CN216123096U - Mounting bracket for mounting photoelectric switch - Google Patents

Mounting bracket for mounting photoelectric switch Download PDF

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Publication number
CN216123096U
CN216123096U CN202121699977.9U CN202121699977U CN216123096U CN 216123096 U CN216123096 U CN 216123096U CN 202121699977 U CN202121699977 U CN 202121699977U CN 216123096 U CN216123096 U CN 216123096U
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Prior art keywords
mounting
hole
photoelectric switch
plate
mounting panel
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CN202121699977.9U
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Chinese (zh)
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刘涛
王金权
史雪丽
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Gansu Guangxuan High End Equipment Industry Co ltd
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Gansu Guangxuan High End Equipment Industry Co ltd
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Abstract

The utility model relates to a mounting bracket for installing photoelectric switch, including first mounting panel and second mounting panel, the second mounting panel is used for being connected with the frame, and first mounting panel is formed with the arc regulation hole along the movably connection of upper and lower direction in second mounting panel on the first mounting panel, and the arc regulation hole is used for supplying fastening photoelectric switch's first bolt to pass, and first bolt can remove in the arc regulation hole. First mounting panel is along the mobilizable connection in the second mounting panel of upper and lower direction, like this, can adjust the distance between first mounting panel and the second mounting panel, thereby adjust the photoelectric switch distance and wait to detect the distance of article, realize the regulation to the photoelectric switch position, when needs adjust this photoelectric switch's angle, can adjust the position of first bolt in the arc adjustment hole through rotating, in order to realize the regulation to the photoelectric switch angle, thereby reduce or avoid light source or glass itself to the influence of photoelectric switch signal, promote the stability and the accuracy of detection.

Description

Mounting bracket for mounting photoelectric switch
Technical Field
The disclosure relates to the technical field of supports, in particular to a mounting support for mounting a photoelectric switch.
Background
The photoelectric switch is a kind of sensor, and uses the sheltering or reflection of the detected object to the light beam, and the synchronous loop gates the circuit, thereby detecting the existence of the object. In the glass production process, generally through support with photoelectric switch fixed mounting in assigned position, detect the existence of production in-process glass, however, in the testing process, lighting source and glass inspection power supply produce the interference to photoelectric switch signal easily, and the stability of photoelectric switch signal also can be influenced to the surface luminance or the reflection rate of glass itself in addition, have among the prior art inconveniently to carry out the problem of adjusting to photoelectric switch's angle and position.
SUMMERY OF THE UTILITY MODEL
The purpose of this disclosure is to provide a mounting bracket for installing photoelectric switch to solve the technical problem that exists among the prior art.
In order to realize the above-mentioned purpose, this disclosure provides a installing support for installing photoelectric switch, including first mounting panel and second mounting panel, the second mounting panel is used for being connected with the frame, first mounting panel along the movably connection of upper and lower direction in the second mounting panel, be formed with the arc regulation hole on the first mounting panel, the arc regulation hole is used for supplying fastening photoelectric switch's first bolt to pass, just first bolt can remove in the arc regulation hole.
Optionally, the number of the arc-shaped adjusting holes is two, and the two arc-shaped adjusting holes are in mirror symmetry.
Optionally, a mounting hole is further formed in the first mounting plate, and the two arc-shaped adjusting holes are located on two sides of the mounting hole.
Optionally, the mounting hole is formed as an elongated hole.
Optionally, a central angle corresponding to the arc-shaped adjusting hole is greater than 0 ° and less than 90 °.
Optionally, the first mounting panel includes first diaphragm and first riser, first diaphragm and first riser constitute L shape, the arc adjustment hole is formed on the first diaphragm, the first riser along upper and lower direction movably connect in the second mounting panel.
Optionally, a first connecting hole is formed in the first riser, a second connecting hole is formed in the second mounting plate, one of the first connecting hole and the second connecting hole is formed as a long hole extending in the up-down direction, and the first connecting hole and the second connecting hole are used for a second bolt to pass through.
Alternatively, the other of the first connection hole and the second connection hole is formed as an elongated hole extending in the left-right direction.
Optionally, the second mounting panel includes second diaphragm and second riser, second diaphragm and second riser constitute L shape, first mounting panel along upper and lower direction movably connect in the second riser, the second diaphragm movably connect in the frame.
Optionally, a third connecting hole for passing a third bolt is formed in the second cross plate, and the third connecting hole is formed as an elongated hole extending in the front-rear direction.
Through the technical scheme, first mounting panel is along the mobilizable connection in the second mounting panel of upper and lower direction, thus, through the relative movement between first mounting panel and the second mounting panel, can adjust the distance between first mounting panel and the second mounting panel, thereby adjust the photoelectric switch distance and wait to detect the distance of article, in addition, when needs adjust this photoelectric switch's angle, can adjust the position of first bolt in the arc adjustment hole, realize the regulation to photoelectric switch detection angle, thereby reduce or avoid the influence of illumination light source or glass itself to photoelectric switch signal, promote photoelectric switch detection's stability and accuracy.
Additional features and advantages of the disclosure will be set forth in the detailed description which follows.
Drawings
The accompanying drawings, which are included to provide a further understanding of the disclosure and are incorporated in and constitute a part of this specification, illustrate embodiments of the disclosure and together with the description serve to explain the disclosure without limiting the disclosure. In the drawings:
FIG. 1 is a schematic perspective view of a mounting bracket provided in an exemplary embodiment of the present disclosure;
FIG. 2 is a schematic perspective view of another angle of a mounting bracket provided in an exemplary embodiment of the present disclosure.
Description of the reference numerals
1-mounting a bracket; 10-a first mounting plate; 110-a first transverse plate; 1101-arc-shaped adjustment holes; 1102-a first bolt; 1103-mounting holes; 1104-fixing bolts; 120-a first riser; 1201-a first connection hole; 20-a second mounting plate; 210-a second cross plate; 2101-third connection hole; 2102-third bolt; 220-a second riser; 2201-second connection hole; 2202-second bolt.
Detailed Description
The following detailed description of specific embodiments of the present disclosure is provided in connection with the accompanying drawings. It should be understood that the detailed description and specific examples, while indicating the present disclosure, are given by way of illustration and explanation only, not limitation.
In the present disclosure, in the case where no opposite explanation is made, it should be noted that all the directional terms used in the present embodiment, such as "up-down direction, left-right direction, front-back direction" are limited to the up-down direction, left-right direction, front-back direction of the mounting bracket in a certain posture (as in the state of the mounting bracket shown in fig. 1) for explaining the present invention, and if the certain state is changed, the directional indication is changed accordingly, and specifically, refer to fig. 1; furthermore, "inside and outside" refers to the inside and outside of the corresponding structural contour.
In the present disclosure, the term "inside and outside" refers to the inside and outside of the relevant parts, unless otherwise specified. Furthermore, the terms "first," "second," and the like are used solely to distinguish one from another and are not to be construed as indicating or implying relative importance.
In addition, in the description of the present disclosure, it should be further noted that unless otherwise explicitly stated or limited, the terms "disposed," "connected," and "mounted" are to be construed broadly and may be, for example, fixedly connected, detachably connected, or integrally connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present disclosure can be understood in specific instances by those of ordinary skill in the art.
Referring to fig. 1-2, the present disclosure provides a mounting bracket 1 for mounting a photoelectric switch, including a first mounting plate 10 and a second mounting plate 20, the second mounting plate 20 is configured to be connected to a rack, the first mounting plate 10 is movably connected to the second mounting plate 20 along an up-down direction, an arc adjustment hole 1101 is formed on the first mounting plate 10, the arc adjustment hole 1101 is configured to allow a first bolt 1102 fastening the photoelectric switch to pass through, and the first bolt 1102 is capable of moving in the arc adjustment hole 1101.
Through the technical scheme, the first mounting plate 10 is connected to the second mounting plate 20 in a manner of being movable along the vertical direction, and thus, through the relative movement between the first mounting plate 10 and the second mounting plate 20, the distance between the first mounting plate 10 and the second mounting plate 20 can be adjusted, so that the distance between the photoelectric switch and an object to be detected can be adjusted, in addition, when the angle of the photoelectric switch needs to be adjusted, the position of the first bolt 1102 in the arc-shaped adjusting hole 1101 can be adjusted, the adjustment of the detection angle of the photoelectric switch is realized, so that the influence of an illumination light source or glass on photoelectric switch signals is reduced or avoided, and the stability and the accuracy of the detection of the photoelectric switch are improved.
In this application, the rack may be a fixing frame disposed around the glass production line, or may be a production device of the glass production line itself, which is not limited in this disclosure.
In addition, the first mounting plate 10 is movably connected to the second mounting plate 20 in the up-down direction, and here, the movable connection may include various connection manners, for example, the first mounting plate and the second mounting plate 20 may be moved in the up-down direction by rolling or sliding, and the present disclosure does not limit the above movable connection manners as long as the movement in the up-down direction is achieved.
In one embodiment provided by the present disclosure, as shown in fig. 1-2, the number of arc adjustment holes 1101 may be two, and the two arc adjustment holes 1101 may be mirror images. In this way, by providing two arc-shaped adjusting holes 1101 with mirror symmetry, the rotation angle of the first bolt 1102 can be increased, thereby increasing the adjustment range of the angle of the photoelectric switch. Here, it should be noted that, in the process of adjusting the angle of the photoelectric switch, the first bolt 1102 is adjusted in the first arc-shaped adjusting hole 1101, and when the angle that can be adjusted by the first arc-shaped adjusting hole 1101 cannot meet the requirement, the first bolt 1102 may be removed from the first arc-shaped adjusting hole 1101, and then installed in the second arc-shaped adjusting hole 1101, and then the position of the first bolt 1102 in the second arc-shaped adjusting hole 1101 is adjusted, so as to increase the adjusting range of the photoelectric switch.
In other embodiments provided by the present disclosure, the number of the arc-shaped adjusting holes 1101 may also be three, four or any number, which is not limited by the present disclosure.
Optionally, in order to improve the stability of fixing the photoelectric switch, as shown in fig. 1-2, in an embodiment provided by the present disclosure, a mounting hole 1103 may be further formed on the first mounting plate 10, and the two arc adjustment holes 1101 may be located at both sides of the mounting hole 1103. Fixing bolt 1104 can be installed in mounting hole 1103, like this, when installing photoelectric switch, can fasten photoelectric switch through the first bolt 1102 that is located arc regulation hole 1101, subsequently, rethread mounting hole 1103 in fixing bolt 1104 fastens photoelectric switch, like this, has two mounting points at least on photoelectric switch, fixes photoelectric switch from different positions to promote the stability fixed to photoelectric switch.
It should be noted here that the two arc adjustment holes 1101 may be located on both sides of the mounting hole 1103, and it is understood that the mounting hole 1103 is disposed in a staggered manner with respect to the two adjustment holes, and the mounting hole 1103 may be located inside the two arc adjustment holes 1101, or outside the two arc adjustment holes 1101, and the present disclosure does not limit the specific location where the mounting hole 1103 is formed.
To facilitate mounting of the fixing bolt 1104, in one embodiment provided by the present disclosure, the mounting hole 1103 may be formed as a long hole, as shown in fig. 1-2. In the process of fixing the photoelectric switch through the fixing bolt 1104, the fixing bolt 1104 can be adjusted to any position of the mounting hole 1103, and thus the mounting point can be adapted to the photoelectric switches of various models, and the fault tolerance rate in the assembling process of the photoelectric switches is improved. Meanwhile, the mounting position of the fixing bolt 1104 can be adjusted freely in the mounting hole 1103, so that the assembly of the rotated photoelectric switch is facilitated.
Optionally, the central angle θ of the arc-shaped adjusting hole 1101 is greater than 0 ° and less than 90 °. Thus, the angle which can be adjusted by the two arc-shaped adjusting holes 1101 which are arranged in mirror symmetry is twice of the corresponding central angle theta of the single arc-shaped adjusting hole 1101, namely, between 0 degree and 180 degrees, so that the adjustment of any angle of the photoelectric switch can be realized.
As shown in fig. 1-2, in one embodiment provided by the present disclosure, the first mounting plate 10 may include a first horizontal plate 110 and a first vertical plate 120, the first horizontal plate 110 and the first vertical plate 120 form an L shape, the arc-shaped adjusting hole 1101 is formed in the first horizontal plate 110, and the first vertical plate 120 is movably connected to the second mounting plate 20 in an up-down direction. First horizontal plate 110 and first riser 120 constitute L shape, arc regulation hole 1101 is formed on first horizontal plate 110, cut first riser 120 and play mobilizable connection in the up-down direction to second mounting panel 20, the benefit of doing so is that photoelectric switch installs on first horizontal plate 110, when photoelectric switch rotates on first horizontal plate 110, can not cause the interference to the removal of first riser 120 with second mounting panel 20 in the up-down direction, likewise, the removal of first riser 120 and second mounting panel 20 also can not influence the regulation to photoelectric switch angle, be convenient for more to photoelectric switch's angle, the adjustment of height.
Alternatively, in order to facilitate adjustment of the positions of the first and second mounting plates 20 in the up-down direction, as shown in fig. 1 to 2, in an embodiment provided by the present disclosure, a first connection hole 1201 is formed on the first riser 120, a second connection hole 2201 is formed on the second mounting plate 20, one of the first connection hole 1201 and the second connection hole 2201 is formed as an elongated hole extending in the up-down direction, and the first connection hole 1201 and the second connection hole 2201 are used for passing a second bolt 2202 therethrough. When the position of the photoelectric switch in the up-down direction needs to be adjusted, the second bolt 2202 can be loosened, at the moment, the first vertical plate 120 and the second mounting plate 20 are in a movable state, the position between the first vertical plate 120 and the second mounting plate 20 can be adjusted, the second bolt 2202 is screwed down, and at the moment, the first vertical plate 120 and the second mounting plate 20 are in a fixed state, so that the position of the photoelectric switch can be adjusted.
In another embodiment provided by the present disclosure, as shown in fig. 1-2, a first connection hole 1201 is formed on the first riser 120, a second mounting hole 1103 may be formed on the second mounting plate 20, one of the first and second mounting holes 1103 and 1103 is formed as a plurality of through holes spaced from top to bottom, and the first and second connection holes 1201 and 2201 are used for the second bolt 2202 to pass through. When the position of the photoelectric switch in the vertical direction needs to be adjusted, the second bolt 2202 may be inserted and fixed in the through holes at different heights.
Alternatively, in order to achieve adjustment of the position of the photoelectric switch in the left-right direction, as shown in fig. 1-2, the other one of the first connection hole 1201 and the second connection hole 2201 may be formed as an elongated hole extending in the left-right direction. Similarly, when the position of the photoelectric switch in the left-right direction needs to be adjusted, the second bolt 2202 can be unscrewed, the first vertical plate 120 and the second mounting plate 20 are in a movable state, one of the first vertical plate 120 and the second mounting plate 20 is dragged to move along the length direction of the long hole, namely, in the left-right direction, and then the second bolt 2202 is locked, so that the position of the photoelectric switch in the left-right direction can be adjusted.
Of course, when the second bolt 2202 is loosened, the first vertical plate 120 and the second mounting plate 20 are movable, and at this time, the position of the photoelectric switch in the vertical direction and the left-right direction can be adjusted at the same time, which is more convenient for the operator to operate.
Alternatively, as shown in fig. 1-2, the second mounting plate 20 includes a second horizontal plate 210 and a second vertical plate 220, the second horizontal plate 210 and the second vertical plate 220 form an L shape, the first mounting plate 10 is movably connected to the second vertical plate 220 in the up-down direction, and the second horizontal plate 210 is movably connected to the frame. The second horizontal plate 210 and the second vertical plate 220 form an L shape, the first mounting plate 10 is movably connected to the second vertical plate 220 in the up-down direction, and the second horizontal plate 210 is movably connected to the frame, so that when the first mounting plate 10 moves in the up-down direction relative to the second mounting plate 20, the first mounting plate does not interfere with the second horizontal plate 210, and therefore the fixing between the second horizontal plate 210 and the frame is not affected.
Alternatively, in an embodiment provided by the present disclosure, as shown in fig. 1 to 2, a third connecting hole 2101 for passing the third bolt 2102 therethrough is formed on the second horizontal plate 210, and the third connecting hole 2101 is formed as an elongated hole extending in the front-rear direction. By adjusting the position of the third bolt 2102 in the third connecting hole 2101, the position of the mounting bracket 1 relative to the rack can be adjusted, thereby realizing the adjustment of the photoelectric switch in the front and rear directions.
The preferred embodiments of the present disclosure are described in detail with reference to the accompanying drawings, however, the present disclosure is not limited to the specific details of the above embodiments, and various simple modifications may be made to the technical solution of the present disclosure within the technical idea of the present disclosure, and these simple modifications all belong to the protection scope of the present disclosure.
It should be noted that, in the foregoing embodiments, various features described in the above embodiments may be combined in any suitable manner, and in order to avoid unnecessary repetition, various combinations that are possible in the present disclosure are not described again.
In addition, any combination of various embodiments of the present disclosure may be made, and the same should be considered as the disclosure of the present disclosure, as long as it does not depart from the spirit of the present disclosure.

Claims (10)

1. The utility model provides a mounting bracket for installing photoelectric switch, its characterized in that includes first mounting panel (10) and second mounting panel (20), second mounting panel (20) are used for being connected with the frame, first mounting panel (10) along the movably connection of upper and lower direction in second mounting panel (20), be formed with arc regulation hole (1101) on first mounting panel (10), arc regulation hole (1101) are used for supplying fastening photoelectric switch's first bolt (1102) to pass, just first bolt (1102) can move in arc regulation hole (1101).
2. The mounting bracket of claim 1, wherein the number of arcuate adjustment apertures (1101) is two, and two of the arcuate adjustment apertures (1101) are mirror images.
3. The mounting bracket of claim 2, wherein the first mounting plate (10) further has a mounting hole (1103) formed therein, and the two arc adjustment holes (1101) are located on both sides of the mounting hole (1103).
4. The mounting bracket of claim 3, wherein the mounting hole (1103) is formed as an elongated hole.
5. The mounting bracket according to any of claims 1-4, wherein the arcuate adjustment aperture (1101) corresponds to a central angle greater than 0 ° and less than 90 °.
6. The mounting bracket according to any one of claims 1-4, wherein the first mounting plate (10) comprises a first transverse plate (110) and a first vertical plate (120), the first transverse plate (110) and the first vertical plate (120) forming an L-shape, the arc-shaped adjustment hole (1101) is formed in the first transverse plate (110), and the first vertical plate (120) is movably connected to the second mounting plate in an up-down direction.
7. The mounting bracket according to claim 6, wherein a first connection hole (1201) is formed in the first riser (120), a second connection hole (2201) is formed in the second mounting plate (20), one of the first connection hole (1201) and the second connection hole (2201) is formed as an elongated hole extending in the up-down direction, and the first connection hole (1201) and the second connection hole (2201) are used for a second bolt (2202) to pass through.
8. The mounting bracket according to claim 7, wherein the other of the first connection hole (1201) and the second connection hole (2201) is formed as an elongated hole extending in a left-right direction.
9. The mounting bracket according to any one of claims 1-4, wherein the second mounting plate (20) comprises a second cross plate (210) and a second vertical plate (220), the second cross plate (210) and the second vertical plate (220) forming an L-shape, the first mounting plate (10) is movably connected to the second vertical plate (220) in the up-down direction, and the second cross plate (210) is movably connected to the frame.
10. The mounting bracket according to claim 9, wherein a third connecting hole (2101) for passing a third bolt (2102) is formed on the second cross plate (210), and the third connecting hole (2101) is formed as a long hole extending in the front-rear direction.
CN202121699977.9U 2021-07-23 2021-07-23 Mounting bracket for mounting photoelectric switch Active CN216123096U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121699977.9U CN216123096U (en) 2021-07-23 2021-07-23 Mounting bracket for mounting photoelectric switch

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121699977.9U CN216123096U (en) 2021-07-23 2021-07-23 Mounting bracket for mounting photoelectric switch

Publications (1)

Publication Number Publication Date
CN216123096U true CN216123096U (en) 2022-03-22

Family

ID=80723140

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121699977.9U Active CN216123096U (en) 2021-07-23 2021-07-23 Mounting bracket for mounting photoelectric switch

Country Status (1)

Country Link
CN (1) CN216123096U (en)

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