Drawer type pastry fermentation room
The drawer-type proofing room design solves the inconsistencies caused by manual operation and the problems of automation connection in existing proofing rooms, achieving a stable proofing environment and efficient industrial production.
Patent Information
- Application Number
- CN202520009225.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-02
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2035-01-02
AI Technical Summary
The existing proofing room requires manual pushing of material carts in and out, resulting in inconsistent proofing times, which affects product consistency and production efficiency. Furthermore, it is difficult to achieve automated connection, thus limiting industrial production.
The design incorporates a drawer-style dough proofing room with a detachable storage frame and sealed bracket structure, combined with a hot air circulation and humidification system to ensure a constant temperature and humidity environment, and provides a fully automatic interface for industrial production.
It achieves stability in proofing time and product consistency, improves production efficiency, and supports fully automated industrial production.
Smart Images

Figure CN223600731U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of fermentation room, concretely relates to drawer type pastry fermentation room. BACKGROUND
[0002] The pastry fermentation equipment is an important equipment in the pastry processing technical field, is widely used in various pastry making, including but not limited to steamed stuffed buns, steamed buns, bread, cakes and the like. Its main function is to ensure that the fermentation process of the dough is stable and efficient by providing a constant temperature and humidity environment, thereby improving the quality and production efficiency of the pastry, no matter in large-scale frozen or baking, food processing enterprises, fast food restaurants, restaurants, baking shops, the pastry fermentation equipment plays a vital role, becomes the indispensable important equipment of the pastry and baking industry.
[0003] The existing pastry fermentation equipment mainly has two kinds, one is fermentation box, and the fermentation box is mostly used in restaurants, canteens, fast food stores and baking shops and the like, and the production capacity of the scene is not very large, it mostly adopts electric heating tube to directly heat the water in the water tank to realize a relatively stable temperature and humidity environment, to improve the quality and efficiency of fermentation. The other is fermentation room, and it is a large-scale equipment and is mostly used in large-scale pastry or baking food factory, and it mostly adopts steam generator or other external steam source, and the steam heat exchanger in the fermentation room is connected through pipeline, to generate a relatively suitable temperature and humidity environment, to help the fermentation of the pastry. The main structure mostly adopts the cabinet shell made of polyurethane cold storage board of full stainless steel shell, which is not only beautiful but also durable. The fermentation is provided with temperature and humidity control, and the air with suitable temperature and humidity is uniformly blown to the whole fermentation room interior through the unique convection mode, to ensure the fermentation effect of the dough, and the automatic control system is also provided, to prevent the temperature and humidity from being out of limit, to ensure the stability of the fermentation effect.
[0004] However, although the existing pastry fermentation room meets the needs of food processing to some extent, there are still some obvious defects, first, the existing one generally needs to rely on manual pushing of material car in and out of the fermentation room, and the fermentation time of the existing fermentation room is easily affected by manual operation, leading to inconsistent fermentation time, thereby making the consistency of products lower, affecting the production quality and efficiency, and the existing fermentation room is not suitable for industrialized production, and the manual pushing of material car of the existing fermentation room is difficult to be automatically connected, thereby being not easy to use the fermentation room, affecting the use and production efficiency of the pastry fermentation room. UTILITY MODEL CONTENTS
[0005] The utility model discloses a drawer type pastry proofing room to solve the above defects, to solve the use effect of the prior art of the above background art is not good, not applicable to industrial production, and the prior art of proofing room needs to rely on manual pushing material car to go in and out in the proofing room, thereby affecting the internal environment of the proofing room, leading to the proofing time and the consistency of product are lower, and the prior art of proofing room is difficult to carry out the automatic connection, thereby affecting the use and production efficiency of the proofing room technical problem.
[0006] The utility model discloses a drawer type pastry proofing room to solve the above defects, to solve the use effect of the prior art of the above background art is not good, not applicable to industrial production, and the prior art of proofing room needs to rely on manual pushing material car to go in and out in the proofing room, thereby affecting the internal environment of the proofing room, leading to the proofing time and the consistency of product are lower, and the prior art of proofing room is difficult to carry out the automatic connection, thereby affecting the use and production efficiency of the proofing room technical problem.
[0007] Drawer type pastry proofing room, including proofing casing, the inside of proofing casing is formed with accommodating cavity, is connected with the hot air circulation system for constant temperature and the humidification system for constant humidity in accommodating cavity, the side of proofing casing is provided with the opening with the communication of accommodating cavity, and proofing casing is detachably connected with the article frame, and the one end of article frame is embedded in accommodating cavity through opening and is detachably connected with proofing casing through connecting piece, and the other end of article frame is connected with the installation sealing plate for the mating opening and the airtightness of accommodating cavity, and the bracket of pullable sliding is connected on article frame through sliding channel, and the sliding slot entrance of mating with sliding channel is formed on installation sealing plate, and the one end of bracket can slide into accommodating cavity along sliding slot entrance, and the end of bracket is connected with the first sealing baffle of entering accommodating cavity, and the other end of bracket is exposed outside installation sealing plate and is connected with the second sealing baffle of mating sliding slot entrance, and the outside of second sealing baffle is connected with the butt joint plate for butt joint and pullable bracket, when the bracket is pulled and exposed outside proofing casing, the first sealing baffle is sealed with sliding slot entrance through first sealing piece when the bracket enters sliding channel along sliding slot entrance, and the second sealing baffle is sealed with sliding slot entrance through second sealing piece.
[0008] Further in the above description, the connecting piece is arranged on both sides of the article frame, and the one end of the article frame can slide into the accommodating cavity along the opening, and the connecting piece is connected with the side of the proofing casing through the locking piece.
[0009] Further in the above description, the installation sealing plate is installed on one side of the article frame, and the sleeve joint plate is connected on the installation sealing plate, and the sleeve joint groove for sleeving the side wall of the proofing casing is formed on the sleeve joint plate.
[0010] Further in the above description, the bottom of the article frame is connected with a plurality of rotatable supporting rollers, and the article frame can move into the accommodating cavity and be embedded in the accommodating cavity through the supporting rollers.
[0011] The detachable connection of the connecting piece enables the whole disassembly of the storage frame from the wake-up shell, and the support rollers enable the convenient movement of the storage frame, so that the storage frame can be disassembled for subsequent cleaning and maintenance.
[0012] Further in the above description, the bracket is formed with a placing groove for placing the wake-up tray, and the first and second sealing baffle plates are oppositely arranged at two ends of the bracket, and the side surfaces of the first and second sealing baffle plates are connected with reinforcing plates.
[0013] The first and second sealing baffle plates are arranged to seal the sliding groove entrance when the bracket is pulled open or closed, so as to isolate the external air from entering the containing cavity through the sliding groove entrance, and reduce the influence of the external air on the face points in the containing cavity.
[0014] Further in the above description, the first and second sealing members are respectively arranged on the inner sides adjacent to the first and second sealing baffle plates, and the first and second sealing members are both silicone foam sealing pads.
[0015] The first and second sealing members further seal the sliding groove entrance when the bracket is opened or closed.
[0016] Further in the above description, the inner side surfaces of the first and second sealing baffle plates are both connected with spring buckles.
[0017] Optionally, the butt plate is provided with a plug hole for pulling.
[0018] Further in the above description, the inner wall of the containing cavity is provided with a perforated plate, and the containing cavity is connected with a heating chamber, the heating chamber is provided with a steam exhaust pipe for humidifying, a steam heat exchanger for heating air, and an axial flow fan, the side surface of the heating chamber is provided with a through hole in communication with the containing cavity, and the axial flow fan is installed in communication with the through hole.
[0019] The steam exhaust pipe directly discharges steam to the air to increase the humidity of the air in the containing cavity, the steam heat exchanger is used to heat the air temperature in the containing cavity, and the axial flow fan drives the relatively low-temperature air in the containing cavity to the heating chamber and drives the relatively high-temperature air to the inner side of the perforated plate, so that the heated air is dispersed to the containing cavity through the perforated plate, and the air temperature in the containing cavity decreases again after passing through the axial flow fan and flows to the steam heat exchanger for heating, so as to ensure the stability of the temperature in the containing cavity.
[0020] Further in the above description, the containing cavity is connected with a temperature and humidity sensor for monitoring the temperature and humidity near the air inlet end of the axial flow fan.
[0021] The utility model discloses a beneficial effect: the opening of the leavening shell side surface is convenient for the matching of the storage frame, and the detachable connection of the storage frame and the leavening shell is realized through the connecting piece, and the overall dismounting maintenance and cleaning of the subsequent storage frame are convenient, the flexibility of equipment is improved, and the matched closed design of the installation closing plate and the opening can prevent the loss of heat and humidity, keep the closed property of the leavening environment in the containing cavity, the combination design of the sliding channel and the pull-out bracket, and the design of the sliding groove entrance is convenient for the sliding in and out of the bracket, makes the pastry tray be placed on the bracket and can move along the sliding channel, and the placing and taking of pastry are convenient, and the first sealing baffle and the second sealing baffle and the first sealing piece and the second sealing piece on it provide effective sealing and isolation effect when the bracket is pulled out and exposed outside the leavening shell and enters the sliding channel, reduce the influence of external environment on the temperature and humidity in the leavening cavity, ensure the stability of leavening condition, the consistency of product quality, and the butt joint board that is set up provides the interface for subsequent integration to full -automatic production line, can carry out butt joint and realize full -automatic industrial production, further guarantee the quality and efficiency of pastry leavening. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is the perspective view of first angle of this embodiment;
[0023] Figure 2 It is the perspective view of second angle of this embodiment;
[0024] Figure 3 It is the internal structure schematic view of leavening shell in this embodiment;
[0025] Figure 4 It is the structure schematic view of storage frame in this embodiment;
[0026] Figure 5 It is the structure schematic view of bracket and storage frame connection in this embodiment;
[0027] Figure 6 It is Figure 5 the local enlarged schematic view of A in this embodiment;
[0028] Figure 7 It is the structure schematic view of bracket in this embodiment;
[0029] Figure 8 It is the use schematic view of bracket in this embodiment;
[0030] The reference signs in the figure are: 1 - proofing shell, 2 - containing cavity, 3 - opening, 4 - storage frame, 5 - connecting piece, 6 - mounting cover plate, 7 - sliding channel, 8 - sliding slot entrance, 9 - first sealing baffle, 10 - second sealing baffle, 11 - first sealing piece, 12 - second sealing piece, 13 - sleeve plate, 14 - supporting roller, 15 - placing groove, 16 - reinforcing plate, 17 - spring buckle, 18 - butt joint plate, 19 - perforated plate, 20 - heating chamber, 21 - steam heat exchanger, 22 - axial flow fan, 23 - steam inlet, 24 - steam outlet, 25 - temperature and humidity sensor, 26 - bracket, 27 - humidification steam inlet, 28 - steam exhaust pipe. DETAILED DESCRIPTION
[0031] The utility model will be described in further detail below in combination with the drawings and specific embodiments.
[0032] In this embodiment, refer to Figures 1-8 The specific drawer type pastry proofing room comprises a proofing shell 1, a containing cavity 2 is formed in the proofing shell 1, a hot air circulation system for constant temperature and a humidification system for constant humidity are connected in the containing cavity 2, the side of the proofing shell 1 is provided with an opening 3 in communication with the containing cavity 2, the proofing shell 1 is detachably connected with a storage frame 4, one end of the storage frame 4 is embedded in the containing cavity 2 through the opening 3 and is detachably connected with the proofing shell 1 through a connecting piece 5, and the other end of the storage frame 4 is connected with a mounting cover plate 6 for matching the opening 3 and being sealed with the containing cavity 2, a bracket 26 is slidably connected on the storage frame 4 through a sliding channel 7, a sliding slot entrance 8 matching the sliding channel 7 is formed on the mounting cover plate 6, one end of the bracket 26 can slide into the containing cavity 2 along the sliding slot entrance 8, and the end of the bracket 26 penetrating into the containing cavity 2 is connected with a first sealing baffle 9, the other end of the bracket 26 is exposed outside the mounting cover plate 6 and is connected with a second sealing baffle 10 matching the sliding slot entrance 8, the outer side of the second sealing baffle 10 is connected with a butt joint plate 18 for butt joint and pulling out the bracket, when the bracket 26 is pulled out and exposed outside the proofing shell 1, the bracket 26 is matched with the sliding slot entrance 8 through the first sealing baffle 9 and is sealed through a first sealing piece 11, when the bracket 26 enters the sliding channel 7 along the sliding slot entrance 8, the second sealing baffle 10 is matched with the sliding slot entrance 8 and is sealed through a second sealing piece 12.
[0033] In this embodiment, the connecting piece 5 is arranged on both sides of the storage frame 4, one end of the storage frame 4 can slide into the containing cavity 2 along the opening 3, and the connecting piece 5 is connected with the side of the proofing shell 1 through a locking piece.
[0034] Optionally, the mounting plate 6 is mounted on one side of the storage frame 4, and a sleeve plate 13 is connected to the mounting plate 6, and a sleeve groove for sleeving the side wall of the rising shell 1 is formed on the sleeve plate 13.
[0035] In this embodiment, referring to Figure 4 and Figure 5 , a plurality of rotatable supporting rollers 14 are connected to the bottom of the storage frame 4, and the storage frame 4 can be moved into the containing cavity 2 and embedded in the containing cavity 2 through the supporting rollers 14. Through the detachable connection of the connecting piece 5, the storage frame 4 can be integrally detached from the rising shell 1, and the supporting rollers 14 can be conveniently moved, so that the storage frame 4 can be detached for subsequent cleaning and maintenance.
[0036] In this embodiment, referring to Figures 4-8 , the bracket 26 is formed with a placing groove 15 for placing the rising tray, and the first sealing baffle 9 and the second sealing baffle 10 are oppositely distributed at both ends of the bracket 26, and the side surfaces of the first sealing baffle 9 and the second sealing baffle 10 are connected with reinforcing plates 16. The first sealing baffle 9 and the second sealing baffle 10 are arranged to be sealed with the chute inlet 8 when the bracket 26 is pulled out to open or close, so that external air cannot enter the containing cavity 2 through the chute inlet 8, thereby reducing the influence of external air on the surface points in the containing cavity 2.
[0037] Optionally, a plurality of brackets 26 are provided, and the number of the chute inlets 8 corresponds to the number of the brackets 26, so that each bracket 26 can realize different process requirements (rising time) of different products according to its number and perform the functions of alarm or instruction in the rising system, thereby ensuring the stability of the process and meeting the needs of different processes of various products.
[0038] In this embodiment, two placing grooves 15 are formed at intervals on the bracket 26, and three rising trays for surface points are placed in each placing groove 15.
[0039] In this embodiment, referring to Figure 7 and Figure 8 , the first sealing member 11 and the second sealing member 12 are respectively mounted on the inner sides adjacent to the first sealing baffle 9 and the second sealing baffle 10, and the first sealing member 11 and the second sealing member 12 are both silicone foam sealing pads. The first sealing member 11 and the second sealing member 12 further seal the bracket 26 and the chute inlet 8 when the bracket 26 is opened / closed, and the design of the silicone foam sealing pad sealing member effectively improves the sealing performance and heat preservation and humidity retention performance of the rising environment.
[0040] In this embodiment, the inner sides of the first sealing baffle 9 and the second sealing baffle 10 are connected with spring buckles 17.
[0041] Optionally, the docking plate 18 is provided with a plug hole for pulling, thereby providing an interface for subsequent integration into a full-automatic production line, such as a docking robot or other mechanical feeding and discharging driving mechanism, and making the whole scheme combine the technical advantages of the existing proofing room to realize intelligent full-automatic industrial production.
[0042] In the embodiment, referring to Figure 3 , the inner wall of the accommodating cavity 2 is provided with a porous plate 19, and a heating chamber 20 is connected in the accommodating cavity 2. The heating chamber 20 is provided with a steam exhaust pipe 28 for humidification, a steam heat exchanger 21 for heating air, and an axial flow fan 22. The side of the heating chamber 20 is provided with a through hole in communication with the accommodating cavity 2, and the axial flow fan 22 is installed in communication with the through hole. A temperature and humidity sensor 25 for monitoring temperature and humidity is connected in the accommodating cavity 2 close to the air inlet end of the axial flow fan 22.
[0043] Specifically, the steam heat exchanger 21 is connected with a steam inlet 23, a steam outlet 24 and a finned heat exchange pipe. Through the flow of steam, the finned heat exchange pipe radiates the heat of the steam to the air in the area to heat the air in the area.
[0044] The middle part of the steam exhaust pipe 28 is connected with a humidification steam inlet 27. The steam exhaust pipe 28 on both sides can directly discharge steam into the accommodating cavity 2 to increase the humidity of the air in the accommodating cavity 2. The steam heat exchanger 21 is in communication with an external steam generator through a circulating pipeline, so that the external steam passes through the steam heat exchanger 21 to heat the air temperature in the accommodating cavity 2. The axial flow fan 22 drives the relatively low-temperature air in the accommodating cavity 2 to the finned heat exchange pipe and drives the relatively high-temperature air to the inside of the porous plate 19, so that the heated air is dispersed to the accommodating cavity 2 through the porous plate 19. After the temperature of the air in the accommodating cavity 2 drops, it passes through the axial flow fan 22 again and flows to the steam heat exchanger 21 for heating, so as to circulate repeatedly to ensure the stability of the temperature in the accommodating cavity 2.
[0045] In the embodiment of the puffing of the pastry point, the structure and driving control of the steam heat exchanger 21, the axial flow fan 22, the hot air circulation system and the humidification system belong to the conventional technical means of those skilled in the art, which will not be described in detail here.
[0046] The design of the proofing shell 1 and the accommodating cavity 2 formed therein provides a closed and controllable environment for the proofing of the pastry point, which helps to maintain stable proofing conditions and improve the quality and consistency of the proofing of the pastry point. The hot air circulation system formed by the steam heat exchanger 21 and the axial flow fan 22 ensures the uniformity and stability of the temperature in the proofing cavity, which is conducive to the temperature control during the proofing process of the pastry point. The humidification system maintains the constant humidity in the proofing cavity, avoiding the adverse effects of humidity changes on the proofing of the pastry point. The two work together to optimize the proofing environment.
[0047] The difference between the embodiment and the prior art is that the storage frame 4 is conveniently moved through the support roller 14, one end of the storage frame 4 is inserted into the containing cavity 2 of the fermentation shell 1 through the opening 3, the connecting pieces 5 on both sides of the storage frame 4 are matched with both sides of the fermentation shell 1 and are locked and connected through bolts, the mounting sealing plate 6 connected through the storage frame 4 can be matched with the opening 3, so that the containing cavity 2 forms a sealed space, the slide slot entrance 8 formed through the mounting sealing plate 6 is used to make one end of the bracket 26 pass through the slide slot entrance 8 and enter the containing cavity 2 along the sliding channel 7, and the second sealing baffle 10 is matched with the slide slot entrance 8 to be closed, so that a closed space of the fermentation dough is formed, the stability of the fermentation condition is ensured, when the bracket 26 is pulled out of the fermentation shell 1, the first sealing baffle 9 is moved to the inner side of the slide slot entrance 8 to be sealed, so that the containing cavity 2 can be isolated from the space outside, the fermentation dough tray is placed in the placing groove 15 of the bracket 26, the bracket 26 is pushed to be closed, the opening and closing are set according to the fermentation requirement of the dough, and the docking plate 18 and the bolt hole provide an interface for subsequent integration into a full-automatic production line, so that the full-automatic industrial production can be realized, and the quality and efficiency of the fermentation of the dough are further ensured.
[0048] The first sealing baffle 9 and the second sealing baffle 10 are provided to provide effective sealing and isolation effects for the fermentation shell 1 to take or feed materials, the influence of the external environment on the temperature and humidity in the fermentation cavity is reduced, the stability of the fermentation condition and the consistency of the product quality are ensured, and the quality and efficiency of the fermentation of the dough are further ensured.
[0049] The above is only a preferred embodiment of the utility model, and does not limit the utility model in any form, although the utility model is disclosed as above, however, the utility model is not limited, any skilled person in the art can make some changes or modifications within the scope of the technical scheme of the utility model by using the disclosed technical content, as long as the changes or modifications do not deviate from the technical scheme of the utility model, and the changes or modifications are equivalent to the above embodiments, and any simple modification, equivalent change and modification of the above embodiments are within the scope of the technical scheme of the utility model.
Claims
1. A drawer-type bread proofing room, comprising a proofing shell, an accommodating cavity is formed in the interior of the proofing shell, a hot air circulation system for constant temperature and a humidification system for constant humidity are connected in the accommodating cavity, characterized in that: The side of the proofing shell is provided with an opening communicated with the accommodating cavity, the proofing shell is detachably connected with a storage frame, one end of the storage frame is embedded into the accommodating cavity through the opening and is detachably connected with the proofing shell through a connecting piece, and the other end of the storage frame is connected with a mounting cover plate used for matching the opening and sealing the accommodating cavity, a bracket is connected on the storage frame through a sliding channel and can slide in and out, a sliding slot entrance is formed on the mounting cover plate and matches the sliding channel, one end of the bracket can slide into the accommodating cavity through the sliding slot entrance, a first sealing baffle is connected on the end of the bracket embedded into the accommodating cavity, the other end of the bracket is exposed outside the mounting cover plate and is connected with a second sealing baffle matching the sliding slot entrance, an abutting plate is connected on the outer side of the second sealing baffle and used for abutting and pulling out the bracket, when the bracket is pulled out and exposed outside the proofing shell, the bracket matches the sliding slot entrance through the first sealing baffle and is sealed through a first sealing piece, when the bracket slides into the sliding channel through the sliding slot entrance, the second sealing baffle matches the sliding slot entrance and is sealed through a second sealing piece.
2. The drawer-type bread rising room according to claim 1, wherein: The connecting piece is arranged on both sides of the storage frame, and one end of the storage frame can slide into the accommodating cavity through the opening, and the connecting piece is connected with the side of the proofing shell through a locking piece.
3. The drawer-type pastry proofing room according to claim 2, wherein: The bottom of the storage frame is connected with a plurality of rotatable supporting rollers, and the storage frame can move into the accommodating cavity through the supporting rollers and be embedded in the accommodating cavity.
4. The drawer-type bread rising room according to claim 1, wherein: The bracket is formed with a placing groove used for placing a proofing tray, the first sealing baffle and the second sealing baffle are oppositely arranged on both ends of the bracket, and the side of the first sealing baffle and the second sealing baffle is connected with a reinforcing plate.
5. The drawer-type bread rising house according to claim 4, wherein: The first sealing piece and the second sealing piece are arranged on the adjacent inner sides of the first sealing baffle and the second sealing baffle respectively, and the first sealing piece and the second sealing piece are both made of a silica gel foaming sealing pad.
6. The drawer-type pastry proofing room according to claim 5, wherein: The opposite inner sides of the first sealing baffle and the second sealing baffle are both connected with a spring buckle.
7. The drawer-type pastry proofing room according to any one of claims 1 to 6, characterized in that: The inner wall of the accommodating cavity is provided with a porous plate, and the accommodating cavity is connected with a heating chamber, the heating chamber is provided with a steam exhaust pipe used for humidifying, a steam heat exchanger used for heating air and an axial flow fan, the side of the heating chamber is provided with a through hole communicated with the accommodating cavity, and the axial flow fan is installed in communication with the through hole.
8. The drawer-type pastry proofing room according to claim 7, wherein: The accommodating cavity is connected with a temperature and humidity sensor used for monitoring temperature and humidity near the air inlet end of the axial flow fan.