A method for processing bread
By adjusting the mixing range and shaping steps, the problem of uneven mixing of raw materials in bread making is solved, and even mixing and regularizing the bread is achieved, improving the taste and quality of the bread.
Patent Information
- Application Number
- CN202211628451.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-17
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2042-12-17
AI Technical Summary
In the prior art, the mixing range of mixed raw materials cannot be fully adjusted during the bread making process, resulting in uneven mixing of raw materials, affecting the taste and quality of the bread.
A bread processing method is adopted, including steps 1: add water to multiple raw materials to mix, step 2: adjust the mixing range to ensure even mixing of raw materials, step 3: flat-shave the dough from the upper end and the side, and step 4: Shape the bread and bake it after waking up. This method uses a bottom frame loading raw materials to achieve full mixing and shaping of a variety of raw materials through components such as drive frames, screws, lifting plates and stirring plates.
It achieves full mixing of various raw materials and regular dough, improving the taste and quality of the bread.
Smart Images

Figure CN115804399B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of pastry processing, and more specifically to a bread processing method. Background Art
[0002] Bread is a type of food with relatively high nutritional value and convenient to carry and consume. There are many methods for making bread. Traditional bread making uses wheat flour as the main raw material, with ingredients such as white granulated sugar, adds water to knead the dough, proof it, and then bake it at high temperature. However, during the process of processing bread, it is impossible to adjust the stirring range of the mixed raw materials to fully mix various raw materials. Summary of the Invention
[0003] To overcome the deficiencies of the prior art, the present invention provides a bread processing method that can adjust the stirring range of the mixed raw materials to fully mix various raw materials.
[0004] The technical solution adopted by the present invention to solve its technical problems is as follows:
[0005] A bread processing method, which includes the following steps:
[0006] Step 1: Add water to various raw materials for mixing;
[0007] Step 2: Adjust the mixing range to ensure that the raw materials are fully and evenly mixed;
[0008] Step 3: Pat the mixed dough flat from the upper end and the side to shape the dough;
[0009] Step 4: After fully proofing the dough, shape the bread and then bake it to complete the processing of the bread.
[0010] Further, the device includes a bottom frame for loading raw materials. Multiple side plates are rotatably arranged on the bottom frame, and multiple driving frames are rotatably arranged on the bottom frame. Each driving frame is detachably connected with a first screw rod. Each first screw rod is threadedly connected with a first screw sleeve. Multiple first screw sleeves are fixedly connected to a lifting plate. A follower plate is rotatably arranged on the lifting plate. Multiple stirring plates are slidably arranged on the follower plate. Two second screw sleeves are rotatably arranged on the follower plate. Each second screw sleeve is threadedly connected with a second screw rod. Two second screw rods are fixedly connected to a pressing plate for scraping the materials on multiple stirring plates.
[0011] Further, rack wheels are fixedly connected to the multiple side plates. Multiple racks for driving the multiple rack wheels to rotate are slidably arranged on the bottom frame. An intermittent wheel for driving the multiple racks to slide is rotatably arranged on the bottom frame.
[0012] Further, a toothed ring is fixedly connected to the follower plate. Multiple side wheels for driving the toothed ring to rotate are rotatably arranged on the lifting plate. Description of the Drawings
[0013] The present invention will be further described in detail below in conjunction with the accompanying drawings and specific implementation methods.
[0014] Figure 1 It is a flowchart of a method for processing bread;
[0015] Figure 2 It is a structural diagram of trimming the side of the dough;
[0016] Figure 3 It is a structural diagram of multiple side plates;
[0017] Figure 4 It is a structural diagram of driving multiple side plates to swing;
[0018] Figure 5 It is a structural diagram of driving the follower plate to lift and lower;
[0019] Figure 6 It is a structural diagram of mixing raw materials;
[0020] Figure 7 It is a structural diagram of driving the follower plate to rotate;
[0021] Figure 8 It is a structural diagram of adjusting the stirring range of multiple stirring plates;
[0022] Figure 9 It is a structural diagram of driving the pressing plate to lift and lower;
[0023] Figure 10 It is a positional structural diagram of multiple stirring plates and the pressing plate;
[0024] Figure 11 It is a device diagram for processing bread.
[0025] Bottom frame 11; side plate 12; rack gear 13; rack 14; intermittent gear 15; driving frame 21; screw rod I 22; screw rod sleeve I 23; lifting plate 24; side wheel 25; follower plate 31; gear ring 32; rocker plate 33; stirring plate 34; support rod 35; middle shaft screw rod 41; adjusting frame 42; pressing plate 51; screw rod II 52; synchronous wheel 53; screw rod sleeve II 54; synchronous belt 55; driving wheel 56. Specific implementation method
[0026] Reference Figure 1 , and the method for processing bread will be described in detail:
[0027] A bread processing method, which includes the following steps:
[0028] Step 1: Add water to various raw materials and mix them to knead the raw materials into dough. By means of mechanical stirring, the raw materials can be mixed more fully, which can prevent the insufficient uniformity of the mixture of various raw materials, resulting in uneven distribution of the dough raw materials, leading to deviation in the taste of the processed bread and affecting the taste and quality of the bread.
[0029] Step 2: Adjust the mixing range to ensure the full and uniform mixing of the raw materials. The mixing range of common stirring devices is fixed, and the stirring position is fixed. Therefore, the position where the raw materials are driven to move is fixed, and the raw materials cannot be fully stirred. By adjusting the mixing range, the raw materials at multiple positions can be mixed, the position of the moving raw materials can be changed, and the raw materials at different places can be fully mixed to fully process a uniform dough.
[0030] Step 3: Flatten the mixed dough from the upper end and the side to shape the dough and process a regular dough.
[0031] Step 4: After fully proofing the dough, shape the bread and then bake it to complete the processing of the bread.
[0032] Combined with the above embodiments, the following functions can also be achieved;
[0033] Reference Figure 2 、 3 、5, 6, 8, 9, 10 and 11 to elaborate on the implementation process of fully mixing various raw materials to process a regular dough:
[0034] The device includes a bottom frame 11 for loading raw materials. The bottom frame 11 is mainly used for loading raw materials and fully mixing them. A plurality of side plates 12 are rotatably connected to the bottom frame 11. The plurality of side plates 12 can be driven to swing by external force. The plurality of swinging side plates 12 can slap the rotating dough, slap the sides of the mixed dough more evenly, and shape the sides of the dough. A plurality of driving frames 21 are rotatably connected to the bottom frame 11. The plurality of driving frames 21 are respectively fixedly connected to the output shafts of a plurality of reduction motors I. The plurality of reduction motors I are fixedly connected to On the bottom frame 11, each drive frame 21 is detachably connected to a screw rod Ⅰ 22, each screw rod Ⅰ 22 is threadedly connected to a screw rod sleeve Ⅰ 23, and multiple screw rod sleeves Ⅰ 23 are fixedly connected to the lifting plate 24. Start multiple reduction motors Ⅰ, multiple reduction motors Ⅰ drive multiple drive frames 21 to rotate, and multiple drive frames 21 drive multiple screw rods Ⅰ 22 to rotate. When multiple screw rods Ⅰ 22 rotate, multiple screw rod sleeves Ⅰ 23 are driven to rise and fall through threads, and multiple screw rod sleeves Ⅰ 23 drive the lifting plate 24 to rise and fall. When the lifting plate 24 rises away from the bottom frame 11, it can lose contact with the bottom frame 11. The sealing at the upper end of the frame 11 can realize the addition and removal of raw materials. The lifting plate 24 is rotatably connected to a follower plate 31, and a plurality of stirring plates 34 are slidably connected to the follower plate 31. When the follower plate 31 rotates, it can drive the plurality of stirring plates 34 to rotate, thereby achieving full mixing of the raw materials. By adjusting the positions of the plurality of stirring plates 34, the plurality of stirring plates 34 can fully mix the raw materials at different positions of the lower end. Two screw sleeves II 54 are rotatably connected to the follower plate 31, and each screw sleeve II 54 is threadedly connected to a screw rod II 52. The two screw rods Ⅱ52 are all fixedly connected to the pressing plate 51, and multiple stirring plates 34 are all slidably connected to the pressing plate 51. When the two screw sleeves Ⅱ54 rotate, the two screw rods Ⅱ52 can be driven to rise and fall through the threads, and the two screw rods Ⅱ52 drive the pressing plate 51 to rise and fall. When the pressing plate 51 and the multiple stirring plates 34 slide relative to each other, the multiple stirring plates 34 can be cleaned, the raw materials can be fully scraped off, the raw materials can be cleaned, and the waste of raw materials can be prevented. When the pressing plate 51 is raised and lowered, the raw materials at the lower end can be reciprocated and slapped, which can realize the shaping of the upper end of the dough, thereby realizing the processing of the dough.
[0035] In combination with the above embodiments, the following functions can also be achieved:
[0036] refer to Figure 3 and 4 , details the implementation process of driving multiple side panels to swing:
[0037] A rack wheel 13 is fixedly connected to each of the plurality of side plates 12. A plurality of racks 14 are slidably connected to the bottom frame 11. The plurality of racks 14 are respectively in meshing transmission with the plurality of rack wheels 13. An intermittent wheel 15 is rotatably connected to the bottom frame 11. The intermittent wheel 15 is in meshing transmission with the plurality of racks 14. The intermittent wheel 15 is fixedly connected to the output shaft of the second reduction motor. The second reduction motor is fixedly connected to the bottom frame 11 by bolts. When the second reduction motor is started, the second reduction motor drives the intermittent wheel 15 to rotate. The intermittent wheel 15 meshingly drives the plurality of racks 14 to slide. The plurality of racks 14 meshingly drive the plurality of rack wheels 13 to rotate. The plurality of rack wheels 13 drive the plurality of side plates 12 to rotate. Thus, by starting the second reduction motor to rotate reciprocally, the plurality of side plates 12 can be swung, so that the plurality of side plates 12 can slap the dough on the side, realizing the shaping of the mixed dough and making the dough trimmed more neatly.
[0038] Combined with the above embodiments, the following functions can also be achieved;
[0039] Refer to Figure 7 , and the implementation process of driving the follower plate to rotate is described in detail:
[0040] A toothed ring 32 is fixedly connected to the follower plate 31. A plurality of side wheels 25 are rotatably connected to the lifting plate 24. The plurality of side wheels 25 are respectively fixedly connected to the output shafts of the plurality of third reduction motors. The plurality of third reduction motors are all fixedly connected to the lifting plate 24. The plurality of side wheels 25 are all in meshing transmission with the toothed ring 32. When the plurality of third reduction motors are started, the plurality of third reduction motors drive the plurality of side wheels 25 to rotate. The plurality of side wheels 25 synchronously meshingly drive the toothed ring 32 to rotate. The toothed ring 32 drives the follower plate 31 to rotate. The follower plate 31 drives the plurality of stirring plates 34 to rotate to achieve sufficient mixing of the raw materials.
[0041] Combined with the above embodiments, the following functions can also be achieved;
[0042] Refer to Figure 6 , and the implementation process of adjusting the mixing range of the plurality of stirring plates is described in detail:
[0043] The upper ends of the plurality of stirring plates 34 are all rotatably connected to a rocker 33. The middle of each rocker 33 is rotatably connected to a support rod 35. The plurality of support rods 35 are all fixedly connected to the follower plate 31. When the free ends of the plurality of rockers 33 are driven, the plurality of rockers 33 rotate. The plurality of rockers 33 drive the plurality of stirring plates 34 to rotate, thereby realizing the adjustment of the positions of the plurality of stirring plates 34, and thus cooperating with the rotation of the plurality of stirring plates 34 to fully mix the raw materials at different positions.
[0044] Combined with the above embodiments, the following functions can also be achieved;
[0045] Refer to Figure 8, a detailed description of the implementation process of driving multiple rocker plates to rotate:
[0046] A central shaft screw rod 41 is rotatably connected to the follower plate 31. An adjusting frame 42 that slides on the follower plate 31 is threadedly connected to the central shaft screw rod 41. Multiple rocker plates 33 are all slidably connected to the adjusting frame 42. The central shaft screw rod 41 is fixedly connected to the output shaft of the reduction motor IV, and the reduction motor IV is fixedly connected to the follower plate 31. When the reduction motor IV is started, the reduction motor IV drives the central shaft screw rod 41 to rotate. The central shaft screw rod 41 drives the adjusting frame 42 to lift through the thread. The adjusting frame 42 drives one end of multiple rocker plates 33 to lift, thereby realizing the rotation of multiple rocker plates 33, and thus realizing the adjustment of the positions of multiple stirring plates 34.
[0047] Combined with the above embodiments, the following functions can also be realized;
[0048] Reference Figure 9 、 10 And 11, a detailed description of the implementation process of driving the pressing plate to lift:
[0049] Synchronous wheels 53 are fixedly connected to both of the two screw rod sleeves II 54. Two driving wheels 56 are rotatably connected to the follower plate 31. The two driving wheels 56 drive the two synchronous wheels 53 to transmit through the synchronous belt 55. One of the driving wheels 56 is fixedly connected to the output shaft of the reduction motor V, and the reduction motor V is fixedly connected to the follower plate 31. When the reduction motor V is started, the reduction motor V drives the driving wheel 56 fixedly connected to it to rotate. This driving wheel 56 drives the other driving wheel 56 and the two synchronous wheels 53 to rotate through the synchronous wheels 53. Thus, the two screw rod sleeves II 54 are driven to rotate through the two synchronous wheels 53. The two screw rod sleeves II 54 drive the two screw rods II 52 to lift through the thread. The two screw rods II 52 drive the pressing plate 51 to lift, realizing the trimming of the dough by patting the upper end of the dough, and can also realize the cleaning of multiple stirring plates 34.
[0050] Combined with the above embodiments, the following functions can also be realized;
[0051] Reference Figure 5 , a detailed description of the implementation process of the detachable connection of multiple screw rods I:
[0052] The corresponding screw rods I 22 are fixed to multiple driving frames 21 through bolts. The disassembly of multiple driving frames 21 and the corresponding screw rods I 22 is realized by disassembling multiple bolts, so as to be able to carry out the transmission between multiple driving frames 21 and the corresponding screw rods I 22.
[0053] Combined with the above embodiments, the following functions can also be realized;
[0054] Reference Figure 2 And 3 , a detailed description of the implementation process of the storage of multiple side plates when not in motion:
[0055] A plurality of inner grooves for placing the side plates 12 are machined on the inner wall of the bottom frame 11, so as to ensure that when the plurality of side plates 12 are not in use, the inner wall of the bottom frame 11 can form a complete cylindrical shape, enabling sufficient mixing of raw materials.
[0056] Combined with the above embodiments, the following functions can also be achieved;
[0057] Refer to Figure 2 、 10 and 11, the implementation process of cleaning the inner wall of the bottom frame is described in detail:
[0058] The outer wall of the pressing plate 51 is in contact with the inner wall of the bottom frame 11, so that when the pressing plate 51 is driven to move up and down, the raw materials on the inner wall of the bottom frame 11 can be scraped, ensuring the cleanliness of the raw materials and fully processing the raw materials into dough.
Claims
1. A bread processing method, characterized in that: The method comprises the following steps: Step 1: Add water to the various raw materials and mix them; Step 2: Adjust the mixing range to ensure that the raw materials are fully and evenly mixed; Step 3: Flatten the mixed dough from the top and sides to shape the dough; Step 4: After the dough is fully rested, the bread is shaped and then baked to realize the bread processing, which is realized by using a bread processing device, the device includes a bottom frame (11) for loading raw materials, a plurality of side plates (12) are rotated on the bottom frame (11), a plurality of driving frames (21) are rotated on the bottom frame (11), each driving frame (21) is detachably connected to a screw rod I (22), and each screw rod I (22) is threadedly connected to a screw rod sleeve Ⅰ (23), multiple screw sleeves Ⅰ (23) are fixed on the lifting plate (24), a follower plate (31) rotates on the lifting plate (24), multiple stirring plates (34) slide on the follower plate (31), two screw sleeves Ⅱ (54) rotate on the follower plate (31), each screw sleeve Ⅱ (54) is threadedly connected to a screw rod Ⅱ (52), and the two screw rods Ⅱ (52) are fixed on a pressure plate (51) that scrapes materials on the multiple stirring plates (34).
2. The bread processing method according to claim 1, wherein: The plurality of side plates (12) are all fixedly connected with rack wheels (13); a plurality of racks (14) are slidably mounted on the bottom frame (11) for driving the plurality of rack wheels (13) to rotate; and an intermittent wheel (15) is rotatably mounted on the bottom frame (11) for driving the plurality of racks (14) to slide.
3. The bread processing method according to claim 1, wherein: A gear ring (32) is fixedly connected to the follower plate (31), and a plurality of side wheels (25) for driving the gear ring (32) to rotate are rotated on the lifting plate (24).
4. The bread processing method according to claim 1, wherein: The upper ends of the plurality of stirring plates (34) are rotatably connected to a seesaw (33), the middle portion of each seesaw (33) is rotated on a support rod (35), and the plurality of support rods (35) are fixedly connected to the follower plate (31).
5. The bread processing method according to claim 4, characterized in that: A central axis screw rod (41) is rotated on the follower plate (31), and an adjustment frame (42) sliding on the follower plate (31) is connected to the central axis screw rod (41), and a plurality of rockers (33) all slide on the adjustment frame (42).
6. The bread processing method according to claim 5, characterized in that: The two screw rod sleeves II (54) are both fixedly connected with synchronous wheels (53), and two driving wheels (56) are rotated on the follower plate (31). The two driving wheels (56) drive the two synchronous wheels (53) through a synchronous belt (55).
7. The bread processing method according to claim 1, wherein: The corresponding screw rods I (22) are fixed to the plurality of drive frames (21) by bolts.
8. The bread processing method according to claim 1, wherein: The inner wall of the bottom frame (11) is processed with a plurality of inner grooves for placing the side panels (12).
9. The bread processing method according to claim 1, wherein: The outer wall of the pressing plate (51) is in contact with the inner wall of the bottom frame (11).
Citation Information
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Preparation process of waterproof coating
CN113856508A
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