Support for field instrument

By designing support components and a detachable instrument fixing structure, the problems of unstable support and poor portability of field instrument supports in complex terrain and harsh weather conditions have been solved, achieving stable support and convenient movement of multiple instruments.

CN224107943UActive Publication Date: 2026-04-10BEIJING BYCOX TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-05
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing field instrument supports are ineffective in complex terrain and harsh weather conditions, making it difficult to change working positions and resulting in poor portability.

Method used

A field instrument support bracket was designed, including a support assembly, a plate support assembly, and an instrument fixing assembly. Through the combination of main support components and secondary support components, it provides multi-point fixation and stable support. The detachable structure of the bracket facilitates instrument installation and movement.

Benefits of technology

The stability and functionality of the stand have been improved, enabling it to stably support a variety of instruments in harsh environments, facilitating equipment movement when changing work positions, and enhancing portability.

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Abstract

The utility model relates to the technical field of equipment supports, in particular to a field instrument support which comprises a supporting assembly, a plate support assembly and an instrument fixing assembly, the supporting assembly comprises a main supporting piece and a secondary supporting piece, the main supporting piece comprises a supporting main rod and a plurality of supporting side rods in the circumferential direction of the supporting main rod, and one end of each supporting side rod is rotationally connected to the supporting main rod; the secondary supporting piece comprises a connecting disc annularly arranged on the supporting main rod and a plurality of connecting ropes surrounding the connecting disc in the circumferential direction, one end of each connecting rope is connected to the connecting disc, and the other end of each connecting rope is connected with the ground; the plate support assembly comprises a first connecting piece and a plate mounting piece arranged on the first connecting piece, and the first connecting piece is detachably connected to the supporting main rod. The instrument fixing assembly comprises a second connecting piece and a plurality of instrument mounting pieces arranged on the second connecting piece at intervals, the second connecting piece is detachably connected to the supporting main rod and rotationally connected with one end of each instrument mounting piece, and the supporting stability, functionality and portability of the support for the field instrument are improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of equipment support, in particular to a support for field instruments. BACKGROUND

[0002] With the progress of science and technology, the survey or observation work in the field also develops towards a deeper level, and the application of multiple instruments is more popular. Researchers need to use more instruments during surveying to obtain more observation data.

[0003] Due to the complex terrain or harsh weather that the field work often faces, such as cliff ridges or severe storms and snow, in order to ensure the supporting effect, in the related technology, these instruments are usually supported and fixed on the ground in the field by a support respectively. However, this will cause more difficulty and inconvenience in changing the working position during surveying, and the portability of the support in the field is poor. CONTENT OF THE INVENTION

[0004] The present application provides a support for field instruments, aiming to enable the support to fix multiple devices and improve the fixing and supporting effect of the support on the ground.

[0005] The specific technical solutions are as follows:

[0006] The embodiment of the present application provides a support for field instruments, which comprises:

[0007] a support assembly, the support assembly comprising a main support member and a secondary support member, the main support member comprising a support main rod and a plurality of support side rods, all the support side rods being arranged around the circumference of the support main rod, one end of each of the support side rods being rotatably connected to the support main rod, the secondary support member comprising a connecting disc and a plurality of connecting ropes, the connecting disc being annularly arranged on the support main rod, all the connecting ropes being arranged around the circumference of the connecting disc, one end of each of the connecting ropes being connected to the connecting disc, and the other end of each of the connecting ropes being used for connecting to the ground;

[0008] a plate support assembly, the plate support assembly comprising a first connecting member and a plate mounting member, the first connecting member being detachably connected to the support main rod, and the plate mounting member being arranged on the first connecting member;

[0009] an instrument fixing assembly, the instrument fixing assembly comprising a second connecting member and a plurality of instrument mounting members, the second connecting member being detachably connected to the support main rod, all the instrument mounting members being arranged at intervals on the second connecting member, and one end of each of the instrument mounting members being rotatably connected to the second connecting member.

[0010] In some embodiments, the support main rod is a hollow rod structure, and a plurality of wire holes are formed in the support main rod, the wire holes being arranged close to the plate support assembly and / or the instrument fixing assembly;

[0011] The support main rod comprises a plurality of connecting rod segments, the plurality of connecting rod segments being coaxially sleeved in sequence, and a limiting hole is formed in each of the connecting rod segments, and two adjacent connecting rod segments are connected by a fastener penetrating the corresponding limiting holes;

[0012] A plurality of limiting holes are formed in at least one of the connecting rod segments.

[0013] In some embodiments, the support assembly further comprises a plurality of bottom mounting rods, the bottom mounting rods being arranged between adjacent two support side rods and between the support side rods and the support main rod respectively, and at least part of the bottom mounting rods jointly form an instrument placing flat shelf.

[0014] And / or, the support assembly further comprises an additional support rod, the additional support rod being detachably connected to the top or bottom of the support main rod, and the additional support rod being a steel pipe.

[0015] In some embodiments, the plate mounting member comprises a longitudinal connecting rod and two mutually parallel transverse connecting rods, the longitudinal connecting rod being connected between the two transverse connecting rods and being rotationally connected with the first connecting member;

[0016] The longitudinal connecting rod is located above one of the support side rods, a plurality of first connecting holes are formed in the one of the support side rods, all the first connecting holes being uniformly distributed along the rod extension direction of the support side rod, the plate support assembly further comprises an intermediate connecting rod, one end of the intermediate connecting rod being rotationally connected with the longitudinal connecting rod, and the other end of the intermediate connecting rod being connected with any one of the first connecting holes.

[0017] In some embodiments, the field instrument support further comprises a solar panel, the solar panel comprising an illumination panel, the illumination panel being detachably connected with the transverse connecting rod;

[0018] The solar panel further comprises a support folding member, the support folding member being arranged at the back side of the illumination panel, one end of the support folding member being rotationally connected with the illumination panel, and the other end of the support folding member being used for connecting with the ground.

[0019] In some embodiments, the number of the support folding members is a plurality, and all the support folding members are arranged at intervals at the back side of the illumination panel.

[0020] And / or, the solar panel further comprises a bottom connecting rod, one end of the bottom connecting rod is rotatably connected with the light receiving panel, the other end of the bottom connecting rod is detachably connected with the support folding piece, and a ground mounting hole is arranged on the bottom connecting rod.

[0021] In some embodiments, a vertically extending mounting shaft is arranged on the second connecting piece, the instrument mounting piece comprises a fastener, and the fastener is slidably connected to the mounting shaft.

[0022] All the instrument mounting pieces are sequentially sleeved on the mounting shaft in the vertical direction and located between the second connecting piece and the fastener.

[0023] In some embodiments, the field instrument support further comprises a plurality of mounting assemblies, the mounting assembly comprises a connecting part and a mounting part, the connecting part is sleeved on the support main rod and is slidable relative to the support main rod, the mounting part is arranged on the side of the connecting part away from the support main rod, and the second connecting piece is detachably connected with the mounting part.

[0024] In some embodiments, a clamping groove is arranged on the second connecting piece, and the mounting part is inserted into the clamping groove, so that the instrument fixing assembly and the mounting assembly are limitingly fixed.

[0025] In some embodiments, a mounting hole is arranged at the position corresponding to the clamping groove of the mounting part, a protrusion is slidably arranged in the mounting hole, and a limiting groove is arranged at the position corresponding to the protrusion in the clamping groove.

[0026] The mounting assembly further comprises a moving lock tongue, the moving lock tongue is located on the side of the mounting hole away from the clamping groove and connected with the protrusion, and the moving lock tongue can drive the protrusion to move along the axial direction of the mounting hole towards the direction close to or away from the limiting groove.

[0027] The field instrument support provided in the application embodiment includes a support assembly, a plate support assembly, and an instrument fixing assembly. The support assembly comprises a main support member and secondary support members. The main support member supports the entire support structure via a main support rod and multiple side support rods, and is further tightened and fixed by the secondary support members, thereby improving the overall support and fixation effect of the support structure, enhancing its stability and resistance to external forces, and enabling the support structure to adapt to harsh geographical and environmental conditions. Furthermore, the plate support assembly and the instrument fixing assembly are detachably connected to the main support rod, providing multiple mounting positions for the instrument on the support assembly. The assembly also includes multiple instrument mounting components that are rotatable relative to the main support rod, thereby further expanding the number of instruments that can be installed. This greatly enhances the functionality of the field instrument support. In other words, the field instrument support provided in this embodiment not only improves the support stability of the support but also provides multiple instrument fixing positions on the support. In this way, multiple instruments and equipment can be installed on one support, thus greatly increasing the functionality of the support. When it is necessary to change the working position, all instruments and equipment can be taken away by moving one support, making it more convenient to move the support and all instruments and equipment when working in the field, and greatly improving the portability of the field instrument support. Attached Figure Description

[0028] Figure 1 This is a schematic diagram of the structure of a field instrument support provided in an embodiment of this application when the additional support rod is at the top;

[0029] Figure 2 for Figure 1 A partial structural diagram of part A in the middle;

[0030] Figure 3 A schematic diagram of the structure of a field instrument support provided in an embodiment of this application when the additional support rod is at the bottom;

[0031] Figure 4 for Figure 3 A partial structural diagram of part B;

[0032] Figure 5 A schematic diagram of the support assembly of a field instrument bracket provided in an embodiment of this application;

[0033] Figure 6 for Figure 5 A partial structural diagram of section C;

[0034] Figure 7 A schematic diagram of the support assembly and plate support assembly of a field instrument bracket provided in an embodiment of this application;

[0035] Figure 8 This is a schematic diagram of the structure of the solar panel of a field instrument support provided in one embodiment of this application;

[0036] Figure 9 Another perspective view of the structure of the solar panel of the support for field instrument according to an embodiment of the present application;

[0037] Figure 10 A structure diagram of the instrument fixing assembly of the support for field instrument according to an embodiment of the present application in a folded state;

[0038] Figure 11 A structure diagram of the instrument fixing assembly of the support for field instrument according to an embodiment of the present application in an unfolded state;

[0039] Figure 12 An internal cross-sectional diagram of the instrument fixing assembly of the support for field instrument according to an embodiment of the present application;

[0040] Figure 13 A structure diagram of the mounting assembly of the support for field instrument according to an embodiment of the present application;

[0041] Figure 14 An internal cross-sectional diagram of the mounting assembly of the support for field instrument according to an embodiment of the present application;

[0042] Figure 15 A structure diagram of the mounting assembly and the instrument fixing assembly of the support for field instrument according to an embodiment of the present application.

[0043] Explanation of reference signs:

[0044] 10, support assembly;

[0045] 11, main support; 111, main support rod; 1111, wire hole; 1112, connecting rod segment; 1113, limiting hole; 112, side support rod; 1121, first connecting hole; 12, secondary support; 121, connecting disc; 122, connecting rope; 13, connecting ring; 14, connecting lock; 15, support disc; 16, additional support rod; 17, bottom mounting rod;

[0046] 20, plate support assembly; 21, first connecting piece; 22, plate mounting piece; 221, longitudinal connecting rod; 222, transverse connecting rod; 23, intermediate connecting rod;

[0047] 30, instrument fixing assembly; 31, second connecting piece; 311, clamping groove; 312, mounting seat; 32, instrument mounting piece; 321, mounting disc; 322, connecting column; 33, mounting shaft; 34, fastener;

[0048] 40, solar panel; 41, light receiving panel; 42, support folding piece; 43, bending part; 44, bottom connecting rod;

[0049] 50, mounting assembly; 51, mounting portion; 511, mounting hole; 512, empty slot; 52, connecting portion; 53, moving lock tongue; 54, protruding block. DETAILED DESCRIPTION

[0050] In order to make the purpose, technical scheme and advantages of the present application more clear, the present application is further described in detail below in combination with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and not to limit the present application.

[0051] In the description of the present application, it should be understood that the orientation or position relationship indicated by the terms "upper", "lower", "left", "right" and the like is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the device or element indicated must have a particular orientation, be constructed and operated in a particular orientation, therefore the terms describing the position relationship in the drawings are only used for exemplary illustration, and cannot be understood as a limitation of the present application, for those skilled in the art, the specific meaning of the above terms can be understood according to the specific circumstances.

[0052] In addition, the terms "first", "second" are only for descriptive purposes, and cannot be understood as implying or implying relative importance or implicitly indicating the number of indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more features. In the description of the present application, the meaning of "multiple" is at least two, such as two, three, etc., unless otherwise explicitly specified and limited.

[0053] In the description of the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting", "fixing" and the like should be understood in a broad sense, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the internal communication of two elements or the interaction relationship between two elements, unless otherwise explicitly limited. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0054] As mentioned in the background section, with the progress of science and technology, the survey or observation work in the field also develops to a deeper level, and the application of multiple instruments is more popular. Researchers need to use more instruments and equipment when surveying to obtain more observation data needed.

[0055] Due to the complex terrain (such as cliff, shoulder, ridge, valley, etc.) or bad weather (such as heavy rain, wind, lightning, snowstorm, dust, etc.) that will be often faced in field work, and various mutations and environment, in order to ensure the supporting effect, in the related art, the instruments and equipment are respectively supported and fixed on the ground in the field by a support, however, this will cause difficulty and inconvenience in changing the working position during the surveying work, the portability of the support in the field is poor, and the supporting performance cannot be guaranteed.

[0056] Based on the above, the applicant of the present application proposes the technical scheme in the embodiments of the present application, specifically, the structure of the support for field instruments is improved, specifically, the supporting structure is changed, and various connecting assemblies are provided, so that the support for field instruments can provide various fixed positions, and further improve the supporting performance, so that it can resist the influence of external harsh environment and ensure the normal use of the instruments.

[0057] The above is the core idea of the present application, and the technical scheme in the embodiments of the present application will be described clearly and completely in combination with the drawings in the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.

[0058] As shown in Figures 1-4 The embodiments of the present application provide a support for field instruments, which comprises a supporting assembly 10, a plate support assembly 20 and an instrument fixing assembly 30.

[0059] The supporting assembly 10 comprises a main support 11 and a secondary support 12, the main support 11 comprises a supporting main rod 111 and a plurality of supporting side rods 112, all the supporting side rods 112 are arranged around the circumference of the supporting main rod 111, one end of each supporting side rod 112 is rotationally connected to the supporting main rod 111, the secondary support 12 comprises a connecting disc 121 and a plurality of connecting ropes 122, the connecting disc 121 is annularly arranged on the supporting main rod 111, all the connecting ropes 122 are arranged around the circumference of the connecting disc 121, one end of each connecting rope 122 is connected to the connecting disc 121, and the other end of each connecting rope 122 is used for connecting with the ground.

[0060] For the support for field instruments provided in the embodiments, the supporting assembly 10 is an important component for fixing and supporting the whole support and the instruments and equipment installed on the support, which provides stable support and ensures the balance and safety of the whole structure. The main support 11 is the core part of the supporting assembly 10 and plays a main supporting role, and the secondary support 12 plays an auxiliary supporting role, the secondary support 12 can further enhance the stability and lateral force resistance of the supporting assembly 10, and the combination of the two can effectively guarantee the supporting effect of the whole support.

[0061] Specifically, please continue to see Figure 5 and Figure 6 As shown in the drawings, all the support side bars 112 are arranged circumferentially around the support main bar 111, and one end of each support side bar 112 is rotationally connected with the support main bar 111, that is, when it is needed to set up the field instrument support, all the support side bars 112 can be turned towards the direction away from the support main bar 111, so that the support main bar 111 and all the support side bars 112 form a stable radial support leg, thereby ensuring the stability of the support, compared with the design of a single support main bar 111, it can prevent the support main bar 111 from tilting or collapsing due to excessive force on one side. When it is needed to fold up the field instrument support, the support side bars 112 are turned towards the direction close to the support main bar 111, that is, the support assembly 10 is folded, which facilitates the carrying and storage of the support as a whole.

[0062] Please continue to see Figure 5 As shown in the drawings, specifically, one end of the support side bar 112 can be connected with the support main bar 111 through the connecting ring 13 arranged on the support main bar 111. Specifically, the connecting ring 13 is sleeved on the support main bar 111 and can slide up and down along the axial direction of the support main bar 111 to adjust the setting position. On this basis, one end of the support side bar 112 is hinged with the connecting ring 13, thereby realizing the circumferential arrangement of all the support side bars 112 and the rotation effect relative to the support main bar 111.

[0063] Of course, in other embodiments, other connection methods can also be used between the support side bar 112 and the support main bar 111. In addition, the rotation angle of the support side bar 112 relative to the support main bar 111 can also be flexibly adjusted as needed, thereby adapting to different installation angles and terrain conditions.

[0064] As shown in the drawings, Figure 4 The connecting disc 121 of the secondary support 12 is, for example, an annular disc structure arranged on the support main bar 111, which can be installed at the middle or upper part of the support main bar 111 and is used to fix the connecting ropes 122. All the connecting ropes 122 are arranged circumferentially around the connecting disc 121, forming a radial tension system. Specifically, a plurality of connecting holes can be annularly arranged on the connecting disc 121, and one end of each connecting rope 122 can pass through the connecting hole through the connecting lock 14 to realize the connection between the connecting rope 122 and the connecting disc 121. The other end of the connecting rope 122 can be connected with the ground through a ground peg or other fixing device. The main function of the connecting rope 122 is to enhance the overall stability of the support assembly 10 through tension, further avoiding the inclination or shaking of the primary support 11 due to external load or wind force.

[0065] When installing the support for the field instrument, the support side rod 112 is first opened, the support main rod 111 and the support side rod 112 are fixed on the ground at the same time, and then the connecting rope 122 is fixed to the ground. This multi-position fixing mode enables the support assembly 10 to remain stable in various complex environments.

[0066] The support main rod 111 and the support side rod 112 can be made of high-strength steel or aluminum alloy, and the connecting rope 122 can be made of high-strength fiber material or steel wire rope to ensure sufficient strength. The material and size of the connecting disc 121 can be selected according to the diameter of the support main rod 111 and the number of connecting ropes 122 to ensure that it can withstand the tension of the connecting rope 122.

[0067] Further, referring to Figure 7 As shown, the board support assembly 20 includes a first connecting piece 21 and a board mounting piece 22, the first connecting piece 21 is detachably connected to the support main rod 111, and the board mounting piece 22 is arranged on the first connecting piece 21.

[0068] The arrangement of the board support assembly 20 facilitates the installation of a board-shaped instrument, such as a solar panel 40, on the support for the field instrument. The first connecting piece 21 is detachably connected to the support main rod 111, so that the board support assembly 20 can be installed on the support main rod 111 when it is needed to install a board-shaped instrument, and can be detached from the support main rod 111 when it is not needed.

[0069] For example, the first connecting piece 21 and the board mounting piece 22 can be made of high-strength steel or aluminum alloy. The first connecting piece 21 and the support main rod 111 can be connected by screwing, so that the board support assembly 20 can be easily detached. For example, a hole is formed in the support main rod 111, and the first connecting piece 21 is arranged corresponding to the connecting hole in the support main rod 111 to realize screwing and fixing.

[0070] Further, referring to Figures 8-10 As shown, the instrument fixing assembly 30 includes a second connecting piece 31 and a plurality of instrument mounting pieces 32, the second connecting piece 31 is detachably connected to the support main rod 111, all the instrument mounting pieces 32 are arranged at intervals on the second connecting piece 31, and one end of each instrument mounting piece 32 is rotatably connected to the second connecting piece 31.

[0071] Specifically, the second connecting piece 31 is detachably connected to the support main rod 111 to facilitate the detachment of the instrument fixing assembly 30 from the support main rod 111 when it is not needed. In addition, the instrument fixing assembly 30 includes a plurality of instrument mounting pieces 32, and each is rotatably connected to the second connecting piece 31. Therefore, when multiple instruments need to be installed, the instrument mounting pieces 32 can be rotated out from the second connecting piece 31 to expand the function of the support. When not needed, the instrument mounting pieces 32 can be rotated to gather together to facilitate storage.

[0072] In summary, the field instrument support provided by the embodiment includes a support assembly 10, a plate support assembly 20, and an instrument fixing assembly 30. The support assembly 10 includes a main support 11 and a secondary support 12. The main support 11 supports the overall support through a support main rod 111 and multiple support side rods 112, and further tightens and fixes through the secondary support 12, thereby improving the support and fixing effect of the overall support, and the stability and resistance to external force are stronger. The support can adapt to harsh geographical and environmental conditions. On this basis, the plate support assembly 20 and the instrument fixing assembly 30 are detachably connected to the support main rod 111, thereby providing multiple positions on the support assembly 10 that can install instruments. The instrument fixing assembly 30 further includes multiple instrument mounting parts 32 that can rotate relative to the support main rod 111, thereby further expanding the number of instruments installed. Therefore, the functionality of the field instrument support is greatly improved. That is, the field instrument support provided by the embodiment improves the support stability of the support and provides multiple instrument fixing positions on the support. Therefore, multiple instruments can be installed on one support, thereby greatly increasing the functionality of the support. When the working position needs to be changed, one support can carry all instruments, which is more convenient for moving the support and all instruments in the field, thereby greatly improving the portability of the field instrument support.

[0073] The field instrument support provided by the embodiment can be applied to many fields such as petroleum and geological exploration, meteorology, earthquake, and mobile emergency observation, can be quickly deployed, quickly transported, and can resist strong wind, heavy rain, and sandstorm and other harsh weather.

[0074] For example, the number of support side rods 112 of the main support 11 can be at least three. On this basis, all support side rods 112 are uniformly distributed along the circumference of the support main rod 111, thereby further ensuring the support stability of the support main rod 111 at each position along the axial direction.

[0075] As shown in Figure 5 and Figure 6 , the support assembly 10 can further include a support disc 15. The support disc 15 is annularly arranged at the bottom of the support main rod 111, and multiple fixing holes are arranged on the support disc 15. The support main rod 111 can be connected to the ground by being inserted into the fixing holes and then inserted into the ground. The support disc 15 at the bottom of the support assembly 10 can increase the contact area between the bottom of the support assembly 10 and the ground. The support disc 15 can provide fixing holes, and the connection effect with the ground can be further improved by inserting the ground pegs into the fixing holes, thereby further improving the stability of the support assembly 10.

[0076] As shown in Figure 6As shown in the drawings, in some embodiments, the support main rod 111 is a hollow rod structure, and a wiring hole 1111 is formed on the support main rod 111, and the wiring hole 1111 is arranged close to the board support assembly 20 or the instrument fixing assembly 30. In this way, the connection wiring of the instrument equipment can be concentrated in the inside of the support main rod 111, avoiding the line from being exposed to the outside and being eroded by the external environment, thereby prolonging the service life of the line in the field use. Specifically, the number and position of the wiring hole 1111 can be flexibly designed according to the number of instrument equipment and the installation position of the instrument equipment.

[0077] As shown in the drawings, Figure 2 As shown in the drawings, in some embodiments, the support main rod 111 includes a plurality of connecting rod segments 1112, the plurality of connecting rod segments 1112 are coaxially sleeved in sequence, and a limiting hole 1113 is formed on each connecting rod segment 1112, and at least one connecting rod end 1112 is provided with a plurality of limiting holes 1113, and the adjacent two connecting rod segments 1112 are connected by a fastener penetrating the corresponding limiting holes 1113. In this way, the support main rod 111 can be retracted for storage, reducing the occupied space and facilitating packaging and transportation. In addition, since a plurality of limiting holes 1113 are formed on each connecting rod segment 1112, the length of the support main rod 111 can be adjusted by changing the position of the connected limiting hole 1113, thereby further improving the use flexibility of the support assembly 10.

[0078] In specific implementation, a gap allowance can be left between the adjacent two connecting rod segments 1112, so that the operator's hand will not be pinched when the adjacent connecting rod segments 1112 are retracted due to the loose fixing of the fixing member on the adjacent connecting rod segments 1112, thereby further ensuring the use safety.

[0079] As shown in the drawings, Figure 1 and Figure 3 As shown in the drawings, in some embodiments, the support assembly 10 further includes an additional support rod 16, which is detachably connected to the top or bottom of the support main rod 111, and the additional support rod 16 is a steel pipe. When the additional support rod 16 is connected to the bottom of the support main rod 111, it can function as a fixed nail, that is, in a relatively harsh weather condition such as a windy environment, the additional support rod 16 can be extended and connected to the bottom of the support main rod 111, and the additional support rod 16 is driven into the ground, which can further ensure the structural stability of the entire support assembly 10.

[0080] In addition, when the additional support rod 16 is installed on the top of the main support rod 111, it can act as a lightning rod because the additional support rod 16 is made of steel pipe. Since the entire support structure is usually made of metal, the lightning rod formed by the additional support rod 16 can ensure the normal use of the instrument and equipment and further ensure the safety of the operator.

[0081] For example, a connector can be provided at the bottom of the additional support rod 16. The connector is a disc-shaped structure. When it is necessary to connect the additional support rod 16 to the bottom of the main support rod 111, it can be connected to the support plate 15 at the bottom of the main support rod 111 through the connector. Similarly, a support plate 15 can also be provided at the top of the main support rod 111. When it is necessary to connect the additional support rod 16 to the top of the main support rod 111, the additional support rod 16 and the main support rod 111 can be connected and fixed through the support plate 15. In addition, when the additional support rod 16 acts as a lightning rod, a copper gasket can be provided between the additional support rod 16 and the support plate 15 of the main support rod 111 to further increase the contact area and conductivity between the two.

[0082] Furthermore, since the main support rod 111 is a hollow rod structure, the diameter of the additional support rod 16 can be set to be slightly smaller than the hollow inner diameter of the main support rod 111. In this way, when the additional support rod 16 is not needed, it can be inserted into the interior of the main support rod 111, thereby further saving storage space and reducing the relative vibration between structures during transportation.

[0083] like Figure 3 , Figure 5 and Figure 7 As shown, in some embodiments, the support assembly 10 further includes a plurality of bottom mounting rods 17. The bottom mounting rods 17 are respectively disposed between two adjacent support side rods 112 and between the support side rods 112 and the support main rod 111. All the bottom mounting rods 17 together form an instrument placement plane frame.

[0084] Since not only are the support side rods 112 and the support main rod 111 connected by bottom mounting rods 17, but also adjacent support side rods 112 are connected by bottom mounting rods 17, at least three bottom mounting rods 17 form a triangular support structure, as shown in the figure. Figure 2 As shown in the diagram. Thus, the at least three bottom mounting rods 17 form a placement surface that can be used to place instruments and equipment, such as battery boxes. The bottom mounting rods 17 not only further support the placement of instruments and equipment, such as battery boxes, but also increase the weight at the bottom of the bracket, making the base more stable and thus further enhancing the overall structural stability of the bracket.

[0085] Specifically, when placing the instrument equipment on the flat rack of the instrument, the force balance can be referred to for design. For example, two instrument equipments are placed on both sides of the support main rod 111 in opposition, and the force balance structure formed by two-by-two placement further increases the use stability of the field instrument support.

[0086] As shown in Figure 7 some embodiments, the plate mounting piece 22 includes a longitudinal connecting rod 221 and two mutually parallel transverse connecting rods 222, the longitudinal connecting rod 221 is connected between the two transverse connecting rods 222, and the longitudinal connecting rod 221 is rotationally connected with the first connecting piece 21.

[0087] The two mutually parallel transverse connecting rods 222 and the longitudinal connecting rod 221 arranged between the two transverse connecting rods 222 can jointly form a mounting plane, which can place a plate-shaped instrument such as a solar panel 40. In specific implementation, a connecting hole can be formed on the transverse connecting rod 222, and the plate-shaped instrument can be connected and fixed with the plate mounting piece 22 through the connecting hole. In addition, the rotational connection between the longitudinal connecting rod 221 and the first connecting piece 21 can adopt hinged connection between them, so as to facilitate relative rotation while ensuring connection strength.

[0088] Further, the longitudinal connecting rod 221 is located above one of the support side rods 112, and a plurality of first connecting holes 1121 are arranged on the support side rod 112, all the first connecting holes 1121 are uniformly distributed along the rod extension direction of the support side rod 112. The plate support assembly 20 further includes a middle connecting rod 23, one end of the middle connecting rod 23 is rotationally connected with the longitudinal connecting rod 221, and the other end of the middle connecting rod 23 is connected with any first connecting hole 1121.

[0089] By arranging the middle connecting rod 23, the plate support assembly 20 can be better supported, and the inclination of the plate support assembly 20 can be changed by adjusting the connection between the middle connecting rod 23 and the different first connecting holes 1121 on the support side rod 112, so that the plate support assembly 20 can adapt to different scenes and spaces.

[0090] As shown in Figures 7-9 some embodiments, the field instrument support further includes a solar panel 40, and the solar panel 40 includes a light-reflecting panel 41, which is detachably connected with the transverse connecting rod 222.

[0091] The solar panel 40 is used to realize the function of solar power generation, which can be connected with a storage battery or directly connected with other electrical instruments. Among them, the light-reflecting panel 41 of the solar panel 40 mainly realizes the function of receiving light. The technical content of how the solar panel 40 realizes power generation is prior art, which will not be described here.

[0092] When the solar panel 40 is mounted on the panel mounting member 22, since the panel mounting member 22 is rotatably connected to the first connecting member 21, and the middle connecting rod 23 of the panel mounting member 22 can be connected to any of the first connecting holes 1121 on the support side rod 112, the tilt of the solar panel 40 can be adjusted by rotating the panel mounting member 22, so that the light-emitting panel 41 can better adapt to different light angles.

[0093] Furthermore, the solar panel 40 also includes a supporting folding member 42, which is disposed on the back side of the light-emitting panel 41. One end of the supporting folding member 42 is rotatably connected to the light-emitting panel 41, and the other end of the supporting folding member 42 is used to connect to the ground.

[0094] Because the support frame is in a dark environment during field operations, but the instruments still require the solar panel 40 to absorb light energy to provide power, and because the solar panel 41 is detachably connected to the horizontal support rod, the solar panel 41 can be removed from the support frame for easy placement in a sunny location. Furthermore, a folding support 42 is located on the back side of the solar panel 41, supporting the solar panel 40 and allowing it to be independently mounted on the ground, facing the sun.

[0095] In practice, when the solar panel 40 needs to be removed and moved, the sunlit panel 41 and the horizontal connecting rod 222 can be disassembled and removed first. Then, the support folding member 42 can be rotated out from one side of the sunlit panel 41 so that the support folding member 42 can form a support leg relative to the sunlit panel 41 and support it between the sunlit panel 41 and the ground, thereby placing the sunlit panel 41 in a sunny location and tilting it towards the sunlight.

[0096] For example, the number of supporting folding members 42 can be set to multiple, and multiple supporting folding members 42 are arranged at intervals on one side of the light-emitting panel 41, thereby further improving the support and fixing effect.

[0097] In addition, a bending part 43 can be provided at the end of the supporting folding member 42 facing the ground. The bending part 43 can fit in close to the ground. A fixing hole is provided on the bending part 43. A ground nail can be inserted into the fixing hole and inserted into the ground to further fix the supporting folding member 42, thereby ensuring the stability of the solar panel 40 during use.

[0098] like Figure 8 and Figure 9 As shown, in some embodiments, the solar panel 40 may further include a bottom connecting rod 44, one end of which is rotatably connected to the light-emitting panel 41, and the other end of which is detachably connected to the support folding member 42. Furthermore, the bottom connecting rod 44 is provided with a ground mounting hole.

[0099] The bottom connecting rod 44 can further support and fix between the support folding piece 42 and the light-reflecting panel 41 after the support folding piece 42 is unfolded, so as to further improve the structural stability and ensure the stability of the solar panel 40 during use. The bottom connecting rod 44 and the support folding piece 42 are detachably connected, for example, the end of the connecting rod is inserted into the support folding piece 42, or the end of the connecting rod is clamped with the support folding piece 42, so as to facilitate the unfolding of the bottom connecting rod 44 for support or folding.

[0100] For example, the connection between the bottom connecting rod 44 and the support folding piece 42 and the light-reflecting panel 41 can be flexibly selected, for example, one end of the bottom connecting rod 44 is hinged with the back side of the light-reflecting panel, and the other end of the bottom connecting rod 44 is clamped with the support folding piece 42.

[0101] On this basis, for example, a ground installation hole can be further provided on the bottom connecting rod 44, so that the solar panel 40 can be further fixed by inserting the ground nail into the ground installation hole and inserting it below the ground, so as to further ensure the stability of the solar panel 40 during use. Specifically, the ground installation hole can be provided in multiple.

[0102] As shown in Figures 10-12 In some embodiments, the second connecting rod 31 is provided with a vertically extending installation shaft 33, the instrument installation piece 32 includes a fastener 34, the fastener 34 is slidably connected to the installation shaft 33, and all the instrument installation pieces 32 are sequentially sleeved on the installation shaft 33 in the vertical direction and located between the second connecting rod 31 and the fastener 34.

[0103] Since the installation shaft 33 extends in the vertical direction, all the instrument installation pieces 32 are sequentially sleeved on the installation shaft 33, so that when the instrument installation piece 32 is needed, the instrument installation piece 32 can be unfolded in a staggered manner in the vertical direction, so as to provide enough space for installing instruments and equipment.

[0104] Specifically, a vertically extending installation seat 312 can be provided on the second connecting rod 31, and the installation shaft 33 is inserted into the installation seat 312, so that all the instrument installation pieces 32 inserted into the installation shaft 33 can be sequentially arranged in the vertical direction.

[0105] On this basis, when the fastener 34 is arranged on the mounting shaft 33, the mounting shaft 33 can be penetrated through the mounting seat 312, the fastener 34 is located outside the mounting seat 312 and is sleeved with the mounting shaft 33, so that when the fastener 34 is moved along the axial direction of the mounting shaft 33, the fastener 34 can clamp all the instrument mounting members 32 on the mounting shaft 33, thereby realizing the fixation of the position of the mounting seat 312. In specific implementation, the end of the mounting shaft 33 can be provided with external threads, and correspondingly, the fastener 34 is provided with a threaded hole, that is, the sliding of the fastener 34 relative to the mounting shaft 33 is spiral sliding, thereby playing a fastening role on the instrument mounting member 32.

[0106] Referring to Figure 10 As shown in the figure, the instrument mounting member 32 can include an installation disc 321 and a connecting column 322, the installation disc 321 is used for installing instrument equipment, and the connecting column 322 is connected with the installation disc 321 and the mounting seat 312 respectively, so that the installation disc 321 is far away from the support main rod 111, thereby providing a larger installation space. When the instrument mounting member 32 is not needed, the fastener 34 can be loosened, so that all the instrument mounting members 32 are folded, thereby saving the occupied space and facilitating storage.

[0107] As shown in the figure, Figure 13 and Figure 14 In some embodiments, the field instrument support further includes a plurality of mounting assemblies 50, the mounting assembly 50 includes a connecting part 52 and a mounting part 51, the connecting part 52 is sleeved on the support main rod 111 and is slidable relative to the support main rod 111, the mounting part 51 is arranged on the side of the connecting part 52 away from the support main rod 111, and the second connecting piece 31 is detachably connected with the mounting part 51.

[0108] By arranging a plurality of mounting assemblies 50, more instrument installation positions can be provided on the support main rod 111, when the instrument needs to be erected again, the instrument can be connected with the support assembly 10 through the detachable connection with the mounting assembly 50, thereby further expanding the function of the support. In addition, the connecting part 52 of the mounting assembly 50 can slide relative to the support main rod 111, so that the position of the mounting assembly 50, that is, the position of the installed instrument equipment, can be changed at will, and the flexibility of use is higher.

[0109] As shown in the figure, Figure 15 For example, the connection between the instrument fixing assembly 30 and the mounting assembly 50, in some embodiments, the second connecting piece 31 is provided with a clamping groove 311, when the instrument fixing assembly 30 is installed and fixed with the support main rod 111, specifically, the mounting part 51 of the mounting assembly 50 is inserted into the clamping groove 311 on the second connecting piece 31 of the instrument fixing assembly 30, so as to realize the limiting fixation between the instrument fixing assembly 30 and the mounting assembly 50.

[0110] Further, the mounting portion 51 is provided with a mounting hole 511 at a position corresponding to the clamping groove 311, a protrusion 54 for clamping with the clamping groove 311 is slidably arranged in the mounting hole 511, and a limiting groove corresponding to the protrusion 54 is further arranged in the clamping groove 311. Since the protrusion 54 is slidable relative to the mounting hole 511, that is, the protrusion 54 can be slid into the limiting groove and clamped with the limiting groove, and can also be slid out of the limiting groove, the instrument fixing assembly 30 and the mounting assembly 50 can be disconnected.

[0111] In a specific implementation, the mounting assembly 50 further includes a moving lock tongue 53, the moving lock tongue 53 is located on a side of the mounting hole 511 away from the clamping groove 311 and is connected with the protrusion 54, and the moving lock tongue 53 can drive the protrusion 54 to move along the axis of the mounting hole 511 towards or away from the clamping groove 311.

[0112] On this basis, by arranging the moving lock tongue 53, the movement of the protrusion 54 can be controlled by controlling the moving lock tongue 53, and the operation is more convenient. In a specific implementation, an empty groove 512 can be arranged on the inner side of the mounting portion 51, the moving lock tongue 53 is arranged in the empty groove 512, the mounting hole 511 penetrates to a position of the empty groove 512, and the moving lock tongue 53 extends from one side of the empty groove 512. In this way, when an operator operates the protrusion 54, the protrusion 54 structure can be moved by the moving lock tongue 53 extending from the empty groove 512.

[0113] The above is only a specific implementation of the present application, but the protection scope of the present application is not limited thereto, any person skilled in the art can easily think of changes or replacements within the technical range disclosed in the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A support for a field instrument, characterized in that The utility model provides a support assembly (10), a plate support assembly (20) and an instrument fixing assembly (30), wherein the support assembly (10) comprises a main support (11) and a secondary support (12), the main support (11) comprises a support main rod (111) and a plurality of support side rods (112), all the support side rods (112) are arranged around the circumference of the support main rod (111), one end of each of the support side rods (112) is rotatably connected to the support main rod (111), the secondary support (12) comprises a connecting disc (121) and a plurality of connecting ropes (122), the connecting disc (121) is annularly arranged on the support main rod (111), and all the connecting ropes (122) are arranged around the circumference of the connecting disc (121); one end of each of the connecting ropes (122) is connected to the connecting disc (121), and the other end of each of the connecting ropes (122) is used for being connected to the ground; the plate support assembly (20) comprises a first connecting piece (21) and a plate mounting piece (22), the first connecting piece (21) is detachably connected to the support main rod (111), and the plate mounting piece (22) is arranged on the first connecting piece (21); the instrument fixing assembly (30) comprises a second connecting piece (31) and a plurality of instrument mounting pieces (32), the second connecting piece (31) is detachably connected to the support main rod (111), all the instrument mounting pieces (32) are arranged at intervals on the second connecting piece (31), and one end of each of the instrument mounting pieces (32) is rotatably connected to the second connecting piece (31). The support main rod (111) is a hollow rod structure, a plurality of wire holes (1111) are formed in the support main rod (111), and the wire holes (1111) are arranged close to the plate support assembly (20) and / or the instrument fixing assembly (30); The support main rod (111) comprises a plurality of connecting rod segments (1112), the connecting rod segments (1112) are coaxially sleeved in sequence, a limiting hole (1113) is formed in each of the connecting rod segments (1112), and adjacent two connecting rod segments (1112) are connected by means of a fastener penetrating the corresponding limiting holes (1113); At least one of the connecting rod segments (1112) is provided with a plurality of limiting holes (1113).

2. The field instrument support of claim 1, wherein, The support assembly (10) further comprises a plurality of bottom mounting rods (17), the bottom mounting rods (17) are arranged between adjacent two support side rods (112) and between the support side rods (112) and the support main rod (111) respectively, and at least part of the bottom mounting rods (17) jointly form an instrument placing flat shelf; And / or, the support assembly (10) further comprises an additional support rod (16), the additional support rod (16) is detachably connected to the top or bottom of the support main rod (111), and the additional support rod (16) is a steel pipe. ​ 3. The field instrument support of claim 1, wherein: ​ ​ 4. The field instrument support of claim 1, wherein: The plate mounting piece (22) comprises a longitudinal connecting rod (221) and two mutually parallel transverse connecting rods (222), the longitudinal connecting rod (221) is connected between the two transverse connecting rods (222) and is rotationally connected with the first connecting piece (21); The longitudinal connecting rod (221) is located above one of the support side rods (112), a plurality of first connecting holes (1121) are arranged on the one of the support side rods (112), all the first connecting holes (1121) are uniformly distributed along the rod extension direction of the support side rod (112), the plate support assembly (20) further comprises an intermediate connecting rod (23), one end of the intermediate connecting rod (23) is rotationally connected with the longitudinal connecting rod (221), and the other end of the intermediate connecting rod (23) is connected with any one of the first connecting holes (1121).

5. The support for field instruments according to claim 4, characterized in that The support for the field instrument further comprises a solar panel (40), the solar panel (40) comprises a light-reflecting panel (41), and the light-reflecting panel (41) is detachably connected with the transverse connecting rod (222); The solar panel (40) further comprises a support folding piece (42), the support folding piece (42) is arranged on the back side of the light-reflecting panel (41), one end of the support folding piece (42) is rotationally connected with the light-reflecting panel (41), and the other end of the support folding piece (42) is used for being connected with the ground.

6. The support for field instruments according to claim 5, characterized in that The number of the support folding pieces (42) is a plurality, and all the support folding pieces (42) are spaced apart on the back side of the light-reflecting panel (41); And / or, the solar panel (40) further comprises a bottom connecting rod (44), one end of the bottom connecting rod (44) is rotationally connected with the light-reflecting panel (41), the other end of the bottom connecting rod (44) is detachably connected with the support folding piece (42), and a ground mounting hole is arranged on the bottom connecting rod (44).

7. The field instrument support of claim 1, wherein: The second connecting piece (31) is provided with a vertically extending mounting shaft (33), the instrument mounting piece (32) comprises a fastener (34), and the fastener (34) is slidingly connected with the mounting shaft (33); All the instrument mounting pieces (32) are sequentially sleeved on the mounting shaft (33) in the vertical direction and are located between the second connecting piece (31) and the fastener (34).

8. The support for field instruments according to any of claims 1-7, characterized in that The support for the field instrument further comprises a plurality of mounting assemblies (50), the mounting assembly (50) comprises a connecting portion (52) and a mounting portion (51), the connecting portion (52) is sleeved on the support main rod (111) and is slidable relative to the support main rod (111), the mounting portion (51) is arranged on the side of the connecting portion (52) away from the support main rod (111), and the second connecting piece (31) is detachably connected with the mounting portion (51).

9. The support for field instruments according to claim 8, characterized in that The second connecting piece (31) is provided with a clamping groove (311), and the mounting portion (51) can be inserted into the clamping groove (311) to limit and fix the instrument fixing assembly (30) and the mounting assembly (50).

10. The support for field instruments according to claim 9, characterized in that The installation part (51) is provided with an installation hole (511) at a position corresponding to the clamping groove (311), a protrusion (54) is slidably arranged in the installation hole (511), and a limiting groove is arranged in the clamping groove (311) at a position corresponding to the protrusion (54); The installation assembly (50) further comprises a moving lock tongue (53) located on a side of the installation hole (511) away from the clamping groove (311) and connected with the protrusion (54), and the moving lock tongue (53) can drive the protrusion (54) to move along an axial direction of the installation hole (511) towards or away from the limiting groove.