Double-layer cloth-penetrating energy-saving heat-preservation steam box
By designing a double-layer fabric-insulated energy-saving steam oven, the heat of steam is used for jacket heating and cooling plate liquefaction through a circulation mechanism, which solves the problem of heat loss in the steam oven and achieves efficient utilization of energy and water resources.
Patent Information
- Application Number
- CN202520749143.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-21
- Publication Date
- 2026-03-20
- Estimated Expiration
- 2035-04-21
AI Technical Summary
Traditional fabric steamers directly release steam, resulting in heat loss, reduced energy efficiency, and increased energy consumption.
The double-layer fabric-insulated steam oven is designed to reuse heat by using a circulation mechanism to heat the jacket and liquefy the cooling plate.
Improve the heat utilization efficiency of the steam oven, reduce energy and water consumption, and save energy.
Smart Images

Figure CN224015940U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of steaming box, concretely to double -deck wear energy -conserving heat preservation steaming box. BACKGROUND
[0002] The steam mechanism is used for heating treatment of the cloth, and the steam generated by the steam mechanism is introduced into the surface of the cloth during the heating process of the related cloth steaming box.
[0003] The traditional steaming box directly discharges steam into the air, and the steam discharged from the steaming box still has certain heat which is not effectively utilized, thereby causing energy loss, reducing energy utilization efficiency and increasing energy consumption of the steaming box. UTILITY MODEL CONTENT
[0004] The utility model discloses a double -deck wear energy -conserving heat preservation steaming box which overcomes the defects of the prior art and adapts to the actual needs to solve the technical problem that the steaming box directly discharges steam into the air, the steam discharged from the steaming box still has certain heat which is not effectively utilized, thereby causing energy loss, reducing energy utilization efficiency and increasing energy consumption of the steaming box.
[0005] In order to realize the utility model's purpose, the utility model adopts the technical scheme that a double -deck wear energy -conserving heat preservation steaming box is designed, which comprises:
[0006] A main body mechanism comprises a steaming box and a steam generator, the steaming box is provided with a sandwich, a box door is hinged to the front end opening of the steaming box through a hinge, the steam outlet end of the steam generator is communicated with a connecting pipe, the connecting pipe penetrates the steaming box and is communicated with a conduit, the conduit is connected to the bottom end of the inner cavity of the steaming box, a plurality of spray heads are communicated on the conduit.
[0007] A circulating mechanism comprises a steam exhaust pipe arranged at the top of the steaming box, one end of the steam exhaust pipe penetrates the steaming box and the sandwich and is communicated with the top of the inner cavity of the steaming box, the other end of the steam exhaust pipe is provided with a filtering mechanism, a circulating pipe is communicated on the filtering mechanism, and the circulating pipe penetrates the top of the steaming box and is communicated with the sandwich.
[0008] Preferably, the filtering mechanism comprises a filter cartridge, the filter cartridge is connected between the steam exhaust pipe and the circulating pipe through bolts, and a filter core is arranged in the filter cartridge.
[0009] Preferably, a cooling box is provided at the bottom of the steam oven, and a cooling pipe is installed through the top of the cooling box. The part of the cooling pipe inside the cooling box is connected to a steam inlet pipe. Multiple cooling plates with hollow structures are provided below the steam inlet pipe. The steam inlet pipe and the multiple cooling plates are connected by branch pipes. The bottom of each of the multiple cooling plates is connected to a water outlet pipe. The bottoms of the multiple water outlet pipes are connected to a water guide pipe. One end of the water guide pipe is connected to a first water inlet pipe. The first water inlet pipe passes through the cooling box and connects to the water tank of the steam generator. The top of the cooling pipe passes through the steam oven and connects to the interlayer.
[0010] Preferably, a water supply pipe is passed through the end of the cooling box away from the steam generator, and a second water inlet pipe is passed through the upper part of the cooling box near the first water inlet pipe, with one end of the second water inlet pipe connected to the water tank of the steam generator.
[0011] Preferably, the length of the plurality of cooling plates increases sequentially from left to right, and the water guide pipe is inclined toward one end of the first water inlet pipe.
[0012] Preferably, the steamer has two through holes at both ends, and the through holes are not connected to the interlayer. The inner cavity of the steamer is equipped with two sets of guide rollers, each set of which has two rollers. The two sets of guide rollers are distributed in a V-shape and an inverted V-shape, respectively.
[0013] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0014] 1. This utility model combines a steam box, a jacket, an exhaust pipe, and a circulation pipe. When steam heats the fabric, the steam discharged from the steam box enters the jacket of the steam box through the exhaust pipe and the circulation pipe. The residual heat in the steam heats the jacket, thus keeping the steam box warm. This reduces heat loss from the steam box, further improves the utilization efficiency of steam, and reduces the energy consumption of the steam box.
[0015] 2. This utility model combines a steam inlet pipe, a cooling box, a conduit, a cooling plate, a first water outlet pipe, and a water guide pipe. When the discharged steam heats and insulates the steam box, the steam enters the cooling plate through the cooling pipe, steam inlet pipe, conduit, and branch pipe. The steam liquefies into water within the hollow structure of the cooling plate when it encounters the cold cooling plate. The liquefied water then enters the water tank of the steam generator through the first water outlet pipe, water guide pipe, and first water pipe, where it is heated to generate steam. This allows the liquefied water to be reused, saving water energy.
[0016] 3. The utility model discloses a combination of water supplement pipe, cooling box, cooling plate and second water inlet pipe etc. structure, when working, the water in the water tank is added to the water tank of steam generator through the second water inlet pipe, when supplementing water, the water in the cooling box carries out the cooling to cooling plate, thereby improving the effect that steam is liquefied in the empty inner chamber of cooling plate, and cooling plate can heat the water in the cooling box, thereby can preheat the water that second water inlet pipe supplements to steam generator, thereby shorten the heat that water needs in steam generator vaporization, and further reduce the energy consumption of steam generator. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is whole external structure schematic diagram of the utility model;
[0018] Figure 2 It is whole internal structure schematic diagram of the utility model;
[0019] Figure 3 It is steam box sectional structure schematic diagram of the utility model;
[0020] Figure 4 It is cooling box sectional front view of the utility model.
[0021] In the drawing: 1, steam box;11, box door;12, through -hole;13, guide roller;14, interlayer;2, exhaust pipe;21, circulating pipe;3, filtering mechanism;4, cooling box;41, second water inlet pipe;42, first water inlet pipe;43, cooling pipe;44, steam inlet pipe;45, cooling plate;46, water outlet pipe;47, water guide pipe;48, water supplement pipe;5, steam generator;51, connecting pipe;52, guide pipe;53, spray head. DETAILED DESCRIPTION
[0022] The utility model is further explained in connection with the drawings and examples:
[0023] Example 1: double -deck cloth -wearing energy -conserving heat -preserving steam box, refer to Figures 1 to 4 , including: main body mechanism, the main body mechanism includes steam box 1 and steam generator 5, be provided with interlayer 14 in steam box 1, the front end opening of steam box 1 is hinged with box door 11 through the hinge, the steam outlet of steam generator 5 is connected with connecting pipe 51, connecting pipe 51 is connected with guide pipe 52 and is communicated through steam box 1, guide pipe 52 is connected at the inner chamber bottom end of steam box 1, a plurality of spray heads 53 are communicated on guide pipe 52;Circulation mechanism, the circulation mechanism includes the exhaust pipe 2 of setting at steam box 1 top, one end of exhaust pipe 2 is communicated with the inner chamber top of steam box 1 through steam box 1 and interlayer 14, the other end of exhaust pipe 2 is provided with filtering mechanism 3, filtering mechanism 3 is communicated with circulating pipe 21, and circulating pipe 21 is communicated with interlayer 14 through the top of steam box 1.
[0024] In operation, water is introduced into the heating chamber by starting the steam generator 5, heated to boiling point and vaporized to generate saturated steam, which is sprayed from the nozzle 53 through the connecting pipe 51 and the guide pipe 52 to heat the surface of the cloth. When the steam heats the cloth, the steam discharged from the steamer 1 enters the interlayer 14 of the steamer 1 through the steam discharge pipe 2 and the circulation pipe 21, so that the residual heat in the steam heats the interlayer 14, thereby playing a heat preservation role for the steamer 1, reducing heat loss of the steamer 1, further improving the utilization efficiency of steam, and reducing the energy consumption of the steamer 1.
[0025] Specifically, referring to Figure 2 , the filter mechanism 3 includes a filter cartridge, which is connected between the steam discharge pipe 2 and the circulation pipe 21 by bolts, and a filter element is arranged in the filter cartridge. By arranging the filter mechanism 3, when the steam discharged from the steamer 1 is circulated into the interlayer 14, the steam is filtered by the filter element in the filter cartridge, avoiding the cloth debris in the steam from entering the interlayer 14 and causing blockage of the interlayer 14.
[0026] Further, referring to Figure 2 Figure 4 The bottom of the steamer 1 is provided with a cooling box 4, the top of the cooling box 4 is provided with a cooling pipe 43, the part of the cooling pipe 43 in the cooling box 4 is communicated with an inlet pipe 44, a plurality of cooling plates 45 with hollow structure are arranged below the inlet pipe 44, the inlet pipe 44 and the plurality of cooling plates 45 are communicated through branch pipes, the bottoms of the plurality of cooling plates 45 are communicated with outlet pipes 46, the bottoms of the plurality of outlet pipes 46 are communicated with a water guide pipe 47, one end of the water guide pipe 47 is communicated with a first water inlet pipe 42, the first water inlet pipe 42 is communicated with the water tank of the steam generator 5 through the cooling box 4, and the top end of the cooling pipe 43 is communicated with the interlayer 14 through the steamer 1. When the discharged steam heats and preserves the steamer 1, the steam enters the cooling plate 45 through the cooling pipe 43, the inlet pipe 44, the guide pipe 52 and the branch pipe, so that the steam is liquefied into water in the hollow structure of the cooling plate 45, the liquefied water enters the water tank of the steam generator 5 through the first outlet pipe 46, the water guide pipe 47 and the first water pipe, is heated to generate steam, and can be reused to save water energy.
[0027] It is worth noting that, referring to Figure 4 The cooling box 4 is provided with a water supplement pipe 48 penetrating through one end of the cooling box 4 away from the steam generator 5, and a second water inlet pipe 41 penetrating through one end of the cooling box 4 close to the first water inlet pipe 42, and the other end of the second water inlet pipe 41 communicates with the water tank of the steam generator 5, when the steam generator 5 works, water is supplemented into the cooling box 4 through the water supplement pipe 48 due to the generation of steam, and then the water in the cooling box 4 is added into the water tank of the steam generator 5 through the second water inlet pipe 41, when the water is supplemented, the water in the cooling box 4 cools the cooling plate 45, thereby improving the effect of the steam being liquefied in the hollow cavity of the cooling plate 45, and the cooling plate 45 can heat the water in the cooling box 4, thereby preheating the water supplemented to the steam generator 5 through the second water inlet pipe 41, thereby shortening the heat required for the water to be vaporized in the steam generator 5, and further reducing the energy consumption of the steam generator 5.
[0028] It is worth noting that, referring to Figure 4 The lengths of the plurality of cooling plates 45 increase successively from left to right, and the water guide pipe 47 is obliquely arranged towards one end of the first water inlet pipe 42, and since water flows from high to low, the liquefied water can flow into the first water inlet pipe 42 and be added into the water tank of the steam generator 5.
[0029] It is worth noting that, referring to Figure 2 Both ends of the steaming box 1 are provided with two through holes 12, and the through holes 12 do not communicate with the interlayer, and two groups of guide rollers 13 are arranged in the hollow cavity of the steaming box 1, each group of the guide rollers 13 comprises two guide rollers, and the two groups of guide rollers 13 are distributed in V shape and inverted V shape respectively, and the two groups of guide rollers 13 and the through holes 12 are arranged, so that the cloth can be heated in double layers at the same time, thereby improving the heating efficiency of the cloth, and when the cloth is heated, the cloth is distributed in S shape on each group of guide rollers 13, and the guide rollers 13 are driven to rotate by the motor (not shown) at the rear end of the steaming box 1, so as to convey the cloth, thereby making the cloth repeatedly contact with steam, and further improving the heating effect of the cloth.
[0030] In addition, the components of the utility model are all general standard components or components known by those skilled in the art, the structure and principle of which can be known by the technical personnel through technical manual or through conventional experimental method, and the technical personnel can realize it completely without further description, and the content protected by the utility model does not involve improvement of internal structure and method.
[0031] The utility model discloses a preferable embodiment, but is not limited to this, and the ordinary skilled person in the art can easily understand the spirit of the utility model according to the above embodiment, and make different inferences and changes, but as long as not departing from the spirit of the utility model, it is within the protection scope of the utility model.
Claims
1. A double-layer fabric-insulated energy-saving steam oven, characterized in that, include: The main structure includes a steam box (1) and a steam generator (5). The steam box (1) has a double-layer (14) inside. The front opening of the steam box (1) is hinged to a door (11). The steam generator (5) has a connecting pipe (51) at its steam outlet. The connecting pipe (51) passes through the steam box (1) and is connected to a conduit (52). The conduit (52) is connected to the bottom of the inner cavity of the steam box (1). Multiple nozzles (53) are connected to the conduit (52). The circulation mechanism includes a steam exhaust pipe (2) set at the top of the steam chamber (1). One end of the steam exhaust pipe (2) passes through the steam chamber (1) and the interlayer (14) and communicates with the top of the inner cavity of the steam chamber (1). The other end of the steam exhaust pipe (2) is provided with a filter mechanism (3). A circulation pipe (21) is connected to the filter mechanism (3). The circulation pipe (21) passes through the top of the steam chamber (1) and communicates with the interlayer (14).
2. The double-layer fabric-insulated energy-saving steam oven as described in claim 1, characterized in that, The filtration mechanism (3) includes a filter cylinder, which is bolted between the exhaust pipe (2) and the circulation pipe (21), and a filter element is provided inside the filter cylinder.
3. The double-layer fabric-insulated energy-saving steam oven as described in claim 1, characterized in that, The bottom of the steam box (1) is provided with a cooling box (4), and a cooling pipe (43) is installed through the top of the cooling box (4). The part of the cooling pipe (43) located inside the cooling box (4) is connected to a steam inlet pipe (44). Below the steam inlet pipe (44) are provided multiple cooling plates (45) with hollow structures. The steam inlet pipe (44) and the multiple cooling plates (45) are connected by a branch pipe. The bottom of each of the multiple cooling plates (45) is connected to a water outlet pipe (46). The bottoms of the multiple water outlet pipes (46) are connected to a water guide pipe (47). One end of the water guide pipe (47) is connected to a first water inlet pipe (42). The first water inlet pipe (42) passes through the cooling box (4) and is connected to the water tank of the steam generator (5). The top of the cooling pipe (43) passes through the steam box (1) and is connected to the interlayer (14).
4. The double-layer fabric-insulated energy-saving steam oven as described in claim 3, characterized in that, A water supply pipe (48) runs through the end of the cooling tank (4) away from the steam generator (5). A second water inlet pipe (41) runs through the upper part of the cooling tank (4) near the first water inlet pipe (42). One end of the second water inlet pipe (41) is connected to the water tank of the steam generator (5).
5. The double-layer fabric-insulated energy-saving steam oven as described in claim 3, characterized in that, The length of the multiple cooling plates (45) increases sequentially from left to right, and the water guide pipe (47) is inclined toward one end of the first water inlet pipe (42).
6. The double-layer fabric-insulated energy-saving steam oven as described in claim 1, characterized in that, The steamer (1) has two through holes (12) at both ends, and the through holes (12) are not connected to the interlayer (14). The inner cavity of the steamer (1) is equipped with two sets of guide rollers (13), and each set of guide rollers (13) has two rollers. The two sets of guide rollers (13) are distributed in a V-shape and an inverted V-shape, respectively.