CN217615431U - Coating trades look mechanism - Google Patents
Coating trades look mechanism Download PDFInfo
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- CN217615431U CN217615431U CN202221142412.5U CN202221142412U CN217615431U CN 217615431 U CN217615431 U CN 217615431U CN 202221142412 U CN202221142412 U CN 202221142412U CN 217615431 U CN217615431 U CN 217615431U
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Abstract
The utility model discloses a coating trades look mechanism, include: the color changing assembly comprises a diversion socket, a color changing assembly and a telescopic adsorption assembly, wherein the diversion socket is provided with a feeding hole and a discharging hole; the color changing assembly comprises a plurality of pigment pots and displacement pieces, and the bottom ends of the pigment pots are provided with self-sealing joints; the displacement piece is in interference fit with the pigment pot and can switch the positions of different pigment pots; the telescopic adsorption assembly is provided with a telescopic part and an adsorption part, the output end of the telescopic part is fixed with the adsorption part and is used for driving the adsorption part to move between a first position and a second position, when the adsorption part is abutted against Yan Liaohu and moves from the first position to the second position, the self-sealing joint is inserted into the feed port, and the pigment kettle is communicated with the discharge port; when the adsorption part adsorbs Yan Liaohu and moves from the second position to the first position, the adsorption part releases Yan Liaohu, the self-sealing joint is separated from the flow guide socket, and Yan Liaohu is sealed from the self-sealing joint. The utility model discloses saved installation space and economic benefits height.
Description
Technical Field
The utility model relates to a spraying technical field especially relates to a coating trades look mechanism.
Background
The coating is an important link in modern product manufacturing process, if the spraying operation is needed after the surface processing of the sheet metal is finished, in order to meet the use requirements of different conditions, different colors need to be sprayed on the surface of the sheet metal, so the color needs to be changed in time during spraying, the existing color changing technology mainly carries a color changing valve to change the color through multi-pipeline coating, the requirement of the multi-pipeline coating on the installation space is large, the economic benefit of color changing in short distance is not high, and therefore the coating is not suitable for use.
In order to solve the problems, the chinese utility model patent, with an authorization publication number of CN205833426U, discloses a quick color changing spraying device, which has the main technical points that: trade look equipment one end and be equipped with the charge-in pipeline connection of different colours coating respectively, the other end is connected with connecting tube for it is right in charge-in pipeline switches with connecting tube's UNICOM to realize the quick replacement of different colours coating.
To above-mentioned prior art, the structure is complicated while the pipeline is numerous, if trade the look equipment and be connected with multiunit charge-in pipeline respectively, obviously not be suitable for the limited look mechanism that trades of installation space, also not high to the economic benefits that the look was traded to the short distance, to sum up, trade the look mechanism to the limited look of installation space, trade the color at the short distance and have higher economic benefits, effective solution has not been proposed yet at present.
SUMMERY OF THE UTILITY MODEL
In view of this, it is necessary to provide a paint color changing mechanism, which solves the technical problems of the prior art that the installation space of the color changing mechanism is limited and the economic benefit for color changing at short distance is not high.
In order to achieve the above technical purpose, the technical scheme of the utility model provides a coating trades look mechanism, include: the color changing device comprises a diversion socket, a color changing assembly and a telescopic adsorption assembly, wherein the diversion socket is provided with a feeding hole and a discharging hole; the color changing assembly comprises a plurality of pigment pots and a displacement piece, a plurality of Yan Liaohu are inserted on the displacement piece in a sliding mode, and the bottom end of Yan Liaohu is provided with a self-sealing joint; the displacement piece is in interference fit with the paint kettle and can switch the positions of the Yan Liaohu; the telescopic adsorption assembly is provided with a telescopic part and an adsorption part, the output end of the telescopic part is fixed with the adsorption part so as to drive the adsorption part to move between a first position and a second position, when the adsorption part props against the top end of Yan Liaohu and moves from the first position to the second position, the self-sealing joint is inserted in the feed port in a matched mode, and Yan Liaohu is communicated with the discharge port; when the adsorption part adsorbs Yan Liaohu top ends and moves from the second position to the first position, the adsorption part releases Yan Liaohu, the self-sealing joint is separated from the flow guide socket, and the self-sealing joint closes Yan Liaohu.
Furthermore, the displacement piece is a turntable, and a plurality of Yan Liaohu are uniformly arranged on the turntable in a circumferential manner.
Furthermore, trade the look subassembly and still include the gyration driving piece, the gyration driving piece with carousel transmission is connected for the drive the carousel intermittent type rotates.
Furthermore, the rotary driving member comprises a speed reducing motor and a cam divider, an output end of the speed reducing motor is in transmission connection with the cam divider, and an output end of the cam divider is fixedly connected with the center of the rotary table to drive the rotary table to rotate intermittently.
Further, the flow guide socket comprises a first flow guide sleeve and a first plugging piece, and the self-sealing joint comprises a second flow guide sleeve and a second plugging piece; the inner cavity of the first flow guide sleeve is respectively communicated with the feed port and the discharge port, one end of the first blocking piece is of a hollow structure and is fixed with the wall of the inner cavity of the first flow guide sleeve, and the other end of the first blocking piece is elastically abutted against one side of the feed port to be used for blocking the feed port; the second flow guide sleeve is provided with a flow guide opening which can be communicated with the pigment kettle, the second blocking piece comprises a sliding rod, one end of the sliding rod penetrates through the flow guide opening in a sliding mode, and the other end of the sliding rod is located in an inner cavity of the second flow guide sleeve and is elastically abutted to one side of the flow guide opening so as to be used for closing the flow guide opening; when the sliding rod is inserted in the feed port in a matching manner, the flow guide port is communicated with the discharge port.
Further, first shutoff piece includes first fretwork board, first compression spring and baffle, first compression spring's both ends respectively with first fretwork board with baffle fixed connection, first fretwork board with the inner chamber wall fixed connection of first water conservancy diversion cover, the baffle with one side elasticity butt of feed inlet.
Furthermore, the second plugging piece further comprises a second hollowed-out plate and a second compression spring, two ends of the second compression spring are respectively fixedly connected with the second hollowed-out plate and the other end of the sliding rod, the second hollowed-out plate is fixedly connected with the inner cavity wall of the second flow guide sleeve, and the other end of the sliding rod is elastically abutted to the flow guide opening.
Further, the adsorption part is an electromagnet.
Further, the telescopic part is an air cylinder.
Furthermore, the pigment kettle is provided with a material taking port for adding the coating.
Compared with the prior art, the beneficial effects of the utility model include: the displacement piece is in interference fit with the pigment pot and can switch the positions of different pigment pots, when the adsorption part abuts against Yan Liaohu and moves from the first position to the second position, the self-sealing joint is inserted into the feed port, the pigment pot is communicated with the discharge port, when the adsorption part adsorbs the top end of Yan Liaohu and moves from the second position to the first position, the adsorption part releases Yan Liaohu, the self-sealing joint is separated from the flow guide socket, and the self-sealing joint is sealed Yan Liaohu; by the arrangement mode, a plurality of feeding pipelines are not required to be installed, so that the installation space is saved; different coatings can be guided out of the flow guide socket by switching different Yan Liaohu, the color changing mechanism is simple in structure, and high economic benefits are achieved for short-distance color changing.
Drawings
Fig. 1 is a side view of a paint color changing mechanism according to an embodiment of the present invention.
Fig. 2 is a schematic structural diagram of a paint color changing mechanism according to an embodiment of the present invention.
Fig. 3 is a first schematic structural diagram of the self-sealing joint and the flow guiding socket according to an embodiment of the present invention.
Fig. 4 is a schematic structural diagram of a second self-sealing joint and a flow guiding socket according to an embodiment of the present invention.
In the figure: 1. the automatic color changing device comprises a guide socket, a feed inlet, a first guide sleeve, a first sealing part, a baffle plate, a first compression spring, a color changing assembly, a first guide sleeve, a second guide sleeve, a guide opening, a second sealing part, a sliding rod, a second compression spring, a displacement piece, a rotary driving piece, a telescopic adsorption assembly, a telescopic part and an adsorption part, wherein the guide socket comprises 1a guide socket, a first guide sleeve, 12, a first sealing part, 121, a baffle plate, 122, a first compression spring, 2, a color changing assembly, 21, yan Liaohu, 211, a self-sealing joint, 2111, a second guide sleeve, 2111a guide opening, 2112, a second sealing part, a 21121 sliding rod, 21122, a second compression spring, a displacement piece, a rotary driving piece, a telescopic adsorption component, a telescopic part and an adsorption part.
Detailed Description
The following detailed description of the preferred embodiments of the invention, taken in conjunction with the accompanying drawings, which are incorporated in and constitute a part of this application, illustrate embodiments of the invention and together with the description, serve to explain the principles of the invention and not to limit the scope of the invention.
As shown in fig. 1-4, the utility model provides a coating trades look mechanism, includes: the water conservancy diversion socket 1, trade look subassembly 2 and flexible adsorption component 3.
Wherein, the guide socket 1 is provided with a feed inlet 1a and a discharge outlet.
The color changing assembly 2 comprises a plurality of pigment pots 21 and a displacement piece 22, a plurality of Yan Liaohu are inserted on the displacement piece 22 in a sliding manner, and the bottom end of the Yan Liaohu is provided with a self-sealing joint 211; the displacement piece 22 is in interference fit with the Yan Liaohu and can switch different positions of the Yan Liaohu.
The telescopic adsorption component 3 is provided with a telescopic part 31 and an adsorption part 32, the output end of the telescopic part 31 is fixed with the adsorption part 32 so as to drive the adsorption part 32 to move between a first position and a second position, when the adsorption part 32 props against the top end of Yan Liaohu and moves from the first position to the second position, the self-sealing joint 211 is inserted into the feed port 1a in a matching manner, and the Yan Liaohu is communicated with the feed port; when the adsorption part 32 adsorbs the top end of Yan Liaohu and moves from the second position to the first position, the adsorption part 32 releases Yan Liaohu, the self-sealing joint 211 is separated from the diversion socket 1, and the self-sealing joint 211 closes the pigment pot 21.
In this embodiment, referring to fig. 1-2, the paint and cleaning solvent with different colors are filled in the paint can 21, the displacement element 22 can switch the positions of the paint cans 21 to make the absorption portion 32 and Yan Liaohu collinear, and the self-sealing joint 211 and the feeding port 1a collinear, when the self-sealing joint 211 is separated from the diversion socket 1, the self-sealing joint 211 can seal Yan Liaohu, and when the self-sealing joint 211 is plugged in the diversion socket 1, the self-sealing joint 211 and the diversion socket 1 are conducted with each other.
In practical application, the expansion part 31 drives the adsorption part 32 to move downwards, and further drives the Yan Liaohu to move downwards until the self-sealing joint 211 is matched and inserted into the feed inlet 1a of the diversion socket 1, at this time, the Yan Liaohu is communicated with the diversion socket 1, the adsorption part 32 is adsorbed at the top end of the Yan Liaohu, the expansion part 31 drives the adsorption part 32 to move upwards, and further drives the Yan Liaohu 21 to move upwards, so that the pigment pot 21 is separated from the diversion socket 1, at this time, the Yan Liaohu is sealed from the joint 211, when the color is required to be cleaned and changed, the adsorption part 32 releases the Yan Liaohu, then the displacement piece 22 drives the pigment pot 21 filled with the cleaning solvent to move until the pigment pot 21 and the adsorption part 32 are collinear, the operation is repeated to complete cleaning of the diversion socket 1, and then the displacement piece 22 drives the Yan Liaohu filled with another coating to move until the adsorption part 32 and the operation of the diversion socket 1 are collinear; due to the arrangement mode, a plurality of feeding pipelines are not required to be installed, and more installation space is saved; different coatings can be guided out by the guide socket 1 by switching different Yan Liaohu, the color changing mechanism is simple in structure, and high economic benefits are achieved for short-distance color changing.
It should be noted that, the diversion socket 1 may be connected to a spray gun in practical application, and the spray gun is used to spray the sheet metal part.
Further, the displacement member 22 is a turntable, and a plurality of Yan Liaohu are circumferentially and uniformly arranged on the turntable; the color changing assembly 2 further comprises a rotary driving member 23, and the rotary driving member 23 is in transmission connection with the rotary table and is used for driving the rotary table to rotate intermittently; the rotary driving member 23 includes a speed reducing motor and a cam divider, an output end of the speed reducing motor is in transmission connection with the cam divider, and an output end of the cam divider is fixedly connected with a center of the turntable so as to drive the turntable to rotate intermittently.
In the present embodiment, referring to fig. 1-2, the structure of the color changing assembly 2 is further defined, wherein the displacement member 22 is defined as a turntable, and the turntable can be intermittently rotated by the reduction motor and the cam divider.
It should be noted that, for the intermittent rotation of the turntable, it should be considered that the turntable can adjust the positions of different color pots 21, so that one color pot 21 can be collinear with the adsorption part 32 and Yan Liaohu, and the self-sealing joint 211 is collinear with the feed inlet 1a, meanwhile, a metal sheet can be installed on the turntable, a proximity sensor is installed on one side close to the turntable, when the turntable rotates, the metal sheet can rotate to be close to the proximity sensor, and the turntable stops at this time, and the manner of controlling the intermittent rotation of the turntable can be realized by adopting the manner.
Still further, the flow guiding socket 1 includes a first flow guiding sleeve 11 and a first plugging member 12, and the self-sealing joint 211 includes a second flow guiding sleeve 2111 and a second plugging member 2112; the inner cavity of the first flow guide sleeve 11 is respectively communicated with the feed inlet 1a and the discharge outlet, one end of the first blocking piece 12 is of a hollow structure and is fixed with the inner cavity wall of the first flow guide sleeve, and the other end of the first blocking piece 12 is elastically abutted against one side of the feed inlet 1a so as to be used for sealing the feed inlet 1a; the second flow guide sleeve 2111 is provided with a flow guide opening 2111a, the flow guide opening 2111a can be communicated with Yan Liaohu, the second blocking part 2112 comprises a sliding rod 21121, one end of the sliding rod 21121 slides through the flow guide opening 2111a, and the other end of the sliding rod 21121 is positioned in an inner cavity of the second flow guide sleeve 2111 and elastically abuts against one side of the flow guide opening 2111a so as to close the flow guide opening 2111a; when the sliding rod 21121 is inserted into the feed port 1a in a matching manner, the flow guide port 2111a is communicated with the discharge port.
In this embodiment, please refer to fig. 3, the structures of the flow guiding socket 1 and the self-sealing joint 211 are further defined, and when the self-sealing joint 211 is separated from the flow guiding socket 1, for the self-sealing joint 211: one end of the sliding rod 21121 passes through the diversion port 2111a and is located outside the second diversion sleeve 2111, while the other end of the sliding rod 21121 is elastically abutted against one side of the diversion port 2111a for closing the diversion port 2111a, it should be considered that the other end of the sliding rod 21121 is larger than one end of the sliding rod 21121, and the other end of the sliding rod 21121 is in a pressed state; for the current-conducting socket 1: the other end of the first block piece 12 elastically abuts one side of the feed port 1a to close the feed port 1a, and it is considered that the other end of the first block piece 12 is also in a pressed state.
Referring to fig. 4, when the self-sealing joint 211 moves towards the flow guiding socket 1 until one end of the sliding rod 21121 is inserted into the feeding port 1a, one end of the sliding rod 21121 abuts against the other end of the first blocking member 12, then the sliding rod 21121 continues to move downwards, the other end of the sliding rod 21121 is further pressed in a direction away from the flow guiding port 2111a, and the other end of the first blocking member 12 is further pressed in a direction away from the feeding port 1a, at this time, the flow guiding port 2111a is communicated with the feeding port 1a, i.e., the flow guiding port Yan Liaohu is communicated with the feeding port.
Specifically, the first blocking piece 12 includes a first hollowed-out plate, a first compression spring 122 and a baffle 121, two ends of the first compression spring 122 are respectively connected to the first hollowed-out plate and the baffle 121, the first hollowed-out plate is fixedly connected to the inner cavity wall of the first flow guide sleeve, and the baffle 121 is elastically abutted to one side of the feed inlet 1a.
More specifically, the second blocking component 2112 further includes a second hollow plate and a second compression spring 21122, two ends of the second compression spring 21122 are respectively and fixedly connected to the second hollow plate and the other end of the sliding rod 21121, the second hollow plate is fixedly connected to an inner cavity wall of the second flow guide sleeve 2111, and the other end of the sliding rod 21121 is elastically abutted to the flow guide opening 2111a.
It should be noted that the adsorption part 32 is an electromagnet or a vacuum chuck, the expansion part 31 is an air cylinder or an electric push rod, and the Yan Liaohu is provided with a material taking port for adding paint.
In the specific working process of the utility model, the adsorption part 32 is preferably an electromagnet, and the expansion part 31 is preferably a cylinder;
the output end of the air cylinder drives the electromagnet to move downwards, so that the electromagnet is attached to the top end of the pigment pot 21, then the electromagnet pushes Yan Liaohu downwards until the self-sealing joint 211 is inserted into the feed inlet 1a of the flow guide socket 1 in a matching mode, in the process, one end of the sliding rod 21121 abuts against the baffle 121, then the sliding rod 21121 continues to move downwards, the second compression spring 21122 is further pressed in the direction far away from the flow guide opening 2111a, the other end of the sliding rod 21121 is separated from the flow guide opening 2111a, meanwhile, the first compression spring 122 is further pressed in the direction far away from the feed inlet 1a, the baffle 121 is separated from the feed inlet 1a, and at the moment, the Yan Liaohu is communicated with the flow guide socket 1.
The output end of the air cylinder drives the electromagnet to move upwards, the electromagnet adsorbs the top end of Yan Liaohu so that the pigment pot 21 is separated from the diversion socket 1, the other end of the sliding rod 21121 is elastically abutted to one side of the diversion opening 2111a to close the diversion opening 2111a, meanwhile, the baffle 121 is elastically abutted to one side of the feed opening 1a to close the feed opening 1a, and finally the electromagnet releases Yan Liaohu.
The entire workflow is completed and the details not described in detail in this specification are well within the skill of those in the art.
The above description is only a preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any changes or substitutions that can be easily conceived by those skilled in the art within the technical scope of the present invention should be covered by the present invention.
Claims (10)
1. A paint color change mechanism, comprising: the device comprises a diversion socket, a color changing assembly and a telescopic adsorption assembly;
the flow guide socket is provided with a feeding hole and a discharging hole;
the color changing assembly comprises a plurality of pigment pots and a displacement piece, a plurality of Yan Liaohu are inserted on the displacement piece in a sliding mode, and the bottom end of Yan Liaohu is provided with a self-sealing joint; the displacement piece is in interference fit with the paint kettle and can switch the positions of the Yan Liaohu;
the telescopic adsorption assembly is provided with a telescopic part and an adsorption part, the output end of the telescopic part is fixed with the adsorption part so as to drive the adsorption part to move between a first position and a second position, when the adsorption part props against the top end of Yan Liaohu and moves from the first position to the second position, the self-sealing joint is inserted in the feed port in a matched mode, and Yan Liaohu is communicated with the discharge port; when the adsorption part adsorbs the top end of Yan Liaohu and moves from the second position to the first position, the adsorption part releases Yan Liaohu, the self-sealing joint is separated from the flow guide socket, and the self-sealing joint closes Yan Liaohu.
2. The paint color changing mechanism of claim 1 wherein the displacement member is a turntable, and a plurality of the Yan Liaohu are circumferentially and uniformly arranged on the turntable.
3. The paint color changing mechanism of claim 2 wherein the color changing assembly further comprises a rotary drive member drivingly connected to the turntable for driving the turntable in intermittent rotation.
4. The paint color changing mechanism of claim 3, wherein the rotary driving member comprises a speed reducing motor and a cam divider, an output end of the speed reducing motor is in transmission connection with the cam divider, and an output end of the cam divider is fixedly connected with the center of the rotary disc for driving the rotary disc to rotate intermittently.
5. The paint color changing mechanism of claim 1, wherein the flow guide socket comprises a first flow guide sleeve and a first block piece, and the self-sealing joint comprises a second flow guide sleeve and a second block piece;
the inner cavity of the first flow guide sleeve is respectively communicated with the feed port and the discharge port, one end of the first blocking piece is of a hollow structure and is fixed with the wall of the inner cavity of the first flow guide sleeve, and the other end of the first blocking piece is elastically abutted against one side of the feed port to be used for blocking the feed port;
the second flow guide sleeve is provided with a flow guide opening which can be communicated with the pigment kettle, the second blocking piece comprises a sliding rod, one end of the sliding rod penetrates through the flow guide opening in a sliding mode, and the other end of the sliding rod is located in an inner cavity of the second flow guide sleeve and is elastically abutted to one side of the flow guide opening so as to be used for closing the flow guide opening;
when the sliding rod is inserted in the feed port in a matching manner, the flow guide port is communicated with the discharge port.
6. The paint color-changing mechanism according to claim 5, wherein the first blocking member comprises a first hollow plate, a first compression spring and a baffle, two ends of the first compression spring are respectively and fixedly connected with the first hollow plate and the baffle, the first hollow plate is fixedly connected with the inner cavity wall of the first flow guide sleeve, and the baffle is elastically abutted against one side of the feed inlet.
7. The paint color-changing mechanism according to claim 5, wherein the second blocking piece further comprises a second hollowed-out plate and a second compression spring, two ends of the second compression spring are respectively and fixedly connected with the second hollowed-out plate and the other end of the slide bar, the second hollowed-out plate is fixedly connected with the inner cavity wall of the second flow guide sleeve, and the other end of the slide bar is elastically abutted to the flow guide opening.
8. The paint color changing mechanism of claim 1, wherein the attraction is an electromagnet.
9. The paint color changing mechanism of claim 1 wherein the telescoping portion is a cylinder.
10. The paint color changing mechanism according to claim 1, wherein a material taking port is formed in Yan Liaohu, and the material taking port is used for adding paint.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202221142412.5U CN217615431U (en) | 2022-05-11 | 2022-05-11 | Coating trades look mechanism |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202221142412.5U CN217615431U (en) | 2022-05-11 | 2022-05-11 | Coating trades look mechanism |
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CN217615431U true CN217615431U (en) | 2022-10-21 |
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CN202221142412.5U Active CN217615431U (en) | 2022-05-11 | 2022-05-11 | Coating trades look mechanism |
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2022
- 2022-05-11 CN CN202221142412.5U patent/CN217615431U/en active Active
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