CN212342149U - Comprehensive emergency rescue training facility - Google Patents

Comprehensive emergency rescue training facility Download PDF

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CN212342149U
CN212342149U CN202021637633.0U CN202021637633U CN212342149U CN 212342149 U CN212342149 U CN 212342149U CN 202021637633 U CN202021637633 U CN 202021637633U CN 212342149 U CN212342149 U CN 212342149U
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module
climbing
training
simulation
emergency rescue
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刘术军
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Wodik Beijing Industrial Technology Co ltd
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Wodik Beijing Industrial Technology Co ltd
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Abstract

The utility model relates to a synthesize emergency rescue training facility, it includes climbing high speed and falls module, cableway module, frame module and turns over the module, and connects through the support frame between each module, and cableway module and frame module set up in the both sides of climbing high speed and fall the module, and highly be less than climbing high speed and fall the module, turn over the module and set up in climbing high speed and fall module downside. The comprehensive emergency rescue training facility can be arranged on any open flat ground, is convenient to install, and can be carried out on the comprehensive emergency rescue training facility during training, so that the training is more convenient; the four modules can respectively and simultaneously carry out training or equipment testing on different projects, so that the utilization rate of the comprehensive emergency rescue training facility is improved; the cableway module and the frame module are arranged on two sides of the climbing speed descending module, and the climbing speed descending module with higher height is better supported, so that the whole structure is more stable, and the training is safer. The training device has the advantages of convenience in training, high space utilization rate, safety in training and wide functions.

Description

Comprehensive emergency rescue training facility
Technical Field
The application relates to the field of comprehensive emergency rescue training, in particular to a comprehensive emergency rescue training facility.
Background
At present, the technology of high-altitude operation is widely used in various high-altitude working environments, high-altitude equipment maintenance and other high-tech works, rescue works of buildings, cable cars, mountains, water areas and the like of rescue and fire-fighting units, and various related technologies of high-altitude operation are also frequently required to be used in outdoor activities.
In view of the danger of the aloft work, a worker must firstly master how to correctly use the aloft work protective articles and can skillfully operate the aloft work protective articles, and secondly has knowledge of aloft work rescue and escape, so that the safety of the aloft work is firstly ensured; in addition, once in danger, can flee for one's life or rescue trapped personnel in time, avoid more serious consequences such as personal injury.
Aiming at high-altitude operation, protection, rescue and the like, the international general method is to regularly and repeatedly carry out professional high-altitude operation and comprehensive emergency rescue training so as to continuously strengthen the safety consciousness of operators and improve the operation skill; training for aerial work, mountain rescue and high-altitude climbing needs to be carried out in different field environments due to the particularity of the required environment, and training fields need to be replaced aiming at different projects, so that training is very inconvenient.
SUMMERY OF THE UTILITY MODEL
In order to more conveniently carry out aloft work and comprehensive emergency rescue training, the application provides a comprehensive emergency rescue training facility.
The application provides a synthesize emergency rescue training facility adopts following technical scheme:
a comprehensive emergency rescue training facility comprises a support frame, wherein a climbing and descending module, a cableway module and a frame module are arranged on the support frame, the climbing and descending module comprises a first support frame and a support table, an opening for fast descending training is formed in the support table, the cableway module comprises a second support frame and a cableway platform, and the frame module comprises a third support frame; the height of the climbing high-speed descending module is greater than the height of the cableway module and the height of the frame module, and the cableway module and the frame module are arranged on the outer side of the climbing high-speed descending module.
By adopting the technical scheme, firstly, the comprehensive emergency rescue training facility can be arranged on any open flat ground, the installation is convenient, and corresponding items can be trained on the comprehensive emergency rescue training facility, so that the training is more convenient; secondly, the climbing and descending module, the cableway module and the frame module can respectively and simultaneously carry out training or equipment testing on different projects, so that the utilization rate of the comprehensive emergency rescue training facility is improved; simultaneously, cableway module and frame module set up in the both sides of climbing the high speed and falling the module, can carry out better support to the high climbing speed of height and falling the module, make overall structure more stable, and wind resistance can be better, and is safer during the training.
Preferably, synthesize emergency rescue training facility still includes and turns over the module, turns over the module and sets up in climbing high speed and fall module downside, turns over the module and includes the simulation wall, and the simulation wall sets up on the lateral wall of first support frame.
Through adopting above-mentioned technical scheme, the module that turns over sets up in climbing high speed and descending module downside, has saved planar space, has improved the space utilization who synthesizes emergency rescue training facility, can directly carry out the training of turning over the wall body from narrow and small space after the speed descends, makes the training flow link up more, has improved training efficiency.
Preferably, the climbing high-speed descending module further comprises a single-column ladder stand and a first vertical ladder stand, and the two sets of ladder stands are matched with ladder stand anti-falling devices.
Through adopting above-mentioned technical scheme, the module that climbs high speed and falls sets up two kinds of cat ladders, can carry out the climbing training of different kinds of cat ladders simultaneously, can reach the brace table through two sets of cat ladders and carry out the speed and fall the training, and anti-falling device can carry out fine protection to the training personnel simultaneously, makes the training safer.
Preferably, the climbing and high-speed descending module further comprises a cantilever which is arranged at the top end of the first support frame; the supporting bench is vertically provided with a plurality of layers, the edges of the supporting bench extend outwards to form an outer expanding table, and the edges of each layer of supporting bench are provided with fences.
By adopting the technical scheme, devices such as a rope ladder, a mooring rope and the like can be arranged on the cantilever to perform corresponding training; the arrangement of the multiple layers of supporting tables can perform the rapid descent training from positions with different heights, the supporting tables with lower heights can perform the rapid descent training relative to the foundation, and the supporting tables with higher heights can perform the rapid descent training with relatively high difficulty; the outer expansion platform can be used as a stop waiting place, and corresponding training equipment can be arranged at the lower end of the outer expansion platform for training; the fence at the edge of the supporting table can protect training personnel on the supporting table, so that the training is safer.
Preferably, a rock climbing wall is arranged below the outer expansion platform.
By adopting the technical scheme, the rock climbing training can be carried out by utilizing the rock climbing wall.
Preferably, the climbing high-speed descent module further comprises a window simulation wall, the window simulation wall is arranged on the side wall of the first support frame opposite to the first vertical crawling ladder and is of a plate-shaped structure, a window is formed in the window simulation wall, and simulation pipelines are arranged on two sides of the window simulation wall.
Through adopting above-mentioned technical scheme, can use window mould artificial wall to carry out fire control training etc. utilize the window to carry out cat ladder training, the simulated pipeline can also simulate environment such as the water pipe in the house outside to carry out corresponding training.
Preferably, the cableway module further comprises a second vertical ladder and a simulated cliff, wherein the second vertical ladder is fixed at one end of the cableway platform and is matched with a ladder anti-falling device; the simulated cliff comprises a cliff wall, and the cliff wall is vertically arranged at one end, far away from the second vertical ladder, of the ropeway platform.
By adopting the technical scheme, the second vertical crawling ladder can be used for climbing training relative to a foundation, the second vertical crawling ladder can reach a cableway platform for cableway environment training, and meanwhile, the anti-falling device can well protect trainers, so that the training is safer; the simulated cliff simulates the environment of the cliff so as to carry out corresponding rescue and other training.
Preferably, the cableway module further comprises a simulation cable, the simulation cable is arranged on one side, close to the climbing and high-speed descending module, of the cableway platform, two ends of the simulation cable are fixed on the second support frame, a protective net is arranged below the simulation cable, and two ends of the protective net are fixed on the second support frame.
By adopting the technical scheme, the simulation mooring rope can be used for training high-altitude operation such as cable maintenance, and the protection net on the lower side can well protect trainers.
Preferably, the frame module further comprises a simulation wall surface and a simulation net surface, and the simulation wall surface and the simulation net surface are arranged on the side wall of the third support frame.
Through adopting above-mentioned technical scheme, the climbing training or the equipment test of wall and wire side can be carried out to simulation wall and simulation wire side.
Preferably, the lower end of the transverse supporting rod of the supporting frame is provided with a fixing ring, and the side wall of the vertical supporting rod of the supporting frame is provided with a fixing ring.
Through adopting above-mentioned technical scheme, devices such as hawser can more stably fix on the support frame more conveniently, can fix on the solid fixed ring of different positions according to the demand of difference to carry out the training of different projects or equip the test.
Drawings
Fig. 1 is a schematic perspective view of a comprehensive emergency rescue training facility in embodiment 1;
FIG. 2 is a schematic perspective view of a climbing and descending module and a climbing and crossing module of the comprehensive emergency rescue training facility in embodiment 1;
FIG. 3 is a schematic perspective view of a climbing and descending module of the integrated emergency rescue training facility in embodiment 1;
FIG. 4 is a schematic perspective view of a cableway module of the integrated emergency rescue training facility according to embodiment 1;
FIG. 5 is a schematic perspective view of a cableway module of the integrated emergency rescue training facility according to the embodiment 1;
FIG. 6 is a schematic perspective view of a fixing ring on a support frame of the comprehensive emergency rescue training facility shown in example 1;
fig. 7 is a schematic perspective view of a comprehensive emergency rescue training facility in embodiment 2.
Description of reference numerals: 0. a support frame; 01. a first support frame; 02. a second support frame; 03. a third support frame; 04. a fixing ring; 1. a climbing and descending module; 11. a support table; 111. a fence; 112. an external expanding platform; 113. climbing a rock wall; 12. a first vertical ladder stand; 13. a single-column ladder stand; 14. a cantilever; 15. window modeling walls; 151. a window; 152. simulating a pipeline; 2. a cableway module; 21. a cableway platform; 211. a railing; 22. a second vertical ladder; 23. simulating a cliff; 231. cliff wall; 232. a protective pad; 24. simulating a cable; 25. a protective net; 3. a frame module; 31. simulating a wall surface; 32. simulating a net surface; 4. a crossing module; 41. and simulating a wall.
Detailed Description
The present application is described in further detail below with reference to figures 1-7.
The embodiment of the application discloses comprehensive emergency rescue training facility.
Example 1
Referring to fig. 1, the comprehensive emergency rescue training facility comprises a support frame 0, wherein a climbing and descending module 1, a cableway module 2, a frame module 3 and a climbing module 4 are arranged on the support frame 0, the support frame 0 is composed of support rods which are fixedly connected with each other, the support rods can be H-shaped steel or steel with other structures, the support rods can be fixedly connected with each other through fastening bolts or welding, and the lower end of the support frame 0 is fixed on the ground through foundation bolts; referring to fig. 6, the fixing rings 04 are arranged at the lower ends of the transverse support rods of the support frame 0, the fixing rings 04 are arranged on the side walls of the vertical support rods of the support frame 0, and tools for high-altitude operation such as cables can be mounted on the fixing rings 04 to perform corresponding training or equipment testing. Referring to fig. 2 and 3, the climbing high-speed descending module 1 includes a first support frame 01, a support table 11, a first vertical ladder stand 12, a single-column ladder stand 13 and a cantilever 14, the first support frame 01 is a rectangular frame structure, the first support frame 01 includes four vertically arranged support rods and a plurality of horizontally arranged support rods, the horizontal support rods form a plurality of rectangular frame groups, and the rectangular frame groups are vertically distributed along the vertical support rods; the supporting tables 11 are of a multi-layer plate-shaped structure, the supporting tables 11 are fixed at the upper ends of the horizontal supporting rods of the first supporting table 01, a rectangular opening for quick descent is formed in the middle of each layer of supporting tables 11, and the openings of each layer are vertically aligned, so that the supporting tables are applicable to quick descent training at different heights, fences 111 are arranged around the supporting tables 11, the fences 111 are generally formed by fixing steel cables on vertical supporting rods and can be net-shaped or fence-rod-shaped, an outer expanding table 112 is arranged on one side of the supporting table 11 on the second layer, the outer expanding table 112 is formed by outwards extending the supporting tables 11, oblique supporting rods are fixedly connected below the outer expanding table 112, one end of each supporting rod is connected with the lower end of the outer expanding table 112, and the other end of each; the single-column ladder stand 13 is arranged on the side wall of the first support frame 01 and is close to the vertical support rod of the first support frame 01, the single-column ladder stand 13 is arranged on the side wall opposite to the outer expanding platform 112, the single-column ladder stand 13 is fixedly connected with the horizontal support rod of the first support frame 01, the first vertical ladder stand 12 is arranged on the side wall of the first support frame 01 and is adjacent to the side wall of the first support frame 01 provided with the single-column ladder stand 13, the first vertical ladder stand 12 is fixedly connected with the horizontal support rod of the first support frame 01, the first vertical ladder stand 12 and the single-column ladder stand 13 are provided with anti-falling devices in a matching way, namely vertical life line devices, the anti-falling system comprises a vertically arranged track, a brake and a safety rope, the track can be a steel cable or a track groove arranged on the stand column of the ladder stand, the brake can slide up and down along the track, the resistance of the brake system is very small, the safety rope is connected to the braking system, and is fixed on a safety belt on a trainer during climbing training, so that the safety of the trainer can be better ensured; the cantilever 14 is a rod-shaped structure with the upper end bent transversely, the lower end of the transversely bent part can also be provided with a fixing ring 04, the cantilever 14 is fixedly connected to the upper end of the vertical supporting rod of the first supporting frame 01, the bent part deviates from the direction of the supporting table 11, and a rope ladder or a mooring rope and the like can be arranged on the cantilever 14 to perform corresponding training or equipment testing.
Referring to fig. 4 and 5, the cableway module 2 includes a second support frame 02, a cableway platform 21, a second vertical ladder 22 and a simulated cliff 23, the cableway module 2 is arranged on one side of the high-speed descent module 1 where the single-column ladder 13 is arranged, the height of the second support frame 02 is flush with the support platform 11 at the lowest layer of the high-speed descent module 1, the length and the width of the second support frame 02 are both greater than those of the first support frame 01, and the second support frame 02 is arranged adjacent to and fixedly connected with the first support frame 01; the cableway platform 21 is of a long-strip plate-shaped structure, the cableway platform 21 is horizontally fixed on one side, away from the first support frame 01, of the upper end of the second support frame 02, handrails 211 are arranged on two sides of the cableway platform, a cable is generally fixed on the handrails 211, a net surface can be fixed for protection, and the handrails 211 can be used for sleeving cables for climbing; the second vertical ladder stand 22 is arranged at one end of the cableway platform 21 and is fixedly connected with the cableway platform 21 and the horizontal support rod, and an anti-falling device is arranged on the second vertical ladder stand 22 in a matched mode to perform protection; simulation cliff 23 includes cliff 231, and cliff 231 is vertical to be fixed in the other end of ropeway platform 21, and cliff 231 lower extreme is connected with horizontal support rod, and horizontal support rod is connected with the vertical support pole at both ends, and simulation cliff 23 one end is laid on ropeway platform 21 and is protected and fill up 232, and protection fill up 232 hangs down to cliff 231 lower extreme, and protection fill up 232 both can prevent that personnel from being knocked by the border of ropeway platform 21, can also reduce the wearing and tearing of appliances such as climbing rope through simulation cliff 23.
Referring to fig. 1, the frame module 3 includes a third support frame 03, the third support frame 03 is disposed on one side of the climbing high-speed descent module 1 departing from the cableway module 2, and is fixedly connected to three side walls of the first support frame 01 far away from the second support frame, the first support frame 01 is of a semi-surrounding structure, the height and length of the third support frame 03 are consistent with those of the second support frame 02, the width of the third support frame is larger than that of the first support frame 01, devices such as cables can be installed on a fixing ring 04 of the third support frame 03 as required during training, and the training or equipment testing content on a factory building environment simulation or other frames is performed.
Referring to fig. 2, the climbing module 4 includes a simulation wall 41, the simulation wall 41 is a plate-shaped structure, the height of the simulation wall 41 is less than that of the third support frame 03, the simulation wall 41 is fixed on the outer wall of the first support frame 01 opposite to the first vertical ladder 12 and is fixedly connected to the horizontal support rod, and climbing equipment can be installed on the horizontal support rod on the upper side of the simulation wall 41 to perform climbing training or climbing training on the simulation wall 41.
The implementation principle of the embodiment 1 is as follows: when training is needed, the first vertical ladder stand 12 and the single-column ladder stand 13 can be used for climbing training, meanwhile, the anti-falling device of the ladder stand can well protect training personnel, and equipment such as a rope ladder and the like and corresponding safety protection devices can be arranged on the cantilever 14 for training different climbing equipment; the cable and the corresponding safety protection device can be fixed on the top layer of the support table 11 for fast descending training, and fast descending can be started from support tables 11 with different heights according to different training grades; the cableway module 2 can be used for simulating a cableway environment, the cableway platform 21 can be reached through the second vertical ladder 22, corresponding rescue, overhaul and installation training can be carried out on the cableway platform 21, and meanwhile equipment required by training can be arranged on the railing 211; corresponding rescue training and the like of the cliff environment can be performed at the position of the simulated cliff 23; different types of equipment can be arranged on the fixing ring 04 of the third support frame 03 at the frame module 3 to perform plant environment simulation or basic training or equipment testing on other frames, and horizontal support rods with different heights of the third support frame 03 can provide training at different positions and with different difficulties; climbing or climbing training can be performed at the climbing module 4 using the simulated wall 41.
Example 2
Referring to fig. 7, the present embodiment is different from embodiment 1 in that a rock climbing wall 113 is disposed below the outer expansion platform 112, a rock climbing surface of the rock climbing wall 113 is a cambered surface structure with a convex upper side, a plurality of protrusions for rock climbing are fixed on the rock climbing surface of the rock climbing wall 113, the protrusion structure may be set to mimic the structural shape of natural rock, the upper end of the rock climbing wall 113 is fixedly connected with the outer expansion platform 112, and the rock climbing wall 113 is vertically fixed on the side wall of the first support frame 01; the climbing high-speed descent module 1 further comprises a window simulation wall 15, the window simulation wall 15 is of a plate-shaped structure, the window simulation wall 15 is arranged on the side wall of the first support frame 01 opposite to the first vertical climbing ladder 12, a plurality of windows 151 are formed in the window simulation wall 15, and simulation pipelines 152 are fixed on two sides of the window simulation wall 15 and used for simulating climbing rescue of the building wall environment and the like; the cableway module 2 further comprises a simulation cable 24, the simulation cable 24 is arranged on one side, close to the climbing high-speed descending module 1, of the cableway platform 21, two ends of the simulation cable 24 are fixed to horizontal support rods on two sides of the second support frame 02, the simulation cable 24 can also be arranged into a cross rod to perform training of different projects, a protective net 25 is arranged below the simulation cable 24, and two ends of the protective net 25 are fixed to the horizontal support rods on two sides of the second support frame 02; the frame module 3 further comprises a simulation wall surface 31 and a simulation net surface 32 for climbing training, and the simulation wall surface 31 and the simulation net surface 32 are fixed on the side wall of the third support frame 03 far away from the first support frame 01.
The implementation principle of the embodiment 2 is as follows: when training is needed, the climbing training can be carried out by using the climbing wall 113, the safety protection device can be fixed on the first support frame 01 during training, the climbing training with a simpler foundation can be carried out in a straight area at the lower end of the climbing wall 113, and the climbing training with higher difficulty can be carried out in an area protruding out of the upper end of the climbing wall 113; the window simulation wall 15 can be used for fire-fighting training and the like, the window 151 can be used for ladder climbing training, the simulation pipeline 152 can also simulate the environment such as water pipes outside a house and the like for corresponding training, and the safety protection device can be fixed on the first support frame 01 during training; the simulation cable 24 can be used for training high-altitude operation such as cable maintenance, the protective net 25 on the lower side can well protect trainers, and the simulation cable 24 can be used as a cross bar for training on-pole operation and the like; the simulated wall 31 and the simulated net 32 can be used for climbing training of the wall and the net, and other types of climbing environments can be arranged on the frame module 3 for corresponding training.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (10)

1. The utility model provides a synthesize emergency rescue training facility, includes support frame (0), its characterized in that: the climbing and high-speed descending type cableway system is characterized in that a climbing and high-speed descending module (1), a cableway module (2) and a frame module (3) are arranged on the supporting frame (0), wherein the climbing and high-speed descending module (1) comprises a first supporting frame (01) and a supporting table (11), an opening for quick descending training is formed in the supporting table (11), the cableway module (2) comprises a second supporting frame (02) and a cableway platform (21), and the frame module (3) comprises a third supporting frame (03); the height of the climbing high-speed descent module (1) is greater than the height of the cableway module (2) and the frame module (3), and the cableway module (2) and the frame module (3) are arranged on the outer side of the climbing high-speed descent module (1).
2. Comprehensive emergency rescue training facility according to claim 1, characterized in that: synthesize emergency rescue training facility still includes and turns over module (4), turns over module (4) and sets up in climbing high speed and descend module (1) downside, turns over module (4) including simulation wall (41), and simulation wall (41) set up on the lateral wall of first support frame (01).
3. Comprehensive emergency rescue training facility according to claim 1, characterized in that: the climbing high-speed descending module (1) further comprises a single-column ladder (13) and a first vertical ladder (12), and the two sets of ladders are matched with ladder anti-falling devices.
4. Comprehensive emergency rescue training facility according to claim 3, characterized in that: the climbing high-speed descending module (1) further comprises a cantilever (14), and the cantilever (14) is arranged at the top end of the first support frame (01); the supporting table (11) is vertically provided with a plurality of layers, the edge of the supporting table (11) extends outwards to form an outer expanding table (112), and a fence is arranged at the edge of each layer of the supporting table (11).
5. Comprehensive emergency rescue training facility according to claim 4, characterized in that: a rock climbing wall (113) is arranged below the external expanding platform (112).
6. Comprehensive emergency rescue training facility according to claim 3, characterized in that: the climbing high-speed descent module (1) further comprises a window simulation wall (15), the window simulation wall (15) is arranged on the side wall, opposite to the first vertical crawling ladder (12), of the first support frame (01), the window simulation wall (15) is of a plate-shaped structure, a window (151) is formed in the window simulation wall (15), and simulation pipelines (152) are arranged on two sides of the window simulation wall (15).
7. Comprehensive emergency rescue training facility according to claim 1, characterized in that: the cableway module (2) further comprises a second vertical ladder (22) and a simulated cliff (23), wherein the second vertical ladder (22) is fixed at one end of the cableway platform (21) and is matched with a ladder anti-falling device; the simulated cliff (23) comprises a cliff wall (231), and the cliff wall (231) is vertically arranged at one end, far away from the second vertical ladder (22), of the ropeway platform (21).
8. Comprehensive emergency rescue training facility according to claim 7, characterized in that: the cableway module (2) further comprises a simulation cable rope (24), the simulation cable rope (24) is arranged on one side, close to the climbing high-speed descending module (1), of the cableway platform (21), two ends of the simulation cable rope (24) are fixed on the second supporting frame (02), a protective net (25) is arranged below the simulation cable rope (24), and two ends of the protective net (25) are fixed on the second supporting frame (02).
9. Comprehensive emergency rescue training facility according to claim 1, characterized in that: the frame module (3) further comprises a simulation wall surface (31) and a simulation net surface (32), and the simulation wall surface (31) and the simulation net surface (32) are arranged on the side wall of the third support frame (03).
10. Comprehensive emergency rescue training facility according to claim 1, characterized in that: fixed ring (04) have been arranged to the horizontal bracing piece lower extreme of support frame (0), and fixed ring (04) have been arranged on the vertical bracing piece lateral wall of support frame (0).
CN202021637633.0U 2020-08-07 2020-08-07 Comprehensive emergency rescue training facility Active CN212342149U (en)

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CN202021637633.0U CN212342149U (en) 2020-08-07 2020-08-07 Comprehensive emergency rescue training facility

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CN202021637633.0U CN212342149U (en) 2020-08-07 2020-08-07 Comprehensive emergency rescue training facility

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111816047A (en) * 2020-08-07 2020-10-23 沃迪克(北京)工业技术有限公司 Comprehensive emergency rescue training facility

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111816047A (en) * 2020-08-07 2020-10-23 沃迪克(北京)工业技术有限公司 Comprehensive emergency rescue training facility

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