Electromechanical equipment fixing frame for building construction environment
By using a modular design and combined connecting rods to fix the electromechanical equipment, the problems of large size and fixed dimensions of existing fixing frames are solved, enabling flexible adjustment and simplified transportation, adapting to the installation needs of various electromechanical equipment, and improving convenience and versatility.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-18
- Publication Date
- 2026-03-20
AI Technical Summary
The existing mechanical and electrical equipment mounting frames used in construction environments are fixed in structure, large in size, inconvenient to transport and store, and cannot be flexibly adjusted in size to adapt to the installation needs of different mechanical and electrical equipment, resulting in poor convenience and versatility.
A modular electromechanical equipment mounting bracket was designed. The length of the beams and columns can be adjusted by a combination of connecting rods and studs. Combined with dovetail slides and slide rails, it can adapt to the size requirements of different electromechanical equipment. It is also equipped with a telescopic baffle and flexible shock-absorbing longitudinal beams to improve flexibility and stability.
It enables flexible adjustment and modular installation of the fixed frame, simplifies the transportation and disassembly process, improves the versatility and stability of the equipment, adapts to the installation needs of various electromechanical equipment, and reduces the difficulties of transportation and installation.
Smart Images

Figure CN224018030U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to electromechanical equipment fixing frame, specifically, electromechanical equipment fixing frame for construction environment. BACKGROUND
[0002] In the construction environment, a variety of electromechanical equipment will be involved, for example: ventilator, motor, air compressor and other equipment, these equipment need to be installed with the aid of fixing frame auxiliary installation, the fixing frame adopted nowadays is usually frame type structure, has four vertical columns, four cross beams and four longitudinal beams of the three-dimensional structure, the electromechanical equipment to be installed is placed in the three-dimensional structure and installed corresponding to the electromechanical equipment. However, the fixing frame has the following technical problems due to the fixed structure: first, the fixing frame structure is large in size, and it is time-consuming and laborious to carry, transport and store, and the convenience is poor;Second, the fixing frame structure is fixed, and the size cannot be adjusted flexibly, so that it cannot adapt to the installation requirements of other electromechanical equipment, and the flexibility and versatility are poor. UTILITY MODEL CONTENTS
[0003] The technical purpose of the utility model is to provide an electromechanical equipment fixing frame for construction environment, which can be modularly assembled and the size can be adjusted.
[0004] The technical scheme adopted by the utility model is as follows:
[0005] An electromechanical equipment fixing frame for construction environment, the fixing frame is frame type structure, has four vertical columns, four cross beams and four longitudinal beams of the three-dimensional structure;
[0006] Each cross beam has a first cross beam section, a second cross beam section, which are independent and left-right butt joint combination, and a cross beam connecting rod for combining and connecting the first cross beam section and the second cross beam section in the length direction;
[0007] The side surface of the first cross beam section is provided with a first cross beam cavity in the concave structure along the length direction, and the other side surface of the first cross beam section is provided with a first cross beam adjusting groove corresponding to the first cross beam cavity and penetrating the first cross beam cavity;
[0008] The side surface of the second cross beam section is provided with a second cross beam cavity in the concave structure along the length direction, and the other side surface of the second cross beam section is provided with a second cross beam adjusting groove corresponding to the second cross beam cavity and penetrating the second cross beam cavity;
[0009] And the second beam cavity and the second beam adjusting slot on the second beam segment are aligned with the first beam cavity and the first beam adjusting slot on the first beam segment in the length direction, and the second beam cavity of the second beam segment is through in the length direction with the first beam cavity of the first beam segment;
[0010] The beam connecting rod is embedded in the beam cavity of the first beam segment and the second beam segment, and one end of the beam connecting rod is connected with a first stud that passes through the first beam adjusting slot of the first beam segment, and the other end of the beam connecting rod is connected with a second stud that passes through the second beam adjusting slot of the second beam segment, and the first stud and the second stud pass through the corresponding beam segment, and the threaded connection is locked with a locking nut.
[0011] The above technical measures are aimed at the particularity of the construction environment, and the beam connecting rod is embedded in the beam cavity of the first beam segment and the second beam segment, and the studs at both ends of the beam connecting rod pass through the corresponding beam adjusting slot, according to the size of the electrical equipment to be installed, the first beam segment and / or the second beam segment are slid to adjust the length of the beam, and the position of the first beam segment and / or the second beam segment is fixed by the locking nut on the stud, which improves the flexibility of the overall structure, can adjust the length of the beam according to the size of the electrical equipment to be installed, so as to adapt to the installation requirements of different electrical equipment, and effectively improve the versatility of the fixing frame; the first beam segment, the second beam segment and the beam connecting rod are combined and connected to realize modular installation, which is simple to disassemble and assemble, convenient to transport and store.
[0012] Further, the beam adjusting slot of the beam segment is closed at the butt joint end, and is through at the part away from the butt joint end and the external space of the face where the corresponding beam cavity is located;
[0013] The second beam adjusting slot of the second beam segment is disconnected with the first beam adjusting slot of the first beam segment in the length direction.
[0014] In the above technical measures, the beam adjusting slot of the beam segment is closed at the butt joint end, which can avoid excessive displacement of the beam segment; and is through at the part away from the butt joint end and the external space of the face where the corresponding beam cavity is located, which facilitates the installation and disassembly of the beam connecting rod and the passing of the first stud and the second stud on the beam connecting rod through the corresponding beam adjusting slot.
[0015] Further, the non-butt joint end of the beam segment is hinged to the corresponding column.
[0016] In the above technical measures, the non-butt joint end of the beam segment is hinged to the corresponding column, which can adjust the angle of the beam within a certain range to adapt to different requirements, and can rotate around the corresponding column when disassembled to realize quick disassembly and simplify the disassembly process.
[0017] Further, each of the columns has a first column segment, a second column segment which are independently and vertically butted and combined, and a column connecting rod which connects the first column segment and the second column segment in the height direction;
[0018] One side surface of the first column segment is provided with a first column cavity in a concave structure along the height direction, and the other side surface of the first column segment is provided with a first column adjusting slot corresponding to the first column cavity and penetrating the first column cavity;
[0019] One side surface of the second column segment is provided with a second column cavity in a concave structure along the height direction, and the other side surface of the second column segment is provided with a second column adjusting slot corresponding to the second column cavity and penetrating the second column cavity;
[0020] The second column cavity and the second column adjusting slot on the second column segment are vertically aligned with the first column cavity and the first column adjusting slot on the first column segment, and the second column cavity of the second column segment penetrates the first column cavity in the height direction;
[0021] The column connecting rod is embedded in the column cavity of the first column segment and the second column segment, one end of the column connecting rod is connected with a first stud which penetrates the first column adjusting slot of the first column segment, the other end of the column connecting rod is connected with a second stud which penetrates the second column adjusting slot of the second column segment, and the first stud and the second stud are threadedly connected with locking nuts at the portions penetrating the corresponding column segments.
[0022] The above technical measures are aimed at the particularity of the construction environment, the column connecting rod is embedded in the column cavity of the first column segment and the second column segment, and the studs at both ends of the column connecting rod penetrate the corresponding column adjusting slots, according to the size of the electrical equipment to be installed, the first column segment and / or the second column segment are slid to adjust the length of the column, the locking nuts on the studs are locked to fix the positions of the first column segment and / or the second column segment, the flexibility of the overall structure is improved, the length of the column can be adjusted according to the size of the electrical equipment to be installed, so as to adapt to the installation requirements of different electrical equipment, and the versatility of the fixing frame is effectively improved; the first column segment, the second column segment and the column connecting rod are combined and connected to realize modular installation, which is simple to disassemble and assemble and convenient to transport and carry.
[0023] Further, the column adjusting slot of the column segment is closed at the butting end and is in communication with the external space of the surface where the corresponding column cavity is located at the position away from the butting end;
[0024] The second column adjusting groove of the second column segment is disconnected with the first column adjusting groove of the first column segment in the length direction.
[0025] The column adjusting groove of the column segment in the above technical measures is closed at the butt joint end, which can avoid excessive displacement of the column segment; and is connected with the external space of the face where the corresponding column cavity is located at the position away from the butt joint end, which facilitates the installation and disassembly of the column connecting rod and the passing of the first and second studs on the column connecting rod through the corresponding column adjusting groove.
[0026] Further, a dovetail sliding groove / slide rail structure is formed at the top end of the column;
[0027] The structures at the top ends of the two columns on the same side of the fixing frame are matched in alignment.
[0028] The top ends of the two columns on the same side of the fixing frame are equipped with the same top longitudinal beam in the dovetail sliding groove / slide rail structure.
[0029] The top ends of the two columns on the same side of the fixing frame are matched in alignment, so that the dovetail sliding groove / slide rail structures at the top ends of the two columns on the same side of the fixing frame are matched in alignment, facilitating the assembly of the top longitudinal beam, and the dovetail sliding groove / slide rail structure can limit the displacement of the top longitudinal beam.
[0030] Further, a telescopic cloth blocking mechanism is connected between the two top longitudinal beams at the transverse ends of the fixing frame.
[0031] Further, the cloth blocking mechanism has a winding shaft and a cloth wound on the winding shaft.
[0032] The winding shaft is assembled on one top longitudinal beam, and the axial direction of the winding shaft corresponds to the length direction of the top longitudinal beam.
[0033] The unfolded end of the cloth is detachably connected to another top longitudinal beam.
[0034] In the above technical measures, the cloth blocking mechanism is provided between the two top longitudinal beams at the transverse ends of the fixing frame, the cloth blocking mechanism has a winding shaft and a cloth wound on the winding shaft, the cloth can reduce damage to the electromechanical equipment caused by high temperature due to direct sunlight or water immersion caused by rain, which is beneficial to improve the service life of the electromechanical equipment, the winding shaft can change the cloth according to the length of the cross beam, which enhances the flexibility; the axial direction of the winding shaft corresponds to the length direction of the top longitudinal beam, which can provide a large range of shading above the electromechanical equipment; the unfolded end of the cloth is detachably connected to the top longitudinal beam, which is convenient for installation and disassembly.
[0035] Further, dovetail sliding groove / slide rail structures are formed at the bottom ends of the columns.
[0036] Further, the structures at the bottom ends of the two columns on the same side of the fixing frame are in alignment.
[0037] Further, the same bottom longitudinal beam is assembled with the dovetail sliding groove / slide rail structures at the bottom ends of the two columns on the same side of the fixing frame.
[0038] In the above technical measures, the dovetail sliding groove / slide rail structures are formed at the bottom ends of the columns, and the structures at the bottom ends of the two columns on the same side of the fixing frame are in alignment, so that the dovetail sliding groove / slide rail structures at the bottom ends of the two columns on the same side of the fixing frame are in alignment, facilitating the assembly of the bottom longitudinal beam, and the dovetail sliding groove / slide rail structures can limit the displacement of the bottom longitudinal beam.
[0039] Further, the bottom longitudinal beam has an elastic or flexible shock-absorbing structure.
[0040] In the above technical measures, the bottom longitudinal beam has an elastic or flexible shock-absorbing structure, which can absorb the generated vibration to some extent, thereby improving the seismic resistance and stability of the structure and effectively reducing the adverse effects caused by vibration.
[0041] The one or more technical solutions provided by the utility model have at least the following technical effects or advantages:
[0042] The utility model discloses a fixing frame for mounting mechanical and electrical equipment, which comprises a fixing frame body, a plurality of columns arranged on the fixing frame body, a plurality of horizontal beams arranged on the columns, and a plurality of bottom longitudinal beams arranged on the columns, wherein the columns are arranged on the fixing frame body in a longitudinal direction, the horizontal beams are arranged on the columns in a transverse direction, the bottom longitudinal beams are arranged on the columns in a longitudinal direction, and the horizontal beams are connected by a horizontal beam connecting rod. BRIEF DESCRIPTION OF DRAWINGS
[0043] The accompanying drawings, which are included to provide a further understanding of the embodiments of the utility model, form a part of the utility model and do not constitute a limitation to the embodiments of the utility model;
[0044] Fig. 1 It is the structural schematic diagram of the utility model;
[0045] Fig. 2 It is the effect schematic diagram of the utility model when assembling;
[0046] Fig. 3 is a structural schematic view of the column connecting rod in the utility model;
[0047] Wherein, 1-column; 11-first column section; 12-second column section; 13-column connecting rod; 14-first column cavity; 15-first column adjusting groove; 16-second column cavity; 17-second column adjusting groove; 2-cross beam; 21-first cross beam section; 22-second cross beam section; 23-cross beam connecting rod; 24-first cross beam cavity; 25-first cross beam adjusting groove; 26-second cross beam cavity; 27-second cross beam adjusting groove; 3-top longitudinal beam; 4-first stud; 5-second stud; 6-locking nut; 7-baffle cloth mechanism; 71-winding shaft; 72-baffle cloth; 8-bottom longitudinal beam; 9-limiting rod. DETAILED DESCRIPTION
[0048] In order to more clearly understand the above purpose, features and advantages of the utility model, the utility model is further described in detail below in combination with the drawings and specific embodiments. It should be noted that the embodiments of the utility model and the features in the embodiments can be combined with each other in the case of not conflicting with each other.
[0049] In the following description, a lot of specific details are set forth in order to fully understand the utility model, however, the utility model can also be implemented in other ways different from the scope described herein, therefore, the protection scope of the utility model is not limited by the specific embodiments disclosed below.
[0050] Reference Figs. 1-3 , the embodiment provides a kind of building construction environment with electromechanical equipment fixing frame, fixing frame is frame type structure, with four columns 1, four cross beams 2 and four longitudinal beams of stereoscopic structure are formed;
[0051] Each cross beam 2 has first cross beam section 21, second cross beam section 22 independently and left and right position docking combination, and cross beam connecting rod 23 is combined and connected in length direction to first cross beam section 21 and second cross beam section 22;
[0052] The side surface of first cross beam section 21 is provided with first cross beam cavity 24 with inner recess structure along length direction, and the other side surface of first cross beam section 21 is provided with first cross beam adjusting groove 25 corresponding to first cross beam cavity 24 and penetrating first cross beam cavity 24;
[0053] The side surface of second cross beam section 22 is provided with second cross beam cavity 26 with inner recess structure along length direction, and the other side surface of second cross beam section 22 is provided with second cross beam adjusting groove 27 corresponding to second cross beam cavity 26 and penetrating second cross beam cavity 26;
[0054] The second beam cavity 26 and the second beam adjusting slot 27 on the second beam segment 22 are in lengthwise alignment with the first beam cavity 24 and the first beam adjusting slot 25 on the first beam segment 21, and the second beam cavity 26 on the second beam segment 22 is in lengthwise penetration with the first beam cavity 24 on the first beam segment 21;
[0055] The beam connecting rod 23 is embedded in the beam cavity of the first beam segment 21 and the second beam segment 22, and one end of the beam connecting rod 23 is connected with the first stud 4 which passes through the first beam adjusting slot 25 of the first beam segment 21, and the other end of the beam connecting rod 23 is connected with the second stud 5 which passes through the second beam adjusting slot 27 of the second beam segment 22, and the first stud 4 and the second stud 5 are threadedly connected with the locking nut 6 at the part which passes through the corresponding beam segment.
[0056] The locking nut 6 is a butterfly nut, which is convenient for manual operation.
[0057] The beam adjusting slot of the beam segment is closed at the butt joint end, and is in penetration with the external space of the surface where the corresponding beam cavity is located at the part away from the butt joint end.
[0058] The beam adjusting slot is composed of the limiting rod 9 and the beam segment, and in the height direction, one end of the limiting rod 9 is connected with the beam segment, and the other end is in gap cooperation with the beam segment.
[0059] The second beam adjusting slot 27 of the second beam segment 22 is disconnected with the first beam adjusting slot 25 of the first beam segment 21 in the length direction.
[0060] The non-butt joint end of the beam segment is hinged on the corresponding column 1.
[0061] Each column 1 has the first column segment 11 and the second column segment 12 which are independent of each other and are in upper and lower butt joint combination, and the column connecting rod 13 which combines and connects the first column segment 11 and the second column segment 12 in the height direction.
[0062] The first column segment 11 has the first column cavity 14 which is opened in the height direction in the concave structure on one side surface of the first column segment 11, and the first column adjusting slot 15 which is opened on the other side surface of the first column segment 11 and penetrates the first column cavity 14.
[0063] The second column segment 12 has the second column cavity 16 which is opened in the height direction in the concave structure on one side surface of the second column segment 12, and the second column adjusting slot 17 which is opened on the other side surface of the second column segment 12 and penetrates the second column cavity 16.
[0064] And the second column cavity 16 and the second column adjusting slot 17 on the second column section 12 are in alignment with the first column cavity 14 and the first column adjusting slot 15 on the first column section 11 in the height direction, and the second column cavity 16 on the second column section 12 is in communication with the first column cavity 14 on the first column section 11 in the height direction.
[0065] The column connecting rod 13 is embedded in the column cavity of the first column section 11 and the second column section 12, and one end of the column connecting rod 13 is connected with the first stud 4 which passes through the first column adjusting slot 15 of the first column section 11, and the other end of the column connecting rod 13 is connected with the second stud 5 which passes through the second column adjusting slot 17 of the second column section 12, and the first stud 4 and the second stud 5 are threadedly connected with the locking nut 6 at the part which passes through the corresponding column section.
[0066] The column adjusting slot of the column section is closed at the butt joint end, and is in communication with the external space of the surface where the corresponding column cavity is located at the part away from the butt joint end.
[0067] The column adjusting slot is composed of the limiting rod 9 and the column section, and in the height direction, one end of the limiting rod 9 is connected with the column section, and the other end of the limiting rod 9 is in clearance fit with the column section.
[0068] The second column adjusting slot 17 of the second column section 12 is disconnected with the first column adjusting slot 15 of the first column section 11 in the length direction.
[0069] The top end of the column 1 is formed with a dovetail sliding groove / slide rail structure.
[0070] And the structures at the top ends of the two columns 1 on the same side of the fixing frame are in alignment.
[0071] The top ends of the two columns 1 on the same side of the fixing frame are equipped with the same top longitudinal beam 3 in the dovetail sliding groove / slide rail structure.
[0072] Corresponding to the two ends of the dovetail sliding groove / slide rail structure, the top end of the column 1 is detachably connected with the limiting baffle, which can limit the displacement of the top longitudinal beam 3, and cooperate with the dovetail structure to effectively prevent the top longitudinal beam 3 from being separated from the dovetail sliding groove / slide rail structure.
[0073] The top longitudinal beam 3 has a sliding groove / slide rail structure corresponding to the dovetail sliding groove / slide rail structure.
[0074] The fixing frame is connected with the retractable cloth blocking mechanism 7 between the two top longitudinal beams 3 at the transverse ends of the fixing frame.
[0075] The cloth blocking mechanism 7 is similar to a tape measure with automatic recovery function.
[0076] The cloth blocking mechanism 7 has a winding shaft 71 and a cloth 72 wound on the winding shaft 71;
[0077] The winding shaft 71 is assembled on one top longitudinal beam 3, and the axial direction of the winding shaft 71 corresponds to the length direction of the top longitudinal beam 3;
[0078] The unwinding end of the cloth 72 is detachably connected to another top longitudinal beam 3.
[0079] The winding shaft 71 is assembled on one top longitudinal beam 3, and the top longitudinal beam 3 on which the winding shaft 71 is assembled is provided with a hole on the opposite surface of the other top longitudinal beam 3, facilitating the stretching and retraction of the cloth 72 on the winding shaft 71, and the other top longitudinal beam 3 is provided with a hole corresponding to the connecting end of the cloth 72.
[0080] The bottom end of the column 1 is formed with a dovetail sliding groove / slide rail structure;
[0081] The bottom ends of the two columns 1 on the same side of the fixing frame are in alignment and matched in structure;
[0082] The bottom ends of the two columns 1 on the same side of the fixing frame are assembled with the same bottom longitudinal beam 8 in the dovetail sliding groove / slide rail structure.
[0083] The bottom ends of the two columns 1 on the same side of the fixing frame are assembled with the same bottom longitudinal beam 8 in the dovetail sliding groove / slide rail structure.
[0084] The bottom longitudinal beam 8 has a sliding groove / slide rail structure corresponding to the dovetail sliding groove / slide rail structure.
[0085] The bottom longitudinal beam 8 has a flexible or flexible damping structure.
[0086] The flexible damping structure can be a flexible pad.
[0087] In this embodiment, the beam section is divided into a first beam section 21 and a second beam section 22, the first beam section 21 and the second beam section 22 are the same in structure, are arranged in alignment, and are distinguished only according to different positions;
[0088] The beam adjusting groove is divided into a first beam adjusting groove 25 and a second beam adjusting groove 27, the first beam adjusting groove 25 and the second beam adjusting groove 27 are the same in structure, are arranged in alignment, and are distinguished only according to different positions;
[0089] The beam cavity is divided into a first beam cavity 24 and a second beam cavity 26, the first beam cavity 24 and the second beam cavity 26 are the same in structure, are arranged in alignment, and are distinguished only according to different positions;
[0090] The column section is divided into the first column section 11 and the second column section 12, the first column section 11 and the second column section 12 are identical in structure, are arranged in alignment, and are distinguished only according to different positions;
[0091] The column adjusting groove is divided into the first column adjusting groove 15 and the second column adjusting groove 17, the first column adjusting groove 15 and the second column adjusting groove 17 are identical in structure, are arranged in alignment, and are distinguished only according to different positions;
[0092] The column cavity is divided into the first column cavity 14 and the second column cavity 16, the first column cavity 14 and the second column cavity 16 are identical in structure, are arranged in alignment, and are distinguished only according to different positions.
[0093] In application, the beam 2, the column 1, the top longitudinal beam 3 and the bottom longitudinal beam 8 are assembled, after assembly, according to the size of the to-be-mounted electrical equipment, the first beam section 21 and the second beam section 22 of the beam 2 are slid, when the length satisfying the requirement is reached, the locking nuts 6 on the first stud 4 and the second stud 5 are manually screwed; when the beam section of the beam 2 is slid, the cloth stopper 72 is elongated / shrunk along with the elongation / shrinking of the beam 2, the first column section 11 and the second column section 12 of the column 1 are slid, when the length satisfying the requirement is reached, the locking nuts 6 on the first stud 4 and the second stud 5 are manually screwed, the to-be-mounted electrical equipment is placed, and the installation of the electrical equipment and the like can be carried out.
[0094] Although the preferred embodiments of the present application have been described, those skilled in the art who, once aware of the basic inventive concept, can make further changes and modifications to these embodiments. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments and all changes and modifications falling within the scope of the present application.
[0095] Obviously, those skilled in the art can make various modifications and variations to the present application without departing from the spirit and scope of the present application. Thus, if these modifications and variations of the present application fall within the scope of the claims of the present application and their equivalents, the present application also intends to include these modifications and variations.
Claims
1. A mechanical and electrical equipment fixing frame for building construction environment, the fixing frame is a frame structure, having four columns (1), four horizontal beams (2) and four longitudinal beams that make up a three-dimensional structure; Its features are: Each crossbeam (2) has a first crossbeam segment (21) and a second crossbeam segment (22) that are independent of each other and are connected in the left and right directions, and a crossbeam connecting rod (23) that connects the first crossbeam segment (21) and the second crossbeam segment (22) in the length direction. One side surface of the first crossbeam segment (21) has a concave structure and a first crossbeam cavity (24) along the length direction. The other side surface of the first crossbeam segment (21) has a first crossbeam adjustment groove (25) corresponding to the first crossbeam cavity (24) and penetrating the first crossbeam cavity (24). One side surface of the second crossbeam segment (22) has a concave structure and a second crossbeam cavity (26) along the length direction. The other side surface of the second crossbeam segment (22) has a second crossbeam adjustment groove (27) corresponding to the second crossbeam cavity (26) and penetrating the second crossbeam cavity (26). Furthermore, the second crossbeam cavity (26) and the second crossbeam adjustment groove (27) on the second crossbeam segment (22) are aligned and fitted with the first crossbeam cavity (24) and the first crossbeam adjustment groove (25) on the first crossbeam segment (21) in the length direction, and the second crossbeam cavity (26) of the second crossbeam segment (22) and the first crossbeam cavity (24) of the first crossbeam segment (21) are connected in the length direction; The crossbeam connecting rod (23) is embedded in the crossbeam cavity of the first crossbeam segment (21) and the second crossbeam segment (22), and one end of the crossbeam connecting rod (23) is connected to a first stud (4) that passes through the first crossbeam adjustment groove (25) of the first crossbeam segment (21), and the other end of the crossbeam connecting rod (23) is connected to a second stud (5) that passes through the second crossbeam adjustment groove (27) of the second crossbeam segment (22). The first stud (4) and the second stud (5) are threadedly connected to locking nuts (6) at the parts that pass through the corresponding crossbeam segments.
2. The electromechanical equipment mounting frame for building construction environment according to claim 1, characterized in that: The crossbeam adjustment groove of the crossbeam section forms a closed loop at the docking end, and forms a through loop with the external space of the corresponding crossbeam cavity surface at the part away from the docking end. The second crossbeam adjustment groove (27) of the second crossbeam segment (22) is disconnected from the first crossbeam adjustment groove (25) of the first crossbeam segment (21) in the length direction.
3. The electromechanical equipment mounting frame for building construction environment according to claim 1 or 2, characterized in that: The non-butt end of the beam segment is hinged to the corresponding column (1).
4. The electromechanical equipment mounting frame for building construction environment according to claim 1, characterized in that: Each column (1) has a first column segment (11) and a second column segment (12) that are independent of each other and are connected vertically, and a column connecting rod (13) that connects the first column segment (11) and the second column segment (12) in the height direction. One side surface of the first column section (11) has a concave structure and a first column cavity (14) is formed along the height direction. The other side surface of the first column section (11) has a first column adjustment groove (15) corresponding to the first column cavity (14) and penetrating the first column cavity (14). On one side surface of the second column section (12), a second column cavity (16) is formed in a concave structure along the height direction. On the other side surface of the second column section (12), a second column adjustment groove (17) is formed corresponding to the second column cavity (16) and passing through the second column cavity (16). Furthermore, the second column cavity (16) and the second column adjustment groove (17) on the second column section (12) are aligned and fitted with the first column cavity (14) and the first column adjustment groove (15) on the first column section (11) in the height direction, and the second column cavity (16) of the second column section (12) and the first column cavity (14) of the first column section (11) are connected in the height direction; The column connecting rod (13) is embedded in the column cavity of the first column section (11) and the second column section (12), and one end of the column connecting rod (13) is connected to a first stud (4) that passes through the first column adjustment groove (15) of the first column section (11), and the other end of the column connecting rod (13) is connected to a second stud (5) that passes through the second column adjustment groove (17) of the second column section (12). The first stud (4) and the second stud (5) are threadedly connected to locking nuts (6) at the parts that pass through the corresponding column sections.
5. The electromechanical equipment mounting frame for building construction environment according to claim 4, characterized in that: The column adjustment groove of the column section is closed at the docking end, and in the part away from the docking end, it is connected to the external space of the corresponding column cavity surface. The second column adjustment groove (17) of the second column section (12) is disconnected from the first column adjustment groove (15) of the first column section (11) in the length direction.
6. The electromechanical equipment mounting frame for building construction environment according to claim 1 or 4, characterized in that: The top of the column (1) is formed with a dovetail groove / rail structure; Furthermore, the structures at the top of the two columns (1) on the same longitudinal side of the fixing frame are aligned and fitted together; At the top of the two columns (1) on the same longitudinal side of the fixed frame, the same top longitudinal beam (3) is assembled with a dovetail slide / slide rail structure.
7. The electromechanical equipment mounting bracket for building construction environment according to claim 6, characterized in that: The fixed frame is connected to a retractable baffle mechanism (7) between the two top longitudinal beams (3) at both ends of the horizontal direction.
8. The electromechanical equipment mounting bracket for building construction environment according to claim 7, characterized in that: The baffle mechanism (7) has a winding shaft (71) and a baffle (72) wound on the winding shaft (71). The winding shaft (71) is mounted on a top longitudinal beam (3), and the axial length direction of the winding shaft (71) corresponds to the length direction of the top longitudinal beam (3). The unfolded end of the baffle (72) is detachably connected to another top longitudinal beam (3).
9. The electromechanical equipment mounting frame for building construction environment according to claim 1 or 4, characterized in that: The bottom end of the column (1) is formed with a dovetail groove / rail structure; Furthermore, the structures at the bottom ends of the two columns (1) on the same longitudinal side of the fixing frame are aligned and fitted together; At the bottom of the two columns (1) on the same longitudinal side of the fixed frame, the same bottom longitudinal beam (8) is assembled with a dovetail slide / rail structure.
10. The electromechanical equipment mounting bracket for building construction environment according to claim 9, characterized in that: The bottom longitudinal beam (8) has an elastic or flexible damping structure.