can adopt a variety of different forms, such as a horizontal side with a larger radius, which changes gradually, and a smaller radius on the other side. In this structure, as the clamping mechanism 4 rotates, the bread assembly is pushed to translate in the clamping mechanism 4 when it rotates toward the small radius side, and moves away from the edge of the small radius side of the support plate 33, and reaches the large radius side as it rotates. Then repeat this process.
[0100] In addition, a radius gradient structure can also be adopted, such as both sides are large radius sides, and the middle part of the support plate 33 is a small radius position, which can also achieve the above effect. There are many other configuration forms, which will not be described one by one here.
[0101] Based on the above implementation scheme, see Figure 4 and Figure 5 The clamping mechanism 4 includes a first clamping portion 41 and a second clamping portion 42 which are arranged opposite to each other.
[0102] The first clamping part 41 is a frame body, and the first clamping part 41 includes two parallel frame plates 412, one of which is close to the second clamping part 42 and the other is far from the second clamping part 42. The first clamping structure 411 is arranged on the frame plate 412 far from the second clamping part 42, and the plate body of the other frame plate 412 is provided with a connecting groove 414; the second clamping structure 42 is connected to the first clamping part 41 through the connecting groove 414. Two frame rods 413 are arranged between the two frame plates 412, and the two frame rods 413 are parallel, and the two ends of the two frame rods 413 are respectively fixedly connected to the two frame plates 412. The spacing between the two frame rods 413 is greater than the thickness of the bread assembly to be baked.
[0103] The portion of the second clamping portion 42 that passes through the frame plate 412 is the second clamping structure 421. The second clamping portion 42 is slidably connected to the clamping plate 412 through which it passes. The first clamping structure 411 and the second clamping structure 421 are arranged opposite to each other and can clamp the two opposite sides of the bread assembly respectively. A tension spring 43 is arranged between the first clamping portion 41 and the second clamping portion 42, and the tension spring 43 can drive the first clamping structure 411 to move toward the second clamping structure 421.
[0104] Through the above structure, driven by the tension spring 43, the bread assembly can be clamped after being inserted between the first clamping structure 411 and the second clamping structure 421. In addition, because the structure with clamping at both ends is adopted, the bread assembly can slide between the two racks 413, that is, the aforementioned bread assembly performs reciprocating translation under the influence of the structure of the support plate 33.
[0105] In addition, the clamping mechanism 4 is further provided with a linkage component 44 , and the linkage component 44 is linked with the second clamping portion 42 , and the driving mechanism 5 can drive the second clamping portion 42 to rotate through the linkage component 44 .
[0106] The connecting groove 414 adopts a non-circular groove structure, and the second clamping part 42 cooperates with the connecting groove 414, and drives the first clamping part 41 to rotate under the drive of the linkage assembly 44. The specific connection form of the connecting groove 414 and the second clamping part 42 will be further described later.
[0107] Based on the above implementation scheme, see Figure 4 and Figure 6 The first clamping structure 411 includes two parallel clamping plates, with a spacing between the two clamping plates, and the spacing corresponds to the edge thickness of the bread baking component; a plurality of first rotating members 415 are arranged between the two clamping plates of the first clamping structure 411, and the first rotating members 415 are cylindrical rollers, and the axial ends of the rollers are respectively facing the two clamping plates.
[0108] The second clamping structure 421 is a block with a groove, the open end of the groove faces the first clamping structure 411, and a second rotating member 422 is rotatably arranged in the groove of the second clamping structure 421. The second rotating member 422 is rotatably arranged, and the rotation axis direction of the second rotating member 422 is parallel to the axial direction of the first rotating member 415.
[0109] By disposing the first rotating member 415 and the second rotating member 422, it is possible to ensure that the edge of the bread assembly is clamped while facilitating the translation of the bread assembly.
[0110] On the basis of the above implementation scheme, see Figure 4 The linkage assembly 44 includes a main shaft 441, which is fixedly connected to the second clamping structure 421, and the main shaft 441 passes through the connecting groove 414 of the frame plate 412, and the second clamping structure 421 is located on the side of the frame plate 412 facing the first clamping structure 411. In order to realize that the main shaft 441 can drive the first clamping part 41 to rotate, the connecting groove 414 can use a polygonal columnar through-groove structure, and the main shaft 441 corresponds to a polygonal columnar rod body. This solution adopts a structure in which the connecting groove 414 is a circular groove with rectangular grooves on both sides, so the part of the main shaft 441 close to the clamping plate 412 adopts a round rod with rectangular strip structures set on both sides.
[0111] A tension spring connecting plate 442 is fixedly arranged on the rod body of the main shaft 441, one end of the tension spring 43 is fixedly connected to the frame plate 412 of the first clamping part 41, and the other end is fixedly connected to the tension spring connecting plate 442. When the bread assembly is inserted, the first clamping structure 411 is pushed away from the second clamping structure 421 by the bread assembly, and the tension spring 43 is stressed to achieve the clamping of the bread assembly.
[0112] A sleeve 443 is provided at one end of the main shaft 441 away from the second clamping structure 421. The sleeve 443 is sleeved with the main shaft 441 and is linked with the driving mechanism 5. Figure 7 The drive mechanism 5 includes an insert sleeve 51, which is correspondingly arranged with the sleeve 443, and the sleeve 443 can be plugged with the insert sleeve 51; the insert sleeve 51 is rotatably connected with the cavity wall of the heating cavity 11. A chamber is provided at the side of the box body 1 away from the opening thereof, and a motor 52 is fixedly arranged in the chamber, and the motor shaft of the motor 52 is linked with the insert sleeve 51 through a sprocket chain combination 53.
[0113] Through this structure, when the placement rack 3 and the box body 1 are buckled together, the sleeve 443 is inserted into the insert tube 51. Driven by the motor 52, all the insert tubes 51 rotate simultaneously and transmit the rotational force to the sleeve 443, thereby realizing the rotation of the bread assembly during the baking process.
[0114] Based on the above implementation scheme, see Figure 4 and Figure 8 A wing plate 445 is symmetrically arranged on both sides of the sleeve 443, and a paddle 511 is arranged on the inner wall of the insert tube 51 corresponding to the wing plate 445. When the sleeve 443 is inserted into the insert tube 51, the paddle 511 can drive the sleeve 443 to rotate by paddle the wing plate 445.
[0115] Based on the above implementation scheme, a first adsorption component 446 is fixedly provided at the end of the sleeve 443 facing the insert tube 51, and a second adsorption component 512 is provided inside the insert tube 51 corresponding to the first adsorption component 446. The first adsorption component 446 and the second adsorption component 512 can attract each other through magnetism.
[0116] This structure ensures that after the sleeve 443 and the insert sleeve 51 are plugged in, the first adsorption member 446 and the second adsorption member 512 are adsorbed together, so that the connection between the sleeve 443 and the insert sleeve 51 is more stable.
[0117] Based on the above implementation, considering that when the sleeve 443 and the inserting sleeve 51 are plugged in, the wing plate 445 and the paddle plate 511 inside thereof cannot be aligned immediately, therefore, see Figure 4A boss structure is provided at one end of the main shaft 441 facing the sleeve 443, and a slide groove is provided inside the sleeve 443 corresponding to the boss. Through this structure, the main shaft 441 can be slidably connected to the sleeve 443, but cannot rotate relative to each other. A spring 444 is provided between the end of the main shaft 441 and the bottom of the sleeve 443.
[0118] Through the setting of this structure, when the sleeve 443 cannot be directly inserted into the insert sleeve 51, it can compress the spring 444 and move toward the direction of the main shaft 441. When the insert sleeve 51 rotates, the sleeve 443 can be inserted into the insert sleeve 51. Under the action of the spring 444 releasing its compressed force, the sleeve 443 is inserted into the insert sleeve 51.
[0119] Based on the above implementation scheme, see Figure 6 The second clamping part 42 also includes a positioning assembly, which can initially position the first clamping part 41 on the main shaft 441; the positioning assembly includes a clamping slot 416 provided inside the connecting slot 414. A clamping block 423 is provided at a position of the main shaft 441 close to the second clamping structure 421, and the clamping block 423 and the clamping slot 416 are correspondingly provided, and the clamping block 423 can be inserted into the clamping slot 416.
[0120] The clamping block 423 includes a triangular portion, which is approximately a right-angled triangle, with its hypotenuse facing the direction of the sleeve 443, and a guide plate fixedly arranged in the direction of its right-angled side. A guide groove 428 is arranged at the connection between the second clamping structure 421 and the main shaft 441. The clamping block 423 is slidably connected to the second clamping structure 421 through the guide groove 428 and the guide plate, and its sliding mode is perpendicular to the length direction of the main shaft 441.
[0121] A slideway 425 is provided inside the second clamping structure 421. The slideway 425 is provided in the length direction of the main shaft 441. The slideway 425 is slidably connected to the slide plate 424. The slide plate 424 is slidably connected to the second clamping structure 421 through the slideway 425. The clamping block 423 is symmetrically provided on both sides of the slide plate 424. The clamping block 423 is connected to the slide plate 424 through a rotating frame 426. The two ends of the rotating frame 426 are rotatably connected to the slide plate 424 and the clamping block 423. A reset member 427 is provided between the guide plate of the clamping block 423 and the slide plate 424. The reset member 427 is a reset spring. The reset member 427 can reset the clamping block 423.
[0122] A receiving chamber 429 is provided inside the main shaft 441, and the receiving chamber 429 is located on the side of the guide groove 428 facing the sleeve 443. The clamping block 423 is located in the receiving chamber 429, and through grooves are provided on both sides of the receiving chamber 429, and the clamping block 423 can extend from the through groove to the outside. One end of the slide plate 424 is rotatably connected to the second rotating member 422.
[0123] Through this structure, in the initial state of the clamping mechanism 4, the block 423 is stuck in the slot 416, and the first clamping part 41 cannot move relative to the second clamping part 42. When the bread assembly abuts against the second rotating member 422, the bread assembly pushes the second rotating member 422, so that the slide 424 slides in the slideway 425. With the movement of the slide 424, under the cooperation of the guide plate and the guide slot 428 of the block 423, the rotating frame 426 rotates, driving the block 423 to retract into the main shaft 441, and the maximum movement distance of the slide 424 is the end of the slide 424 against the cavity wall of the accommodating cavity 429. Because the block 423 retracts, it contacts the clamping state of the slot 416, and driven by the tension spring 43, the first clamping structure 411 moves toward the second clamping structure 421 to achieve the clamping of the bread assembly.
[0124] In the description of the present application and its embodiments, it should be understood that the orientation or positional relationship indicated by the terms "top", "bottom", "height", etc. is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the present application.
[0125] In the present application and its embodiments, unless otherwise clearly specified and limited, the terms "set", "install", "connect", "connect", "fix" and the like should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection, an electrical connection, or a communication; it can be a direct connection, or an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements. For ordinary technicians in this field, the specific meanings of the above terms in the present application can be understood according to the specific circumstances.
[0126] In the present application and its embodiments, unless otherwise clearly specified and limited, a first feature being "above" or "below" a second feature may include the first and second features being in direct contact, or may include the first and second features not being in direct contact but being in contact through another feature between them. Moreover, a first feature being "above", "above" and "above" a second feature includes the first feature being directly above and obliquely above the second feature, or simply indicates that the first feature is higher in level than the second feature. A first feature being "below", "below" and "below" a second feature includes the first feature being directly above and obliquely above the second feature, or simply indicates that the first feature is lower in level than the second feature.
[0127] The disclosure above provides many different embodiments or examples to realize the different structures of the present application. In order to simplify the disclosure of the present application, the parts and settings of specific examples are described above. Of course, they are only examples, and the purpose is not to limit the present application. In addition, the present application can repeat reference numbers and / or reference letters in different examples, and this repetition is for the purpose of simplification and clarity, which itself does not indicate the relationship between the various embodiments and / or settings discussed. In addition, the various specific processes and material examples provided by the present application, but those of ordinary skill in the art can be aware of the application of other processes and / or the use of other materials.
[0128] Although the preferred embodiments of the present application have been described, those skilled in the art may make additional changes and modifications to these embodiments once they have learned the basic creative concept. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments and all changes and modifications falling within the scope of the present application.
[0129] Obviously, those skilled in the art can make various changes and modifications to the present application without departing from the spirit and scope of the present application. Thus, if these modifications and variations of the present application fall within the scope of the claims of the present application and their equivalents, the present application is also intended to include these modifications and variations.
Claims
1. A push tray type bread baking device, characterized in that: include: The box body has a horizontal side which is an open side, and a plurality of heating chambers are arranged inside the box body; A heating component is arranged inside the box body, and the heating component can heat the interior of each heating cavity; A placing rack is arranged on a horizontal side of the box body, and the placing rack can move toward or away from the open side of the box body; a plurality of placing boxes are arranged on the side of the placing rack facing the box body, and processing grooves for placing bread components to be baked are provided inside the placing boxes; A clamping mechanism is arranged in the placement box, and one end of the clamping mechanism extends to the outside of the placement box, and the clamping mechanism can clamp the bread assembly in the placement box; The driving mechanism is arranged inside the box body, and the driving mechanism can drive the clamping mechanism to rotate.
2. The push tray type bread baking device according to claim 1, characterized in that: The heating chambers in the box are arranged in a rectangular array; the placement boxes correspond to the heating chambers; The outer side of the placement rack is provided with a handle; The device also includes: A base, the box and the placement rack are both arranged on the base, the box and the base are fixedly connected, and the placement rack and the base are slidably connected; The base comprises: A base slide groove is provided on the upper surface of the base; The placement rack also includes: A bottom rod is arranged at the bottom of the placement rack, and the bottom rod is slidably connected with the base slide groove; The rolling ball is arranged at the bottom end of the bottom rod, the rolling ball and the bottom end of the bottom rod are rotatably connected, and the rolling ball and the bottom of the base slide groove are in contact with each other.
3. The push tray type bread baking device according to claim 1, characterized in that: The heating assembly comprises: A heating plate is provided in each of the heating chambers; the heating plate is a plate body with a hollow interior; A heating pipeline is connected to the interior of the heating plate; The control box is arranged outside the box body, and the heating pipeline extends into the control box.
4. The push tray type bread baking device according to claim 1, characterized in that: The upper end surface of the processing groove is an open opening; the placement rack also includes: A support plate is fixedly arranged inside the processing tank, the support plate is an arc-shaped plate body with a variable diameter, and the support plate is concave downward; The clamping mechanism is located above the support plate. When the clamping mechanism clamps the bread assembly, the side edge of the bread assembly is in contact with the upper surface of the support plate.
5. The push tray type bread baking device according to claim 1, characterized in that: The clamping mechanism comprises: The first clamping part is a frame, and a first clamping structure is arranged inside the frame; A second clamping portion is slidably connected to the first clamping portion, and the second clamping portion includes a second clamping structure; the first clamping structure and the second clamping structure are arranged opposite to each other, and can respectively clamp the two opposite sides of the bread assembly; A tension spring is arranged between the first clamping portion and the second clamping portion, and the tension spring can drive the first clamping structure to move toward the second clamping structure; The linkage component is linked with the first clamping part or the second clamping part, and the driving mechanism can drive the first clamping part or the second clamping part to rotate through the linkage component.
6. The push tray type bread baking device according to claim 5, characterized in that: The first clamping portion further comprises: Two frame plates are arranged in parallel; the first clamping structure is arranged on one of the frame plates; a connecting groove is opened on the plate body of the other frame plate; the second clamping structure is connected to the first clamping part through the connecting groove; Two rack rods are arranged in parallel, and the ends of the two rack rods are respectively fixedly connected to the two rack plates; the distance between the two rack rods is greater than the thickness of the bread assembly to be baked.
7. The push tray type bread baking device according to claim 6, characterized in that: The first clamping structure includes two clamping plates arranged in parallel, with a spacing between the two clamping plates corresponding to the thickness of the edge of the bread assembly; The first clamping portion further comprises: A first rotating member is disposed between the two clamping plates of the first clamping structure; the first rotating member is cylindrical, and its axial ends are respectively facing the two clamping plates; The second clamping structure is a block with a groove, and the open end of the groove faces the first clamping structure; The second clamping portion further comprises: The second rotating member is rotatably disposed in the groove of the second clamping structure, and the rotation axis direction of the second rotating member is parallel to the axial direction of the first rotating member.
8. The push tray type bread baking device according to claim 7, characterized in that: The linkage components include: The main shaft is fixedly connected to the second clamping structure; the main shaft passes through the connecting groove of the frame plate, and the second clamping structure is located on the side of the frame plate facing the first clamping structure; A sleeve, sleeved with the main shaft, and the sleeve and the driving mechanism are linked; The driving mechanism comprises: The inserting sleeve is arranged corresponding to the sleeve, and the sleeve can be plugged into the inserting sleeve; the inserting sleeve is rotatably connected to the cavity wall of the heating cavity; The motor shaft of the motor is linked with the insert cylinder through a sprocket chain combination.
9. The push tray type bread baking device according to claim 8, characterized in that: The linkage component also includes: A spring, arranged between the end of the main shaft and the inner bottom of the sleeve; Wing plates are symmetrically arranged on both sides of the sleeve; a paddle is arranged on the inner wall of the insert corresponding to the wing plates; A first adsorption member is arranged at the end of the sleeve; a second adsorption member is arranged inside the insert tube corresponding to the first adsorption member, and the first adsorption member and the second adsorption member can attract each other through magnetism.
10. The push tray type bread baking device according to claim 8, characterized in that: The second clamping portion further comprises: The positioning assembly can position the first clamping portion on the main shaft; the positioning assembly includes: A card slot, disposed inside the connecting slot; A card block is arranged corresponding to the card slot, and the card block can be inserted into the card slot; the card block is slidably connected to the second clamping structure, and its sliding mode is perpendicular to the length direction of the main shaft; A slide plate is arranged inside the second clamping structure, the slide plate is slidably connected to the second clamping structure, and the sliding direction thereof is the length direction of the main axis; A rotating frame, both ends of which are rotatably connected to the slide plate and the clamping block respectively; A reset member is arranged between the clamping block and the slide plate, and the reset member can reset the clamping block.