Environment-friendly positive ion printing accurate spraying device
By designing an environmentally friendly cationic printing precision jetting device with multi-segment joints and reversing spray guns, the problem of template positioning misalignment was solved, achieving precise printing processing and reducing fiber and pigment waste.
Patent Information
- Application Number
- CN202422858969.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-11-22
AI Technical Summary
Existing inkjet printing equipment requires repositioning the template when switching printing colors, which leads to positioning misalignment and waste of fibers and pigments.
An environmentally friendly cationic printing precision jetting device was designed, which adopts a multi-segment joint and reversing jet frame structure, combined with a smooth frame and positioning card frame. The printing template is switched by plugging and pulling to avoid repositioning and offset.
It achieves precise positioning when switching printing colors, reduces fiber and pigment waste, and improves printing accuracy and efficiency.
Smart Images

Figure CN223466869U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of injection device, more specifically, it is especially related to the environment -friendly cationic printing precision injection device. BACKGROUND
[0002] Cationic printing is a special textile printing technology, mainly applied to the printing of synthetic fibers; Cationic printing uses cationic dyes and special printing paste, so that the dye can better adhere to the fiber, so as to obtain bright and uniform printing effect, and injection printing is one of the main printing methods of cationic printing, which prints on the fiber by cooperating with the template, and for the convenience of printing, a precision injection device is needed.
[0003] Based on the prior art, it is found that the existing injection printing mainly uses one color and one injection method for printing treatment when in use, but since the printing pattern is usually composed of multiple colors, the template needs to be repositioned when switching the printing color, and the template switching is mainly switched by manpower, so that the printing pattern is prone to misalignment in the positioning process, resulting in waste of fiber and pigment. UTILITY MODEL CONTENT
[0004] In order to solve the above technical problems, the present disclosure relates to an environment-friendly cationic printing precision injection device to solve the problem that the existing injection printing mainly uses one color and one injection method for printing treatment when in use, but since the printing pattern is usually composed of multiple colors, the template needs to be repositioned when switching the printing color, and the template switching is mainly switched by manpower, so that the printing pattern is prone to misalignment in the positioning process, resulting in waste of fiber and pigment.
[0005] The first aspect of the present disclosure provides an environment-friendly cationic printing precision injection device, which is achieved by the following specific technical means:
[0006] The environment-friendly cationic printing precision spraying device comprises a spraying part; the spraying part comprises an outer cover, a multi-end connector and a reversing spray frame; the reversing spray frame is provided in a cylindrical structure, the inside of the reversing spray frame is provided with a plurality of groups of independent conveying pipes, the outer wall of the reversing spray frame is provided with spray pipes, and the reversing spray frame is connected with the multi-end connector; the lower portion of the spraying part is provided with a pressing part, and the pressing part comprises an alignment frame and a positioning interface; the alignment frame is fixed on the bottom of the outer cover through screws; the alignment frame is provided in a rectangular frame structure, the inner wall of the alignment frame is provided with two groups of rectangular sliding grooves, the top of the alignment frame is provided with a cylindrical protrusion, the bottom of the alignment frame is provided with a rectangular protrusion, the rectangular protrusion of the alignment frame is provided with a shaft hole, and the middle position of the alignment frame is provided with a circular through hole; the inside of the pressing part is provided with a die changing part, and the die changing part comprises a smooth frame, a positioning clamp frame and a butt joint block; the smooth frame is slidingly connected in the inside of the alignment frame, the positioning clamp frame is inserted in the inside of the positioning interface, and the butt joint block is slidingly connected in the inside of the alignment frame; the smooth frame is provided in a square plate structure, a threaded through hole is formed in the center position of the smooth frame, a rectangular recess is formed in the side edge of the smooth frame, a rectangular expansion slot is formed on the outer wall of the smooth frame, and a circular through hole is connected in the expansion slot of the smooth frame.
[0007] In at least some embodiments, the spraying part further comprises an outer control frame; the outer control frame is provided in a rectangular frame structure, the outside of the outer control frame is provided with a handle, and the inner side of the outer control frame is provided with two groups of connecting blocks; the outer cover is provided in a cylindrical structure, the bottom of the outer cover is provided with a cylindrical recess, the top of the outer cover is provided with a matching block, and the outer cover is fixed in the inside of the outer control frame through the matching block.
[0008] In at least some embodiments, the multi-end connector is provided in a rectangular block structure, a plurality of groups of outer interfaces are formed on the outer wall of the multi-end connector, and the multi-end connector is fixed to the top of the outer cover.
[0009] In at least some embodiments, the pressing part further comprises a hand control rod; the positioning interface is provided in a circular through hole, and four groups of positioning interfaces are provided, and the four groups of positioning interfaces are respectively connected with the rectangular sliding grooves of the alignment frame; the hand control rod is provided in a two-way threaded rod structure, a cylindrical protrusion is formed on the hand control rod, a handle is formed on the hand control rod, and the hand control rod is rotationally connected to the bottom of the alignment frame.
[0010] In at least some embodiments, the pressing part further comprises a flat moving frame; the flat moving frame is provided in a cylindrical roller structure, two groups of L-shaped frames are formed on the flat moving frame, a shaft hole is formed on one group of L-shaped frames of the flat moving frame, a threaded through hole is formed on one group of L-shaped frames of the flat moving frame, and two groups of flat moving frames are provided, and the two groups of flat moving frames are respectively slidingly connected to the bottom of the alignment frame and are respectively threadedly connected to the hand control rod.
[0011] At least in some embodiments, the positioning card frame is configured as a rectangular block structure, a cylindrical protrusion is provided on the positioning card frame, a hemispherical structure is provided on the cylindrical protrusion of the positioning card frame, a spring is provided on the positioning card frame, and the positioning card frame is slidably connected to the telescopic groove of the smooth frame.
[0012] At least in some embodiments, the mold changing part also includes a printing template; the docking block is configured as a rectangular structure, two groups of rectangular protrusions are provided on the outer wall of the docking block, and the docking block is fixed in the rectangular groove of the smooth frame by screws; the printing template is configured as a disc-shaped structure, a preset hole is provided on the printing template, and a thread is provided on the outer wall of the printing template, and the printing template is threadedly connected to the center position of the smooth frame.
[0013] The environmentally friendly cationic printing precision jetting device proposed in this utility model has the following beneficial effects:
[0014] 1. A multi-section joint and a reversing spray rack are provided. By connecting the multi-section joints to multiple sets of pigment delivery pipes respectively, different printing pigments can be delivered to the interior of the reversing spray rack. The reversing spray rack is provided with multiple sets of nozzles, which have a single pigment spraying effect after being connected to the delivery pipes inside the multi-end joint. The printing color can be switched by switching the working nozzles, so as to facilitate the jet printing process on the fiber.
[0015] 2. A smoothing frame and a positioning card frame are set up. By sliding the positioning card frame inside the smoothing frame, it is convenient to keep it stuck inside the positioning interface and position the smoothing frame by plugging it in, so that the printing template is at the bottom of the reversing spray frame. Multiple groups of smoothing frames are connected by docking blocks, which makes it convenient to switch the printing template by pulling the smoothing frame, saving the repositioning process and avoiding dislocation after repositioning, so as to facilitate the printing of the fiber. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the three-dimensional assembly structure of the utility model.
[0017] Figure 2 It is a schematic diagram of the three-dimensional structure of the utility model when viewed from above.
[0018] Figure 3 It is a partial cutaway structural schematic diagram of the present utility model.
[0019] Figure 4 The utility model is Figure 3 Schematic diagram of the enlarged structure of part A.
[0020] Figure 5 It is a schematic diagram of the exploded structure of the present utility model.
[0021] Figure 6It is the decomposition of the utility model's structure diagram of looking up.
[0022] In the figure, the corresponding relation of component name and figure number is:
[0023] 1, injection part; 101, outer control frame; 102, outer shield; 103, multi-terminal; 104, reversing spray frame;
[0024] 2, pressing part; 201, alignment frame; 202, positioning interface; 203, hand lever; 204, flat moving frame;
[0025] 3, die changing part; 301, smooth frame; 302, positioning card frame; 303, butt block; 304, printing template. DETAILED DESCRIPTION
[0026] The embodiment of the utility model is further described in detail below in combination with the drawings and examples.
[0027] Example one: as attached Figure 1 to attached Figure 6As shown: the utility model provides an environmental protection type cationic printing precision injection device, include: injection part 1, injection part 1 includes outer shade 102, multi -end connector 103 and reversing spray frame 104, reversing spray frame 104 is arranged as cylindrical structure, and the inside of reversing spray frame 104 is equipped with multiple groups of independent delivery pipe, and the outer wall of reversing spray frame 104 is equipped with spray pipe, and reversing spray frame 104 is connected with multi -end connector 103, reversing spray frame 104 is used to spray the pigment to printing template 304 after being connected with multi -end connector 103, to facilitate the injection treatment of limiting, the lower portion of injection part 1 is equipped with pressure material part 2, and pressure material part 2 includes alignment frame 201 and positioning interface 202, alignment frame 201 is fixed in the bottom of outer shade 102 by screw, alignment frame 201 is arranged as rectangular frame structure, and the inner wall of alignment frame 201 is equipped with two groups of rectangular sliding slot, the top of alignment frame 201 is equipped with cylindrical protrusion, the bottom of alignment frame 201 is equipped with rectangular protrusion, the rectangular protrusion of alignment frame 201 is equipped with shaft hole, and the middle position of alignment frame 201 is equipped with circular through-hole, alignment frame 201 is used to assist installation and fix other structures of pressure material part 2, and simultaneously assist in restraining die changing part 3, to facilitate its use, the inside of pressure material part 2 is equipped with die changing part 3, and die changing part 3 includes smooth frame 301, positioning card frame 302 and butt joint block 303, smooth frame 301 is slidably connected in the inside of alignment frame 201, positioning card frame 302 is inserted in the inside of positioning interface 202, and butt joint block 303 is slidably connected in the inside of alignment frame 201, smooth frame 301 is arranged as square plate structure, and the central position of smooth frame 301 is provided with threaded through-hole, and the side of smooth frame 301 is provided with rectangular recess, and the outer wall of smooth frame 301 is provided with rectangular expansion slot, and the expansion slot of smooth frame 301 is connected with circular through-hole, smooth frame 301 is used to assist installation and fix other structures of die changing part 3, to facilitate the switching treatment of printing template 304 by the mode of adjustment.
[0028] Example two: on the basis of example one, as shown, Figure 3 The injection part 1 further includes an outer control frame 101, the outer control frame 101 is arranged as a rectangular frame structure, the outer control frame 101 is provided with a handle on the outside, and two groups of connecting blocks are arranged on the inner side of the outer control frame 101, the outer control frame 101 is used to assist in controlling the whole device to maintain stability during the spraying process, the outer shade 102 is arranged as a cylindrical structure, a cylindrical recess is arranged at the bottom of the outer shade 102, a matching block is arranged at the top of the outer shade 102, and the outer shade 102 is fixed in the inside of the outer control frame 101 through the matching block, the outer shade 102 is used to shield the sprayed pigment to prevent it from splashing out and causing waste of the pigment, the multi-end connector 103 is arranged as a rectangular block structure, a plurality of external interfaces are arranged on the outer wall of the multi-end connector 103, and the multi-end connector 103 is fixed to the top of the outer shade 102, the multi-end connector 103 is used to assist in connecting with external equipment to facilitate the delivery of the pigment.
[0029] In the embodiment of the present disclosure, as shown in Figure 2 The pressing part 2 further comprises a hand lever 203; the positioning interface 202 is a circular through hole, and four groups of positioning interfaces 202 are arranged, and the four groups of positioning interfaces 202 are connected with the rectangular sliding grooves of the alignment frame 201 respectively; the positioning interface 202 is used for positioning the smooth frame 301 in cooperation with the positioning card frame 302, so as to facilitate the switching of the printing template 304; the hand lever 203 is a two-way threaded rod structure, the hand lever 203 is provided with a cylindrical protrusion, the hand lever 203 is provided with a handle, and the hand lever 203 is rotationally connected to the bottom of the alignment frame 201; the hand lever 203 is used for adjusting the position of the flat moving frame 204 through the thread in the process of rotation, so as to facilitate the jet printing treatment of the fiber; the pressing part 2 further comprises a flat moving frame 204; the flat moving frame 204 is a cylindrical roller structure, the flat moving frame 204 is provided with two groups of L-shaped frames, one group of L-shaped frames of the flat moving frame 204 is provided with a shaft hole, one group of L-shaped frames of the flat moving frame 204 is provided with a threaded hole, and the flat moving frame 204 is provided with two groups of L-shaped frames; the two groups of flat moving frames 204 are respectively connected to the bottom of the alignment frame 201 in a sliding mode, and the two groups of flat moving frames 204 are respectively connected to the hand lever 203 in a threaded mode; the flat moving frame 204 is used for flattening the fiber in the process of displacement, so as to facilitate the jet printing treatment of the fiber.
[0030] In the embodiment of the present disclosure, as shown in Figure 3 and Figure 4 The positioning card frame 302 is a rectangular block structure, the positioning card frame 302 is provided with a cylindrical protrusion, the cylindrical protrusion of the positioning card frame 302 is provided with a hemispherical structure, the positioning card frame 302 is provided with a spring, and the positioning card frame 302 is connected to the telescopic groove of the smooth frame 301 in a sliding mode; the positioning card frame 302 is used for restraining the smooth frame 301, so as to facilitate the positioning treatment of the printing template 304 and facilitate its use; the template changing part 3 further comprises a printing template 304; the butt joint block 303 is a rectangular structure, the outer wall of the butt joint block 303 is provided with two groups of rectangular protrusions, and the butt joint block 303 is fixed in the rectangular groove of the smooth frame 301 through screws; the butt joint block 303 is used for assisting in connecting two adjacent smooth frames 301, so as to facilitate the stability of the smooth frame 301; the printing template 304 is a disc structure, the printing template 304 is provided with a preset hole, the outer wall of the printing template 304 is provided with a thread, and the printing template 304 is connected to the center position of the smooth frame 301 in a threaded mode; the printing template 304 is used for assisting in the jet printing treatment of the fiber, so as to facilitate its use.
[0031] The specific use mode and effect of the embodiment are as follows:
[0032] The utility model discloses a printing template 304 is connected in the smooth frame 301 through the positioning card frame 302 in the use, and the adjacent smooth frame 301 is connected, and then the completed smooth frame 301 is pushed to the inside of alignment frame 201, after the designated position, positioning card frame 302 is outside the spring effect and inserts in the inside of positioning interface 202, and the smooth frame 301 is conveniently restrained, and printing template 304 moves to the below of reversing spray frame 104, and then the whole device is moved to the bottom of fibre, and makes the smooth frame 204 and fibre contact, and then rotates hand control rod 203, and the smooth frame 204 is conveniently controlled and adjusted, so that the limiting is handled in the process of adjusting, and then the outside control hub controls the multi -terminal 103 and sends the pigment to reversing spray frame 104, and the outside control hub controls reversing spray frame 104 and sprays the pigment, so as to cooperate printing template 304 and complete printing processing, and it is convenient to use.
[0033] In this paper, the following points need attention:
[0034] 1. The drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure, and other structures can refer to the usual design.
[0035] 2. In the case of no conflict, the embodiments of the present disclosure and the features in the embodiments can be combined to obtain new embodiments.
[0036] The above is only a specific embodiment of the present disclosure, but the protection scope of the present disclosure is not limited to this. Any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present disclosure, which should be covered by the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.
Claims
1. An environmentally friendly cationic printing precision jet device, comprising: The injection part is characterized in that the injection part comprises an outer cover, a multi-terminal connector and a reversing spray frame; the reversing spray frame is provided in a cylindrical structure, a plurality of groups of independent conveying pipes are arranged in the reversing spray frame, a spray pipe is arranged on the outer wall of the reversing spray frame, and the reversing spray frame is connected with the multi-terminal connector; a pressing part is arranged below the injection part, and the pressing part comprises an alignment frame and a positioning interface; the alignment frame is fixed on the bottom of the outer cover through screws; the alignment frame is provided in a rectangular frame structure, two groups of rectangular sliding grooves are arranged on the inner wall of the alignment frame, a cylindrical protrusion is arranged on the top of the alignment frame, a rectangular protrusion is arranged on the bottom of the alignment frame, an axle hole is arranged on the rectangular protrusion of the alignment frame, and a circular through hole is arranged at the middle position of the alignment frame; a die changing part is arranged in the pressing part, and the die changing part comprises a smoothing frame, a positioning clamp frame and a butt joint block; the smoothing frame is slidingly connected in the inner part of the alignment frame, the positioning clamp frame is inserted into the inner part of the positioning interface, and the butt joint block is slidingly connected in the inner part of the alignment frame; the smoothing frame is provided in a square plate structure, a threaded through hole is arranged at the center position of the smoothing frame, a rectangular recess is arranged on the side edge of the smoothing frame, a rectangular expansion slot is arranged on the outer wall of the smoothing frame, and a circular through hole is connected in the expansion slot of the smoothing frame.
2. The environmentally friendly cationic printing precision jetting device according to claim 1, characterized in that: The injection part further comprises an outer control frame; the outer control frame is provided in a rectangular frame structure, a handle is arranged on the outer part of the outer control frame, and two groups of connecting blocks are arranged on the inner side of the outer control frame; the outer cover is provided in a cylindrical structure, a cylindrical recess is arranged on the bottom of the outer cover, and a matching block is arranged on the top of the outer cover, and the outer cover is fixed in the inner part of the outer control frame through the matching block.
3. The environment-friendly cationic printing precision jet device according to claim 1, characterized in that: The multi-terminal connector is provided in a rectangular block structure, a plurality of groups of outer interfaces are arranged on the outer wall of the multi-terminal connector, and the multi-terminal connector is fixed on the top of the outer cover.
4. The environment-friendly cationic printing precision jet device according to claim 1, characterized in that: The pressing part further comprises a hand control rod; the positioning interface is provided in a circular through hole, and four groups of the positioning interfaces are arranged, and the four groups of the positioning interfaces are connected with the rectangular sliding grooves of the alignment frame respectively; the hand control rod is provided in a two-way threaded rod structure, a cylindrical protrusion is arranged on the hand control rod, a rotating handle is arranged on the hand control rod, and the hand control rod is rotatably connected on the bottom of the alignment frame.
5. The environment-friendly cationic printing precision jetting device according to claim 4, characterized in that: The pressing part further comprises a flat moving frame; the flat moving frame is provided in a cylindrical roller structure, two groups of L-shaped frames are arranged on the flat moving frame, an axle hole is arranged on one group of the L-shaped frames of the flat moving frame, a threaded through hole is arranged on one group of the L-shaped frames of the flat moving frame, and two groups of the flat moving frames are arranged, and the two groups of the flat moving frames are slidingly connected on the bottom of the alignment frame and are threadedly connected on the hand control rod respectively.
6. The environment-friendly cationic printing precision jet device according to claim 1, characterized in that: The positioning clamp frame is provided in a rectangular block structure, a cylindrical protrusion is arranged on the positioning clamp frame, a hemispherical structure is arranged on the cylindrical protrusion of the positioning clamp frame, a spring is arranged on the positioning clamp frame, and the positioning clamp frame is slidingly connected in the expansion slot of the smoothing frame.
7. The environment-friendly cationic printing precision jetting device according to claim 1, characterized in that: The die changing part further comprises a printing die plate; the butt joint block is provided in a rectangular block structure, two groups of rectangular protrusions are arranged on the outer wall of the butt joint block, and the butt joint block is fixed in the rectangular recess of the smoothing frame through screws; the printing die plate is provided in a disc structure, a preset hole is arranged on the printing die plate, threads are arranged on the outer wall of the printing die plate, and the printing die plate is threadedly connected at the center position of the smoothing frame.