Steam wetting machine with water retaining structure
By introducing a lower and upper baffle structure into the evaporator, condensate water is blocked and moisture is filtered, solving the problem of excessively damp shoe uppers caused by condensate spraying out in traditional evaporators, thus improving the softening effect of shoe uppers and production efficiency.
Patent Information
- Application Number
- CN202423107897.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-12-17
AI Technical Summary
In traditional steam dehumidifiers, during manual loading and unloading, condensate from the steam pipes and connecting pipes is sprayed out with the steam, resulting in excessive moisture on the shoe surface and poor softening effect. In addition, the steam temperature decreases, affecting production efficiency.
The design includes a water-blocking structure for the steam dehumidifier, comprising a lower water-blocking plate and an upper water-blocking plate, which are respectively installed inside the jet assembly. This structure blocks condensate and filters out moisture vapor, thereby reducing the moisture content in the steam, improving the softening effect of the shoe upper, and increasing production efficiency.
It effectively reduces the water content in steam, avoids condensate accumulation, ensures continuous operation of the evaporator, improves production efficiency and reduces energy consumption, and has a simple structure and low cost.
Smart Images

Figure CN223554417U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a vamp softening equipment technical field, especially a kind of steam wetting machine with water retaining structure. BACKGROUND
[0002] Steam wetting machine is the vamp softening equipment that vamp is softened by steam, steam wetting machine includes water tank, steam generator and multiple steam pipes, water tank is water supplied to steam generator by connecting pipeline, steam generator is connected each steam pipe by connecting pipeline, electromagnetic valve is installed on connecting pipeline, the output of steam is controlled by electromagnetic valve, when production operation, shoe is put on steam pipe, press button to open electromagnetic valve, steam generated by steam generator is transported to steam pipe by connecting pipeline, then it is discharged from steam hole on steam pipe and carries out steam wetting.The steam in the steam pipe is interval through, not continuous through when the electromagnetic valve is in the closed state in the process of manual feeding and discharging in the operation of traditional steam wetting machine, steam pipe and connecting pipeline residual steam can be cooled to produce condensate when the electromagnetic valve is in the closed state, condensate in steam pipe and connecting pipeline is discharged from steam hole on steam pipe with steam after the next steam wetting opening electromagnetic valve, and condensate is sprayed to vamp, which can cause vamp to be excessively humid, and the temperature of condensate is relatively low, which can also reduce the temperature of steam, so that vamp is not softened well, thus it is necessary to improve. SUMMARY
[0003] In view of the deficiencies in the prior art, the utility model aims at providing a steam wetting machine with a water retaining structure to block the spray of condensate, reduce the water content in steam and improve the vamp softening effect and production efficiency.
[0004] To achieve the above-mentioned purpose, the utility model adopts the technical scheme of a steam wetting machine with a water retaining structure, which comprises a water supply tank, a steam generator, multiple air jet assemblies and multiple connecting pipe groups.
[0005] In a further technical solution, the inside of the air jet assembly is further provided with at least one upper water retaining plate, the upper water retaining plate is arranged above the lower water retaining plate in an interval, the upper water retaining plate is provided with multiple upper air holes, and each upper air hole is arranged in a horizontal direction in an alternate manner with each lower air hole.
[0006] Further, the air injection assembly comprises a water blocking return box and a steam pipe, the lower end of the steam pipe is connected to the upper part of the water blocking return box, each air outlet hole is arranged on the upper part of the steam pipe, the air inlet hole and the water outlet are arranged on the lower end surface of the water blocking return box, the upper water blocking plate and the lower water blocking plate are arranged in the water blocking return box.
[0007] Further, the outer edge of the lower water blocking plate is provided with a plurality of air vent grooves, each air vent groove is arranged in the circumferential direction, the outer edge of the lower water blocking plate abuts against the inner wall of the water blocking return box, and each air vent groove and the inner wall of the water blocking return box form a lower air vent hole.
[0008] Further, the outer edge of the upper water blocking plate abuts against the inner wall of the water blocking return box, the middle part of the upper water blocking plate is provided with a plurality of return holes, each return hole is located below the steam pipe, and each upper air vent hole is arranged in the circumferential direction at the periphery of each return hole.
[0009] Further, the upper part of the steam pipe is provided with a shoe supporting frame, the shoe supporting frame comprises a U-shaped frame and a plurality of connecting columns, the outer end of each connecting column is connected to the inner side of the U-shaped frame, the inner end of each connecting column is connected to the outer side of the steam pipe, and the U-shaped frame is located at the periphery of each air outlet hole.
[0010] Further, the steam pipe is sleeved with a heat preservation sleeve, and each air outlet hole is located above the heat preservation sleeve.
[0011] Further, the connecting pipe group comprises a steam connecting pipe and a steam connecting pipeline, the first end of the steam connecting pipeline is connected to the steam generator, the second end of the steam connecting pipeline is connected to the lower end of the steam connecting pipe, and the upper end of the steam connecting pipe is inserted into the interior of the water blocking return box through the air inlet hole;
[0012] The drain pipe group comprises a drain connecting pipe and a drain connecting pipeline, the upper end of the drain connecting pipe is connected to the water outlet, the lower end of the drain connecting pipe is connected to the first end of the drain connecting pipeline, the second end of the drain connecting pipeline is connected to the water tank, and the upper end surface of the steam connecting pipe is higher than the upper end surface of the drain connecting pipe.
[0013] Further, the steam and humidity machine is further provided with a water recovery tank, and the second end of the drain connecting pipeline is connected to the water recovery tank.
[0014] In a further technical solution, the evaporator is also equipped with a main unit and two machine platforms. The steam generator is located inside the main unit, and the water supply tank and the water recovery tank are located on the sides of the main unit. The two machine platforms are located on the left and right sides of the main unit, respectively. Each machine platform is equipped with four jet components. At least one water leakage hole is opened in the center of the machine platform. A water collection connector is connected below the water leakage hole. Each water leakage hole is connected to the upper end of the water collection connector, and the lower end of the water collection connector is connected to the water recovery tank through a water collection pipe.
[0015] The advantages of this invention compared to existing technologies using the above structure are as follows: The lower baffle plate blocks moisture entering through the air inlet along with steam, while the steam, having filtered out moisture, passes through the lower vent and the baffle plate and exits through various air outlets, effectively reducing the moisture content in the steam and improving the softening effect on the shoe upper. There is no need to continuously release steam to remove moisture before the steaming process, thus improving production efficiency. Water blocked by the lower baffle plate is discharged through the drain outlet, preventing water accumulation and ensuring continuous operation of the steamer. It is easy to use as it requires emptying accumulated water; the upper baffle plate further blocks water entering from the lower vent, and steam passes through the upper baffle plate through each upper vent and is ejected from each vent, further reducing the water content in the steam. The structure is simple and the cost is low; the condensate generated on the inner wall of the steam pipe flows down the inner wall of the steam pipe to the upper baffle plate, flows back to the lower baffle plate through the return hole of the upper baffle plate, and then flows down through the lower vent into the exhaust port for discharge, thus avoiding the condensate accumulated on the inner wall of the steam pipe after a long period of shutdown from being ejected after startup. Attached Figure Description
[0016] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0017] Figure 1 This is a schematic diagram of the structure of this utility model;
[0018] Figure 2 This is a cross-sectional view of the machine tool of this utility model;
[0019] Figure 3 This is a schematic diagram of the jet assembly of this utility model;
[0020] Figure 4 This is a cross-sectional view of the jet assembly of this utility model;
[0021] Figure 5 This is a cross-sectional view of the water-return box of this utility model;
[0022] Figure 6 This is a schematic diagram of the upper baffle plate of this utility model;
[0023] Figure 7 This is a structural schematic diagram of the lower baffle plate of this utility model.
[0024] Fig.:
[0025] 11 water supply tank, 12 recovered water tank;
[0026] 21 mainframe, 22 machine, 221 water leakage hole, 222 water collection joint, 223 water collection pipe;
[0027] 3 air injection assembly, 31 water blocking return box, 311 air inlet hole, 312 water outlet, 32 steam pipe, 321 air outlet hole, 33 lower water blocking plate, 331 lower air vent, 332 air vent groove, 34 upper water blocking plate, 341 upper air vent, 342 return hole, 351 U-shaped frame, 352 connecting column, 36 heat preservation sleeve;
[0028] 41 steam connecting pipe fitting;
[0029] 51 water discharge connecting pipe fitting. DETAILED DESCRIPTION
[0030] The following merely illustrates the preferred embodiments of the present application, and does not limit the protection scope of the present application.
[0031] A steam wetting machine with a water blocking structure, such as Figures 1 to 7As shown, including the water tank 11, steam generator, a plurality of jet assembly 3 and a plurality of connecting pipe group, water tank 11 and steam generator, jet assembly 3 upper part is provided with a plurality of air outlet hole 321, jet assembly 3 lower part is provided with air inlet hole 311, each connecting pipe group first end and steam generator, second end is connected with each jet assembly 3 air inlet hole 311 respectively, the inside of jet assembly 3 is provided with at least one lower baffle 33, lower baffle 33 is provided with a plurality of lower air hole 331, each lower air hole 331 is staggered along the horizontal direction with air inlet hole 311 respectively, the lower part of jet assembly 3 is further provided with a drain 312, the drain 312 is connected with a drain pipe group. The steam generator of traditional steam wet machine has no water retaining structure, the moisture in steam and the condensate produced after steam spraying will be sprayed together, and a period of steam needs to be released before feeding, so that the moisture is discharged before feeding, otherwise it will cause the vamp to be excessively wet and reduce the softening effect, and the release of steam before feeding will not only cause steam loss and cause large energy consumption, but also reduce production efficiency, and the moisture entering the air inlet hole 311 together with the steam is blocked by the lower baffle 33, and the steam filtered of moisture passes through the lower baffle 33 from the lower air hole 331 and is sprayed from each air outlet hole 321, the staggered air inlet hole 311 and lower air hole 331 can avoid steam passing through the lower baffle 33 directly from the lower air hole 331, thereby effectively reducing the water content in the steam and improving the vamp softening effect, without the need for continuous release of steam to discharge moisture before steam wet operation, improving production efficiency; the water blocked by the lower baffle 33 is discharged from the drain 312, thereby avoiding water accumulation and ensuring continuous operation of the steam wet machine, without the need for pouring water, convenient to use.
[0032] Specifically, as shown in Figure 4 and Figure 5 the inside of jet assembly 3 is further provided with at least one upper baffle 34, the upper baffle 34 is arranged above the lower baffle 33, the upper baffle 34 is provided with a plurality of upper air holes 341, each upper air hole 341 is staggered along the horizontal direction with each lower air hole 331 respectively. The moisture entering from the lower air hole 331 is blocked again by the upper baffle 34, the steam passes through the upper baffle 34 from each upper air hole 341 and is sprayed from each air outlet hole 321, further reducing the water content in the steam, simple structure, low cost.
[0033] Specifically, the air jet assembly 3 comprises a water blocking return box 31 and a steam pipe 32, the lower end of the steam pipe 32 is connected with the upper part of the water blocking return box 31, each air outlet hole 321 is arranged on the upper part of the steam pipe 32, the air inlet hole 311 and the water outlet 312 are arranged on the lower end surface of the water blocking return box 31, and the upper water blocking plate 34 and the lower water blocking plate 33 are arranged in the water blocking return box 31. By arranging the water blocking return box 31, the area of the upper water blocking plate 34 and the lower water blocking plate 33 can be increased, so as to improve the water blocking rate, and the blocked water and condensed water can be collected in the water blocking return box 31 and discharged from the water outlet 312, preventing the water outlet 312 from being blocked due to slow drainage.
[0034] Specifically, the outer edge of the lower water blocking plate 33 is provided with a plurality of air vent grooves 332, each air vent groove 332 is arranged in the circumferential direction, the outer edge of the lower water blocking plate 33 abuts against the inner wall of the water blocking return box 31, and each air vent groove 332 and the inner wall of the water blocking return box 31 form each lower air vent hole 331. The air vent groove 332 and the inner wall of the water blocking return box 31 form the lower air vent hole 331, so that the lower air vent hole 331 is located at the outermost side of the lower water blocking plate 33, so as to ensure that the air inlet hole 311 is staggered by a large distance, improve the water blocking effect, and simplify the structure of the lower water blocking plate 33 and the production process.
[0035] Specifically, the outer edge of the upper water blocking plate 34 abuts against the inner wall of the water blocking return box 31, the middle part of the upper water blocking plate 34 is provided with a plurality of return holes 342, each return hole 342 is located below the steam pipe 32, and each upper air vent hole 341 is arranged in the circumferential direction at the periphery of each return hole 342. The condensed water generated on the inner wall of the steam pipe 32 flows downward along the inner wall of the steam pipe 32, directly passes through the return hole 342, returns to the lower water blocking plate 33, and then flows downward from the lower air vent hole 331 into the air outlet 312 for discharge, thereby avoiding the condensed water accumulated on the inner wall of the steam pipe 32 after a long time of shutdown from being sprayed out after starting.
[0036] Specifically, the upper part of the steam pipe 32 is provided with a shoe supporting frame, the shoe supporting frame comprises a U-shaped frame 351 and a plurality of connecting columns 352, the outer end of each connecting column 352 is connected with the inner side of the U-shaped frame 351, the inner end of each connecting column 352 is connected with the outer side of the steam pipe 32, and the U-shaped frame 351 is located at the periphery of each air outlet hole 321. The shoe supporting frame can support the vamp to a certain distance from each air outlet hole 321, so as to avoid the vamp from blocking the air outlet hole 321 due to adhesion to the steam pipe 32, and improve the softening effect.
[0037] Specifically, the steam pipe 32 is sleeved with a heat preservation sleeve 36, and each air outlet hole 321 is located above the heat preservation sleeve 36. The heat preservation sleeve 36 can heat preserve the steam pipe 32, reduce the heat loss when the steam flow is stopped, and reduce the generation of condensed water.
[0038] Specifically, the connecting pipe group comprises a steam connecting pipe fitting 41 and a steam connecting pipe, the first end of the steam connecting pipe is connected with the steam generator, the second end of the steam connecting pipe is connected with the lower end of the steam connecting pipe fitting 41, the upper end of the steam connecting pipe fitting 41 is inserted into the inside of the water blocking return box 31 through the air inlet hole 311; the drainage pipe group comprises a drainage connecting pipe fitting 51 and a drainage connecting pipe, the upper end of the drainage connecting pipe fitting 51 is connected with the drainage hole 312, the lower end of the drainage connecting pipe fitting 51 is connected with the first end of the drainage connecting pipe, the second end of the drainage connecting pipe is connected with the water tank 11, the upper end surface of the steam connecting pipe fitting 41 is higher than the upper end surface of the drainage connecting pipe fitting 51. The steam connecting pipe fitting 41 and the drainage connecting pipe fitting 51 are both elbows, the upper part of the steam connecting pipe fitting 41 is inserted into the water blocking return box 31, so that the steam connecting pipe fitting 41 and the drainage connecting pipe fitting 51 form a height difference, and the returned water is prevented from entering the steam connecting pipe fitting 41 when the returned water is gathered in the water blocking return box 31, thereby improving reliability and stability.
[0039] Specifically, the steam humidifier is further provided with a water recovery tank 12, and the second end of the drainage connecting pipe is connected with the water recovery tank 12. The drainage connecting pipe directly drains the returned water into the water recovery tank 12, so that the condensed water is separately recovered, and mixed use is avoided.
[0040] Specifically, the steam humidifier is further provided with a main machine 21 and two machine tables 22, the steam generator is arranged in the inside of the main machine 21, the water tank 11 and the water recovery tank 12 are arranged on the sides of the main machine 21, and the two machine tables 22 are arranged on the left and right sides of the main machine 21. Each machine table 22 is provided with four air jet assemblies 3, at least one water leakage hole 221 is arranged in the central part of the machine table 22, a water collecting connector 222 is connected below the water leakage hole 221, each water leakage hole 221 is connected with the upper end of the water collecting connector 222, and the lower end of the water collecting connector 222 is connected with the water recovery tank 12 through a water collecting pipe 223. The steam sprayed from the air outlet hole 321 will also generate condensed water near the steam pipe 32 after being cooled and will drop on the machine table 22, and will be accumulated into a water pile on the machine table 22 after a long time of operation, so that the shoe upper is easily wetted during feeding and discharging. Therefore, the water accumulated on the machine table 22 is drained into the water collecting connector 222 through the water leakage hole 221, and then is drained into the water recovery tank 12 through the water collecting pipe 223, so that water accumulation on the machine table 22 is avoided.
[0041] The above is only a preferred embodiment of the present application, and for those skilled in the art, the specific implementation and application range can be changed according to the idea of the present application, and the content of the specification should not be understood as a limitation of the present application.
Claims
1. A steam dehumidifier with water blocking structure, comprising a water supply tank (11), a steam generator, a plurality of air jet assemblies (3) and a plurality of connecting pipe groups, the water supply tank (11) being connected with the steam generator, the upper part of each air jet assembly (3) being provided with a plurality of air outlet holes (321), the lower part of each air jet assembly (3) being provided with an air inlet hole (311), the first end of each connecting pipe group being connected with the steam generator, and the second end of each connecting pipe group being connected with the air inlet hole (311) of each air jet assembly (3) respectively, characterized in that: The inside of the air injection assembly (3) is provided with at least one lower baffle (33) which is provided with a plurality of lower air vents (331), each of which is staggered with the air inlet hole (311) in the horizontal direction, and the lower part of the air injection assembly (3) is further provided with a drain port (312) which is connected with a drain pipe group. 2. The steam dehumidifier with a water blocking structure according to claim 1, characterized in that: The inside of the air injection assembly (3) is further provided with at least one upper baffle (34) which is arranged above the lower baffle (33) in a spaced manner, and the upper baffle (34) is provided with a plurality of upper air vents (341), each of which is staggered with each of the lower air vents (331) in the horizontal direction.
3. The steam dehumidifier with a water blocking structure according to claim 2, characterized in that: The air injection assembly (3) comprises a water-retaining return box (31) and a steam pipe (32), the lower end of the steam pipe (32) is connected with the upper part of the water-retaining return box (31), each of the air outlet holes (321) is arranged on the upper part of the steam pipe (32), the air inlet hole (311) and the drain port (312) are both arranged on the lower end face of the water-retaining return box (31), and the upper baffle (34) and the lower baffle (33) are arranged in the water-retaining return box (31) respectively.
4. The steam dehumidifier with a water blocking structure according to claim 3, characterized in that: The outer edge of the lower baffle (33) is provided with a plurality of air vent grooves (332), each of which is arranged in a spaced manner in the circumferential direction, and the outer edge of the lower baffle (33) abuts against the inner wall of the water-retaining return box (31), each of the air vent grooves (332) and the inner wall of the water-retaining return box (31) enclose each of the lower air vents (331).
5. The steam dehumidifier with a water blocking structure according to claim 3, characterized in that: The outer edge of the upper baffle (34) abuts against the inner wall of the water-retaining return box (31), the middle part of the upper baffle (34) is provided with a plurality of return holes (342), each of which is located below the steam pipe (32), and each of the upper air vents (341) is arranged in a spaced manner in the circumferential direction at the periphery of each of the return holes (342).
6. The steam dehumidifier with a water blocking structure according to claim 3, characterized in that: The upper part of the steam pipe (32) is provided with a shoe rack, the shoe rack comprises a U-shaped rack (351) and a plurality of connecting columns (352), the outer end of each of the connecting columns (352) is connected with the inner side of the U-shaped rack (351), the inner end of each of the connecting columns (352) is connected with the outer side of the steam pipe (32), and the U-shaped rack (351) is located at the periphery of each of the air outlet holes (321).
7. The steam dehumidifier with a water blocking structure according to claim 6, characterized in that: The steam pipe (32) is sleeved with a heat preservation sleeve (36), and each of the air outlet holes (321) is located above the heat preservation sleeve (36).
8. The steam humidifier with a water retaining structure according to any one of claims 3 to 7, characterized in that: The connecting pipe group comprises a steam connecting pipe (41) and a steam connecting pipeline, the first end of the steam connecting pipeline is connected with the steam generator, the second end of the steam connecting pipeline is connected with the lower end of the steam connecting pipe (41), and the upper end of the steam connecting pipe (41) is inserted into the inside of the water-retaining return box (31) through the air inlet hole (311). The drain pipe set comprises a drain connecting pipe (51) and a drain connecting pipe, the upper end of the drain connecting pipe (51) is connected with the drain port (312), the lower end of the drain connecting pipe (51) is connected with the first end of the drain connecting pipe, the second end of the drain connecting pipe is connected with the water supply tank (11), and the upper end surface of the steam connecting pipe (41) is higher than the upper end surface of the drain connecting pipe (51).
9. The steam dehumidifier with a water blocking structure according to claim 8, characterized in that: The steam humidifier is further provided with a recovery water tank (12), and the second end of the drain connecting pipe is connected with the recovery water tank (12).
10. The steam dehumidifier with a water blocking structure according to claim 9, characterized in that: The steam humidifier is further provided with a main machine (21) and two machine tables (22), the steam generator is arranged in the interior of the main machine (21), the water supply tank (11) and the recovery water tank (12) are arranged at the sides of the main machine (21) respectively, the two machine tables (22) are arranged at the left and right sides of the main machine (21) respectively, each machine table (22) is provided with four air jet assemblies (3), at least one water leakage hole (221) is arranged in the central part of the machine table (22), a water collecting joint (222) is connected below the water leakage hole (221), each water leakage hole (221) is connected with the upper end of the water collecting joint (222), and the lower end of the water collecting joint (222) is connected with the recovery water tank (12) through a water collecting pipe (223).