Supporting pile adaptive instrument fixing device

By designing a pile-adaptive instrument fixing device, which utilizes the bracket body and positioning components to adapt to piles in different placement states, the problem of difficult instrument installation is solved, achieving the effects of rapid installation and cost reduction.

CN223524906UActive Publication Date: 2025-11-07麦克传感器股份有限公司
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Patent Information

Application Number
CN202422653022.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-11-07
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

In the existing technology, instruments cannot be installed using a unified installation method in different application scenarios, resulting in high adaptation costs and difficulties in on-site installation.

Method used

Design a pile-adaptive instrument fixing device, including a bracket body composed of horizontal and vertical side panels, connecting the instrument and the pile through an instrument fixing component and a bracket fixing component, and using the wing of the positioning component to fit the pile, adapting to the pile in different placement states for quick installation.

Benefits of technology

It enables rapid installation of instruments in different placement states, reduces adaptation and production costs, and facilitates on-site installation and maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of instrument monitoring, in particular to a supporting pile adaptive instrument fixing device. Comprising a support body, an instrument fixing assembly, a support fixing assembly and a positioning assembly. The support body comprises a horizontal side panel and a vertical side panel which are integrally in an L shape. The instrument fixing assembly is connected with the horizontal side panel and an instrument, the support fixing assembly is connected with the vertical side panel and the supporting pile, the positioning assembly comprises a first flying wing and a second flying wing, the first flying wing is provided with a first positioning part matched and attached to the vertically-placed supporting pile, and the second flying wing is provided with a second positioning part matched and attached to the horizontally-placed supporting pile. According to the utility model, the supporting pile adaptive instrument fixing device is additionally arranged between the supporting pile and the instrument, and the instrument and the supporting pile adaptive instrument fixing device adopt a binding design mode, so that the instrument can be quickly mounted on the supporting pile, and the supporting pile adaptive instrument fixing device is suitable for quick mounting of the instrument in different application scenes.
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Description

TECHNICAL FIELD

[0001] The utility model relates to instrument monitoring technical field, especially, is a kind of support pile adaptation type instrument fixing device. BACKGROUND

[0002] Instrument plays the role of central neuron in industrial production, and different instruments have detection, monitoring, even alarm and other functions. System managers can obtain the running condition of production system in real time through various function instruments, which is conducive to timely reminding system managers to take measures when production system fails. Therefore, the reliability and precision of instrument operation are particularly important for the stability of industrial production system. In addition, the stability of instrument function is related to installation, maintenance during debugging and operation, in addition to the quality of instrument itself. However, due to the differences in the number of measuring points, pressure type, installation point position and use place, etc. Many instrument structures are derived, and the installation method of the instrument is also diverse due to the differences in geographical position, climate, system design scheme, field installation and management habits, etc. For example: some application scenarios require the instrument to be installed on a horizontally preset support pile, some application scenarios require the instrument to be installed on a vertically preset support pile, and some application scenarios require the instrument to be directly installed on a wall. Therefore, in different application scenarios, the existing instrument cannot be installed by a unified installation method, which not only increases the design and production cost of instrument adaptation to application scenarios, but also brings certain difficulties to the field installation and maintenance of the instrument. SUMMARY

[0003] The utility model aims at providing a kind of support pile adaptation type instrument fixing device, to solve the problem that instrument in prior art cannot be installed by unified installation method in different application scenarios, which leads to high instrument adaptation cost and the problem of difficult field installation.

[0004] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0005] The utility model discloses a kind of support pile adaptation type instrument fixing device, comprising:

[0006] Support body, including integral "L" shape horizontal side panel and vertical side panel;

[0007] Instrument fixing assembly is arranged on the horizontal side panel, for connecting the horizontal side panel and instrument;

[0008] Support fixing assembly is arranged on the vertical side panel, for connecting the vertical side panel and support pile;

[0009] The positioning assembly is arranged on the outer sidewall of the vertical side panel, and comprises two first wings arranged opposite in the vertical direction, and two second wings arranged opposite in the horizontal direction, the first wing is provided with a first positioning part matched with the vertically arranged pile, and the second wing is provided with a second positioning part matched with the horizontally arranged pile.

[0010] Optionally, the horizontal side panel is provided with a first light hole penetrating the horizontal side panel in the vertical direction, the instrument fixing assembly comprises a first bolt and a first elastic gasket, the shank of the first bolt is arranged in the first light hole, the head of the first bolt is located below the horizontal side panel, and the first elastic gasket is located between the horizontal side panel and the head of the first bolt, and is sleeved on the shank of the first bolt, so that the shank of the first bolt penetrates the horizontal side panel from bottom to top and is connected with the preset threaded hole at the bottom of the instrument.

[0011] Optionally, the first wing is parallel to the horizontal side panel, and the first wing has a first supporting sidewall opposite to the vertical side panel, the first positioning part comprises a first arc surface groove arranged on the first supporting sidewall in the vertical direction, the first arc surface groove is matched with the outer wall of the cylindrical pile, and the central axis of the first arc surface groove corresponds to the vertical central axis of the vertical side panel.

[0012] Optionally, the first positioning part further comprises first plane walls on the first supporting sidewall and located on both sides of the first arc surface groove, the two first plane walls are symmetrically arranged along the central axis of the first arc surface groove, and the first plane walls are used for being matched with the plate surface of the plate-shaped pile or the wall surface of the wall-shaped pile.

[0013] Optionally, the second wing is perpendicular to the horizontal side panel, and the second wing has a second supporting sidewall opposite to the vertical side panel, the second positioning part comprises a second arc surface groove arranged on the second supporting sidewall in the horizontal direction, the second arc surface groove is matched with the outer wall of the cylindrical pile, and the central axis of the second arc surface groove corresponds to the horizontal central axis of the vertical side panel.

[0014] Optionally, the second positioning part further comprises second plane walls on the second supporting sidewall and located on both sides of the second arc surface groove, the two second plane walls are symmetrically arranged along the central axis of the second arc surface groove, and the second plane walls are used for being matched with the plate surface of the plate-shaped pile.

[0015] Optionally, a web plate is connected between the vertical side panel and the horizontal side panel, two second light holes are formed in the vertical side panel and are distributed at intervals, and the support fixing assembly passes through the vertical side panel and is connected with the support pile along the two second light holes.

[0016] Optionally, the support fixing assembly comprises a "U" shaped piece arranged outside the vertical side panel and a first locking nut arranged inside the vertical side panel, two ends of the "U" shaped piece are arranged in the two second light holes respectively, the first locking nut is threadedly connected with the two ends of the "U" shaped piece passing through the vertical side panel respectively, and a second elastic gasket is arranged on the end of the "U" shaped piece between the first locking nut and the inner side wall of the vertical side panel, and a fastening area corresponding to the cylindrical support pile is formed between the "U" shaped piece and the outer side wall of the vertical side panel.

[0017] Optionally, the two second light holes are symmetrical along the vertical axis of the vertical side panel, and the fastening area corresponding to the vertically arranged support pile is formed between the "U" shaped piece and the vertical side panel; or

[0018] The two second light holes are symmetrical along the horizontal axis of the vertical side panel, and the fastening area corresponding to the horizontally arranged support pile is formed between the "U" shaped piece and the vertical side panel.

[0019] Optionally, the support fixing assembly comprises a second bolt arranged outside the vertical side panel and a second locking nut arranged inside the vertical side panel, the second bolt is arranged in the two second light holes respectively, the shank of the second bolt is arranged in the second light hole, and the second locking nut is threadedly connected with the ends of the two second bolts passing through the vertical side panel respectively.

[0020] Optionally, the outer end of the second bolt has a head, and the head of the second bolt and the outer side wall of the vertical side panel have an assembly gap for the plate-shaped support pile to be arranged and fixed, so that the second bolt is used to pass through the plate-shaped support pile and the vertical side panel in sequence; or

[0021] The outer end of the second bolt is an expansion end, so that the expansion end of the second bolt is used to be punched into the wall surface of the wall-shaped support pile.

[0022] Compared with the prior art, the support pile adaptive instrument fixing device has the following beneficial effects:

[0023] By setting the support body in "L" shape integrated by horizontal side panel and vertical side panel, connecting the horizontal side panel and the instrument by the instrument fixing assembly, the horizontal side panel provides horizontal stable support at the bottom of the instrument, which can adapt to the installation of different styles of instruments. And connecting the vertical side panel and the support by the support fixing assembly, the instrument can be quickly installed on the support by adding support adaptive instrument fixing device between the support and the instrument, and the instrument and the support adaptive instrument fixing device are designed in the form of binding. At the same time, the first positioning part on the first flying wing is matched and fitted with the vertically placed support, and the second positioning part on the second flying wing is matched and fitted with the horizontally placed support, so that the vertical side panel can be matched with the support in different placement states by the positioning assembly, so that the whole support adaptive instrument fixing device is suitable for quick installation of the instrument on the support in different placement states. BRIEF DESCRIPTION OF DRAWINGS

[0024] The technical scheme of the utility model will be further explained in detail below in combination with the drawings and embodiments, and the drawings are as follows:

[0025] Figure 1 The side view of the support body and the instrument assembly provided by the embodiment of the utility model;

[0026] Figure 2 The side view of the support body and the support assembly provided by the embodiment of the utility model;

[0027] Figure 3 The side view of the support body and the vertically placed cylindrical support assembly provided by the embodiment of the utility model;

[0028] Figure 4 The top view of the support body and the vertically placed cylindrical support assembly provided by the embodiment of the utility model;

[0029] Figure 5 The side view of the support body and the horizontally placed cylindrical support assembly provided by the embodiment of the utility model;

[0030] Figure 6 The side view of the support body and the horizontally placed plate-shaped support assembly provided by the embodiment of the utility model;

[0031] Figure 7 The side view of the support body and the vertically placed plate-shaped support assembly provided by the embodiment of the utility model;

[0032] Figure 8 The side view of the support body and the wall-shaped support assembly provided by the embodiment of the utility model.

[0033] The signs in the drawings represent as follows:

[0034] 1, support body; 11, horizontal side panel; 12, vertical side panel; 2, instrument fixing assembly; 21, first bolt; 3, support fixing assembly; 31, "U" shaped piece; 32, first locking nut; 33, second bolt; 34, second locking nut; 4, positioning assembly; 41, first flying wing; 42, first positioning part; 421, first arc surface groove; 422, first plane wall; 43, second flying wing; 44, second positioning part; 441, second arc surface groove; 442, second plane wall; 5, rib plate; 6, instrument; 7, support pile. DETAILED DESCRIPTION

[0035] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict. Now, the preferred embodiments of the present application will be described in detail with reference to the drawings.

[0036] The utility model discloses a kind of support pile adaptive type instrument fixing devices, as shown in Figure 1 And Figure 2 It shows that including support body 1, instrument fixing assembly 2, support fixing assembly 3 and positioning assembly 4. Support body 1 includes integral "L" shaped horizontal side panel 11 and vertical side panel 12. Instrument fixing assembly 2 is arranged on horizontal side panel 11, for connecting horizontal side panel 11 and instrument 6. Support fixing assembly 3 is arranged on vertical side panel 12, for connecting vertical side panel 12 and support pile 7. Positioning assembly 4 is arranged on the outer side wall of vertical side panel 12, including two first flying wings 41 oppositely arranged in vertical direction, and two second flying wings 43 oppositely arranged in horizontal direction. First flying wing 41 is provided with the first positioning part 42 that is matched with vertical support pile 7 and is attached, and second flying wing 43 is provided with the second positioning part 44 that is matched with horizontal support pile 7 and is attached.

[0037] By the above-mentioned support pile adaptive instrument fixing device, the "L"-shaped support body 1 integrated by the horizontal side panel 11 and the vertical side panel 12 can reduce the inventory of the "L"-shaped support in the current industrial production, so as to improve the part versatility. The horizontal side panel 11 and the instrument 6 are connected by the instrument fixing assembly 2, so that the horizontal side panel 11 can provide horizontal stable support at the bottom of the instrument 6 and can adapt to different styles of the instrument 6 for quick installation. The vertical side panel 12 and the support pile 7 are connected by the support fixing assembly 3, so that the instrument 6 can be quickly installed on the support pile 7 by adding the support pile adaptive instrument fixing device between the support pile 7 and the instrument 6 and adopting the binding design of the instrument 6 and the support pile adaptive instrument fixing device. At the same time, the first positioning part 42 on the first flying wing 41 is matched and fitted with the vertically placed support pile 7, and the second positioning part 44 on the second flying wing 43 is matched and fitted with the horizontally placed support pile 7, so that the vertical side panel 12 can be matched with the support pile 7 in different placement states through the positioning assembly 4, thereby without the need of customizing design of the instrument 6 for the support pile 7 in different placement states, so that the support pile adaptive instrument fixing device of the embodiment of the utility model is applicable to quick installation of the instrument 6 on the support pile 7 in different placement states, effectively reduces the design and production cost of the instrument 6 and the application scene adaptation, and is convenient for on-site installation and maintenance of the instrument 6.

[0038] Further, the horizontal side panel 11 is provided with a first light hole penetrating the horizontal side panel 11 in the vertical direction. The instrument fixing assembly 2 comprises a first bolt 21 and a first elastic gasket. The shank of the first bolt 21 is arranged in the first light hole, and the head of the first bolt 21 is located below the horizontal side panel 11. The first elastic gasket is located between the horizontal side panel 11 and the head of the first bolt 21, and is sleeved on the shank of the first bolt 21, so that the shank of the first bolt 21 penetrates the horizontal side panel 11 from bottom to top and is connected with the bottom of the instrument 6.

[0039] The first light hole on the horizontal side panel 11 corresponds to the threaded hole at the bottom of the instrument 6, so that the first bolt 21 can pass through the horizontal side panel 11 and be connected with the instrument 6, so that the instrument 6 can be stably fixed on the horizontal side panel 11. Preferably, the horizontal side panel 11 is provided with first light holes of different shape and size, positioning size, to adapt to the installation of instruments 6 of different structures, such as single-point collection structure instruments 6 and two-point collection structure instruments 6. The single-point collection structure instrument 6 is preferably a gauge pressure structure, and the two-point collection structure instrument 6 is preferably a differential pressure structure. At the same time, the first bolt 21 can easily adjust the fastening degree of the instrument 6, so that the operator can rotate the first bolt 21 to ensure that the instrument 6 is firmly fixed. When the instrument 6 needs to be maintained or replaced, the first bolt 21 can be easily removed by simple rotation, so that the instrument 6 can be quickly removed or replaced, and the entire support body 1 does not need to be detached from the support pile 7. In addition, the first elastic gasket provides an additional buffer layer to prevent the first bolt 21 from being too tight and causing damage to the horizontal side panel 11, and also prevents the instrument 6 from being fastened too loosely and unstable.

[0040] Further, in combination with Figure 3 and Figure 4 The first flying wing 41 is parallel to the horizontal side panel 11, and the first flying wing 41 has a first support side wall opposite to the vertical side panel 12. The first positioning portion 42 includes a first circular arc groove 421 opened in the vertical direction on the first support side wall, and the first circular arc groove 421 cooperates with the outer wall of the cylindrical support pile 7, and the center axis of the first circular arc groove 421 corresponds to the vertical center axis of the vertical side panel 12.

[0041] Through the above embodiment of the support pile adaptive instrument fixing device, the first flying wing 41 is parallel to the horizontal side panel 11, so that when the vertical side panel 12 is assembled with the support pile 7, the first support side wall of the first flying wing 41 is attached to the surface of the support pile 7 and forms a support. At this time, the first flying wing 41 can be closely attached to the cylindrical support pile 7 through the first circular arc groove 421 on the first flying wing 41, so as to improve the stability of the attachment between the first flying wing 41 and the support pile 7, thereby preventing the relative displacement between the first flying wing 41 and the support pile 7 during the installation of the support body 1 or the monitoring of the instrument 6, and further quickly connecting the vertical side panel 12 and the support pile 7 together. At the same time, the first circular arc groove 421 opened in the vertical direction cooperates with the vertically placed cylindrical support pile 7 (see Figure 3 and Figure 4), so that the vertical side panel 12 is adapted to the vertically placed cylindrical support column 7 through the two first wings 41. In addition, since the central axis of the first arc groove 421 corresponds to the vertical central axis of the vertical side panel 12, it can be ensured that the load is uniformly borne after the first arc groove 421 is fitted to the cylindrical support column 7, avoiding uneven structural stress caused by eccentric positioning.

[0042] Further, the first positioning part 42 further comprises a first flat wall 422 on the first support side wall on both sides of the first arc groove 421, and the two first flat walls 422 are symmetrically arranged along the central axis of the first arc groove 421, and the first flat wall 422 is used to fit the plate surface of the plate-shaped support column 7 or the wall surface of the wall-shaped support column 7.

[0043] Through the above-mentioned implementation mode of the support column adapting type instrument fixing device, the first flat wall 422 on the first wing 41 on both sides of the first arc groove 421 enables the first wing 41 to be closely fitted to the plate surface of the plate-shaped support column 7 and the wall surface of the wall-shaped support column 7 through the two first flat walls 422, so as to improve the stability of the fitting of the first wing 41 to the plate-shaped support column 7 or the wall-shaped support column 7, thereby preventing the relative displacement between the first wing 41 and the support column 7 during the installation of the support body 1 or the monitoring of the instrument 6, and further enabling the vertical side panel 12 to be quickly connected to the support column 7. At the same time, the two first wings 41 are arranged in the vertical direction, so that the first flat walls 422 on the two first wings 41 are matched with the wall-shaped support column 7 or the vertically placed plate-shaped support column 7 (refer to Figure 4 、 Figure 7 and Figure 8 ), so that the vertical side panel 12 is adapted to the wall-shaped support column 7 or the vertically placed plate-shaped support column 7 through the two first wings 41.

[0044] Further, the second wing 43 is perpendicular to the horizontal side panel 11, and the second wing 43 has a second support side wall opposite to the vertical side panel 12. The second positioning part 44 comprises a second arc groove 441 opened in the horizontal direction on the second support side wall, the second arc groove 441 is matched with the outer wall of the cylindrical support column 7, and the central axis of the second arc groove 441 corresponds to the horizontal central axis of the vertical side panel 12.

[0045] By the above-mentioned embodiment of the pile-adaptive instrument fixing device, the second flying wing 43 is perpendicular to the horizontal side panel 11, so that when the vertical side panel 12 is assembled with the pile 7, the second support side wall of the second flying wing 43 is attached to the surface of the pile 7 and forms a support. At this time, the second flying wing 43 is closely attached to the cylindrical pile 7 through the second arc surface groove 441 on the second flying wing 43, so as to improve the stability of the attachment between the second flying wing 43 and the pile 7, thereby preventing the relative displacement between the second flying wing 43 and the pile 7 during the installation of the support body 1 or the monitoring of the instrument 6, and further quickly connecting the vertical side panel 12 and the pile 7 together. Meanwhile, the second arc surface groove 441 is opened in the horizontal direction, so that the second arc surface groove 441 is matched with the horizontally placed cylindrical pile 7 (see Figure 3 and Figure 5 ), so that the vertical side panel 12 is adapted with the horizontally placed cylindrical pile 7 through the two second flying wings 43. In addition, since the central axis of the second arc surface groove 441 corresponds to the horizontal central axis of the vertical side panel 12, it can be ensured that the load is uniformly borne after the second arc surface groove 441 is attached to the cylindrical pile 7, thereby avoiding uneven structural stress caused by eccentric positioning.

[0046] Further, the second positioning part 44 further includes a second plane wall 442 on the second support side wall and located on both sides of the second arc surface groove 441, and the two second plane walls 442 are symmetrically arranged along the central axis of the second arc surface groove 441, and the second plane wall 442 is used to attach to the plate surface of the plate-shaped pile 7.

[0047] By the above-mentioned embodiment of the pile-adaptive instrument fixing device, the second plane wall 442 on the second flying wing 43 and located on both sides of the second arc surface groove 441, so that the second flying wing 43 is closely attached to the plate surface of the plate-shaped pile 7 through the two second plane walls 442, so as to improve the stability of the attachment between the second flying wing 43 and the plate-shaped pile 7, thereby preventing the relative displacement between the second flying wing 43 and the pile 7 during the installation of the support body 1 or the monitoring of the instrument 6, and further quickly connecting the vertical side panel 12 and the pile 7 together. Meanwhile, the two second flying wings 43 are arranged in the horizontal direction, so that the second plane walls 442 on the two second flying wings 43 are matched with the horizontally placed plate-shaped pile 7 (see Figure 3 and Figure 6 ), so that the vertical side panel 12 is adapted with the horizontally placed plate-shaped pile 7 through the two second flying wings 43.

[0048] Further, referring back to Figure 2The vertical side panel 12 is connected with the horizontal side panel 11 through a web plate 5. Two second light holes are arranged at intervals on the vertical side panel 12. The support fixing assembly 3 is connected with the support post 7 through the two second light holes.

[0049] Through the above-mentioned embodiment of the support post adaptive instrument fixing device, the web plate 5 connected between the vertical side panel 12 and the horizontal side panel 11 can enhance the connection strength between the vertical side panel 12 and the horizontal side panel 11, so as to improve the stability and anti-distortion ability of the whole support body 1, so that the horizontal side panel 11 can provide horizontal stable support at the bottom of the instrument 6. In addition, the two second light holes arranged at intervals provide two-point fastening for the installation of the vertical side panel 12, so as to improve the reliability and stability of the connection between the vertical side panel 12 and the support post 7.

[0050] Further, as shown in Figure 3 and Figure 4 , the support fixing assembly 3 includes a "U" shaped piece 31 arranged outside the vertical side panel 12, and a first locking nut 32 arranged inside the vertical side panel 12. The two ends of the "U" shaped piece 31 are respectively arranged in the two second light holes. The first locking nut 32 is respectively threadedly connected with the two ends of the "U" shaped piece 31 passing through the vertical side panel 12. A second elastic gasket is arranged on the end of the "U" shaped piece 31 between the first locking nut 32 and the inner side wall of the vertical side panel 12. The "U" shaped piece 31 and the outer side wall of the vertical side panel 12 form a fastening area corresponding to the cylindrical support post 7;

[0051] Among them, as shown in Figure 3 and Figure 4 , the two second light holes are symmetrical along the vertical axis of the vertical side panel 12. The "U" shaped piece 31 and the vertical side panel 12 form a fastening area corresponding to the vertically arranged cylindrical support post 7; or

[0052] As shown in Figure 5 , the two second light holes are symmetrical along the horizontal axis of the vertical side panel 12. The "U" shaped piece 31 and the vertical side panel 12 form a fastening area corresponding to the horizontally arranged cylindrical support post 7.

[0053] By the above-mentioned embodiment of the support pile adaptive instrument fixing device, the support body 1 is applicable to be installed on the cylindrical support pile 7. By the setting of the "U"-shaped piece 31, when the positioning assembly 4 on the vertical side panel 12 is correspondingly attached to the cylindrical support pile 7, the two ends of the "U"-shaped piece 31 are correspondingly inserted into and passed out of the two second light holes from the outside of the vertical side panel 12, at this time, the "U"-shaped piece 31 is matched with the cylindrical support pile 7 and forms a clamping structure, and then the first locking nut 32 is connected to the ends of the "U"-shaped piece 31, so that the first locking nut 32 is limited on the inside of the vertical side panel 12 to avoid the "U"-shaped piece 31 from falling off the vertical side panel 12, thereby the "U"-shaped piece 31 fastens the cylindrical support pile 7 on the vertical side panel 12. And the first locking nut 32 can easily adjust the fastening degree of the "U"-shaped piece 31 to adapt to the cylindrical support pile 7 of different sizes. The operator can adjust the locking degree by rotating the first locking nut 32 to ensure that the positioning assembly 4 on the vertical side panel 12 is closely attached to the cylindrical support pile 7. And when the support body 1 needs to be maintained or disassembled, the first locking nut 32 can be loosened by simple rotation operation, so that the support body 1 can be quickly removed or replaced. In addition, the setting of the second elastic gasket provides an additional buffer layer to prevent the first locking nut 32 from being too tight to damage the vertical side panel 12, and also prevent the vertical side panel 12 from being too loose to cause unstable attachment between the positioning assembly 4 on the vertical side panel 12 and the cylindrical support pile 7. Preferably, a plurality of "U"-shaped pieces 31 can be arranged along the length direction of the cylindrical support pile 7.

[0054] As described above, for the vertically placed cylindrical support pile 7, the two second light holes are symmetrical along the vertical axis of the vertical side panel 12, so that the "U"-shaped piece 31 is parallel to the horizontal side panel 11 to be buckled on the vertically placed cylindrical support pile 7. And for the horizontally placed cylindrical support pile 7, the two second light holes are symmetrical along the horizontal axis of the vertical side panel 12, so that the "U"-shaped piece 31 is perpendicular to the horizontal side panel 11 to be buckled on the horizontally placed cylindrical support pile 7. Therefore, according to the placement direction of the cylindrical support pile 7, the position of the second light hole can be flexibly selected to make the support body 1 applicable to quickly install the instrument 6 on the cylindrical support pile 7 in different placement states.

[0055] Unlike the above-mentioned embodiment of the support fixing assembly 3, as shown in Figure 6- Figure 8 the support fixing assembly 3 of the utility model embodiment comprises a second bolt 33 arranged outside the vertical side panel 12 and a second locking nut 34 arranged inside the vertical side panel 12. The second bolt 33 is correspondingly arranged with the two second light holes, and the screw rod of the second bolt 33 is arranged in the second light hole, and the second locking nut 34 is correspondingly threadedly connected with the two second bolts 33 passing through the end of the vertical side panel 12;

[0056] wherein, asFigure 6 and Figure 7 As shown in FIG. 4, the outer end of the second bolt 33 has a head, and there is an assembly gap between the head of the second bolt 33 and the outer wall of the vertical side panel 12 for the plate-shaped support post 7 to be fixedly inserted, so that the second bolt 33 is used to pass through the plate-shaped support post 7 and the vertical side panel 12 in sequence; or

[0057] As shown in FIG. 5, the outer end of the second bolt 33 is an expansion end, so that the expansion end of the second bolt 33 is used to be driven into the wall surface of the wall-shaped support post 7. Figure 8

[0058] Through the above-mentioned support post adaptive instrument fixing device, it is suitable for installing the support body 1 on the plate-shaped and wall-shaped support posts 7. By the cooperation of the second bolt 33 and the second locking nut 34, for the plate-shaped support post 7, when the positioning assembly 4 on the vertical side panel 12 is correspondingly attached to the plate-shaped support post 7, the second bolt 33 is sequentially passed through the plate surface of the plate-shaped support post 7 and the vertical side panel 12 along the second light hole, and the end of the second bolt 33 passing through the vertical side panel 12 is threadedly connected with the second locking nut 34, so that the head of the second bolt 33 is located on the outer side of the vertical side panel 12 to fasten the plate-shaped support post 7, thereby fastening the plate-shaped support post 7 on the vertical side panel 12 by the second bolt 33.

[0059] For the wall-shaped support post 7, the second bolt 33 is preferably an expansion bolt. When the positioning assembly 4 on the vertical side panel 12 is correspondingly attached to the wall surface of the wall-shaped support post 7, the second bolt 33 is passed through the vertical side panel 12 along the second light hole, and the expansion end of the second bolt 33 is driven into the wall surface of the wall-shaped support post 7, and the inner end of the second bolt 33 is threadedly connected with the second locking nut 34, so that the vertical side panel 12 is fastened on the wall-shaped support post 7 by the second bolt 33.

[0060] As mentioned above, whether it is for the installation of the plate-shaped support post 7 or the installation of the wall-shaped support post 7, the fastening degree of the second bolt 33 can be easily adjusted by the second locking nut 34 to adapt to different sizes of the plate-shaped support post 7 or the wall-shaped support post 7. The operator can adjust the locking degree by rotating the second locking nut 34 to ensure that the positioning assembly 4 on the vertical side panel 12 is closely attached to the plate-shaped support post 7 or the wall-shaped support post 7. When it is necessary to maintain or disassemble the support body 1, the second locking nut 34 can be loosened by simple rotation operation, so that the support body 1 can be quickly removed or replaced. In addition, a third elastic gasket adjacent to the second locking nut 34 is preferably arranged on the second bolt 33 to provide an additional buffer layer to prevent the second locking nut 34 from being too tight to damage the vertical side panel 12, and also prevent the second locking nut 34 from being too loose to cause unstable attachment between the positioning assembly 4 on the vertical side panel 12 and the plate-shaped support post 7 or the wall-shaped support post 7.

[0061] ​It should be understood that the above embodiments are only used to illustrate the technical solutions of the present application, but not limit them, and for those skilled in the art, the technical solutions recorded in the above embodiments can be modified, or some technical features can be replaced equivalently; all these modifications and replacements should belong to the protection scope of the claims of the present application.

Claims

1. A support post adapter type instrument fixation device, characterized by, The support post adaptive instrument fixing device comprises: a bracket body comprising a horizontal side panel and a vertical side panel in an integrated "L" shape; an instrument fixing assembly arranged on the horizontal side panel and used for connecting the horizontal side panel and an instrument; a bracket fixing assembly arranged on the vertical side panel and used for connecting the vertical side panel and a support post; a positioning assembly arranged on the outer side wall of the vertical side panel and comprising two first wings arranged oppositely in the vertical direction and two second wings arranged oppositely in the horizontal direction, the first wing being provided with a first positioning part matched with the vertically placed support post, and the second wing being provided with a second positioning part matched with the horizontally placed support post.

2. The stud adapter instrument securement device of claim 1, wherein: The horizontal side panel is provided with a first light hole penetrating through the horizontal side panel in the vertical direction, the instrument fixing assembly comprises a first bolt and a first elastic gasket, the shank of the first bolt is arranged in the first light hole, the head of the first bolt is located below the horizontal side panel, and the first elastic gasket is located between the horizontal side panel and the head of the first bolt and is sleeved on the shank of the first bolt, so that the shank of the first bolt penetrates through the horizontal side panel from bottom to top and is connected with a preset threaded hole at the bottom of the instrument.

3. The stud adapter instrument securement device of claim 1, wherein: The first wing is parallel to the horizontal side panel, the first wing has a first support side wall opposite to the vertical side panel, the first positioning part comprises a first circular surface groove arranged on the first support side wall in the vertical direction, the first circular surface groove is matched with the outer wall of the cylindrical support post, and the central axis of the first circular surface groove corresponds to the vertical central axis of the vertical side panel.

4. The stud adapter instrument securement device of claim 3, wherein: The first positioning part further comprises first plane walls arranged on the first support side wall on both sides of the first circular surface groove, the two first plane walls are arranged symmetrically along the central axis of the first circular surface groove, and the first plane walls are used for being matched with the plate surface of the plate-shaped support post or the wall surface of the wall-shaped support post.

5. The stud adapter instrument securement device of claim 1, wherein: The second wing is perpendicular to the horizontal side panel, the second wing has a second support side wall opposite to the vertical side panel, the second positioning part comprises a second circular surface groove arranged on the second support side wall in the horizontal direction, the second circular surface groove is matched with the outer wall of the cylindrical support post, and the central axis of the second circular surface groove corresponds to the horizontal central axis of the vertical side panel.

6. The stud adapter instrument securement device of claim 5, wherein: The second positioning part further comprises second plane walls arranged on the second support side wall on both sides of the second circular surface groove, the two second plane walls are arranged symmetrically along the central axis of the second circular surface groove, and the second plane walls are used for being matched with the plate surface of the plate-shaped support post.

7. The support post adapter instrument securement device of any of claims 1-6, wherein: The vertical side panel and the horizontal side panel are connected with a web plate, the vertical side panel is provided with two second light holes distributed at intervals, and the bracket fixing assembly penetrates through the vertical side panel and the support post along the two second light holes.

8. The stud adapter instrument securement device of claim 7, wherein: The support fixing assembly comprises a "U" shaped piece arranged outside the vertical side panel and a first locking nut arranged inside the vertical side panel, two ends of the "U" shaped piece are respectively arranged in the two second light holes, the first locking nut is respectively threadedly connected with the two ends of the "U" shaped piece penetrating the vertical side panel, and a second elastic gasket is arranged between the end of the "U" shaped piece and the inner side wall of the vertical side panel. The two second light holes are symmetrical along the vertical axis of the vertical side panel, and the "U" shaped piece and the vertical side panel form a fastening area corresponding to the vertically arranged support. The two second light holes are symmetrical along the horizontal axis of the vertical side panel, and the "U" shaped piece and the vertical side panel form a fastening area corresponding to the horizontally arranged support.

9. The stud adapter instrument securement device of claim 7, wherein: The support fixing assembly comprises a second bolt arranged outside the vertical side panel and a second locking nut arranged inside the vertical side panel, the second bolt is arranged in the two second light holes, and the screw rod of the second bolt is arranged in the second light hole. The outer end of the second bolt has a head, and the head of the second bolt and the outer side wall of the vertical side panel have an assembly gap for arranging the plate-shaped support, so that the second bolt is used to penetrate the plate-shaped support and the vertical side panel in sequence. The outer end of the second bolt is an expansion end, so that the expansion end of the second bolt is used to be punched into the wall surface of the wall-shaped support.