Gray cloth airflow atomization dyeing mechanism for fashionable dress
By combining the design of a drive motor for stirring and a powerful fan for atomization with a heating plate for temperature control, the problems caused by dye sedimentation and temperature fluctuations are solved, achieving uniform dye coverage and efficient dyeing results.
Patent Information
- Application Number
- CN202520814520.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-27
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-04-27
AI Technical Summary
In existing technologies, dyes are prone to precipitation, leading to uneven dyeing. Ambient temperature affects dyeing quality, resulting in low color uptake and decreased color fastness.
The design employs a drive motor to stir the dyeing agent using a spiral arc-shaped plate, combined with a powerful fan to enhance atomization and a trapezoidal shell heating plate to regulate temperature, thereby achieving dynamic mixing and precise temperature control of the dyeing agent.
It improves the uniformity and coverage of dyes, enhances fiber color yield and color fastness, and reduces uneven dyeing and migration problems.
Smart Images

Figure CN223907128U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of fashion dyeing, and specifically relates to a white cloth airflow atomization dyeing mechanism for fashion. BACKGROUND
[0002] Cloth dyeing refers to coloring cloth through different process methods to obtain the required color and effect. The main methods of cloth dyeing include dip dyeing, boil dyeing, padding dyeing, and printing dyeing.
[0003] In the prior art, as disclosed in the patent with the announcement number CN222575001U, a combined nozzle device of a gas-liquid dyeing machine is disclosed, which comprises a liquid flow nozzle assembly, an airflow nozzle assembly, and a mounting frame. The liquid flow nozzle assembly and the airflow nozzle assembly are both mounted on the mounting frame, and the mounting frame is arranged parallel to the cloth. The liquid flow nozzle assembly comprises a crossbar, a first sliding sleeve, and a nozzle unit. Two first sliding sleeves are arranged at the two ends of the mounting frame, and the crossbar is arranged between the two first sliding sleeves.
[0004] Although the above patent can adjust the overall position of the liquid flow nozzle assembly and the airflow nozzle assembly in the mounting frame, the distance between the nozzle unit and the cloth, the distance between the nozzle units, and the angle of the nozzle unit to adapt to the dyeing of different cloths and achieve the best dyeing effect, with the increase of time, the dyeing agent will precipitate, which will affect the color quality of the dyeing agent, cause uneven dyeing, and when dyeing, the environment temperature will affect the migration of the dyeing agent, the color yield will be significantly reduced, the fiber color yield will be too low, the color yield will be affected, and the dyeing fastness will be reduced. Therefore, a white cloth airflow atomization dyeing mechanism for fashion is proposed to solve the above problems. SUMMARY
[0005] In order to make up for the deficiencies of the prior art, with the increase of time, the dyeing agent will precipitate, which will affect the color quality of the dyeing agent, cause uneven dyeing, and when dyeing, the environment temperature will affect the migration of the dyeing agent, the color yield will be significantly reduced, the fiber color yield will be too low, the color yield will be affected, and the dyeing fastness will be reduced. Therefore, a white cloth airflow atomization dyeing mechanism for fashion is proposed to solve the above problems.
[0006] The utility model discloses a technical scheme that solves its technical problem is adopted: a kind of grey cloth airflow atomization dyeing mechanism for fashion, including fixed plate;The side of the fixed plate top is provided with dyeing box, the side of the dyeing box top is provided with raw material tank, raw material tank top side is connected with conveying pipe, one end of the conveying pipe is connected with A material pump, the discharge end of the A material pump is connected with L pipe, one end of the L pipe is connected with processing assembly;The other side of the dyeing box is provided with B material pump, the discharge end of the B material pump is connected with elastic hose, one end of the elastic hose is connected with dyeing assembly;The processing assembly includes processing tank being connected with the L pipe one end, the surface of the processing tank is fixedly connected with driving motor, the output of the driving motor is fixedly connected with fixed rod and penetrates processing tank, the surface of the fixed rod is provided with arc bending plate and its one end is rotatably connected with processing tank inner bottom surface;The dyeing assembly includes fixed pipe being connected with the elastic hose one end, the bottom of the fixed pipe is equidistantly connected with standpipe, the bottom of the standpipe is connected with guide pipe and penetrates fixed plate, one end of the guide pipe is provided with atomizing nozzle, the surface of the atomizing nozzle is sleeved with locating plate, the surface of the locating plate is embedded with powerful fan, the front of the locating plate is provided with trapezoidal shell that wraps atomizing nozzle and powerful fan, the top of the trapezoidal shell is provided with heating plate, and the heating plate is electrically connected with temperature control module by wire.
[0007] Preferably, the processing tank is connected with A hose on one side, one end of the A hose is connected with the top of the dyeing box, one end of the B hose is provided with B material pump, and one end of the B hose is connected with the side of the dyeing box.
[0008] Preferably, the powerful fan of the locating plate is annularly arranged around the atomizing nozzle, and the outlet direction of the powerful fan is parallel to the spraying direction of the atomizing nozzle.
[0009] Preferably, the heating plate is located on the inner side of the top of the trapezoidal shell, and the heating surface of the heating plate faces the spraying area of the atomizing nozzle.
[0010] Preferably, the temperature control module is fixed to the outer side of the dyeing box, and the temperature control module is connected with the temperature control circuit of the heating plate through wireless signal.
[0011] Preferably, the arc-shaped bending plates in the processing tank are spirally arranged, and the output shaft of the driving motor is coaxially arranged with the rotation axis of the fixed rod.
[0012] The utility model has the advantages that:
[0013] 1.The utility model discloses a linkage design of driving motor and spiral arrangement arc bender in processing assembly, realizes dynamic mixing function of dyeing agent, when driving motor drives fixed link to rotate, arc bender agitates dyeing agent in processing jar with spiral track, solve the problem of uneven color caused by traditional static dyeing agent, improve dye uniformity and dyeing quality, the synergistic design of atomizing nozzle and annular array strong fan in over-dyeing assembly realizes airflow enhanced atomization function, the parallel airflow produced by strong fan around atomizing nozzle accelerates dyeing agent atomization particle diffusion, solve the problem of uneven dyeing penetration caused by traditional atomization particle, improve the coverage uniformity of dyeing agent on the surface of cloth;
[0014] 2.The utility model discloses the combination design of heating plate and temperature control module at trapezoidal shell top, realizes the accurate regulation and control function of dyeing temperature, heating plate carries out directional heating to atomized dyeing agent particle, and temperature control module adjusts heating temperature in real time through wireless signal, solves the problem of transfer dyeing caused by environmental temperature fluctuation, improves fiber color yield and dyeing fastness. ACCURACY
[0015] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or prior art, the following will briefly introduce the drawings needed to be used in embodiment or prior art description, obviously, the drawings in the following description are only some embodiments of the utility model, and those skilled in the art can obtain other drawings according to these drawings without creating creative labor.
[0016] Figure 1 It is the whole structure schematic diagram of the utility model;
[0017] Figure 2 It is the structure schematic diagram of dyeing box of the utility model;
[0018] Figure 3 It is the structure schematic diagram of processing assembly of the utility model;
[0019] Figure 4 It is the structure schematic diagram of dyeing assembly of the utility model.
[0020] In the drawing: 1, fixed plate;2, dyeing box;3, raw material jar;4, conveying pipe;5, A material pump;6, processing assembly;61, processing jar;62, driving motor;63, fixed link;64, arc bender;7, B material pump;8, elastic hose;9, dyeing assembly;91, fixed pipe;92, vertical pipe;93, guide pipe;94, atomizing nozzle;95, positioning plate;96, strong fan;97, trapezoidal shell;98, heating plate;99, temperature control module;10, A hose;11, B hose;12, L pipe. DETAILED DESCRIPTION
[0021] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.
[0022] Please refer to Figures 1-4 As shown in FIG. 1, a kind of white cloth airflow atomization dyeing mechanism for fashion, including fixed plate 1;Fixed plate 1 top one side is provided with dyeing box 2, dyeing box 2 top one side is provided with raw material tank 3, raw material tank 3 top one side is connected with conveying pipe 4, one end of conveying pipe 4 is connected with A material pump 5, the discharge end of A material pump 5 is connected with L pipe 12, one end of L pipe 12 is connected with processing assembly 6;The other side of dyeing box 2 is provided with B material pump 7, the discharge end of B material pump 7 is connected with elastic hose 8, one end of elastic hose 8 is connected with dyeing assembly 9;Processing assembly 6 includes processing tank 61 being connected in one end of L pipe 12, processing tank 61 is fixedly connected with driving motor 62 on surface, the output end of driving motor 62 is fixedly connected with fixed rod 63 penetrating processing tank 61, fixed rod 63 surface is provided with arc bending plate 64 at equal intervals and one end is rotatably connected with inner bottom surface of processing tank 61;Dyeing assembly 9 includes fixed tube 91 being connected in one end of elastic hose 8, fixed tube 91 bottom is connected with vertical pipe 92 at equal intervals, vertical pipe 92 bottom end is connected with guide pipe 93 penetrating fixed plate 1, one end of guide pipe 93 is provided with atomizing nozzle 94, atomizing nozzle 94 surface is sleeved with positioning plate 95, positioning plate 95 surface is embedded with powerful fan 96, the front of positioning plate 95 is provided with trapezoidal shell 97 wrapping atomizing nozzle 94 and powerful fan 96, trapezoidal shell 97 top is provided with heating plate 98, heating plate 98 is electrically connected with temperature control module 99 by wire;
[0023] When working, A material pump 5 conveys dyeing agent in raw material tank 3 to processing tank 61 through L pipe 12, driving motor 62 drives fixed rod 63 and spiral arranged arc bending plate 64 to rotate, to prevent precipitation by dynamic stirring of dyeing agent;B material pump 7 pumps processed dyeing agent into fixed tube 91 through elastic hose 8, and atomizing nozzle 94 is sprayed from vertical pipe 92 and guide pipe 93, while powerful fan 96 on positioning plate 95 generates parallel airflow to enhance atomization, heating plate 98 on the top of trapezoidal shell 97 adjusts temperature through temperature control module 99, reduces heat loss of atomized dyeing agent, dynamic mixing prevents precipitation, improves dyeing uniformity, airflow enhances atomization, improves coverage uniformity.
[0024] Further, the processing tank 61 is connected with an A hose 10 on one side, one end of the A hose 10 is connected with the top of the dyeing box 2, one end of the B material pump 7 is provided with a B hose 11, one end of the B hose 11 is connected with the side of the dyeing box 2;
[0025] In operation, the mixed dyeing agent in the processing tank 61 flows back to the top of the dyeing box 2 through the A hose 10, and the B material pump 7 forms a circulating loop by extracting the dyeing agent from the side of the dyeing box 2 through the B hose 11, which ensures the continuous flow of the dyeing agent to avoid activity attenuation, and the circulating loop maintains the activity of the dyeing agent.
[0026] Further, the powerful fans 96 of the positioning plate 95 are arranged in a ring array around the atomizing nozzle 94, and the outlet direction of the powerful fans 96 is parallel to the spraying direction of the atomizing nozzle 94;
[0027] In operation, the ring array of powerful fans 96 is started synchronously around the atomizing nozzle 94, and the airflow direction is consistent with the dyeing agent spraying direction of the atomizing nozzle 94, which accelerates the diffusion of atomized particles and uniformly covers the surface of the cloth, and the airflow enhances atomization and improves coverage uniformity.
[0028] Further, the heating plate 98 is located on the top inside of the trapezoidal shell 97, and the heating surface of the heating plate 98 faces the spraying area of the atomizing nozzle 94;
[0029] In operation, the heating plate 98 is installed on the inside top of the trapezoidal shell 97, and the heating surface faces the spraying path of the atomizing nozzle 94, which maintains the temperature stability of the atomized dyeing agent particles through radiation heating, and the temperature is accurately controlled to reduce the problem of migration.
[0030] Further, the temperature control module 99 is fixed to the outside of the dyeing box 2, and the temperature control module 99 is connected with the temperature control circuit of the heating plate 98 through wireless signals;
[0031] In operation, the temperature control module 99 is fixed to the outside of the dyeing box 2, and the heating power of the heating plate 98 is remotely controlled through wireless signals, which matches the temperature requirements of different dyeing agents in real time, and the temperature is accurately controlled to reduce the problem of migration.
[0032] Further, the arc-shaped bent plates 64 in the processing tank 61 are arranged in a spiral shape, and the output shaft of the driving motor 62 is coaxially arranged with the rotation axis of the fixed rod 63;
[0033] In operation, the output shaft of the driving motor 62 is coaxially rotated with the fixed rod 63, which drives the spiral arc-shaped bent plates 64 to push the dyeing agent along the inner wall of the processing tank 61 by centrifugal force to form a vortex, which improves the mixing uniformity, dynamically mixes to prevent precipitation, and improves the dyeing uniformity.
[0034] Working principle: A material pump 5 transports the dyeing agent in the raw material tank 3 to the processing tank 61 through the L pipe 12, the driving motor 62 drives the fixed rod 63 and the spiral arranged arc-shaped bent plate 64 to rotate and stir to prevent precipitation, the mixed dyeing agent enters the dyeing box 2 through the A hose 10, the B material pump 7 extracts the dyeing agent through the B hose 11 and transports it to the fixed pipe 91 through the elastic hose 8, is guided to the atomizing nozzle 94 by the vertical pipe 92, is atomized and sprayed out, the annular arrayed powerful fan 96 generates parallel airflow to enhance atomization and diffusion, the heating plate 98 at the top of the trapezoidal shell 97 adjusts the temperature through the temperature control module 99 to reduce the dyeing, the dyeing agent is uniformly covered on the surface of the cloth after being atomized and heated, and the circulating pipeline of the processing tank 61 and the dyeing box 2 maintains the activity of the dyeing agent.
[0035] The above is only the preferred embodiment of the present application and is not used to limit the present application, although the present application is described in detail with reference to the foregoing embodiments, for those skilled in the art, the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced equivalently. Any modification, equivalent replacement, similar improvement, etc. within the theoretical and principle content of the present application should be included in the protection scope of the present application.
Claims
1. A mechanism for air flow atomization dyeing of white fabric for fashion, characterized in that: The utility model provides a dyeing device, including fixed plate (1), one side of top of fixed plate (1) is provided with dyeing box (2), one side of top of dyeing box (2) is provided with raw material tank (3), raw material tank (3) top one side is connected through with delivery pipe (4), one end of delivery pipe (4) is connected through with A material pump (5), the discharge end of A material pump (5) is connected through with L pipe (12), one end of L pipe (12) is connected through with processing subassembly (6), one side of dyeing box (2) is provided with B material pump (7), the discharge end of B material pump (7) is connected through with elastic hose (8), one end of elastic hose (8) is connected through with dyeing subassembly (9), Processing subassembly (6) including through connection in one end of L pipe (12) processing tank (61), the surface fixed connection of processing tank (61) is provided with drive motor (62), the output of drive motor (62) is fixedly connected with fixed rod (63) through processing tank (61), the surface equidistance of fixed rod (63) is provided with arc bending plate (64) and its one end is rotatably connected with the inner bottom of processing tank (61), Dyeing subassembly (9) including through connection in one end of elastic hose (8) fixed pipe (91), the bottom equidistance of fixed pipe (91) is connected through with vertical pipe (92), the bottom end of vertical pipe (92) is connected through with guide pipe (93) through fixed plate (1), one end of guide pipe (93) is provided with atomizing nozzle (94), the surface sleeve of atomizing nozzle (94) is provided with positioning plate (95), the surface of positioning plate (95) is embedded with powerful fan (96), the front of positioning plate (95) is provided with trapezoidal shell (97) that is wrapped atomizing nozzle (94) and powerful fan (96), the top of trapezoidal shell (97) is provided with heating plate (98), heating plate (98) is electrically connected with temperature control module (99) through wire.
2. A white fabric air flow atomizing dyeing mechanism for fashion according to claim 1, characterized in that: One side of processing tank (61) is connected through with A hose (10), one end of A hose (10) is connected through with the top of dyeing box (2), one end of B material pump (7) is provided with B hose (11), one end of B hose (11) is connected through with the side of dyeing box (2).
3. A white fabric air flow atomizing dyeing mechanism for fashion according to claim 1, characterized in that: The powerful fan (96) of positioning plate (95) is annularly arranged around the atomizing nozzle (94), and the outlet direction of the powerful fan (96) is parallel to the spraying direction of the atomizing nozzle (94).
4. A white fabric air flow atomizing dyeing mechanism for fashion according to claim 1, characterized in that: The heating plate (98) is located on the inner side of the top of the trapezoidal shell (97), and the heating surface of the heating plate (98) faces the spraying area of the atomizing nozzle (94).
5. The mechanism for air flow atomization dyeing of white fabric for fashion according to claim 1, characterized in that: The temperature control module (99) is fixed to the outer side of the dyeing box (2), and the temperature control module (99) is connected with the temperature control circuit of the heating plate (98) through wireless signals.
6. A white fabric air flow atomizing dyeing mechanism for fashion according to claim 1, characterized in that: The arc-shaped bending plates (64) in the processing tank (61) are arranged in a spiral shape, and the output shaft of the drive motor (62) is coaxially arranged with the rotation axis of the fixed rod (63).
Citation Information
Patent Citations
Combined nozzle device of gas-liquid dyeing machine
CN222575001U