Mounting bracket for rolling line detection instrument

By designing an adjustable rolling line detection instrument installation bracket including a slider and a slide barrel, the problem of the inability to move and installation process of the detection instrument in the prior art is solved, and flexible installation and efficient production are achieved to adapt to rolling mills of different specifications.

CN222902162UActive Publication Date: 2025-05-27SHANXIN SOFTWARE CO LTD
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Patent Information

Application Number
CN202421830541.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-05-27
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

The existing rolled line detection instrument cannot be moved after the bracket is installed. Multiple brackets and detection instruments need to be installed to detect multiple data. The installation process requires a large number of tools, which reduces production efficiency.

Method used

A rolling line detection instrument installation bracket including a fixing part, a slider bracket, a slider bracket, an adjustment slide platform and an installation part is designed. The adjustability of the bracket is achieved through the structure of the slider and a slider, adapting to rolling mills of different specifications, and the flexible installation and adjustment of the detector is achieved by adjusting the slider and an installation part.

Benefits of technology

It realizes flexible installation and adjustment of the detection instrument, adapts to rolling mills of different specifications, does not require multiple installation brackets, improves production efficiency, and ensures the stability and speed of installation through the design of limit blocks and fixing bolts.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a rolling line detection instrument mounting bracket, comprising: a fixing part including a first fixing part and a second fixing part, the second fixing part being arranged opposite to the first fixing part; one end of each sliding rod support is rotationally connected with the first fixing part; two sliding cylinder brackets; one end of the sliding cylinder support is rotationally connected with the second fixing part, and the other end of the sliding cylinder support is provided with a cylinder cavity. The other end of the sliding rod support is slidably connected into the barrel cavity. The adjusting sliding table is connected with the sliding barrel support and is oppositely arranged on the side, close to the sliding rod support, of the sliding barrel support; the mounting part is connected to the adjusting sliding table in a sliding mode, and the mounting part is used for being connected with a detector, so that the problems that after an existing detection instrument is mounted on a mounting support, the detection instrument cannot be moved, and if multiple pieces of data need to be detected, multiple mounting supports and multiple detection instruments need to be mounted are solved; and a large number of mounting tools are needed when the mounting bracket is mounted at present, so that the production efficiency is greatly reduced.
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Description

Technical Field

[0001] This application relates to the technical field of rolling line detection processes, and particularly to an installation bracket for a rolling line detection instrument. Background Art

[0002] With the continuous development of the social economy, the requirements for the performance of steel in industries such as the construction industry are also constantly increasing. The detection of steel in the rolling line plays a very important role in controlling the rolling speed and the quality of rolled steel. On the one hand, it can improve the quality of rolled steel and ensure the stability of the rolling mill speed and tension; on the other hand, it can reduce the possibility of failures and steel piling, and improve production efficiency.

[0003] During the production process of hot rolling, it is necessary to detect the steel plate through a detection instrument to ensure the production quality of the steel plate. The types of detection instruments include laser speedometers and scanning hot metal detectors, etc. In order to facilitate the detection of the steel plate, generally, an installation bracket is installed to support and install the detection instrument.

[0004] However, at present, after the detection instrument is installed on the installation bracket, it cannot be moved. If multiple data need to be detected, multiple installation brackets and detection instruments need to be installed; moreover, a large number of installation tools are required when installing the installation bracket at present, which greatly reduces the production efficiency. Utility Model Content

[0005] This application provides an installation bracket for a rolling line detection instrument to solve the technical problems that at present, after the detection instrument is installed on the installation bracket, it cannot be moved, and if multiple data need to be detected, multiple installation brackets and detection instruments need to be installed; moreover, a large number of installation tools are required when installing the installation bracket at present, which greatly reduces the production efficiency.

[0006] This application provides an installation bracket for a rolling line detection instrument, including:

[0007] A fixing part, the fixing part includes: a first fixing part and a second fixing part, the second fixing part is disposed opposite to the first fixing part; the first fixing part and the second fixing part are used for connecting with the rolling mill to be measured;

[0008] Two sliding rod brackets, the sliding rod brackets are in an L-shaped structure; one end of the sliding rod bracket is rotatably connected to the first fixing part;

[0009] Two sliding cylinder brackets, the sliding cylinder brackets are in an L-shaped structure; one end of the sliding cylinder bracket is rotatably connected to the second fixing part, and a cylinder cavity is provided at the other end of the sliding cylinder bracket; the other end of the sliding rod bracket is slidably connected in the cylinder cavity;

[0010] An adjusting slide table, the adjusting slide table is connected to the sliding cylinder bracket and is disposed opposite to the side of the sliding cylinder bracket close to the sliding rod bracket;

[0011] An installation part, the installation part is slidably connected to the adjustment slide, and the installation part is used to connect to the detector.

[0012] In some embodiments, the fixing part includes:

[0013] A rotating seat, the rotating seat is rotatably connected to the slide bar bracket or the slide cylinder bracket; a threaded hole is provided at the center of the rotating seat;

[0014] A pressure bolt, the pressure bolt is rotatably connected in the threaded hole;

[0015] A fixed clamp block, the fixed clamp block is connected to one end of the pressure bolt; the fixed clamp block is used to connect to the rolling mill to be measured.

[0016] In some embodiments, the rotating seat includes:

[0017] A first rotating part, a threaded hole is provided at the center of the first rotating part;

[0018] A second rotating part, the second rotating part is sleeved outside the first rotating part;

[0019] A third rotating part, the third rotating part is sleeved outside the first rotating part, and the third rotating part is arranged offset from the second rotating part; the third rotating part and the second rotating part are rotatably connected to the slide bar bracket or the slide cylinder bracket.

[0020] In some embodiments, an arc-shaped groove is provided on the rotating seat; an anti-rotation block is provided in the arc-shaped groove, and the anti-rotation block is connected to the fixed clamp block;

[0021] Wherein, when the first rotating part rotates, the anti-rotation block does not contact the second rotating part and the third rotating part.

[0022] In some embodiments, limiting blocks are oppositely arranged on the outside of the rotating seat.

[0023] In some embodiments, a plurality of fixing holes are provided on one side of the slide bar bracket close to the slide cylinder bracket;

[0024] A plurality of through holes are provided on one side of the slide cylinder bracket close to the slide bar bracket;

[0025] Wherein, the slide bar bracket is connected to the slide cylinder bracket by a fixing bolt passing through the fixing hole and the through hole.

[0026] In some embodiments, the installation part includes:

[0027] Adjusting slide plate, the adjusting slide plate is slidably connected to the adjusting slide table;

[0028] First connecting rod, one end of the first connecting rod is rotatably connected to the adjusting slide plate, and is oppositely arranged along the length direction and the width direction of the adjusting slide plate;

[0029] Second connecting rod, one end of the second connecting rod is rotatably connected to the first connecting rod; the other end is rotatably connected to the detector mounting table, and is oppositely arranged along the length direction and the width direction of the detector mounting table;

[0030] Adjusting block, the adjusting block is connected to the first connecting rod and is arranged between adjacent first connecting rods; the adjusting block includes: a first adjusting block and a second adjusting block; threaded holes are provided in the first adjusting block and the second adjusting block;

[0031] Adjusting screw, one end of the adjusting screw passes through the first adjusting block and is rotatably connected to the knob, and the other end passes through the second adjusting block.

[0032] In some embodiments, at least one screw hole is provided on the adjusting slide plate;

[0033] A strip hole is provided on the adjusting slide table;

[0034] Wherein, by passing a locking screw through one side of the adjusting slide plate and then passing through the strip hole through the other side of the adjusting slide plate, the adjusting slide plate is fixed to the adjusting slide table.

[0035] In some embodiments, at least one mounting hole is provided on the detector mounting table;

[0036] By passing a bolt through the mounting hole and the detector, the detector mounting table is connected to the detector.

[0037] In some embodiments, the wire rolling detection instrument mounting bracket further includes:

[0038] Support rod, one end of the support rod is connected to one of the slide rod brackets or the slide cylinder brackets by a bolt; the other end passes through a hole provided on the support rod and a hole provided on another slide rod bracket or slide cylinder bracket by a bolt, so that the support rod is connected to the slide rod bracket or the slide cylinder bracket.

[0039] The present application provides an installation bracket for a rolling line detection instrument, including: a fixing part, the fixing part includes: a first fixing part and a second fixing part, the second fixing part is arranged opposite to the first fixing part; the first fixing part and the second fixing part are used for connecting with a rolling mill to be measured; two slide bar brackets, the slide bar brackets are L-shaped structures; one end of the slide bar bracket is rotatably connected to the first fixing part; two slide cylinder brackets, the slide cylinder brackets are L-shaped structures; one end of the slide cylinder bracket is rotatably connected to the second fixing part, and a cylinder cavity is arranged at the other end of the slide cylinder bracket; the other end of the slide bar bracket is slidably connected in the cylinder cavity; an adjusting slide table, the adjusting slide table is connected to the slide cylinder bracket and is arranged opposite to the side of the slide cylinder bracket close to the slide bar bracket; an installation part, the installation part is slidably connected to the adjusting slide table, and the installation part is used for connecting with a detector, so as to enable the installation bracket of the rolling line detection instrument to be adapted to rolling mills of any specifications, and the height of the detector can be freely adjusted through the installation bracket. Description of the Drawings

[0040] In order to more clearly illustrate the technical solutions of the present application, the drawings required for use in the embodiments will be briefly introduced below. Obviously, for those of ordinary skill in the art, other drawings can also be obtained based on these drawings without creative efforts.

[0041] Figure 1 It is a schematic structural diagram of the installation bracket for the rolling line detection instrument in the present application;

[0042] Figure 2 It is a schematic structural diagram of the fixing part in the present application;

[0043] Figure 3 It is a schematic structural diagram of the installation part in the present application;

[0044] Figure 4 It is a schematic structural diagram of the installation bracket for the rolling line detection instrument and the detector after installation;

[0045] Figure 5 It is a schematic structural diagram of the installation bracket for the rolling line detection instrument and the rolling mill to be measured after installation.

[0046] Description of the Reference Numerals:

[0047] 1 - Fixed part; 11 - First fixed part; 111 - Rotating base; 1111 - First rotating part; 1112 - Second rotating part; 1113 - Third rotating part; 1114 - Anti - rotation block; 1115 - Limit block; 112 - Pressure bolt; 113 - Fixed clamping block; 12 - Second fixed part; 2 - Mill to be measured; 3 - Slide bar bracket; 31 - Fixed hole; 4 - Slide cylinder bracket; 41 - Fixed bolt; 5 - Adjusting slide table; 51 - Strip - shaped hole; 6 - Installation part; 61 - Adjusting slide plate; 611 - Screw hole; 62 - First connecting rod; 63 - Second connecting rod; 64 - Detector installation table; 641 - Installation hole; 65 - Adjusting block; 651 - First adjusting block; 652 - Second adjusting block; 66 - Adjusting screw; 661 - Knob; 7 - Detector; 8 - Support rod. Detailed implementation mode

[0048] In order to enable those skilled in the art to better understand the technical solutions in this application, the following will clearly and completely describe the technical solutions in the embodiments of this application with reference to the accompanying drawings in the embodiments of this application. Obviously, the described embodiments are only a part of the embodiments of this application, rather than all the embodiments. Based on the embodiments in this application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of this application.

[0049] Since in some technologies, after the detection instrument is installed on the installation bracket, it cannot be moved. If multiple data need to be detected, multiple installation brackets and detection instruments need to be installed; moreover, a large number of installation tools are required when installing the installation bracket currently, which greatly reduces the production efficiency. To solve this technical problem, this application provides an installation bracket for a rolling line detection instrument. The following explains the various parts of the installation bracket for the rolling line detection instrument:

[0050] Consisting of Figure 1 and Figure 5It can be seen that the present application provides an installation bracket for a rolling line detection instrument, including: a fixing part 1, the fixing part 1 includes: a first fixing part 11 and a second fixing part 12, and the second fixing part 12 is arranged opposite to the first fixing part 11; the first fixing part 11 and the second fixing part 12 are used for connecting with a rolling mill 2 to be measured; two slide bar brackets 3, the slide bar brackets 3 are in an L-shaped structure; one end of the slide bar bracket 3 is rotatably connected to the first fixing part 11; two slide cylinder brackets 4, the slide cylinder brackets 4 are in an L-shaped structure; one end of the slide cylinder bracket 4 is rotatably connected to the second fixing part 12, and a cylinder cavity is arranged at the other end of the slide cylinder bracket 4; the other end of the slide bar bracket 3 is slidably connected in the cylinder cavity; by sliding the slide bar bracket 3 in the cylinder cavity of the slide cylinder bracket 4, the distance between the first fixing part 11 and the second fixing part 12 can be adjusted; an adjusting slide table 5, the adjusting slide table 5 is connected to the slide cylinder bracket 4 and is arranged opposite to the side of the slide cylinder bracket 4 close to the slide bar bracket 3; a mounting part 6, the mounting part 6 is slidably connected to the adjusting slide table 5, and the mounting part 6 is used for connecting with a detector 7, as Figure 4 shown. The position of the detector 7 in the horizontal direction can be adjusted by the mounting part 6 through the adjusting slide table 5.

[0051] In the present application, through the arrangement of the slide bar bracket 3 and the slide cylinder bracket 4, the distance between the first fixing part 11 and the second fixing part 12 can be adjusted, and then the installation bracket is fixed on the rolling mill 2 to be measured through the fixing part 1. The arrangement of the slide bar bracket 3 and the slide cylinder bracket 4 can meet rolling mills of any specification; then the detector 7 is installed on the mounting part 6, and the position of the detector 7 in the horizontal direction is adjusted through the arrangement of the adjusting slide table 5, so as to detect the rolling mill 2 to be measured. Compared with the current arrangement of the installation bracket, the installation bracket for the rolling line detection instrument provided by the present application can meet rolling mills of any specification, and can also adjust the position of the detector 7 on the installation bracket, without setting multiple installation brackets on the rolling mill 2 to be measured.

[0052] From Figure 2It can be known that the fixing part 1 includes: a rotating base 111, the rotating base 111 is rotatably connected to the slide bar bracket 3 or the sliding cylinder bracket 4; a threaded hole is provided at the center of the rotating base 111; a pressure bolt 112, the pressure bolt 112 is rotatably connected in the threaded hole; the pressure bolt 112 can apply sufficient pressure to the rotating base 111 so that the mounting bracket can be installed and fixed on the mill 2 to be measured; a fixed clamp block 113, the fixed clamp block 113 is connected to one end of the pressure bolt 112; the fixed clamp block 113 is used to be connected to the mill 2 to be measured. The length of the mounting bracket is adjusted to be adapted to the length of the mill 2 to be measured through the slide bar bracket 3 and the sliding cylinder bracket 4, so that by tightening the pressure bolt 112, the pressure value between the fixed clamp block 113 and the mill 2 to be measured is increased, and thus the mounting bracket is fixed on the mill 2 to be measured.

[0053] It can be known from Figure 2 that the rotating base 111 includes: a first rotating part 1111, a threaded hole is provided at the center of the first rotating part 1111; the pressure bolt 112 is rotatably connected in the threaded hole; the first rotating part 1111 can rotate under the drive of the pressure bolt 112; a second rotating part 1112, the second rotating part 1112 is sleeved outside the first rotating part 1111; a third rotating part 1113, the third rotating part 1113 is sleeved outside the first rotating part 1111, and the third rotating part 1113 is arranged in a dislocation manner with the second rotating part 1112; the third rotating part 1113 and the second rotating part 1112 are rotatably connected to the slide bar bracket 3 or the sliding cylinder bracket 4. The second rotating part 1112 and the third rotating part 1113 are independent of the first rotating part 1111 and will not rotate due to the rotation of the first rotating part 1111.

[0054] It can be known from Figure 2 that an arc-shaped groove is provided on the rotating base 111; an anti-rotation block 1114 is arranged in the arc-shaped groove, and the anti-rotation block 1114 is connected to the fixed clamp block 113; wherein, when the first rotating part 1111 rotates, the anti-rotation block 1114 does not contact the second rotating part 1112 and the third rotating part 1113. The anti-rotation block 1114 can prevent relative rotation between the rotating base 111 and the fixed clamp block 113, that is, the second rotating part 1112 and the third rotating part 1113 are independent of the first rotating part 1111 and will not rotate due to the rotation of the first rotating part 1111, avoiding the overall inclination of the bracket.

[0055] It can be known from Figure 2It can be seen that limiting blocks 1115 are oppositely arranged on the outer side of the rotary base 111. The limiting blocks 1115 are adapted to the slide bar bracket 3 or the slide cylinder bracket 4, and the limiting blocks 1115 are used to position the slide bar bracket 3 or the slide cylinder bracket 4 to prevent the slide bar bracket 3 or the slide cylinder bracket 4 from rotating too large an angle.

[0056] It can be seen from Figure 4 that a plurality of fixing holes 31 are arranged on one side of the slide bar bracket 3 close to the slide cylinder bracket 4; a plurality of through holes are arranged on one side of the slide cylinder bracket 4 close to the slide bar bracket 3; wherein, the slide bar bracket 3 is connected to the slide cylinder bracket 4 by a fixing bolt 41 passing through the fixing holes 31 and the through holes. The length of the mounting bracket can be adjusted by moving the slide bar bracket 3 close to the slide cylinder bracket 4. First, by obtaining the length of the to-be-tested rolling mill 2, the slide bar bracket 3 is slid into the cylinder cavity of the slide cylinder bracket 4 so that the length between the slide bar bracket 3 and the slide cylinder bracket 4 is adapted to the to-be-tested rolling mill 2. Finally, the slide bar bracket 3 is fixed in the cylinder cavity of the slide cylinder bracket 4 by a fixing bolt 41 passing through the fixing holes 31 and the through holes, thereby connecting the slide bar bracket 3 to the slide cylinder bracket 4.

[0057] It can be seen from Figure 3It can be seen that the installation part 6 includes: an adjustment slide plate 61, which is slidably connected to the adjustment slide 5; the position of the detector 7 in the horizontal direction can be adjusted through the adjustment slide plate 61; a first connecting rod 62, one end of the first connecting rod 62 is rotatably connected to the adjustment slide plate 61, and they are arranged oppositely along the length direction and the width direction of the adjustment slide plate 61; a second connecting rod 63, one end of the second connecting rod 63 is rotatably connected to the first connecting rod 62; the other end is rotatably connected to the detector mounting table 64, and they are arranged oppositely along the length direction and the width direction of the detector mounting table 64; in this application, four first connecting rods 62 and second connecting rods 63 are provided; an adjustment block 65, which is connected to the first connecting rod 62 and is arranged between adjacent first connecting rods 62; the adjustment block 65 includes: a first adjustment block 651 and a second adjustment block 652; threaded holes are provided in the first adjustment block 651 and the second adjustment block 652; an adjustment screw 66, one end of the adjustment screw 66 passes through the first adjustment block 651 and is rotatably connected to a knob 661, and the other end passes through the second adjustment block 652. By rotating the knob 661, the first connecting rod 62 and the second connecting rod 63 are rotated, so as to adjust the distance between the detector mounting table 64 and the adjustment slide plate 61, that is, the distance of the detector 7 in the vertical direction can be adjusted by rotating the knob 661. It can be understood that the installation part 6 can adjust the position of the detector 7 in the horizontal direction through the adjustment slide 5, and the detector mounting table 64 can adjust the position of the detector 7 in the vertical direction through the first connecting rod 62 and the second connecting rod 63. Through the installation bracket provided in this application, the detection information of the to-be-detected rolling mill 2 in all directions can be obtained, and there is no need to set multiple detectors 7 and installation brackets for multiple detection points.

[0058] It can be seen that Figure 3 at least one screw hole 611 is provided on the adjustment slide plate 61; a strip hole 51 is provided on the adjustment slide 5; wherein, a locking screw passes through one side of the adjustment slide plate 61 and then passes through the strip hole 51 and the other side of the adjustment slide plate 61, so that the adjustment slide plate 61 is fixed to the adjustment slide 5. To prevent the adjustment slide plate 61 from sliding relative to the adjustment slide 5 when the knob 661 is rotated, the strip hole 51 and the screw hole 611 are provided in this application. A locking screw passes through one side of the adjustment slide plate 61 and then passes through the strip hole 51 and the other side of the adjustment slide plate 61, so that the adjustment slide plate 61 is fixed to the adjustment slide 5, thereby preventing the adjustment slide plate 61 from sliding on the adjustment slide 5.

[0059] It can be seen that Figure 3It can be known that at least one mounting hole 641 is provided on the detector mounting table 64; the detector mounting table 64 is connected to the detector 7 by bolts passing through the mounting hole 641 and the detector 7. A plurality of mounting holes 641 are formed in the detector mounting table 64, bolts are arranged in the mounting holes 641, and reserved holes adapted to the mounting holes 641 are arranged on the detector 7. The detector 7 is mounted on the detector mounting table 64 by bolts passing through the mounting holes 641, and the detector 7 can detect defects on the upper and lower surfaces of the steel to be tested 2.

[0060] It can be known from Figure 2 that the described rolling line detection instrument mounting bracket further includes: a support rod 8, one end of the support rod 8 is connected to one of the slide rod brackets 3 or the slide cylinder brackets 4 by bolts; the other end passes through holes provided on the support rod 8 and holes provided on another one of the slide rod brackets 3 or the slide cylinder brackets 4 by bolts, so that the support rod 8 is connected to the slide rod bracket 3 or the slide cylinder bracket 4. The support rod 8 is used to make the two slide rod brackets 3 or the slide cylinder brackets 4 more stable.

[0061] The present application provides an installation bracket for a rolling line detection instrument, and its working principle is as follows: First, according to the size of the rolling mill 2 to be measured, the staff slides the slide rod bracket 3 in the slide cylinder bracket 4 to an appropriate size, and then uses two fixing bolts 41 to pass through the through holes on the slide cylinder bracket 4 to fix the slide rod bracket 3 in the slide cylinder bracket 4. After that, the installation bracket is moved to an appropriate position at the outlet of the rolling mill 2 to be measured. The staff uses a tool to rotate the pressure bolt 112, and the pressure bolt 112 pushes the fixed clamping block 113 towards the rolling mill 2 to be measured, increasing the pressure between the installation bracket and the rolling mill 2 to be measured so that the installation bracket is fixed to the rolling mill 2 to be measured. When the installation bracket is fixed, the slide cylinder bracket 4 and the slide rod bracket 3, which are fixedly connected together, are respectively rotated to contact the two limit blocks 10. Then, the support rod 8 located on the slide rod bracket 3 and the slide cylinder bracket 4 is rotated to the corresponding other slide rod bracket 3 and slide cylinder bracket 4 and fixed with bolts. When the bracket is fixed, the upper and lower adjustment slide plates 61 are slidably installed on the corresponding adjustment slide table 5. After adjusting the position, the two locking screws on one side of the adjustment slide table 5 are rotated to lock the adjustment slide plate 61. When the adjustment slide plate 61 is locked, the staff passes bolts through the installation holes 641 to fixedly install the two detectors 7 on the corresponding detector installation table 64. Then, check the working condition of the detector 7. If it is necessary to adjust the distance between the detector 7 and the rolling mill 2 to be measured, the staff rotates the knob 661 on the adjustment screw 66 to rotate the adjustment screw 66. The rotation of the adjustment screw 66 makes the two adjustment blocks 65 approach or move away from each other. Through the movement of the two adjustment blocks 65 and through the first connecting rod 62 and the second connecting rod 63, the detector 7 located on the detector installation table 64 rises or falls to achieve the adjustment purpose.

[0062] The present application provides an installation bracket for a rolling line detection instrument, which has the following beneficial effects: The limit block 1115 can prevent the excessive rotation of the slide cylinder bracket 4 and the slide rod bracket 3, enabling the detector 7 to detect the surface of the rolling mill 2 to be measured effectively; The installation bracket can be quickly and conveniently installed on the rolling mill 2 to be measured through the fixing bolts 41 and the fixed clamping block 113; The support rod 8 can make the installation bracket more stable, making the detection more stable; The slide rod bracket 3 can slide and be locked in the slide cylinder bracket 4 to adapt to rolling mills 2 to be measured with different specifications; The use height of the detector 7 can be conveniently adjusted through the adjustment screw 66.

[0063] The above specific implementation manners have further detailed the purpose, technical solutions and beneficial effects of the embodiments of the present application. It should be understood that the above are only the specific implementation manners of the embodiments of the present application, and are not used to limit the protection scope of the embodiments of the present application. Any modifications, equivalent replacements, improvements, etc. made on the basis of the technical solutions of the embodiments of the present application should be included in the protection scope of the embodiments of the present application.

Claims

1. A rolling line detection instrument mounting bracket, characterized in that: include: A fixing part (1), the fixing part (1) comprising: a first fixing part (11) and a second fixing part (12), the second fixing part (12) being arranged opposite to the first fixing part (11); the first fixing part (11) and the second fixing part (12) being used to be connected to a rolling mill (2) to be tested; Two sliding rod brackets (3), each of the sliding rod brackets (3) being an L-shaped structure; one end of each of the sliding rod brackets (3) being rotatably connected to the first fixing portion (11); Two slide barrel brackets (4), each of which is an L-shaped structure; one end of each slide barrel bracket (4) is rotatably connected to the second fixing portion (12), and the other end of each slide barrel bracket (4) is provided with a barrel cavity; the other end of each slide rod bracket (3) is slidably connected to the barrel cavity; An adjusting slide (5), the adjusting slide (5) being connected to the slide cylinder bracket (4) and being arranged relatively on a side of the slide cylinder bracket (4) close to the slide rod bracket (3); A mounting portion (6), wherein the mounting portion (6) is slidably connected to the adjusting slide table (5), and the mounting portion (6) is used to be connected to a detector (7).

2. A wire rolling detection instrument mounting bracket according to claim 1, characterized in that: The fixing part (1) comprises: A rotating seat (111), the rotating seat (111) being rotatably connected to the slide rod bracket (3) or the slide cylinder bracket (4); a threaded hole is provided at the center of the rotating seat (111); A pressure bolt (112), the pressure bolt (112) being rotatably connected in the threaded hole; A fixed clamp block (113), the fixed clamp block (113) being connected to one end of the pressure bolt (112); the fixed clamp block (113) being used to be connected to the rolling mill (2) to be tested.

3. A wire rolling detection instrument mounting bracket according to claim 2, characterized in that: The rotating seat (111) comprises: A first rotating part (1111), wherein a threaded hole is provided at the center of the first rotating part (1111); A second rotating part (1112), wherein the second rotating part (1112) is sleeved on the outside of the first rotating part (1111); A third rotating part (1113), wherein the third rotating part (1113) is sleeved on the outside of the first rotating part (1111), and the third rotating part (1113) and the second rotating part (1112) are staggered; the third rotating part (1113) and the second rotating part (1112) are rotatably connected to the sliding rod bracket (3) or the sliding cylinder bracket (4).

4. A wire rolling detection instrument mounting bracket according to claim 3, characterized in that: The rotating seat (111) is provided with an arc-shaped groove; an anti-rotation block (1114) is provided in the arc-shaped groove, and the anti-rotation block (1114) is connected to the fixed clamp block (113); Wherein, when the first rotating part (1111) rotates, the anti-rotation block (1114) does not contact the second rotating part (1112) and the third rotating part (1113).

5. A wire rolling detection instrument mounting bracket according to claim 2, characterized in that: A limiting block (1115) is arranged opposite to the outer side of the rotating seat (111).

6. A wire rolling detection instrument mounting bracket according to claim 1, characterized in that: A plurality of fixing holes (31) are provided on one side of the slide rod bracket (3) close to the slide cylinder bracket (4); A plurality of through holes are provided on one side of the slide cylinder bracket (4) close to the slide rod bracket (3); The slide rod bracket (3) is connected to the slide cylinder bracket (4) by a fixing bolt (41) penetrating the fixing hole (31) and the through hole.

7. A wire rolling detection instrument mounting bracket according to claim 1, characterized in that: The mounting portion (6) comprises: An adjusting slide plate (61), wherein the adjusting slide plate (61) is slidably connected to the adjusting slide platform (5); a first connecting rod (62), one end of which is rotatably connected to the adjusting slide plate (61) and is arranged opposite to each other along the length direction and the width direction of the adjusting slide plate (61); A second connecting rod (63), one end of which is rotatably connected to the first connecting rod (62); the other end of which is rotatably connected to a detector mounting platform (64), and is arranged opposite to each other along the length direction and the width direction of the detector mounting platform (64); an adjusting block (65), the adjusting block (65) being connected to the first connecting rod (62) and being arranged between adjacent first connecting rods (62); the adjusting block (65) comprising: a first adjusting block (651) and a second adjusting block (652); threaded holes are arranged in the first adjusting block (651) and the second adjusting block (652); An adjusting screw (66), one end of which passes through the first adjusting block (651) and is rotatably connected to the knob (661), and the other end of which passes through the second adjusting block (652).

8. A wire rolling detection instrument mounting bracket according to claim 7, characterized in that: The adjusting slide plate (61) is provided with at least one screw hole (611); The adjusting slide table (5) is provided with a strip-shaped hole (51); The adjusting slide plate (61) is fixed to the adjusting slide table (5) by a locking screw that penetrates one side of the adjusting slide plate (61) and then penetrates the other side of the adjusting slide plate (61) through the strip-shaped hole (51).

9. A wire rolling detection instrument mounting bracket according to claim 7, characterized in that: The detector mounting platform (64) is provided with at least one mounting hole (641); The detector mounting platform (64) is connected to the detector (7) by means of bolts penetrating the mounting hole (641) and the detector (7).

10. A wire rolling detection instrument mounting bracket according to claim 1, characterized in that: Also includes: A support rod (8), one end of the support rod (8) is connected to one of the slide rod brackets (3) or the slide tube bracket (4) by a bolt; the other end is penetrated by a bolt through a hole provided on the support rod (8) and a hole provided on another slide rod bracket (3) or the slide tube bracket (4), so that the support rod (8) is connected to the slide rod bracket (3) or the slide tube bracket (4).