CN212617489U - Printing platform test instrument presss from both sides dress structure - Google Patents

Printing platform test instrument presss from both sides dress structure Download PDF

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Publication number
CN212617489U
CN212617489U CN202021058172.1U CN202021058172U CN212617489U CN 212617489 U CN212617489 U CN 212617489U CN 202021058172 U CN202021058172 U CN 202021058172U CN 212617489 U CN212617489 U CN 212617489U
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China
Prior art keywords
horizontal
bracket
guide rail
test instrument
vertical support
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CN202021058172.1U
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Chinese (zh)
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张永涛
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Shanghai Shengyang Digital Equipment Co ltd
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Shanghai Shengyang Digital Equipment Co ltd
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Abstract

The utility model relates to a digital printing apparatus technical field, concretely relates to print platform test instrument presss from both sides dress structure, it is equipped with the clamp dress mouth that presss from both sides dress test instrument including pressing from both sides the dress platform on, presss from both sides the dress platform and connects a level to the guide rail, and the level sets up on a horizontal stand to the guide rail, and a vertical support is connected to the horizontal stand, through vertical leg joint print platform. The utility model discloses simple structure easily makes and uses, has effectively improved the structural stability of the test instrument of industrial digital printing equipment installation when the test, has correspondingly promoted the timing precision.

Description

Printing platform test instrument presss from both sides dress structure
Technical Field
The utility model relates to a digital printing apparatus technical field, concretely relates to print platform test instrument presss from both sides dress structure.
Background
Industrial digital printers, which are adapted to correct each position point on the printed web before starting the printer, usually rely on a separate detection device. However, since such a detection device is usually independently fixed, the positioning accuracy often decreases due to loose fixation or relative movement with the printer support, for example, when positioning each point, the calibration accuracy is affected due to slight shaking of the test head, and finally the calibration result becomes unreliable.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a print platform test instrument presss from both sides dress structure, technical problem more than solving.
The utility model provides a technical problem can adopt following technical scheme to realize:
a clamping structure of a printing platform test instrument comprises a clamping table, wherein a clamping opening for clamping the test instrument is formed in the clamping table, the clamping table is connected with a horizontal guide rail, the horizontal guide rail is arranged on a horizontal support, the horizontal support is connected with a vertical support, and the vertical support is connected with the printing platform.
The utility model discloses a set up and press from both sides the dress platform, the level is to the guide rail, horizontal stand and vertical support, the biax location of test instrument in the plane has been realized, dress bench centre gripping test instrument is pressing from both sides after, it is reciprocal linear motion to make to press from both sides the dress platform to the guide rail through the level, so that adjust the test point in the position of certain coordinate axis, the test point position generally is the position of each point on the printing breadth of industry digital printer, select different points to survey the positioning accuracy and the data such as fluctuation height of breadth according to the test needs, through the reciprocal rectilinear movement of vertical support on print platform, realize that test instrument is in another epaxial location of sitting with the level to the direction vertically of guide rail.
And the vertical support is provided with a vertical support fixing hole, so that the vertical support is connected with the frame of the printer conveniently.
The utility model discloses when carrying out fixed connection to vertical support, direct printer is not connected, but realize indirect formula through the moving mechanism on the linear guide of mobilizable platform truck or printer self and connect, when using the platform truck to connect, can set up the guide rail or the guide rail groove that supply the platform truck to be sharp reciprocating motion in the frame of printer to the platform truck, when the moving mechanism who borrows printer self connects, then need set up in advance on this moving mechanism another to the fixed orifices with vertical support fixed orifices pairs.
The vertical support fixing holes are vertically arranged waist-shaped holes, and the height of the vertical support can be integrally adjusted by arranging the vertical waist-shaped holes.
The utility model discloses during the use, when being connected vertical support (through the platform truck) with the frame of printer, the level of the vertical support of accessible fixed orifices adjustment, thereby correspond different test instrument's test head length, also can avoid when installing test instrument and press from both sides the bench centre gripping, lead to the test head to rock because of the height-holding can not adjust in a flexible way, during general centre gripping, the selection of clamping position makes it difficult for rocking after pressing from both sides the test head tight as accurate, at this moment, just can realize the further height control of test head through vertical support wholly shifts up or moves down.
The vertical support fixed orifices are provided with two, two the vertical support fixed orifices are adjacent and set up on the vertical support mutually in parallel about.
The utility model discloses a vertical support fixed orifices that sets up two waist shape pore structure can further increase the structural strength of vertical support after fixed, has improved the stability of vertical support when removing.
The horizontal support is provided with an upper cushion block, the length of the upper cushion block is not more than 1/3 of the length of the horizontal support, the upper cushion block is connected with the upper end face of the horizontal support, one side end face of the upper cushion block is flush with one side end face of the horizontal support, which is connected with the vertical support, so that the upper cushion block is abutted against the vertical support to form a supporting structure after the horizontal support is connected with the vertical support, and the connecting strength of the horizontal support is improved.
The upper cushion block and the horizontal bracket are of an integrally formed structure.
The horizontal bracket is provided with a lateral cushion block which is arranged on the surface of one side of the horizontal bracket, which is provided with the horizontal guide rail,
and one side surface of the lateral cushion block is flush with one side end face of the horizontal support connected with the vertical support, so that the lateral cushion block equivalently increases the contact area of the horizontal support and the vertical support, and the structural strength of connection can be effectively improved. Preferably, the surface of one side of the horizontal bracket, on which the horizontal guide rail is not arranged, is provided with another side cushion block, and the two side cushion blocks are symmetrically arranged.
And weight reducing holes are formed in the horizontal support and the upper cushion block.
The weight-reducing opening is a waist-shaped hole with the length direction in the horizontal direction.
Has the advantages that: due to the adoption of the technical scheme, the utility model discloses simple structure easily makes and uses, has effectively improved the structural stability of the test instrument of industrial digital printing equipment installation when the test, has correspondingly promoted the timing precision.
Drawings
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic structural diagram of fig. 1 when the viewing angle is rotated 90 degrees counterclockwise along the horizontal plane.
Detailed Description
In order to make the technical means, creation features, achievement purposes and functions of the present invention easy to understand, the present invention will be further explained with reference to the specific drawings. It is noted that the terms "first," "second," "third," "fourth," and the like (if any) in the description and in the claims of the present invention are used for distinguishing between similar elements and not necessarily for describing a particular sequential or chronological order. It will be appreciated that the data so used may be interchanged under appropriate circumstances such that the embodiments described herein may be practiced otherwise than as specifically illustrated or described herein. Furthermore, the terms "comprises" or "comprising," and any variations thereof, are intended to cover non-exclusive inclusions, such that a product or apparatus that comprises a list of elements or units is not necessarily limited to those elements or units expressly listed, but may include other elements or units not expressly listed or inherent to such product or apparatus.
Referring to fig. 1 and 2, a clamping structure of a printing platform test instrument includes a clamping table 100, on which a clamping opening for clamping the test instrument is disposed, the clamping table 100 is connected to a horizontal guide rail 200, the horizontal guide rail 200 is disposed on a horizontal bracket 300, the horizontal bracket 300 is connected to a vertical bracket 400, and the vertical bracket 400 is connected to the printing platform.
It should be noted that, when the present invention is connected to an industrial digital printer, the present invention is generally connected to a frame of the printer, and one side of the frame is a printing table. In order to allow the vertical support to freely move back and forth along a certain linear direction of the printer frame, a trolley may be disposed on the printer frame, for example, a guide rail or a guide rail groove that can be matched with the trolley is disposed on the frame, and a guide rail groove or a guide rail corresponding to the guide rail groove or the guide rail is disposed on the trolley, so that the trolley can linearly reciprocate along the frame. After the vertical support is installed and fixed on the trolley, the linear reciprocating movement of the vertical support can be realized. In addition, the effect of reciprocating the vertical support can also be achieved by directly using the ink box moving mechanism of the printer. The ink cartridge moving mechanism includes a moving mechanism casing on which a plurality of ink cartridges for printing are mounted, the casing being disposed on a linear guide rail fixed in a printer frame. In order to fix the vertical support, a fastener hole position convenient for fixing the vertical support needs to be formed in the moving mechanism shell in advance, the vertical support is installed on the moving mechanism shell when a test is needed, the moving mechanism shell can move along the linear guide rail after the ink box moving mechanism works through the test function of the printer, and therefore the linear reciprocating motion of the vertical support is achieved. In addition, the reciprocating linear movement of the vertical support can be realized by a linear guide rail of an ink box moving mechanism of the printer under the condition that an additional guide rail groove is not formed or an additional guide rail is arranged on the rack. That is, the carriage for mounting and fixing the vertical support is directly mounted to the linear guide and moves together with the moving mechanism housing of the ink cartridge, and its structure corresponds to another moving mechanism housing to which the ink cartridge is not mounted.
The utility model discloses be convenient for realize being connected of the frame of vertical support and printer, be equipped with vertical support fixed orifices 401 on vertical support 400. When the vertical stand 400 is connected to the printer, the printer is not directly connected, but indirectly connected by a carriage movable in a linear direction of the printer or by a moving mechanism on a linear guide of the printer itself. When the trolley is used for connection, a guide rail or a guide rail groove for the trolley to do linear reciprocating movement can be formed in the rack of the printer aiming at the trolley, and when the trolley is connected by a moving mechanism of the printer, another pair of fixing holes matched with the fixing holes of the vertical support needs to be formed in the moving mechanism in advance.
In some preferred embodiments, the vertical bracket fixing holes 401 are vertically arranged waist-shaped holes, so that the vertical bracket 400 can be integrally adjusted in height relative to a linear guide rail of a trolley or a printer by arranging the vertical waist-shaped holes, and the waist-shaped hole structure is vertically arranged.
In other preferred embodiments, the vertical stand fixing holes 401 may be arranged in groups, and as shown in fig. 1 and 2, there are two vertical stand fixing holes 401, and two vertical stand fixing holes 401 are arranged on the vertical stand 400 adjacent to each other in the left-right direction and in parallel to each other. In addition, the waist-shaped hole can be vertically slotted downwards along the top end of the vertical support to the position above the joint of the waist-shaped hole and the horizontal support, so that the height adjusting range is enlarged, and the weight of the vertical support can be reduced.
The utility model discloses in, in order to increase the joint strength between horizontal stand and the vertical support, can set up upper portion cushion 500 on horizontal stand 300. The length of the upper head block 500 does not exceed 1/3 the length of the horizontal bracket 300. The upper pad 500 is coupled to an upper end surface of the horizontal bracket 300.
One side end surface of the upper cushion block 500 is flush with one side end surface of the horizontal bracket 300 connected with the vertical bracket 400, so that the upper cushion block 500 abuts against the vertical bracket 400 to form a supporting structure after the horizontal bracket 300 is connected with the vertical bracket 400, and the connecting strength of the horizontal bracket 300 is improved.
The upper cushion block 500 and the horizontal bracket 300 may be integrally formed, or may be connected to each other by welding.
The utility model discloses in, for further increase the joint strength of horizontal stand and vertical support, keep the stability of horizontal stand when the straight reciprocating motion is to vertical support, can set up a side cushion 600 on horizontal stand 300, side cushion 600 sets up in a side surface that is equipped with the level of horizontal stand 300 to guide rail 200, and a side surface of lateral part cushion 600 flushes with a side end face that is connected with vertical support 400 of horizontal stand 300, thereby make lateral part cushion 600 be equivalent to the area that has increased the contact surface that horizontal stand 300 and vertical support 400 contacted each other, structural strength and the stability of connection can effectively be improved.
In some preferred embodiments, the horizontal bracket is provided with another side cushion block on the surface of the side which is not provided with the horizontal guide rail, and the two side cushion blocks are symmetrically arranged.
The utility model discloses in, in order to make horizontal stand remain stable at the removal in-process, reduce the range of rocking, carried out to subtract heavy processing to horizontal stand, as shown in fig. 1, set up on the horizontal stand 300 and subtract heavy trompil 301, its length setting along horizontal stand 300, and set up to waist shape hole structure.
In some preferred embodiments, the horizontal brackets above and below the horizontal guide rail are provided with weight-reducing openings.
In addition, the upper spacer 500 may be provided with lightening holes, and as shown in fig. 1, the upper spacer 500 may be provided with lightening holes 501.
The utility model discloses in, for the press from both sides dress platform of adaptation isostructure, can set up and press from both sides dress platform support 101, connect the level through pressing from both sides dress platform support 101 to guide rail 200 with press from both sides dress platform 100. One side surface of the clamping table bracket 101 is provided with a clamping groove clamped on the horizontal guide rail 200, and the other side surface is connected with the clamping table 100.
The utility model is suitable for an application scenario of industry digital printer, press from both sides the dress platform through the setting, the level is to the guide rail, horizontal stand and vertical support, the biaxial location of test instrument in the plane has been realized, after pressing from both sides dress bench centre gripping test instrument, make to press from both sides the dress platform to the guide rail through the level and be reciprocal linear motion, so that the adjustment test point is in the position of certain coordinate axis, the test point position generally is the position of each point on the printing breadth of industry digital printer, select different points to survey the positioning accuracy and the data such as undulation height of breadth according to the test needs, through the reciprocal linear motion of vertical support on print platform, realize that test instrument is sitting epaxial location with the level to another of the direction vertically of guide rail.
The basic principles and the main features of the invention and the advantages of the invention have been shown and described above. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (10)

1. The clamping structure is characterized in that the clamping table is connected with a horizontal guide rail, the horizontal guide rail is arranged on a horizontal support, the horizontal support is connected with a vertical support, and the printing platform is connected through the vertical support.
2. The printing platform test instrument clamping structure as claimed in claim 1, wherein the vertical support is provided with a vertical support fixing hole.
3. The printing platform test instrument clamping structure according to claim 2, wherein the vertical support fixing hole is a vertically arranged kidney-shaped hole.
4. The printing platform test instrument clamping structure according to claim 3, wherein two vertical bracket fixing holes are formed, and the two vertical bracket fixing holes are arranged on the vertical bracket in a left-right adjacent manner and in parallel with each other.
5. The clamping structure for the testing instrument of the printing platform as claimed in any one of claims 1 to 4, wherein the horizontal bracket is provided with an upper cushion block, the length of the upper cushion block is not more than 1/3 of the length of the horizontal bracket, the upper cushion block is connected with the upper end surface of the horizontal bracket, and one side end surface of the upper cushion block is flush with one side end surface of the horizontal bracket connected with the vertical bracket.
6. The printing platform test instrument clamping structure of claim 5, wherein the upper cushion block and the horizontal bracket are of an integrally formed structure.
7. The clamping structure of claim 5, wherein a lateral pad block is disposed on the horizontal bracket, the lateral pad block is disposed on a lateral surface of the horizontal bracket on which the horizontal guide rail is disposed, and a lateral surface of the lateral pad block is flush with a lateral end surface of the horizontal bracket connected to the vertical bracket.
8. The clamping structure of claim 7, wherein the surface of the horizontal bracket on the side where the horizontal guide rail is not located is provided with another side block, and the two side blocks are symmetrically located.
9. The clamping structure of claim 5, wherein the horizontal support and the top pad have weight-reducing openings.
10. The clamping structure of a printing platform test instrument according to claim 9, wherein the weight-reducing opening is a waist-shaped hole with a horizontal length direction.
CN202021058172.1U 2020-06-10 2020-06-10 Printing platform test instrument presss from both sides dress structure Active CN212617489U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021058172.1U CN212617489U (en) 2020-06-10 2020-06-10 Printing platform test instrument presss from both sides dress structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021058172.1U CN212617489U (en) 2020-06-10 2020-06-10 Printing platform test instrument presss from both sides dress structure

Publications (1)

Publication Number Publication Date
CN212617489U true CN212617489U (en) 2021-02-26

Family

ID=74715461

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021058172.1U Active CN212617489U (en) 2020-06-10 2020-06-10 Printing platform test instrument presss from both sides dress structure

Country Status (1)

Country Link
CN (1) CN212617489U (en)

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