CN213452122U - Fixing frame for hydroelectric engineering - Google Patents
Fixing frame for hydroelectric engineering Download PDFInfo
- Publication number
- CN213452122U CN213452122U CN202022593273.5U CN202022593273U CN213452122U CN 213452122 U CN213452122 U CN 213452122U CN 202022593273 U CN202022593273 U CN 202022593273U CN 213452122 U CN213452122 U CN 213452122U
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- block
- lateral
- frame
- longitudinal
- fixing
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- 230000005611 electricity Effects 0.000 claims abstract description 5
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims abstract description 5
- 238000010276 construction Methods 0.000 claims description 11
- 229920001821 foam rubber Polymers 0.000 claims 1
- 238000003466 welding Methods 0.000 abstract 5
- 238000009434 installation Methods 0.000 description 7
- 230000009286 beneficial effect Effects 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 238000006073 displacement reaction Methods 0.000 description 1
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Abstract
The utility model discloses a mount for water and electricity engineering relates to hydraulic engineering technical field, the utility model discloses a fixed slide rail, the link, connect the slide rail, pipeline fixed establishment, side direction antidetonation frame and vertical antidetonation frame, a plurality of link body upper surfaces all with a plurality of first slider lower surface welding, a plurality of connecting plate one end respectively with be connected slide rail body both ends welding, a plurality of fixed plate lower surfaces all with link block upper surface welding, a plurality of side direction connecting axle one end respectively with a plurality of first connecting block side surface normal running fit, a plurality of vertical connecting block one end respectively with a plurality of second connecting block welding, a plurality of vertical fixed block one end respectively with a plurality of second slider lower surface welding. The utility model relates to a mount for water and electricity engineering, side direction antidetonation frame are used for resisting the horizontal earthquake effort of side direction, and vertical antidetonation frame is used for resisting vertical horizontal earthquake effort, has improved the stability and the security of device.
Description
Technical Field
The utility model relates to a hydroelectric engineering technical field, in particular to mount for hydroelectric engineering.
Background
A gallows is the collective term to installing support on the pipeline, and the support also can be divided into good multiclass certainly, for example: fixed brackets, sliding brackets, hangers, etc., fixed brackets are one form of bracket that limits displacement of the pipe or equipment.
The existing fixing frame for the hydroelectric engineering is single in structure, inconvenient to install and disassemble and incapable of resisting earthquake, and therefore the fixing frame for the hydroelectric engineering is provided.
SUMMERY OF THE UTILITY MODEL
The utility model discloses a main aim at provides a mount for hydroelectric engineering can effectively solve the problem of being not convenient for install and dismantle and can't resist the earthquake among the background art.
In order to achieve the above purpose, the utility model adopts the following technical scheme: a fixing frame for hydroelectric engineering comprises a fixed slide rail, a connecting frame, a connecting slide rail, a pipeline fixing mechanism, a lateral anti-seismic frame and a longitudinal anti-seismic frame, wherein the fixed slide rail comprises a first slide block and a second slide block, the connecting frame comprises a connecting frame body and a connecting plate, the connecting slide rail comprises a connecting slide rail body, a connecting slide block, a first connecting block and a second connecting block, the pipeline fixing mechanism comprises a fixed plate, the lateral anti-seismic frame comprises lateral connecting shafts, the longitudinal anti-seismic frame comprises longitudinal connecting blocks and longitudinal fixing blocks, the upper surfaces of the connecting frame bodies are welded with the lower surfaces of the first slide blocks, one ends of the connecting plates are respectively welded with the two ends of the connecting slide rail body, the lower surfaces of the fixed plates are welded with the upper surfaces of the connecting slide blocks, one ends of the lateral connecting shafts are respectively matched with one side surface of the first, one end of each longitudinal connecting block is welded with the corresponding second connecting block, and one end of each longitudinal fixing block is welded with the lower surfaces of the corresponding second sliding blocks.
Preferably, fixed slide rail still includes fixed slide rail body, antidetonation slide rail and fixing bolt, fixed slide rail body upper surface and antidetonation slide rail upper surface are equipped with a plurality of first through-holes respectively, and is a plurality of fixing bolt all with a plurality of first through-hole normal running fit, a plurality of first slider all with fixed slide rail body sliding fit, it is a plurality of the second slider all with antidetonation slide rail sliding fit, wherein, fixing bolt has eighteen, and first slider and second slider all have two, and fixing bolt is responsible for fixing device, and first slider and second slider have improved the convenience of device.
Preferably, the link still includes fixed block, construction bolt and connecting bolt, and is a plurality of the fixed block is installed respectively in a plurality of link body one end, and is a plurality of fixed block both sides surface is equipped with a plurality of second through-holes respectively, and is a plurality of construction bolt is respectively with a plurality of second through-hole normal running fit, and is a plurality of the connecting plate is installed respectively in a plurality of link body other ends, and is a plurality of connecting plate both sides surface is equipped with a plurality of third through-holes respectively, and is a plurality of connecting bolt respectively with a plurality of third through-hole normal running fit, wherein, link body, fixed block and connecting plate all have two, and construction bolt has eight, and connecting bolt has sixteen, and fixed block and connecting plate are responsible for connecting and fixing device, and construction bolt and connecting bolt.
Preferably, link block and connection slide rail body sliding fit, it is a plurality of first connecting block opposite side surface all with be connected slide rail body one side surface weld, it is a plurality of second connecting block opposite side surface all with be connected slide rail body opposite side surface weld, wherein, first connecting block and second connecting block all have two, and first connecting block and second connecting block are responsible for connecting device, and link block has improved the convenience of device.
Preferably, the pipeline fixing mechanism also comprises a pipeline fixing mechanism body, a plurality of first round holes are formed in the side surface of the fixed plate respectively, the plurality of rotary pipes are in rotating fit with the plurality of first round holes respectively, one end of each rotary pipe is welded to the two side surfaces of the plurality of rotary blocks respectively, one end of each rotary block is welded to the side surface of the pipeline fixing mechanism body, one side surface of each sponge cushion is connected with the inner side surface of the pipeline fixing mechanism body, one end of each split plate is welded to the side surface of the pipeline fixing mechanism body, the plurality of split plates are provided with a plurality of second round holes respectively, the plurality of split bolts are in rotating fit with the plurality of second round holes respectively, two split plates are arranged on each fixed plate, two rotary pipes, two rotary blocks and four split plates, and four split bolts are arranged, the fixed plate, the rotary pipe, the rotary block and the opening-closing plate enable the pipeline to be mounted and dismounted more conveniently, and the opening-closing bolt enables the mechanism to be opened and closed conveniently.
Preferably, the lateral anti-seismic frame further comprises a lateral anti-seismic frame body, lateral connecting blocks, lateral anti-seismic springs, lateral fixing blocks and lateral fixing shafts, wherein the lateral connecting shafts are respectively installed at one ends of the lateral connecting blocks, the other ends of the lateral connecting blocks are respectively connected with one ends of the lateral anti-seismic springs, the other ends of the lateral anti-seismic springs are respectively connected with one ends of the lateral fixing blocks, the lateral anti-seismic springs are respectively installed inside the lateral anti-seismic frame body, the lateral fixing shafts are respectively installed at the other ends of the lateral fixing blocks, the lateral anti-seismic frame comprises a lateral anti-seismic frame body, a lateral connecting shaft, a lateral connecting block, a lateral anti-seismic spring, a lateral fixing block and a lateral fixing shaft, and is used for resisting the action of a lateral horizontal seismic force, so that the stability and the safety of the device are improved.
Preferably, the longitudinal anti-seismic frame further comprises a longitudinal anti-seismic frame body, longitudinal connecting shafts, longitudinal connecting springs and longitudinal fixing shafts, wherein a plurality of first mounting holes are formed in the side surfaces of the longitudinal connecting blocks respectively, the longitudinal connecting shafts are in rotating fit with the mounting holes respectively, the longitudinal connecting springs are mounted inside the longitudinal anti-seismic frame body respectively, one ends of the longitudinal connecting springs are connected with the other ends of the longitudinal connecting blocks respectively, the other ends of the longitudinal connecting springs are connected with the other ends of the longitudinal fixing blocks respectively, a plurality of second mounting holes are formed in the side surfaces of the longitudinal fixing blocks respectively, the longitudinal fixing shafts are in rotating fit with the second mounting holes respectively, and the number of the longitudinal anti-seismic frame body, the longitudinal connecting shafts, the longitudinal connecting blocks, the longitudinal connecting springs, the longitudinal fixing blocks and the longitudinal fixing shafts is two, the longitudinal anti-seismic frame is used for resisting the action of longitudinal horizontal seismic force, and the stability and the safety of the device are improved.
Compared with the prior art, the utility model discloses following beneficial effect has:
the utility model discloses in, first slider, second slider and link block have improved the convenience of device, and installation bolt and link bolt make the installation of device more convenient with dismantle, and pipeline fixed establishment makes the installation of pipeline more convenient with demolish.
The lateral anti-seismic frame is used for resisting the action of lateral horizontal seismic force, and the longitudinal anti-seismic frame is used for resisting the action of longitudinal horizontal seismic force, so that the stability and the safety of the device are improved.
Drawings
FIG. 1 is a schematic view of the overall structure of a fixing frame for hydroelectric engineering of the present invention;
fig. 2 is a schematic structural view of another embodiment of the fixing frame for hydroelectric engineering of the present invention;
fig. 3 is a schematic structural view of the pipe fixing mechanism of the fixing frame for hydroelectric engineering of the present invention;
FIG. 4 is a schematic structural view of a lateral anti-seismic frame of the fixing frame for hydroelectric engineering of the present invention; fig. 5 is the utility model relates to a structural schematic diagram of the vertical antidetonation frame of mount for water and electricity engineering.
In the figure: 100. fixing the slide rail; 110. an anti-seismic slide rail; 120. fixing the bolt; 130. a first slider; 140. a second slider; 200. a connecting frame; 210. a fixed block; 220. installing a bolt; 230. a connecting plate; 240. a connecting bolt; 300. connecting a slide rail; 310. connecting the sliding block; 320. a first connection block; 330. a second connecting block; 400. a pipeline fixing mechanism; 410. a fixing plate; 420. rotating the tube; 430. rotating the block; 440. a sponge cushion; 450. opening and closing the board; 460. opening and closing the bolt; 500. a lateral anti-seismic frame; 510. a lateral connecting shaft; 520. a lateral connecting block; 530. a lateral anti-seismic spring; 540. a lateral fixing block; 550. a lateral fixed shaft; 600. a longitudinal anti-seismic frame; 610. a longitudinal connecting shaft; 620. a longitudinal connecting block; 630. a longitudinal connecting spring; 640. a longitudinal fixing block; 650. and a shaft is fixed longitudinally.
Detailed Description
In order to make the technical means, creation features, achievement purposes and functions of the present invention easy to understand, the present invention is further described below with reference to the following embodiments.
In the description of the present invention, it should be noted that the terms "upper", "lower", "inner", "outer", "front end", "rear end", "both ends", "one end", "the other end" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplification of description, but do not indicate or imply that the device or element to which the reference is made must have a specific orientation, be constructed in a specific orientation, and be operated, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present invention, it is to be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "disposed," "connected," and the like are to be construed broadly, and for example, "connected" may be either fixedly connected or detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood in specific cases to those skilled in the art.
The first embodiment is as follows:
referring to fig. 1-5, the present invention relates to a fixing frame for hydroelectric engineering, comprising a fixed slide rail 100, a connecting frame 200, a connecting slide rail 300, a pipeline fixing mechanism 400, a lateral anti-seismic frame 500 and a longitudinal anti-seismic frame 600, wherein the fixed slide rail 100 comprises a first slide block 130 and a second slide block 140, the connecting frame 200 comprises a connecting frame body and a connecting plate 230, the connecting slide rail 300 comprises a connecting slide rail body, a connecting slide block 310, a first connecting block 320 and a second connecting block 330, the pipeline fixing mechanism 400 comprises a fixed plate 410, the lateral anti-seismic frame 500 comprises a lateral connecting shaft 510, the longitudinal anti-seismic frame 600 comprises a longitudinal connecting block 620 and a longitudinal fixed block 640, the upper surfaces of the connecting frame body are welded to the lower surfaces of the first slide blocks 130, one ends of the connecting plates 230 are respectively welded to the two ends of the connecting slide rail body, the lower surfaces of the fixed, one end of each lateral connecting shaft 510 is rotatably engaged with one side surface of each first connecting block 320, one end of each longitudinal connecting block 620 is welded to each second connecting block 330, and one end of each longitudinal fixing block 640 is welded to the lower surface of each second sliding block 140.
Further, fixed slide rail 100 still includes fixed slide rail body, antidetonation slide rail 110 and fixing bolt 120, fixed slide rail body upper surface and antidetonation slide rail 110 upper surface are equipped with a plurality of first through-holes respectively, a plurality of fixing bolt 120 respectively with a plurality of first through-hole normal running fit, a plurality of first sliders 130 all with fixed slide rail body sliding fit, a plurality of second sliders 140 all with antidetonation slide rail 110 sliding fit, wherein, fixing bolt 120 has eighteen, first slider 130 and second slider 140 all have two, fixing bolt 120 is responsible for fixing device, first slider 130 and second slider 140 have improved the convenience of device.
Further, link 200 still includes fixed block 210, construction bolt 220 and connecting bolt 240, a plurality of fixed blocks 210 install respectively in a plurality of link body one end, a plurality of fixed block 210 both sides surface is equipped with a plurality of second through-holes respectively, a plurality of construction bolt 220 respectively with a plurality of second through-hole normal running fit, a plurality of connecting plate 230 install respectively in a plurality of link body other ends, a plurality of connecting plate 230 both sides surface is equipped with a plurality of third through-holes respectively, a plurality of connecting bolt 240 respectively with a plurality of third through-hole normal running fit, wherein, the link body, fixed block 210 and connecting plate 230 all have two, construction bolt 220 has eight, connecting bolt 240 has sixteen, fixed block 210 and connecting plate 230 are responsible for connecting and fixing device, construction bolt 220 and connecting bolt 240 make the installation and the dismantlement of device more convenient.
Further, the connection sliding block 310 is in sliding fit with the connection sliding rail body, the other side surfaces of the first connection blocks 320 are welded to one side surface of the connection sliding rail body, the other side surfaces of the second connection blocks 330 are welded to the other side surface of the connection sliding rail body, the number of the first connection blocks 320 is two, the number of the second connection blocks 330 is two, the first connection blocks 320 is the same as the number of the second connection blocks 330, the connection sliding block 310 is responsible for connection devices, and the convenience of the device is improved by the connection sliding block 310.
Further, the pipeline fixing mechanism 400 further comprises a pipeline fixing mechanism body, a plurality of first circular holes are formed in the side surfaces of the plurality of fixing plates 410, the plurality of rotating pipes 420 are in rotating fit with the plurality of first circular holes respectively, one ends of the plurality of rotating pipes 420 are welded to the surfaces of the two sides of the plurality of rotating blocks 430 respectively, one ends of the plurality of rotating blocks 430 are welded to the side surfaces of the pipeline fixing mechanism body, one side surfaces of the plurality of sponge pads 440 are connected to the inner side surfaces of the pipeline fixing mechanism body, one ends of the plurality of open plates 450 are welded to the side surfaces of the pipeline fixing mechanism body, the plurality of open plates 450 are provided with a plurality of second circular holes respectively, the plurality of open bolts 460 are in rotating fit with the plurality of second circular holes respectively, wherein two open plates 450 are provided, and the fixing plates 410, the rotating pipes 420, the rotating blocks 430 and the open plates 450 are, the number of the opening and closing bolts 460 is four, the fixing plate 410, the rotating pipe 420, the rotating block 430 and the opening and closing plate 450 facilitate the installation and removal of the pipeline, and the opening and closing bolts 460 facilitate the opening and closing of the mechanism.
Further, the lateral anti-seismic frame 500 further comprises a lateral anti-seismic frame body, lateral connecting blocks 520, lateral anti-seismic springs 530, lateral fixing blocks 540 and lateral fixing shafts 550, wherein a plurality of lateral connecting shafts 510 are respectively installed at one ends of the lateral connecting blocks 520, the other ends of the lateral connecting blocks 520 are respectively connected with one ends of the lateral anti-seismic springs 530, the other ends of the lateral anti-seismic springs 530 are respectively connected with one ends of the lateral fixing blocks 540, the lateral anti-seismic springs 530 are respectively installed inside the lateral anti-seismic frame bodies, the lateral fixing shafts 550 are respectively installed at the other ends of the lateral fixing blocks 540, the lateral anti-seismic frame 500 is used for resisting the action of lateral horizontal seismic force, and the stability and the safety of the device are improved.
Further, the longitudinal anti-vibration frame 600 further comprises a longitudinal anti-vibration frame body, a longitudinal connecting shaft 610, longitudinal connecting springs 630 and longitudinal fixing shafts 650, wherein a plurality of first mounting holes are respectively formed in the side surfaces of the longitudinal connecting blocks 620, the longitudinal connecting shaft 610 is respectively matched with the mounting holes in a rotating manner, the longitudinal connecting springs 630 are respectively mounted inside the longitudinal anti-vibration frame body, one ends of the longitudinal connecting springs 630 are respectively connected with the other ends of the longitudinal connecting blocks 620, the other ends of the longitudinal connecting springs 630 are respectively connected with the other ends of the longitudinal fixing blocks 640, a plurality of second mounting holes are respectively formed in the side surfaces of the longitudinal fixing blocks 640, the longitudinal fixing shafts 650 are respectively matched with the second mounting holes in a rotating manner, and two longitudinal anti-vibration frame bodies, two longitudinal connecting shafts 610, two longitudinal connecting blocks 620, two longitudinal connecting springs 630, two longitudinal fixing blocks, the longitudinal earthquake-resistant frame 600 is used for resisting the action of longitudinal horizontal earthquake force, and the stability and the safety of the device are improved.
Example two:
referring to fig. 1-5, the utility model relates to a mount for water and electricity engineering, first slider 130, second slider 140 and link block 310 have improved the convenience of device, and construction bolt 220 and connecting bolt 240 make the installation and the dismantlement of device more convenient, and pipeline fixing mechanism 400 makes the installation and the demolition of pipeline more convenient. Lateral anti-seismic frame 500 is used for resisting the action of lateral horizontal seismic force, and longitudinal anti-seismic frame 600 is used for resisting the action of longitudinal horizontal seismic force, so that the stability and the safety of the device are improved.
The basic principles and the main features of the invention and the advantages of the invention have been shown and described above. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.
Claims (7)
1. The utility model provides a mount for water and electricity engineering, includes fixed slide rail (100), link (200), connects slide rail (300), pipeline fixed establishment (400), side direction antidetonation frame (500) and vertical antidetonation frame (600), its characterized in that: the fixed slide rail (100) comprises a first slide block (130) and a second slide block (140), the connecting frame (200) comprises a connecting frame body and a connecting plate (230), the connecting slide rail (300) comprises a connecting slide rail body, a connecting slide block (310), a first connecting block (320) and a second connecting block (330), the pipeline fixing mechanism (400) comprises a fixing plate (410), the lateral anti-seismic frame (500) comprises a lateral connecting shaft (510), the longitudinal anti-seismic frame (600) comprises a longitudinal connecting block (620) and a longitudinal fixing block (640), the upper surfaces of a plurality of connecting frame bodies are welded with the lower surfaces of a plurality of first slide blocks (130), one ends of a plurality of connecting plates (230) are respectively welded with the two ends of the connecting slide rail body, the lower surfaces of a plurality of fixing plates (410) are respectively welded with the upper surface of the connecting slide block (310), one ends of a plurality of the lateral connecting shafts (510) are respectively in rotating fit with one side surface of the plurality, one end of each of the plurality of longitudinal connecting blocks (620) is welded with the plurality of second connecting blocks (330), and one end of each of the plurality of longitudinal fixing blocks (640) is welded with the lower surfaces of the plurality of second sliding blocks (140).
2. The fixing frame for hydroelectric engineering according to claim 1, characterized in that: the fixed slide rail (100) further comprises a fixed slide rail body, an anti-seismic slide rail (110) and a fixed bolt (120), wherein a plurality of first through holes are formed in the upper surface of the fixed slide rail body and the upper surface of the anti-seismic slide rail (110), the fixed bolt (120) is in rotating fit with the first through holes respectively, the first slide blocks (130) are in sliding fit with the fixed slide rail body, and the second slide blocks (140) are in sliding fit with the anti-seismic slide rail (110).
3. The fixing frame for hydroelectric engineering according to claim 1, characterized in that: connecting frame (200) still include fixed block (210), construction bolt (220) and connecting bolt (240), and is a plurality of install respectively in a plurality of connecting frame body one end fixed block (210), and is a plurality of fixed block (210) both sides surface is equipped with a plurality of second through-holes respectively, and is a plurality of construction bolt (220) respectively with a plurality of second through-hole normal running fit, a plurality of install respectively in a plurality of connecting frame body other ends connecting plate (230) both sides surface is equipped with a plurality of third through-holes respectively, and is a plurality of connecting bolt (240) respectively with a plurality of third through-hole normal running fit.
4. The fixing frame for hydroelectric engineering according to claim 1, characterized in that: the connecting sliding block (310) is in sliding fit with the connecting sliding rail body, the other side surfaces of the first connecting blocks (320) are welded to the surface of one side of the connecting sliding rail body, and the other side surfaces of the second connecting blocks (330) are welded to the surface of the other side of the connecting sliding rail body.
5. The fixing frame for hydroelectric engineering according to claim 1, characterized in that: the pipeline fixing mechanism (400) also comprises a pipeline fixing mechanism body, a rotating pipe (420), a rotating block (430), a sponge cushion (440), a split plate (450) and a split bolt (460), it is a plurality of fixed plate (410) side surface is equipped with a plurality of first round holes respectively, and is a plurality of rotatory pipe (420) respectively with a plurality of first round hole normal running fit, it is a plurality of rotatory pipe (420) one end respectively with a plurality of rotatory piece (430) both sides surface weld, it is a plurality of rotatory piece (430) one end all with pipeline fixed establishment body side surface weld, it is a plurality of foam-rubber cushion (440) a side surface all with pipeline fixed establishment body inside side surface connection, it is a plurality of open-close plate (450) one end all with pipeline fixed establishment body side surface weld, it is a plurality of open-close plate (450) is equipped with a plurality of second round holes respectively, and is a plurality of open-close bolt (460) respectively with a plurality of second.
6. The fixing frame for hydroelectric engineering according to claim 1, characterized in that: lateral anti-seismic frame (500) further comprises a lateral anti-seismic frame body, a lateral connecting block (520), a lateral anti-seismic spring (530), a lateral fixing block (540) and a lateral fixing shaft (550), wherein the lateral connecting shaft (510) is installed at one end of the lateral connecting block (520) respectively, the other end of the lateral connecting block (520) is connected with one end of the lateral anti-seismic spring (530) respectively, the other end of the lateral anti-seismic spring (530) is connected with one end of the lateral fixing block (540) respectively, the lateral anti-seismic spring (530) is installed inside the lateral anti-seismic frame body respectively, and the lateral fixing shaft (550) is installed at the other end of the lateral fixing block (540) respectively.
7. The fixing frame for hydroelectric engineering according to claim 1, characterized in that: vertical antidetonation frame (600) still includes vertical antidetonation frame body, longitudinal joint axle (610), longitudinal joint spring (630) and longitudinal fixed axle (650), and is a plurality of longitudinal joint piece (620) side surface is equipped with a plurality of first mounting holes respectively, and is a plurality of longitudinal joint axle (610) respectively with a plurality of mounting hole normal running fit, it is a plurality of longitudinal joint spring (630) is installed respectively inside a plurality of longitudinal antidetonation frame bodies, and is a plurality of longitudinal joint spring (630) one end is connected with a plurality of longitudinal joint piece (620) other end respectively, and is a plurality of the longitudinal joint spring (630) other end is connected with a plurality of longitudinal fixed block (640) other end respectively, and is a plurality of longitudinal fixed block (640) side surface is equipped with a plurality of second mounting holes respectively, and is a plurality of longitudinal fixed axle (650) respectively with.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202022593273.5U CN213452122U (en) | 2020-11-11 | 2020-11-11 | Fixing frame for hydroelectric engineering |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202022593273.5U CN213452122U (en) | 2020-11-11 | 2020-11-11 | Fixing frame for hydroelectric engineering |
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Publication Number | Publication Date |
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CN213452122U true CN213452122U (en) | 2021-06-15 |
Family
ID=76299985
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202022593273.5U Withdrawn - After Issue CN213452122U (en) | 2020-11-11 | 2020-11-11 | Fixing frame for hydroelectric engineering |
Country Status (1)
Country | Link |
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CN (1) | CN213452122U (en) |
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2020
- 2020-11-11 CN CN202022593273.5U patent/CN213452122U/en not_active Withdrawn - After Issue
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