CN215331574U - Support body top reinforced structure and support body - Google Patents

Support body top reinforced structure and support body Download PDF

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Publication number
CN215331574U
CN215331574U CN202120344610.9U CN202120344610U CN215331574U CN 215331574 U CN215331574 U CN 215331574U CN 202120344610 U CN202120344610 U CN 202120344610U CN 215331574 U CN215331574 U CN 215331574U
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reinforcing
support frame
rods
supporting
support
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张宁
陈萌
任磊磊
汤伟
闫瑞华
魏骏
贺志强
熊洪锐
李龙飞
程叙埕
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China Construction Science And Industry Co ltd
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China Construction Science And Industry Co ltd
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Abstract

The utility model provides a support frame body top reinforcing structure and a support frame body. The top reinforcing structure of the support frame body comprises a support frame, a tire cap, a reinforcing truss and a connecting beam; the device comprises a plurality of longitudinally arranged support frames, wherein the adjacent support frames are arranged at intervals, and the top surface of each support frame is connected with a tire cap; the reinforcing trusses are also arranged transversely, and two ends of each reinforcing truss are respectively connected with the top ends of two different supporting frames; the tie-beam is equipped with a plurality ofly, and the tie-beam transversely sets up, and the both ends of tie-beam are connected with two different child caps respectively. The utility model also provides a support frame body comprising the support frame body top reinforcing structure. This support frame body top reinforced structure can improve the stability of supporting the support frame body and to the bearing capacity to top load, should support frame body stability and security high, the bearing capacity is strong.

Description

Support body top reinforced structure and support body
Technical Field
The utility model relates to the technical field of building construction, in particular to a supporting frame body top reinforcing structure and a supporting frame body.
Background
During construction of construction works, some construction elements are moved to higher positions by using a lifting technique in a large amount. The implementation of lifting technology requires a stable and firm lifting platform or supporting frame body with high height, and some existing ultrahigh supporting frame bodies are connected between adjacent supporting frames only through a single rod piece transversely arranged, so that the stability and the load capacity of the supporting frame body are insufficient.
SUMMERY OF THE UTILITY MODEL
The present invention is directed to solving at least one of the problems of the prior art. Therefore, the utility model provides a top reinforcing structure of a support frame body, which can improve the stability of the support frame body and the bearing capacity of top load.
The utility model also provides a support frame body with the support frame body top reinforcing structure.
The support frame body top reinforcing structure according to an embodiment of a first aspect of the present invention is a support frame body top reinforcing structure for reinforcing a connection between a plurality of support frames, the support frames being arranged in a longitudinal direction, and adjacent support frames being arranged at intervals, including: the top surface of each supporting frame is connected with one tire cap; the number of the reinforcing trusses is multiple, the reinforcing trusses are transversely arranged, and two ends of each reinforcing truss are respectively connected with the top ends of two different supporting frames; the tie-beam, the tie-beam is equipped with a plurality ofly, the tie-beam transversely sets up, the both ends of tie-beam respectively with two differences the child cap is connected.
The supporting frame body top reinforcing structure provided by the embodiment of the utility model at least has the following beneficial effects: according to the support frame body top reinforcing structure provided by the utility model, the tops of adjacent support frames are connected and reinforced by the reinforcing truss so as to be separated from each other when resisting the load of the support frames, and compared with the single-rod connection, the connection by the truss structure is favorable for improving the connection strength between the support frames, and the integral stability and the load capacity of the support frame body are improved; in addition, the tyre caps capable of being directly loaded are connected and reinforced through the connecting beams, and the overall stability and the load capacity of the support frame body are further improved. Therefore, the reinforced structure at the top of the support frame body is beneficial to improving the structural stability, the load capacity and the safety of the support frame body.
According to some embodiments of the utility model, the reinforcing truss comprises a plurality of reinforcing cross bars and a plurality of reinforcing diagonal bars, the reinforcing cross bars are transversely arranged, the reinforcing diagonal bars are inclined relative to the reinforcing cross bars and the reinforcing vertical bars, two ends of each reinforcing cross bar are respectively connected with different supporting frames, the ends of the reinforcing diagonal bars are connected with the reinforcing cross bars or the supporting frames, and the reinforcing diagonal bars are located between two longitudinally adjacent reinforcing cross bars.
According to some embodiments of the utility model, a plurality of the reinforcing diagonal rods are arranged between two longitudinally adjacent reinforcing cross rods, and the plurality of reinforcing diagonal rods arranged between two longitudinally adjacent reinforcing cross rods are connected end to end.
According to some embodiments of the present invention, the reinforcing truss further includes a plurality of reinforcing vertical rods, the reinforcing vertical rods are longitudinally disposed, two ends of each reinforcing vertical rod are respectively connected to two longitudinally adjacent reinforcing cross rods, and a joint of two adjacent reinforcing diagonal rods is connected to one end of each reinforcing vertical rod.
According to some embodiments of the present invention, a plurality of the reinforcing diagonal rods are also disposed between two laterally adjacent reinforcing cross rods, and the plurality of the reinforcing diagonal rods disposed between two laterally adjacent reinforcing cross rods are connected end to end.
According to some embodiments of the utility model, the bead cap comprises a plurality of peripheral beams, the peripheral beams are sequentially connected end to form an outer frame, and the ends of the connecting beams are connected with the ends of the peripheral beams.
According to some embodiments of the present invention, an end portion of the peripheral beam of the outer frame, which extends in the same direction as the connection beam, is protruded with respect to a peripheral beam of the outer frame, which extends in a different direction from the connection beam, and a protruded portion of the peripheral beam, which extends in the same direction as the connection beam, is connected to the connection beam.
A support frame according to an embodiment of the second aspect of the present invention includes a support frame top reinforcing structure as described in the above embodiments.
The support frame body provided by the embodiment of the utility model at least has the following beneficial effects: high stability and safety, and high load capacity.
According to the support frame body provided by the embodiment of the utility model, the support frame comprises four support vertical rods, four support cross rods and a plurality of support inclined rods, and the number of the support vertical rods is four in each support frame; the four supporting vertical rods are distributed in a rectangular shape, the supporting cross rods are transversely arranged, two ends of each supporting cross rod are respectively connected with the two different supporting vertical rods, the supporting inclined rods are inclined relative to the supporting vertical rods and the supporting cross rods, and two ends of each supporting inclined rod are respectively connected with the two different supporting vertical rods.
According to some embodiments of the utility model, the support frame body further comprises a lifting beam, two ends of the lifting beam are respectively connected with the top surfaces of different caps, a rope passing hole is formed in the center of the lifting beam, and a rope can pass through the rope passing hole.
Additional aspects and advantages of the utility model will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the utility model.
Drawings
The utility model is further described with reference to the following figures and examples, in which:
FIG. 1 is a front view of a support frame;
FIG. 2 is a schematic perspective view of a top portion of a support frame according to some embodiments;
FIG. 3 is a front view of the top of the support frame shown in FIG. 1;
FIG. 4 is a side view of the top of the support frame shown in FIG. 1;
FIG. 5 is a schematic top view of the connection of the reinforcing trusses to the support frame;
FIG. 6 is a schematic perspective view of a connection of a reinforcing truss to a support frame according to some embodiments;
fig. 7 is a schematic perspective view of the connection of the reinforcing truss to the support frame in other embodiments.
Reference numerals: 101-supporting frames, 102-reinforcing trusses, 103-connecting beams, 104-tire caps, 105-lifting beams, 201-supporting vertical rods, 202-supporting inclined rods, 203-supporting cross rods, 204-cross beams, 205-peripheral beams, 206-stiffening plates, 207-rope passing holes, 301-reinforcing cross rods, 302-reinforcing vertical rods and 303-reinforcing inclined rods.
Detailed Description
Reference will now be made in detail to embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein like or similar reference numerals refer to the same or similar elements or elements having the same or similar function throughout. The embodiments described below with reference to the accompanying drawings are illustrative only for the purpose of explaining the present invention, and are not to be construed as limiting the present invention.
In the description of the present invention, it should be understood that the orientation or positional relationship referred to in the description of the orientation, such as the upper, lower, front, rear, left, right, etc., is based on the orientation or positional relationship shown in the drawings, and is only for convenience of description and simplification of description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention.
In the description of the present invention, several means are one or more, and plural means are two or more. If the first and second are described for the purpose of distinguishing technical features, they are not to be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated or implicitly indicating the precedence of the technical features indicated.
In the description of the present invention, unless otherwise explicitly limited, terms such as arrangement, installation, connection and the like should be understood in a broad sense, and those skilled in the art can reasonably determine the specific meanings of the above terms in the present invention in combination with the specific contents of the technical solutions.
In the description of the present invention, reference to the description of the terms "one embodiment," "some embodiments," "an illustrative embodiment," "an example," "a specific example," or "some examples," etc., means that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
Referring to fig. 1 and 2, the support frame top reinforcing structure provided by the present invention is mainly used for reinforcing the connection between a plurality of support frames 101, the support frames 101 are longitudinally arranged, a plurality of support frames 101 are arranged, and adjacent support frames 101 are arranged at intervals. The support frame top reinforcing structure comprises a tire cap 104, a reinforcing truss 102 and a connecting beam 103. A bead 104 is attached to the top surface of each support frame 101, and the bead 104 serves as a support base or attachment base for an object to be mounted on the top surface of the support frame 101. The reinforced truss 102 and the connecting beam 103 are transversely arranged, two ends of the reinforced truss 102 are connected with the top ends of two different supporting frames 101 respectively, and two ends of the connecting beam 103 are connected with two different tire caps 104 respectively.
According to the top reinforcing structure of the support frame body, the tops of the adjacent support frames 101 are connected and reinforced by the reinforcing truss 102 so as to resist the tendency of mutual separation of the support frames 101 during loading, and compared with the single-rod connection, the connection by the truss structure is beneficial to improving the connection strength between the support frames 101, so that the overall stability and the loading capacity of the support frame body are improved; in addition, the adjacent caps 104 for direct load are connected and reinforced by the connection beams 103, and the overall stability and load capacity of the support frame body are also improved. Therefore, the reinforced structure at the top of the support frame body is beneficial to improving the structural stability, the load capacity and the safety of the support frame body.
The specific structure of the main components of the top reinforcing structure of the support frame will be described in detail.
Referring to fig. 2 and 5, in some embodiments, there are 4 support frames 101, and 4 support frames 101 are arranged in a rectangular distribution (four support frames 101 are located at four corners of a virtual rectangle in a top view). The supporting frame 101 is also a truss structure, and specifically, a single supporting frame 101 includes 4 supporting uprights 201, a plurality of supporting crossbars 203, and a plurality of supporting diagonals 202, the supporting uprights 201 are arranged longitudinally, the supporting crossbars 203 are arranged transversely, and the supporting diagonals 202 are arranged obliquely. The four supporting upright stanchions 201 are also distributed in a rectangular shape, two ends of the supporting cross bar 203 are respectively connected with two different supporting upright stanchions 201, and two ends of the supporting diagonal bar 202 are also respectively connected with two different supporting upright stanchions 201. Due to the stability of the triangle, the structural strength and stability of the support frame 101 of the truss structure are high.
It should be noted that "longitudinal" corresponds to a vertical direction, and also corresponds to an up/down direction in the drawings of the specification; "lateral" corresponds to a horizontal direction, and corresponds to a left/right direction or a front/rear direction in the drawings; by "obliquely arranged" of the supporting diagonal 202 is meant that the extension direction of the supporting diagonal 202 is oblique to both the extension direction of the supporting upright 201 and the extension direction of the supporting cross-bar 203. The definitions of "longitudinally disposed", "transversely disposed" and "obliquely disposed" of the other components are referred to below similarly.
Referring to fig. 2 to 7, the reinforcing truss 102 includes a plurality of reinforcing crossbars 301 and a plurality of reinforcing diagonal rods 303, the reinforcing crossbars 301 are arranged transversely, and the reinforcing diagonal rods 303 are arranged obliquely (the extending direction of the reinforcing diagonal rods 303 is oblique with respect to the extending direction of the reinforcing uprights 302 and the reinforcing crossbars 301). Fig. 6 shows a reinforced truss 102 comprising 4 reinforcing crossbars 301 and 2 reinforcing diagonals 303. The two ends of the reinforcing cross bar 301 are respectively connected with the two supporting vertical bars 201 belonging to different supporting frames 101, the end of the reinforcing diagonal bar 303 is connected with the reinforcing cross bar 301 or the supporting vertical bars 201, and the reinforcing diagonal bar 303 is positioned between the two longitudinally adjacent reinforcing cross bars 301. The adjacent supporting frames 101 are connected and reinforced by using the reinforcing truss 102, and the stability of a triangular structure in the truss structure is mainly utilized; the ends of the reinforcement diagonal members 303 can be selectively connected to the supporting vertical members 201 or the reinforcement cross members 301 (or can be fixed by welding) according to the convenience of actual construction when constructing the corresponding triangular structure. Fig. 4 and 6 show a reinforcing girder 102 in which both ends of the reinforcing girder 102 are connected to supporting poles 201.
Fig. 4 and 6 show a reinforcing girder 102 in which only one reinforcing diagonal 303 is located between two longitudinally adjacent reinforcing crossbars 301. Referring to fig. 3 and 7, in some embodiments, the distance between two adjacent support frames 101 is large, in this case, a plurality of reinforcing diagonal rods 303 are disposed between two longitudinally adjacent reinforcing cross rods 301, the plurality of reinforcing diagonal rods 303 disposed between the two longitudinally adjacent reinforcing cross rods 301 are connected end to end, and the plurality of reinforcing diagonal rods 303 are integrally bent after being connected. This is done to avoid an inappropriate angle of inclination of the single reinforcing struts 303 which would reduce the structural strength and rigidity of the reinforcing truss 102. Fig. 7 shows a reinforced truss 102 in which 2 reinforcing struts 303 are provided between two longitudinally adjacent reinforcing crossbars 301, and in other embodiments, if the length of the reinforced truss 102 is longer, more reinforcing struts 303 may be provided between two longitudinally adjacent reinforcing crossbars 301.
The "head" and "tail" of the reinforcement diagonal 303 are described here: for one of the stiffening girders 102 between two of the support frames 101, the end of the stiffening diagonal member 303 near one of the support frames 101 is "leading" and the end of the stiffening diagonal member 303 near the other support frame 101 is "trailing". In addition, the "connection" between the reinforcement diagonal members 303 is not strictly limited to the direct connection between the reinforcement diagonal members 303 based on the workability and convenience in actual manufacturing, for example, the connection between one reinforcement diagonal member 303 and the reinforcement cross member 301 is disposed adjacent to the connection between the other reinforcement diagonal member 303 and the reinforcement cross member 301, and this case may also be regarded as the connection between the reinforcement diagonal members 303.
Referring to fig. 5 and 7, in some embodiments, a plurality of reinforcing struts 303 are disposed between two laterally adjacent reinforcing crossbars 301 in the same reinforcing truss 102, and the reinforcing struts 303 are disposed end to increase the overall structural strength and rigidity of the reinforcing truss 102. Taking the reinforced truss 102 in fig. 7 as an example, the provision of the reinforcing diagonal members 303 between two longitudinally adjacent reinforcing crossbars 301 can effectively resist external forces in the left/right direction or the up/down direction, and on this basis, the provision of a plurality of reinforcing diagonal members 303 between two transversely adjacent reinforcing crossbars 301 can effectively resist external forces in the front/rear direction. That is, the provision of a plurality of reinforcing diagonal members 303 between two laterally adjacent reinforcing crossbars 301 can improve the strength and rigidity of the reinforcing truss 102 in different directions or dimensions. Referring to fig. 3 and 7, in some embodiments, in order to improve the longitudinal strength and rigidity of the reinforced truss 102, the reinforced truss 102 further includes a reinforcing vertical rod 302, the reinforcing vertical rod 302 is disposed longitudinally, two ends of the reinforcing vertical rod 302 are respectively connected to two reinforcing cross rods 301 adjacent to each other up and down, and one end of the reinforcing vertical rod 302 is connected to a connection portion of two adjacent reinforcing diagonal rods 303.
Referring to fig. 2, the tire cap 104 comprises peripheral beams 205 and cross beams 204, the peripheral beams 205 being welded to each other, wherein the four peripheral beams 205 at the outer edge of the tire cap 104 are connected end to form an outer frame, which is substantially rectangular, and the cross beams 204 are connected inside the outer frame. The peripheral beam 205 may be H-beam, the cross beam 204 is X-shaped, and the cross beam 204 is formed by cross-welding H-beams. The peripheral beam 205 is connected with a plurality of stiffening plates 206, the stiffening plates 206 are arranged between the upper wing plate and the lower wing plate of the peripheral beam 205, and the stiffening plates 206 are used for increasing the strength and rigidity of the peripheral beam 205, so that the integral strength and rigidity of the tire cap 104 are increased. The connecting beam 103 can also be H-shaped steel, and a plurality of connecting beams 103 can be arranged between the two tire caps 104; in fig. 2, two connection beams 103 are provided between two adjacent left and right bead caps 104 to enhance the reinforcement between the bead caps 104, and in the case where the bead caps 104 are large in size, the connection beams 103 between the bead caps 104 may be optionally increased. Based on the structural characteristics of the H-beam, the end of the connection beam 103 is welded to the end of the outer frame peripheral beam 205 for easy operation during construction. In order to further improve the operational convenience, the end portion of the peripheral beam 205 of the outer frame, which has the same extending direction as the connecting beam 103, is protruded with respect to the peripheral beam 205 of the outer frame, which has a different extending direction from the connecting beam 103, and the protruded portion of the peripheral beam 205, which has the same extending direction as the connecting beam 103, is connected to the connecting beam 103. Referring to fig. 2, the connecting beam 103 for connecting the right front side bead cap 104 and the left front side bead cap 104 extends in the left/right direction, and taking the right front side bead cap 104 as an example, the end portion of the peripheral beam 205 extending in the left/right direction in the bead cap 104 projects to the left or right side of the peripheral beam 205 extending in the front-rear direction, and the projecting portion of the peripheral beam 205 extending in the left/right direction is connected to the connecting beam 103.
The utility model also provides a support frame body which comprises the support frame body top reinforcing structure, and the support frame body is high in stability and safety and strong in load capacity.
Specifically, referring to fig. 1 and 2, the support frame further includes a lifting beam 105, and both ends of the lifting beam 105 are respectively connected to the top surfaces of two adjacent caps 104. Stiffening plates 206 may also be provided on the lifting beam 105 in order to increase the strength of the lifting beam 105. The center of the lifting beam 105 is provided with a rope passing hole 207, the rope passing hole 207 penetrates in the up/down direction and faces the gap between the adjacent supporting frames 101, and the rope passing hole 207 is provided on the lifting beam 105 to match with other devices to lift the object on the ground to a high position. Specifically, a lifter can be installed on the lifting beam 105, the lifter is connected with a steel strand, the steel strand is arranged in the rope passing hole 207 in a penetrating manner, and one end of the steel strand falls to the vicinity of the ground; the lower ends of the steel strands may be connected to an anchorage for connection to an article to be lifted (neither the risers nor the steel strands nor the anchorage are shown). When the lifter is operated, the steel strand is retracted upwards, and the object fixed with the anchorage device is lifted to a high position. The specific construction of the lifter and the anchorage for fixing the object belongs to the well-known technology in the field of building construction, and is not described in detail herein.
The embodiments of the present invention have been described in detail with reference to the accompanying drawings, but the present invention is not limited to the above embodiments, and various changes can be made within the knowledge of those skilled in the art without departing from the gist of the present invention. Furthermore, the embodiments of the present invention and the features of the embodiments may be combined with each other without conflict.

Claims (10)

1. Support body top reinforced structure for consolidate the connection between a plurality of supporting racks, the supporting rack vertically sets up, and adjacent the supporting rack interval sets up, its characterized in that includes:
the top surface of each supporting frame is connected with one tire cap;
the number of the reinforcing trusses is multiple, the reinforcing trusses are transversely arranged, and two ends of each reinforcing truss are respectively connected with the top ends of two different supporting frames;
the tie-beam, the tie-beam is equipped with a plurality ofly, the tie-beam transversely sets up, the both ends of tie-beam respectively with two differences the child cap is connected.
2. The support frame body top reinforcing structure according to claim 1, wherein the reinforcing truss comprises a plurality of reinforcing cross bars and a plurality of reinforcing diagonal bars, the reinforcing cross bars are transversely arranged, the reinforcing diagonal bars are inclined relative to the reinforcing cross bars and the reinforcing vertical bars, two ends of each reinforcing cross bar are respectively connected with different support frames, the ends of the reinforcing diagonal bars are connected with the reinforcing cross bars or the support frames, and the reinforcing diagonal bars are located between two longitudinally adjacent reinforcing cross bars.
3. The support frame body top reinforcing structure according to claim 2, wherein a plurality of the reinforcing diagonal rods are arranged between two longitudinally adjacent reinforcing cross rods, and the plurality of the reinforcing diagonal rods between the two longitudinally adjacent reinforcing cross rods are connected end to end.
4. The support frame body top reinforcing structure according to claim 3, wherein the reinforcing truss further comprises a plurality of reinforcing vertical rods, the reinforcing vertical rods are longitudinally arranged, two ends of each reinforcing vertical rod are respectively connected with two longitudinally adjacent reinforcing cross rods, and the joint of two adjacent reinforcing diagonal rods is connected with one end of each reinforcing vertical rod.
5. The support frame body top reinforcing structure according to claim 3, wherein a plurality of reinforcing diagonal rods are also arranged between two transversely adjacent reinforcing cross rods, and the plurality of reinforcing diagonal rods between the two transversely adjacent reinforcing cross rods are connected end to end.
6. The support frame top reinforcing structure of any one of claims 1 to 5, wherein the bead cap comprises a plurality of peripheral beams, the plurality of peripheral beams are sequentially connected end to form an outer frame, and ends of the connection beams are connected with ends of the peripheral beams.
7. The support frame top reinforcing structure of claim 6, wherein the end portion of the peripheral beam of the outer frame, which extends in the same direction as the connection beam, is protruded with respect to the peripheral beam of the outer frame, which extends in a different direction from the connection beam, and the protruded portion of the peripheral beam, which extends in the same direction as the connection beam, is connected to the connection beam.
8. Support frame, characterized in that it comprises a support frame top reinforcement structure according to any of claims 1 to 7.
9. The support frame of claim 8, wherein the support frame comprises four support uprights, four support crossbars and a plurality of support diagonals, and the number of the support crossbars and the number of the support diagonals are more than four in each support frame; the four supporting vertical rods are distributed in a rectangular shape, the supporting cross rods are transversely arranged, two ends of each supporting cross rod are respectively connected with the two different supporting vertical rods, the supporting inclined rods are inclined relative to the supporting vertical rods and the supporting cross rods, and two ends of each supporting inclined rod are respectively connected with the two different supporting vertical rods.
10. The support frame body of claim 8, further comprising a lifting beam, wherein two ends of the lifting beam are respectively connected to top surfaces of the different caps, a rope passing hole is formed in the center of the lifting beam, and a rope can pass through the rope passing hole.
CN202120344610.9U 2021-02-05 2021-02-05 Support body top reinforced structure and support body Active CN215331574U (en)

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CN202120344610.9U CN215331574U (en) 2021-02-05 2021-02-05 Support body top reinforced structure and support body

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CN202120344610.9U CN215331574U (en) 2021-02-05 2021-02-05 Support body top reinforced structure and support body

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117246645A (en) * 2022-06-09 2023-12-19 中国石化工程建设有限公司 An integral module transportation and reinforcement bracket structure for ethylene cracking furnace

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117246645A (en) * 2022-06-09 2023-12-19 中国石化工程建设有限公司 An integral module transportation and reinforcement bracket structure for ethylene cracking furnace

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