Double-servo-system rack mounting device for thickness online detection

By adopting a split design and flexible installation structure for the dual-servo system rack, the problem of difficult installation of traditional racks in confined spaces is solved, achieving high-precision and stable thickness detection.

CN223469953UActive Publication Date: 2025-10-24HANGZHOU GUOFENG SCI & TECH DEV CO LTD
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Patent Information

Application Number
CN202422446075.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-10
Publication Date
2025-10-24
Estimated Expiration
2034-10-10

AI Technical Summary

Technical Problem

Traditional thickness gauges have large frames, making them difficult to install in confined spaces and affecting testing accuracy, especially in the special high-end sheet material industry.

Method used

The rack design adopts a dual servo system, which splits the rack into upper and lower structures. It can be installed at multiple angles through flexible mounting base components and adjustment rings. Combined with arc-shaped blocks and triangular slot structures, it can achieve quick adjustment and stable fixation.

Benefits of technology

It enables flexible installation in confined spaces, ensuring the accuracy of testing, the stability of the machine, and its rapid response capability, making it suitable for the special high-end sheet industry.

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Abstract

A double-servo system rack mounting device for thickness online detection relates to the field of thickness detection and comprises two cross bars, each cross bar is fixedly provided with a thickness detection probe operation servo, each thickness detection probe operation servo is slidably provided with a fixing frame, each fixing frame is fixedly provided with a thickness detection sensor, and the thickness detection sensors are fixedly connected with the cross bars. The two thickness detection sensors are located on the same vertical plane, and the left end and the right end of each transverse bar are respectively provided with an installation bottom foot assembly which is used for fixing the transverse bar and can be flexibly installed. The double-servo-system control device can cope with different installation angles so as to effectively cope with different installation environments, meanwhile, the double-servo system is adopted, the quick response capacity is achieved, the control position of the machine can be adjusted instantly, and the stability and accuracy of the machine in the movement process are guaranteed.
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Description

Technical Field

[0001] The utility model relates to the field of thickness detection, in particular to a thickness online detection dual servo system rack installation device. Background Art

[0002] Thickness testing is generally used for continuous or random measurement of product thickness (such as steel plates, steel strips, films, paper, metal foils, etc.) in industrial production. However, the frames of traditional thickness testers are often "O"-shaped or "C"-shaped, which makes the entire frame larger and inconvenient to install. Especially in some places with demanding on-site installation locations, forced installation can easily lead to uncertainty in detection accuracy. In particular, in some special high-end sheet materials industries, the installation space is small, which makes it impossible to install and use traditional frames normally. Utility Model Content

[0003] The purpose of the utility model is to provide a thickness online detection dual servo system rack installation device to solve the problems raised in the above background technology.

[0004] The utility model solves the technical problem by adopting the following technical solutions:

[0005] A rack mounting device for a dual-servo system for online thickness detection comprises two horizontal bars, each of which is fixedly mounted with a thickness detection probe operating servo, each of which is slidably mounted with a fixing frame, and a thickness detection sensor is fixedly mounted on the fixing frame. The two thickness detection sensors are located on the same vertical plane, and the left and right ends of each horizontal bar are respectively provided with mounting foot assemblies for fixing the horizontal bar and capable of flexible installation.

[0006] Preferably, the mounting foot assembly includes two foot fixing plates, the two foot fixing plates are fixed by fastening bolts, and the foot fixing plate located on the upper side is installed on the corresponding horizontal bar.

[0007] Preferably, the mounting base assembly also includes an adjustment ring fixedly mounted on the horizontal bar, triangular slots are equidistantly provided on the adjustment ring, an arc block is fixedly connected to the base fixing plate located on the upper side, the arc block is slidably mounted on the adjustment ring, two symmetrically distributed rectangular cavities are provided in the arc block, a triangular block is slidably mounted in each of the rectangular cavities, and an inverted triangle portion is provided at the bottom of each of the triangular blocks.

[0008] Preferably, a slide groove is provided on the front end surface of the arc block at the position of each rectangular cavity, a slide plate is slidably installed in each slide groove, and a connecting portion is fixedly connected between the two slide plates.

[0009] As preferred, the recess on each of the sliding plates is respectively fixedly provided with a connecting block, the connecting block is located in the rectangular cavity, and the inclined surface on each of the connecting blocks can slide against the inclined surface of the corresponding inverted triangular portion.

[0010] As preferred, the transverse column is fixedly provided with a groove plate, and the drag chain on which the thickness detection probe runs is laid in the groove plate.

[0011] The advantages and positive effects of the utility model are:

[0012] The utility model discloses a rack installation device for thickness online detection double servo system, which comprises a transverse column, a horizontal column and a connecting rod, wherein the transverse column is provided with a rectangular cavity, the horizontal column is provided with an inverted triangular portion, the connecting rod is arranged in the rectangular cavity and the inverted triangular portion, and the connecting rod is provided with a groove. BRIEF DESCRIPTION OF DRAWINGS

[0013] The utility model will be further described below in combination with the drawings and examples.

[0014] Figure 1 It is whole structural schematic diagram of the utility model a kind of thickness online detection double servo system rack installation device;

[0015] Figure 2 It is the partial structural schematic diagram of the embodiment 1 of the utility model a kind of thickness online detection double servo system rack installation device installation bottom foot component;

[0016] Figure 3 It is the structural schematic diagram of the embodiment 2 of the utility model a kind of thickness online detection double servo system rack installation device installation bottom foot component;

[0017] Figure 4 It is the structural schematic diagram of the utility model a kind of thickness online detection double servo system rack installation device adjusting ring;

[0018] Figure 5 It is the structural schematic diagram of the utility model a kind of thickness online detection double servo system rack installation device arc block;

[0019] Figure 6 It is the structural schematic diagram of the utility model a kind of thickness online detection double servo system rack installation device arc block and connecting part;

[0020] Figure 7The utility model discloses a thickness on -line detection double servo system rack mounting device arc block and the unfolding structure schematic diagram of connecting portion.

[0021] The marks in the drawing are described as follows: cross column 10; groove plate 11; drag chain 12; thickness detection probe operation servo 13; fixing frame 14; thickness detection sensor 15; mounting foot assembly 20; foot fixing plate 21; arc block 22; adjusting ring 23; triangular clamping groove 24; connecting portion 25; triangular clamping block 26; rectangular cavity 27; sliding plate 28; link block 29; inverted triangular part 30; sliding groove 31. DETAILED DESCRIPTION

[0022] The utility model will be described in further detail in combination with the drawings, and obviously, the described embodiment is only a part of the embodiment of the utility model, not all the embodiment, on the basis of the embodiment in the utility model, all other embodiments obtained by the ordinary skill in the art without making creative labor belong to the range of protection of the utility model, these drawings are all simplified schematic diagram, only with the schematic way the basic structure of the utility model is shown, therefore, it only shows the structure related to the utility model.

[0023] In order to facilitate understanding the utility model, the utility model will be described more fully below with reference to relevant drawings, and several embodiments of the utility model are given in the drawings, however, the utility model can be realized in many different forms, and is not limited to the embodiment described in the paper, on the contrary, the purpose of providing these embodiments is to make the disclosure of the utility model more thorough and comprehensive.

[0024] The utility model will be described in further detail in combination with the drawings, and obviously, the described embodiment is only a part of the embodiment of the utility model, not all the embodiment, on the basis of the embodiment in the utility model, all other embodiments obtained by the ordinary skill in the art without making creative labor belong to the range of protection of the utility model, these drawings are all simplified schematic diagram, only with the schematic way the basic structure of the utility model is shown, therefore, it only shows the structure related to the utility model. Figures 1-7 The utility model will be described in further detail in combination with the drawings, and obviously, the described embodiment is only a part of the embodiment of the utility model, not all the embodiment, on the basis of the embodiment in the utility model, all other embodiments obtained by the ordinary skill in the art without making creative labor belong to the range of protection of the utility model, these drawings are all simplified schematic diagram, only with the schematic way the basic structure of the utility model is shown, therefore, it only shows the structure related to the utility model. Figure 1 The direction of the view direction is consistent with the direction of the front, back, left, right, up and down, Figure 1 The direction of the view direction is consistent with the direction of the front, back, left, right, up and down,

[0025] In the utility model, unless another explicit provision and limitation, the terms "installation", "connection", "connection", "fixed" and other terms should be broad understanding, for example, can be fixed connection, can be detachable connection, or integrated, can be mechanical connection, can be directly connected, can be indirectly connected through the intermediate medium, can be the communication of at least two elements or the interaction of at least two elements, unless otherwise explicitly limited. For the ordinary skill in the art, the specific meaning of the above terms in the application can be understood according to the specific circumstances. The embodiment of the utility model is further described as follows in combination with the drawings:

[0026] Please refer toFigures 1-2 The utility model provides a kind of embodiment 1: a thickness online detection double servo system rack mounting device, including two crossbars 10, two described crossbars 10 are installed respectively in upside-down orientation, and thickness detection probe running servo 13 is fixedly installed on each described crossbar 10 respectively, fixed rack 14 is slidably installed on each described thickness detection probe running servo 13, thickness detection sensor 15 is fixedly installed on the fixed rack 14, the thickness detection sensor 15 is driven using the thickness detection probe running servo 13, and two described thickness detection sensor 15 are located on the same vertical plane, the thickness of product is detected in real time by two described thickness detection sensor 15, such as steel plate, steel band, film, paper, metal foil etc.

[0027] It should be noted that the mounting foot assembly 20 includes two foot fixing plates 21, the two foot fixing plates 21 are fixed by fastening bolts, and the upper foot fixing plate 21 is installed on the corresponding crossbar 10, so that the entire rack can be fixed at the position to be detected by bolts only, compared with the traditional "O" type and "C" type detection rack, it can effectively cope with some harsh installation conditions in the environment, especially in many special high-end sheet industry, the sheet detection of these industries generally has small installation space, but the design can be split and installed on the upper and lower two, which can effectively adapt to some smaller installation space, and the double servo system has fast response capability, which can adjust the control position of the machine instantly, ensuring the stability and accuracy of the machine during movement.

[0028] In addition, to further improve the flexibility of the utility model installation, embodiment 2 is provided, which can be referred to Figures 3-7The difference from the above-mentioned embodiments is that the mounting foot assembly 20 is adjusted to cope with more installation angles, wherein the adjusting ring 23 is fixedly installed at both ends of the crossbar 10, the triangular clamping groove 24 is arranged equidistantly in the adjusting ring 23, the arc-shaped block 22 is fixedly connected to the upper side of the foot fixing plate 21, the arc-shaped block 22 is slidingly installed on the outer end edge of the adjusting ring 23, the rectangular cavity 27 is arranged symmetrically in the arc-shaped block 22, the triangular clamping block 26 is slidingly installed in each rectangular cavity 27, the triangular clamping block 26 can be embedded into the triangular clamping groove 24, the inverted triangular part 30 is arranged at the bottom of each triangular clamping block 26, the sliding groove 31 is arranged at the position of each rectangular cavity 27 on the front side of the arc-shaped block 22, the sliding plate 28 is slidingly installed in each sliding groove 31, the connecting part 25 is fixedly connected between the two sliding plates 28, the engaging block 29 is fixedly installed on the recess of each sliding plate 28, the engaging block 29 is located in the rectangular cavity 27, and the inclined surface of the engaging block 29 can slidingly abut against the inclined surface of the inverted triangular part 30

[0029] In specific implementation, when the installation angle of the foot fixing plate 21 needs to be adjusted, first, the connecting part 25 is pulled out, so that the engaging block 29 is disengaged from the inverted triangular part 30, the triangular clamping block 26 is lowered and disengaged from the triangular clamping groove 24, the limiting is lost, then the foot fixing plate 21 is rotated, so that the foot fixing plate 21 rotates around the adjusting ring 23, the appropriate position is adjusted, then the connecting part 25 is pushed in, so that the inclined surface of the engaging block 29 abuts against the inclined surface at the lower end of the inverted triangular part 30, the inverted triangular part 30 is pushed up, so that the top end of the triangular clamping block 26 is clamped into the triangular clamping groove 24 to form limiting, then the foot fixing plate 21 is fixed by a bolt, and the installation is completed.

[0030] It should be emphasized that the embodiments of the utility model are illustrative rather than restrictive, and therefore the utility model is not limited to the embodiments described in the specific embodiments, and any other embodiments derived from the technical scheme of the utility model by those skilled in the art also belong to the protection scope of the utility model.

Claims

1. A double servo system rack mounting device for thickness on-line detection, comprising two crossbars (10), characterized in that: Each of the transverse column (10) is respectively fixedly installed with thickness detection probe servo (13), each of the thickness detection probe servo (13) is slidably installed with a fixed frame (14), the fixed frame (14) is fixedly installed with a thickness detection sensor (15), two of the thickness detection sensor (15) are located on the same vertical plane, the left and right ends of each of the transverse column (10) are respectively provided with a mounting foot assembly (20) for fixing and flexible installation of the transverse column (10).

2. The double servo system rack mounting device for thickness on-line detection according to claim 1, characterized in that: The mounting foot assembly (20) comprises two foot fixing plates (21), the two foot fixing plates (21) are fixed by fastening bolts, and the upper foot fixing plate (21) is installed on the corresponding transverse column (10).

3. The double servo system rack mounting device for thickness on-line detection according to claim 2, characterized in that: The mounting foot assembly (20) further comprises an adjusting ring (23) fixedly installed on the transverse column (10), the adjusting ring (23) is provided with triangular clamping grooves (24) at equal intervals, the upper foot fixing plate (21) is fixedly connected with an arc-shaped block (22), the arc-shaped block (22) is slidably installed on the adjusting ring (23), the arc-shaped block (22) is provided with two symmetrically distributed rectangular cavities (27), each of the rectangular cavities (27) is slidably installed with a triangular clamping block (26), and the bottom of each of the triangular clamping blocks (26) is provided with an inverted triangular portion (30).

4. The double servo system rack mounting device for thickness on-line detection according to claim 3, characterized in that: The front end surface of the arc-shaped block (22) is provided with a sliding groove (31) at the position of each of the rectangular cavities (27), and each of the sliding grooves (31) is slidably installed with a sliding plate (28), and the two sliding plates (28) are fixedly connected with a connecting portion (25).

5. The thick-ness online detection double servo system rack mounting device according to claim 4, characterized in that: The recess of each of the sliding plates (28) is fixedly installed with a connecting block (29), and the connecting block (29) is located in the rectangular cavity (27), and the inclined surface of each of the connecting blocks (29) can slidably abut against the inclined surface of the corresponding inverted triangular portion (30).

6. The thick-ness on-line detecting double servo system rack mounting device according to claim 1, characterized in that: The transverse column (10) is fixedly installed with a groove plate (11), and the drag chain (12) on the thickness detection probe servo (13) is laid in the groove plate (11).