CN212603948U - Silk screen printing frock - Google Patents

Silk screen printing frock Download PDF

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Publication number
CN212603948U
CN212603948U CN202020864184.7U CN202020864184U CN212603948U CN 212603948 U CN212603948 U CN 212603948U CN 202020864184 U CN202020864184 U CN 202020864184U CN 212603948 U CN212603948 U CN 212603948U
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China
Prior art keywords
magnetic
bottom plate
plate
screen printing
silk
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CN202020864184.7U
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Chinese (zh)
Inventor
代东洪
单聖钧
石豪杰
李庚�
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Aux Air Conditioning Co Ltd
Ningbo Aux Electric Co Ltd
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Aux Air Conditioning Co Ltd
Ningbo Aux Electric Co Ltd
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Priority to CN202020864184.7U priority Critical patent/CN212603948U/en
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Abstract

The utility model provides a silk screen printing frock, including bottom plate and at least one strutting arrangement, strutting arrangement set up in the bottom plate top and with the connection can be dismantled to the bottom plate, strutting arrangement be suitable for the bottom plate removes, strutting arrangement top is suitable for to place treat the seal work piece just treat the seal work piece with the strutting arrangement contact, silk screen printing frock, through set up the strutting arrangement who is used for supporting to treat the seal work piece on the bottom plate, strutting arrangement position on the bottom plate can quick adjustment to can be in order to adapt to the product of different specifications through adjusting strutting arrangement's position, one set of frock can the product of the different specifications of adaptation, has certain commonality, can effectively reduce the frock cost.

Description

Silk screen printing frock
Technical Field
The utility model relates to a screen printing equipment technical field particularly, relates to a silk screen printing frock.
Background
The silk screen printing has the advantages of large batch, low price, bright color, long storage life, fast delivery and the like, is accepted by more and more industries, and has wide application. One set of frock of present screen printing's frock only is applicable to a product, along with the diversification of customer's demand, the product kind is more and more, and the product of different specifications need be equipped with different frock, and corresponding frock quantity also increases, and the frock cost improves greatly.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model aims at providing a silk screen printing frock to solve one set of frock of current silk screen printing frock and only be applicable to a product, the product of different specifications need be equipped with different frock, and then leads to the technical problem that the frock is with high costs.
In order to solve the problem, the utility model provides a silk screen printing frock, including bottom plate and at least one strutting arrangement, strutting arrangement set up in the bottom plate top and with the connection can be dismantled to the bottom plate, strutting arrangement be suitable for the bottom plate removes, the strutting arrangement top is suitable for to place treat to print the work piece just treat to print the work piece with the strutting arrangement contact.
Optionally, the bottom plate includes a bottom plate body and a magnetic conductive plate disposed on the bottom plate body, and the supporting device is disposed above the magnetic conductive plate and magnetically connected to the magnetic conductive plate.
Optionally, the supporting device includes a magnetic base, an adjusting rod and a supporting block, which are sequentially arranged from bottom to top, the magnetic base is arranged above the magnetic conductive plate and magnetically connected with the magnetic conductive plate, one end of the adjusting rod is movably connected with the magnetic base, the other end of the adjusting rod is connected with the supporting block, and the workpiece to be printed is suitable for being placed above the supporting block and contacting with the supporting block.
Optionally, the adjusting rod is in threaded connection with the magnetic base, so that the adjustment of the distance between the supporting block and the magnetic base is realized through the rotation of the adjusting rod relative to the magnetic base.
Optionally, a threaded hole is formed in the magnetic base, and an external thread matched with the threaded hole is formed in the lower end of the adjusting rod to achieve threaded connection between the adjusting rod and the magnetic base.
Optionally, a concave portion is provided on an outer side wall of the adjusting rod, and the concave portion is used for being matched with a screwing tool to rotate the adjusting rod.
Optionally, the bottom plate further comprises a limiting structure, and the limiting structure is arranged on the periphery of the magnetic conduction plate.
Optionally, the limiting structure includes a first limiting plate and a second limiting plate that are perpendicular to each other, and a height of the first limiting plate and/or the second limiting plate is greater than or equal to a height of the supporting device.
Optionally, the magnetic base comprises: a first magnetized body; a second magnetized body which is arranged opposite to the first magnetized body and forms an accommodating space with the first magnetized body; the rotation set up in accommodation space's permanent magnet, when the magnetic pole at permanent magnet both ends is in the horizontal direction, the magnetic force seat actuation in the bottom plate, when the magnetic pole at permanent magnet both ends is in vertical direction, the magnetic force seat break away from in the bottom plate.
Optionally, the magnetic base further includes a non-magnetic-conductive partition plate disposed between the first magnetic receiving body and the second magnetic receiving body, and the first magnetic receiving body, the second magnetic receiving body, and the non-magnetic-conductive partition plate jointly enclose the accommodating space.
Optionally, the magnetic base further comprises a rotating handle, the rotating handle is fixedly connected with the permanent magnet, and the rotating handle is suitable for driving the permanent magnet to rotate.
Compared with the prior art, silk screen printing frock have following advantage:
silk screen printing frock, be used for supporting the strutting arrangement who treats the seal work piece through setting up on the bottom plate, strutting arrangement position on the bottom plate can quick adjustment to can be through the product of adjusting strutting arrangement's position in order to adapt to different specifications, one set of frock can the product of the different specifications of adaptation, has certain commonality, can effectively reduce the frock cost.
Drawings
Fig. 1 is a top view of a screen printing tool according to an embodiment of the present invention;
fig. 2 is a front view of a screen printing tool according to an embodiment of the present invention;
fig. 3 is a schematic perspective view of a screen printing tool according to an embodiment of the present invention;
FIG. 4 is an enlarged schematic view at A in FIG. 3;
fig. 5 is a schematic structural diagram of an adjusting rod of the screen printing tool according to the embodiment of the present invention;
fig. 6 is a schematic structural diagram of a support block of the screen printing tool according to the embodiment of the present invention;
FIG. 7 is a schematic view of the switch type magnetic base according to the embodiment of the present invention;
fig. 8 is a schematic diagram of a disengaged state of the switch type magnetic base according to the embodiment of the present invention.
Description of reference numerals:
1. the bottom plate comprises a bottom plate body 11, a bottom plate body 12, a magnetic conduction plate 13, a limiting structure 131, a first limiting plate 132, a second limiting plate 2, a supporting device 21, a magnetic base 211, a first magnetic receiving body 212, a second magnetic receiving body 213, a permanent magnet 214, a non-magnetic conduction partition plate 215, a rotating handle 22, an adjusting rod 221, a concave portion 23 and a supporting block.
Detailed Description
It should be noted that, in the present invention, the embodiments and features of the embodiments may be combined with each other without conflict.
An XYZ coordinate system is provided herein wherein a forward direction of the X axis represents the left direction, a reverse direction of the X axis represents the right direction, a forward direction of the Y axis represents the rear direction, a reverse direction of the Y axis represents the front direction, a forward direction of the Z axis represents the upper direction, and a reverse direction of the Z axis represents the lower direction.
In addition, the following description will be briefly made with reference to the orientation: the following directional or positional relationships, as indicated in the context of "front", "rear", "upper", "lower", "left", "right", etc., with respect to each structural member, are intended to refer to the orientation or positional relationship as shown in the drawings; these positional relationships are merely for convenience and simplicity of description and do not indicate or imply that the device referred to must have a particular orientation, be constructed and operated in a particular orientation, and are therefore not to be construed as limiting the invention.
If there is a description in an embodiment of the present invention referring to "first", "second", etc., the description of "first", "second", etc. is for descriptive purposes only and is not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated.
In this embodiment, the structure of the screen printing tool is described in a working state.
In order to make the aforementioned objects, features and advantages of the present invention more comprehensible, embodiments accompanied with figures are described in detail below.
As shown in fig. 1 and fig. 2, the present embodiment provides a screen printing tool, which includes a bottom plate 1 and at least one supporting device 2, the number of the supporting devices 2 may be selected according to the size of a workpiece to be printed, in the present embodiment, the number of the supporting devices 2 is 6, and effective support for most of the workpieces to be printed can be completed through the arrangement and combination of the 6 supporting devices 2. Support arrangement 2 set up in 1 top of bottom plate and with the connection can be dismantled to bottom plate 1, specifically, support arrangement 2 can be connected with bottom plate block, threaded connection or magnetic connection, preferably, in this embodiment, support arrangement 2 and 1 magnetic connection of bottom plate to be convenient for adjust the position of support arrangement 2 on bottom plate 1 fast, thereby adapt to the work piece of treating of different sizes, shape. The support device 2 is suitable for moving relative to the base plate 1, a workpiece to be printed is placed above the support device 2, and the workpiece to be printed is in contact with the support device 2. The workpiece to be printed can be an air-conditioning part such as an air-conditioning panel, an air-conditioning side plate and the like.
As shown in fig. 1, the bottom plate 1 includes a bottom plate body 11 and a magnetic conductive plate 12 disposed on the bottom plate body 11, and the bottom plate body 11 and the magnetic conductive plate 12 can be fixedly connected by welding or bolting, in this embodiment, corresponding screw holes are respectively disposed on the bottom plate body 11 and the magnetic conductive plate 12, and are fixedly connected by bolts, so that the magnetic conductive plate 12 is convenient to replace in time after being worn. The supporting device 2 is disposed above the magnetic conductive plate 12 and magnetically connected to the magnetic conductive plate 12. In this embodiment, the magnetic conductive plate 12 may be an iron plate, an iron-aluminum alloy plate, or the like, and has a good magnetic conductive effect, so that the supporting device 2 is magnetically connected to the magnetic conductive plate 12. The bottom plate body 11 can be a bakelite plate, so that the bottom plate has good corrosion resistance and high strength.
As shown in fig. 3, 4 and 5, the supporting device 2 includes a magnetic base 21, an adjusting rod 22 and a supporting block 23, which are sequentially arranged from bottom to top, the magnetic base 21 may be an on-off magnetic base, and the magnetic base 21 is switched to control whether the magnetic base 21 is magnetically connected to the bottom plate 1. The adjusting rod 22 is of a cylindrical structure, a concave part 221 is formed in the side wall of the adjusting rod 22, the concave part 221 is used for being matched with a screwing tool to rotate the adjusting rod 22, the slipping phenomenon is avoided, and the use experience is improved. The screwing tool may be a conventional tool such as a wrench. The support block 23 may be a crown cap made of polyurethane material so that it does not cause wear to the workpiece to be printed. As shown in fig. 6, the middle portion of the supporting block 23 may be a hollow structure for engaging with the end portion of the adjusting rod 22, so as to be assembled tightly and be replaced easily. The magnetic base 21 is disposed above the magnetic conductive plate 12 and magnetically connected to the magnetic conductive plate 12, one end of the adjusting rod 22 is movably connected to the magnetic base 21, specifically, the adjusting rod 22 is in threaded connection with the magnetic base 21, and the adjusting rod 22 can be telescopically adjusted in the magnetic base 21, so that the adjustment of the distance between the supporting block 23 and the magnetic base 21 is realized by the rotation of the adjusting rod 22 relative to the magnetic base 21, and the height of the supporting device 2 for supporting different positions of the workpiece to be printed is adjusted according to the actual appearance of the workpiece to be printed. Specifically, a threaded hole is formed in the magnetic base 21, and an external thread matched with the threaded hole is formed at the lower end of the support rod 22. The other end of the adjusting rod 22 is connected with the supporting block 23, specifically, the supporting block 23 is clamped and sleeved at the end of the adjusting rod 22, and the workpiece to be printed is suitable for being placed above the supporting block 23 and contacting with the supporting block 23.
As shown in fig. 1, bottom plate 1 still includes limit structure 13, limit structure 13 set up in when the work piece of waiting to print is placed on strutting arrangement in the periphery of magnetic conduction board 12, carries out the butt with limit structure 13 simultaneously, and limit structure 13 can be waited to print the fore-and-aft direction of work piece and left and right sides orientation and carry on spacingly, avoids waiting to print the work piece and being slided relative to the bottom plate in by the printing process, influences the silk screen printing effect. Understandably, the direction of the screen printing is towards the position of the limiting structure, so that when the screen is applied to the workpiece to be printed, the workpiece to be printed is fixedly abutted against the limiting structure 13 in the rolling direction of the screen, and the screen printing precision is ensured.
As shown in fig. 3, the limiting structure 13 includes a first limiting plate 131 and a second limiting plate 132 that are perpendicular to each other, and understandably, the first limiting plate 131 and the second limiting plate 132 may be disposed adjacently, or disposed at intervals, and only need to limit the to-be-printed workpiece on two perpendicular edges at the same time, that is, the position of the to-be-printed workpiece is not moved. The height of the first and/or second limiting plate 131, 132 is greater than or equal to the height of the support device 2. In this embodiment, the height of the first limiting plate 131, the second limiting plate 132 and the supporting device 2 means the size of the first limiting plate 131, the second limiting plate 132 and the supporting device 2 in the Z-axis direction, and when the height of the first limiting plate 131 and the height of the second limiting plate 132 are greater than or equal to the height of the supporting device 2, the limiting structure 13 formed by the first limiting plate 131 and the second limiting plate 132 can better limit the position of the workpiece to be printed, so that the workpiece to be printed is prevented from sliding out from the top end of the limiting structure.
As shown in fig. 3, limit structure 13 still includes the third limiting plate, just the third limiting plate with second limiting plate 132 homonymy sets up, specifically, third limiting plate and second limiting plate 132 all set up on the long edge of bottom plate, and in this embodiment, third limiting plate and second limiting plate 132 parallel arrangement, preferably, third limiting plate and second limiting plate 132 set up in same vertical plane, when treating the length of seal work piece great, the ascending size in X axle direction is great promptly, can further guarantee limit structure and treat the spacing effect of seal work piece.
As shown in fig. 7 and 8, the magnetic base 21 includes: a first magnetized body 211; a second magnetized body 212 disposed opposite to the first magnetized body 211 and forming an accommodating space with the first magnetized body 211; specifically, each of the first magnet receiver 211 and the second magnet receiver 212 is made of a ferrite material that is easily magnetized and demagnetized, and the first magnet receiver 211 and the second magnet receiver 212 are combined together to form a substantially cylindrical accommodation space in the middle thereof.
In other embodiments, in order to protect the first and second magnetized bodies 211 and 212 from being damaged, a casing made of cast iron is disposed outside the first and second magnetized bodies 211 and 212, the first and second magnetized bodies 211 and 212 are in a semicircular structure, the casing is in an inner-circle and outer-square structure, the first and second magnetized bodies 211 and 212 are attached to the inner side of the casing, and the outer side of the casing is in a square structure, so that the casing can be stably placed on the bottom plate.
The magnetic base 21 further includes a permanent magnet 213 rotatably disposed in the receiving space, as shown in fig. 7, when the magnetic poles at the two ends of the permanent magnet 213 are in the horizontal direction, the magnetic base 21 is attracted to the bottom plate 1, as shown in fig. 8, when the magnetic poles at the two ends of the permanent magnet 213 are in the vertical direction, the magnetic base 21 is separated from the bottom plate 1, in this embodiment, the horizontal direction is the X-axis direction, the vertical direction is the Z-axis direction, when the two poles (N or S) of the permanent magnet are in the horizontal direction, that is, the N pole and the S pole of the permanent magnet are opposite to the magnetized body, the magnetized body 213 is magnetized, and the vertical direction has strong magnetism, so that the magnetic base can be used for attracting the surface of the bottom plate. When the two poles of the permanent magnet 213 are in the vertical direction, and the middle of the N pole and the S pole is directly opposite to the connection gap between the first magnet receiver 211 and the second magnet receiver 212 (the middle of the elongated magnet has only a very small magnetic property, which can be ignored), the magnet receiver cannot be magnetized, so that the magnetic base 21 has almost no magnetic force, and can be considered to be in a disengaged state, and can easily move on the upper surface of the bottom plate 1, and further move and adjust the position of the support device 2. The magnetic base 21 can be quickly adjusted in the plane of the bottom plate 1 by utilizing the characteristic that the magnetic base 21 has quick tightness.
As shown in fig. 7 and 8, the magnetic base 21 further includes a non-magnetic-conductive spacer plate 214 disposed between the first magnet receiver 211 and the second magnet receiver 212, the first magnet receiver 211, the second magnet receiver 212, and the non-magnetic-conductive spacer plate 214 together enclose the accommodating space, the non-magnetic-conductive spacer plate 214 may be a copper spacer plate or a non-metal spacer plate, and the first magnet receiver 211, the second magnet receiver 212, and the non-magnetic-conductive spacer plate 214 are welded together.
As shown in fig. 4, the magnetic base 21 further includes a rotating handle 215, the rotating handle 215 is fixedly connected to the permanent magnet 213, and the rotating handle 215 is adapted to drive the permanent magnet 213 to rotate, so that the rotating handle 215 can rotate the permanent magnet to adjust the magnetic pole direction of the permanent magnet.
The inner permanent magnet 213 is rotated by rotating the handle 215. It can be understood that when the N pole and the S pole at the two ends of the permanent magnet 213 are located in the horizontal direction, the magnetic force lines respectively face the two magnetized bodies, and at this time, the magnetic force lines are closed from the N pole to the first magnetized body 211 to the bottom plate to the second magnetized body 212 to the S pole, and can be firmly adsorbed on the bottom plate, the magnetic force base 21 has strong magnetic force, and when the N pole and the S pole at the two ends of the permanent magnet 213 are located in the vertical direction, the magnetic force lines are disconnected, and no adsorption force exists, so that the position adjustment and other operations can be performed.
Although the present invention is disclosed above, the present invention is not limited thereto. Various changes and modifications may be effected therein by one of ordinary skill in the pertinent art without departing from the scope or spirit of the present invention, and the scope of the present invention is defined by the appended claims.

Claims (11)

1. The utility model provides a silk screen printing frock, its characterized in that includes bottom plate (1) and at least one strutting arrangement (2), strutting arrangement (2) set up in bottom plate (1) top and with bottom plate (1) can dismantle the connection, strutting arrangement (2) be suitable for bottom plate (1) removes, strutting arrangement (2) top is suitable for to place and treats the seal work piece just treat the seal work piece with strutting arrangement (2) contact.
2. The silk-screen printing tool according to claim 1, wherein the bottom plate (1) comprises a bottom plate body (11) and a magnetic conduction plate (12) arranged on the bottom plate body (11), and the supporting device (2) is arranged above the magnetic conduction plate (12) and is magnetically connected with the magnetic conduction plate (12).
3. The silk-screen printing tool according to claim 2, wherein the supporting device (2) comprises a magnetic base (21), an adjusting rod (22) and a supporting block (23) which are sequentially arranged from bottom to top, the magnetic base (21) is arranged above the magnetic conductive plate (12) and is magnetically connected with the magnetic conductive plate (12), one end of the adjusting rod (22) is movably connected with the magnetic base (21), the other end of the adjusting rod (22) is connected with the supporting block (23), and the workpiece to be printed is suitable for being placed above the supporting block (23) and is in contact with the supporting block (23).
4. The silk-screen printing tool according to claim 3, wherein the adjusting rod (22) is in threaded connection with the magnetic base (21) so as to adjust the distance between the supporting block (23) and the magnetic base (21) through rotation of the adjusting rod (22) relative to the magnetic base (21).
5. The silk-screen printing tool according to claim 4, wherein a threaded hole is formed in the magnetic base (21), and an external thread matched with the threaded hole is formed at the lower end of the adjusting rod (22) so as to realize threaded connection between the adjusting rod (22) and the magnetic base (21).
6. The silk-screen tool as claimed in claim 4, wherein a recess (221) is provided on an outer side wall of the adjusting rod (22), and the recess (221) is used for cooperating with a screwing tool to rotate the adjusting rod (22).
7. The silk-screen printing tool according to claim 2, wherein the bottom plate (1) further comprises a limiting structure (13), and the limiting structure (13) is arranged on the periphery of the magnetic conductive plate (12).
8. The silk-screen printing tooling as claimed in claim 7, wherein the limiting structure (13) comprises a first limiting plate (131) and a second limiting plate (132) which are perpendicular to each other, and the height of the first limiting plate (131) and/or the height of the second limiting plate (132) are greater than or equal to the height of the supporting device (2).
9. The silk-screen printing tool according to claim 3, wherein the magnetic base (21) comprises:
a first magnetized body (211);
a second magnetic body (212) that is disposed opposite to the first magnetic body (211) and forms an accommodation space with the first magnetic body (211);
rotate set up in accommodation space's permanent magnet (213), work as when the magnetic pole at permanent magnet (213) both ends is in the horizontal direction, magnetic force seat (21) actuation in bottom plate (1), work as when the magnetic pole at permanent magnet (213) both ends is in vertical direction, magnetic force seat (21) break away from in bottom plate (1).
10. The silk-screen printing tool according to claim 9, wherein the magnetic base (21) further comprises a non-magnetic-conductive partition plate (214) arranged between the first magnet-receiving body (211) and the second magnet-receiving body (212), and the first magnet-receiving body (211), the second magnet-receiving body (212) and the non-magnetic-conductive partition plate (214) jointly enclose the accommodating space.
11. The silk-screen printing tool according to claim 10, wherein the magnetic base (21) further comprises a rotating handle (215), the rotating handle (215) is connected with the permanent magnet (213), and the rotating handle (215) is suitable for driving the permanent magnet (213) to rotate.
CN202020864184.7U 2020-05-21 2020-05-21 Silk screen printing frock Active CN212603948U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020864184.7U CN212603948U (en) 2020-05-21 2020-05-21 Silk screen printing frock

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020864184.7U CN212603948U (en) 2020-05-21 2020-05-21 Silk screen printing frock

Publications (1)

Publication Number Publication Date
CN212603948U true CN212603948U (en) 2021-02-26

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ID=74750406

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020864184.7U Active CN212603948U (en) 2020-05-21 2020-05-21 Silk screen printing frock

Country Status (1)

Country Link
CN (1) CN212603948U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114701248A (en) * 2022-04-02 2022-07-05 青岛海尔空调器有限总公司 Silk-screen tool for air conditioner

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114701248A (en) * 2022-04-02 2022-07-05 青岛海尔空调器有限总公司 Silk-screen tool for air conditioner
CN114701248B (en) * 2022-04-02 2024-01-16 青岛海尔空调器有限总公司 Silk screen tooling for air conditioner

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