CN113279810A - Light local follow-up type safety lifesaving protection device for ore exploitation in mountain - Google Patents

Light local follow-up type safety lifesaving protection device for ore exploitation in mountain Download PDF

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Publication number
CN113279810A
CN113279810A CN202110810428.2A CN202110810428A CN113279810A CN 113279810 A CN113279810 A CN 113279810A CN 202110810428 A CN202110810428 A CN 202110810428A CN 113279810 A CN113279810 A CN 113279810A
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China
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type
protection
plate
local
microwave
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CN202110810428.2A
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CN113279810B (en
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刘志
刘全志
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Jiangsu Zhuowei Mining Technology Co ltd
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Jiangsu Zhuowei Mining Technology Co ltd
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    • EFIXED CONSTRUCTIONS
    • E21EARTH DRILLING; MINING
    • E21FSAFETY DEVICES, TRANSPORT, FILLING-UP, RESCUE, VENTILATION, OR DRAINING IN OR OF MINES OR TUNNELS
    • E21F11/00Rescue devices or other safety devices, e.g. safety chambers or escape ways
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D46/00Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
    • B01D46/0027Filters or filtering processes specially modified for separating dispersed particles from gases or vapours with additional separating or treating functions
    • B01D46/0036Filters or filtering processes specially modified for separating dispersed particles from gases or vapours with additional separating or treating functions by adsorption or absorption
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D46/00Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
    • B01D46/56Filters or filtering processes specially modified for separating dispersed particles from gases or vapours with multiple filtering elements, characterised by their mutual disposition
    • B01D46/62Filters or filtering processes specially modified for separating dispersed particles from gases or vapours with multiple filtering elements, characterised by their mutual disposition connected in series
    • B01D46/64Filters or filtering processes specially modified for separating dispersed particles from gases or vapours with multiple filtering elements, characterised by their mutual disposition connected in series arranged concentrically or coaxially
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D46/00Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
    • B01D46/66Regeneration of the filtering material or filter elements inside the filter
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01JCHEMICAL OR PHYSICAL PROCESSES, e.g. CATALYSIS OR COLLOID CHEMISTRY; THEIR RELEVANT APPARATUS
    • B01J20/00Solid sorbent compositions or filter aid compositions; Sorbents for chromatography; Processes for preparing, regenerating or reactivating thereof
    • B01J20/30Processes for preparing, regenerating, or reactivating
    • B01J20/34Regenerating or reactivating
    • B01J20/3416Regenerating or reactivating of sorbents or filter aids comprising free carbon, e.g. activated carbon
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01JCHEMICAL OR PHYSICAL PROCESSES, e.g. CATALYSIS OR COLLOID CHEMISTRY; THEIR RELEVANT APPARATUS
    • B01J20/00Solid sorbent compositions or filter aid compositions; Sorbents for chromatography; Processes for preparing, regenerating or reactivating thereof
    • B01J20/30Processes for preparing, regenerating, or reactivating
    • B01J20/34Regenerating or reactivating
    • B01J20/3441Regeneration or reactivation by electric current, ultrasound or irradiation, e.g. electromagnetic radiation such as X-rays, UV, light, microwaves
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60GVEHICLE SUSPENSION ARRANGEMENTS
    • B60G11/00Resilient suspensions characterised by arrangement, location or kind of springs
    • B60G11/14Resilient suspensions characterised by arrangement, location or kind of springs having helical, spiral or coil springs only
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B62LAND VEHICLES FOR TRAVELLING OTHERWISE THAN ON RAILS
    • B62DMOTOR VEHICLES; TRAILERS
    • B62D61/00Motor vehicles or trailers, characterised by the arrangement or number of wheels, not otherwise provided for, e.g. four wheels in diamond pattern
    • B62D61/10Motor vehicles or trailers, characterised by the arrangement or number of wheels, not otherwise provided for, e.g. four wheels in diamond pattern with more than four wheels
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60GVEHICLE SUSPENSION ARRANGEMENTS
    • B60G2202/00Indexing codes relating to the type of spring, damper or actuator
    • B60G2202/10Type of spring

Abstract

The invention discloses a light local follow-up type safety lifesaving protection device for ore mining in a mountain, which comprises a dynamic balance anti-bumping shock-absorption type movable bearing mechanism, a gear meshing transmission type height adjusting mechanism, a current change type state change type protection enclosure, a soft weaving transverse shift type local shock-through type shrinkage protection ceiling, a microwave activation type air purification safety protection mechanism and a multilayer material supply station. The invention belongs to the technical field of ore mining protection, and particularly relates to a light local follow-up safety lifesaving protection device for mining ores in a mountain, which creatively applies a local quality principle to the technical field of ore mining.

Description

Light local follow-up type safety lifesaving protection device for ore exploitation in mountain
Technical Field
The invention belongs to the technical field of ore mining protection, and particularly relates to a light local follow-up type safety lifesaving protection device for mining ore in a mountain.
Background
The mine is a place for mining ores or producing mineral raw materials, the mining belongs to high-risk industry, safety production must be emphasized, the annual mine accident occurrence rate of China is high, the mine is difficult to rescue people in distress due to safety accidents, personnel casualties are easy to cause, the mine is mainly collapsed due to the fact that mine openings are loosened, collapse, misoperation or natural reasons occur in the mine, and therefore corresponding lifesaving protection devices are generally equipped in mine enterprises, and personal safety of mining personnel is guaranteed to a certain extent.
However, the traditional mine safety lifesaving protection device has single function and weak smashing prevention performance, and when a collapse accident occurs, the bearing limit of the lifesaving device is difficult to ensure, so that the lifesaving device is damaged by smashing of ores, and the personal safety of mining personnel is seriously threatened; secondly, the height of the mine hole is inconsistent during mining due to the irregular shape of the ore, but the height of the existing lifesaving protective device for ore mining cannot be flexibly adjusted according to the height of the mine hole, so that the use of the existing lifesaving protective device is limited, if the height of the mine hole is lower, the lifesaving protective device cannot pass through, and the practicability is extremely poor; thirdly, the terrain of ore mining in the mine is complex and uneven, so that the lifesaving protective device is difficult to advance, and particularly, when the road passes through the ground with large height drop, the side turning is easy to happen, and the safety of the protective device is further reduced; in addition, when collapse or broken stone fall, dust is easy to fly and can float in the air for a long time, many dust is formed, the surface of the dust can adsorb other gaseous or liquid harmful substances and becomes carriers of other harmful substances, when a miner inhales the air containing dust, the inhaled dust particles can enter respiratory bronchioles, alveolar ducts and alveoli of a gas exchange area after passing through a trachea, a main bronchus and a bronchiole under the condition of no resistance, toxic action is generated in the entering process to influence the gas exchange function, the dust particles contain soluble substances or other harmful substances adsorbed in the air, mucus soluble in respiratory tracts or alveoli can be absorbed by human bodies to directly generate poisoning according to different dissolubility, the existing mining lifesaving protection device can not purify the air in a mine hole, threatens the life safety of mining personnel.
Disclosure of Invention
Aiming at the situation and overcoming the defects of the prior art, the invention provides a light local follow-up safety lifesaving protection device for mining the ores in the mountain, which creatively applies a local quality principle to the technical field of ore mining according to the contradictory technical problems that the protection device needs to have good protection performance, good applicability, strong universality and can not be too heavy, solves the contradictory technical problems that the applicability and the universality of the traditional protection device under different actions can increase the quality of the traditional protection device under the condition of no induction identification element, realizes the technical effect of the falling rock light dynamic follow-up accurate positioning type deformation polymerization resisting protection, utilizes the characteristic that the state of electrorheological fluid changes along with the change of the electric field intensity, creatively applies to the technical field of ore mining protection, and under the action of the electric field, the electrorheological fluid can immediately change from the freely flowing liquid into the solid state within a few milliseconds, and along with the increase of electric field intensity and voltage, the intensity of solid also increases, realize the technological effect to the quick and safety protection of mining personnel, according to the complicated changeable, rugged and rugged condition of topography in the mine cavern, utilize triangular stable structure to combine the characteristic principle of dynamic balance, creatively designed the shock attenuation formula of dynamic balance anti-jolt and remove the bearing mechanism, realize the technological effect that the dynamic balance type on the complicated and rugged road surface moves steadily, thoroughly solved the technical problem that traditional protector meets the road section of jolting and easily emptys.
The technical scheme adopted by the invention is as follows: the invention relates to a light local follow-up type mountain ore mining safety lifesaving protection device, which comprises a dynamic balance anti-bumping shock-absorbing type moving bearing mechanism, a gear meshing transmission type height adjusting mechanism, a current variable type state change type protection enclosure, a soft weaving transverse shift type local shock-absorbing shrinkage protection ceiling, a microwave activation type air purification safety protection mechanism and a multilayer material supply station, wherein the gear meshing transmission type height adjusting mechanism is arranged on the upper wall of the dynamic balance anti-bumping shock-absorbing type moving bearing mechanism, the soft weaving transverse shift type local shock-absorbing shrinkage protection ceiling is arranged on the gear meshing transmission type height adjusting mechanism, the current variable type state change type protection enclosure is arranged on the dynamic balance anti-bumping shock-absorbing type moving bearing mechanism and the soft weaving transverse shift type local shock-absorbing shrinkage protection, the microwave activation type air purification safety protection mechanism is arranged on the side wall of the current variable type state change type protection enclosure, the multilayer material supply station is arranged on the dynamic balance anti-bumping shock absorption type movable bearing mechanism and is arranged in the current variable state change type protective enclosure; the electric field applying device is respectively arranged on the soft weaving transverse shifting type local shock-absorbing shrinkage protection ceiling and the dynamic balance anti-bumping shock absorption type moving bearing mechanism, the flexible deformation protective layer is arranged on the electric field applying device, and the electric rheological fluid is filled in the flexible deformation protective layer; the electric field applying device comprises an upper capacitor plate, a lower capacitor plate and a power supply battery, the upper capacitor plate is arranged on the bottom wall of the soft weaving transverse shifting type local shock type shrinkage protection ceiling, the lower capacitor plate is arranged on the dynamic balance anti-bumping shock absorption type movable bearing mechanism, the power supply battery is arranged in the dynamic balance anti-bumping shock absorption type movable bearing mechanism, the upper capacitor plate and the lower capacitor plate are respectively and electrically connected with a power supply battery, the flexible deformation protective layer is arranged between the upper capacitor plate and the lower capacitor plate, when the power supply battery respectively supplies power to the upper capacitor plate and the lower capacitor plate, under the action of the electric field, the electrorheological fluid is immediately changed from free flowing liquid into solid state within a few milliseconds, and the intensity of the solid is increased along with the increase of the electric field intensity and voltage, when the electric field is cancelled, the electrorheological fluid can be immediately changed back to the liquid from the solid, and the technical effect of rapid and safe protection for mining personnel can be realized.
Further, the soft-woven lateral shifting type local shock-absorbing shrinkage protective ceiling comprises an outer protective layer, an inner protective layer, a lateral shifting type local shock-absorbing shrinkage soft-woven protective layer and a bearing protective plate, wherein the bearing protective plate is arranged on the gear meshing transmission type height adjusting mechanism, the outer protective layer and the inner protective layer are respectively arranged on the bearing protective plate, the outer protective layer and the inner protective layer are respectively arranged in an arc shape, the lateral shifting type local shock-absorbing shrinkage soft-woven protective layer is arranged between the outer protective layer and the inner protective layer, and the lateral shifting type local shock-absorbing shrinkage soft-woven protective layer is formed by hinging movable weaving; when falling rocks fall on the outer protective layer, the outer protective layer is stressed concavely, at the moment, the transversely-shifted locally-assaulting shrinkage soft-woven protective layer moves transversely-contracted polymerization to the stressed position, fixed-point shifting polymerization is conducted on the falling rocks to resist, the technical effect of dynamic follow-up accurate positioning polymerization resist protection on the falling rocks is achieved under the condition that no identification element exists, and the falling rocks are thoroughly prevented from puncturing the protective device.
Further, the microwave activation type air purification safety protection mechanism comprises a protection opening and closing door, a microwave activation purification cavity, an air purification filter frame, a rigid protective layer, a sponge filter layer, an active carbon purification device, a gas suction device, a microwave activation regeneration device and an observation window, wherein the protection opening and closing door is arranged in the flexible deformation protective layer, the microwave activation purification cavity is arranged in the protection opening and closing door, the observation window is arranged on the protection opening and closing door, the observation window is arranged above the microwave activation purification cavity, the observation window is made of transparent bulletproof glass, the air purification filter frame is arranged in the microwave activation purification cavity, the rigid protective layer is arranged in the air purification filter frame, the rigid protective layer can efficiently protect falling rocks, the sponge filter layer is arranged in the air purification filter frame, and the sponge filter layer can isolate large particles in the air, the active carbon purification device is arranged in the air purification filter frame, the sponge filter layer is arranged between the rigid protective layer and the active carbon purification device, the gas suction device is arranged in the air purification filter frame and is close to the active carbon purification device, the microwave activation regeneration device is arranged in the air purification filter frame, and the microwave activation regeneration device is arranged on one side of the active carbon purification device.
Furthermore, the activated carbon purification device comprises a mesh activated carbon storage bag, activated carbon, a clamping sliding plate and a clamping sliding cavity, wherein the clamping sliding cavity is arranged in the air purification filter frame, the clamping sliding plate is arranged in the clamping sliding cavity in a clamping sliding mode, the clamping sliding plate can freely slide in the clamping sliding cavity, the mesh activated carbon storage bag is arranged on the clamping sliding plate, and the activated carbon is arranged in the mesh activated carbon storage bag.
Further, gaseous suction device is including the suction fixed body, suction flabellum and suction motor, the suction fixed body is located in the air purification filter frame, the suction flabellum is located on the suction fixed body, the suction motor is located on the protection shutter, the output of suction motor links to each other with the suction flabellum, and the suction motor rotates and drives the suction flabellum and rotate, and the suction flabellum rotates and purifies the suction with external filtration, prevents effectively that the mining personnel from inhaling dust particle, endangering life.
Further, the microwave activation regeneration device comprises a microwave generation cavity, an activation regeneration cavity, a displacement regeneration chute, a magnetron, an antenna, a waveguide tube, a stirrer and a microwave closing device, wherein the microwave generation cavity is arranged in the air purification filter frame, the displacement regeneration chute is arranged in the air purification filter frame, the clamping sliding plate is clamped and slidably arranged in the displacement regeneration chute, the clamping sliding plate can freely slide in the displacement regeneration chute, the activation regeneration cavity is arranged in the air purification filter frame, the magnetron is arranged in the microwave generation cavity, the magnetron is electrically connected with a power supply battery, the waveguide tube is arranged in the microwave generation cavity, one end of the antenna is connected with the magnetron, the other end of the antenna is arranged in the waveguide tube, the stirrer is arranged in the waveguide tube, and the microwave closing device is arranged in the protective opening and closing door; microwave closing device includes closing plate and electronic hydraulic push rod, electronic hydraulic push rod is located and is protected in the opening and shutting door, the expansion end of electronic hydraulic push rod is located to the closing plate, the flexible slip of closing plate is located between active carbon purifier and the microwave emergence chamber, and the magnetron circular telegram produces the microwave to through the antenna with microwave transmission to the waveguide in, carry out microwave-assisted activation regeneration to the active carbon in taking place the chamber with microwave transmission to the microwave through the agitator, strengthen the life of active carbon, further strengthen the purification rate to the air.
Furthermore, the dynamic balance anti-bumping shock-absorbing type movable bearing mechanism comprises a bearing plate, a hinged fixing body, a dynamic balance movable connection driving device, a shock absorbing spring and wheels, wherein the hinged fixing body is arranged on the bottom wall of the bearing plate, the dynamic balance movable connection driving device is rotatably connected with the hinged fixing body, the shock absorbing spring is arranged between the bearing plate and the dynamic balance movable connection driving device, and the wheels are arranged on the dynamic balance movable connection driving device; the dynamic balance moving connection driving device comprises a driving connecting plate, height adjusting through holes, a driving motor placing cavity, a driving motor and a dynamic connecting plate, wherein one end of the driving connecting plate is rotatably arranged on the hinged fixing body, the wheels are rotatably arranged at the other end of the driving connecting plate, the height adjusting through holes are formed in the driving connecting plate, the driving motor placing cavity is formed in the driving connecting plate, the driving motor is arranged in the driving motor placing cavity, the output end of the driving motor is connected with the wheels, the driving motor is connected with a power supply battery, the dynamic connecting plate is rotatably connected with the driving connecting plate, six groups of driving connecting plates are arranged on the driving connecting plate, four groups of dynamic connecting plates are arranged, and the number of the wheels is equal to that of the driving connecting plates; the driving motor rotates and drives the wheel to rotate, realize the technical effect that dynamic balance shock attenuation formula that prevents jolting removed the bearing mechanism and remove, the setting of dynamic link, when meetting the highway section of jolting, the wheel risees or reduces and drives the drive connecting plate and rotate from top to bottom, and under damping spring's effect, realize the shock attenuation formula and rotate, and then drive the dynamic link and rotate, the setting of six group's wheels, can realize the stable antecedent technical effect of triangle-shaped of automobile body both sides, dynamic balance adjustment can be carried out, effectively prevent protector from empting.
Further, the gear mesh transmission type height adjusting mechanism comprises a height adjusting stud, a gear protecting shell, a main driving gear, a meshing lifting gear and a height adjusting motor, wherein the height adjusting stud is rotatably arranged on the bearing plate and meshed with the bearing plate, the diameter of the height adjusting stud is smaller than that of the height adjusting through hole, the height adjusting stud can freely stretch out and draw back in the height adjusting through hole, the gear protecting shell is arranged on the bearing plate, the main driving gear is rotatably arranged on the upper wall of the bearing plate and is arranged in the gear protecting shell, the meshing lifting gear is meshed with the main driving gear, the height adjusting stud is penetratingly arranged on the meshing lifting gear, the height adjusting motor is arranged in the bearing plate, the output end of the height adjusting motor is connected with the main driving gear, and the height adjusting motor rotates to drive the main driving gear to rotate, the main driving gear rotates to drive the meshing lifting gear to rotate, the meshing lifting gear rotates to drive the height adjusting stud to rotate and lift, the technical effect of adjusting the height of the protection device is achieved, and the protection device is suitable for freely advancing in mine holes with different heights.
Further, multilayer goods and materials supply station includes that the cabinet body is placed to the goods and materials, baffle and emergent goods and materials are placed to the goods and materials, the goods and materials are placed on the cabinet body locates the gear protecting shell upper wall, the even interval arrangement of baffle is placed to the goods and materials is located in the cabinet body is placed to the goods and materials, emergent goods and materials are located on the baffle is placed to the goods and materials.
Furthermore, the material of the lateral shifting type local shock type shrinkage soft weaving protective layer is aramid fiber, the material of the outer protective layer is flexible rubber, and the material of the inner protective layer and the material of the bearing protective layer are titanium metal.
The invention with the structure has the following beneficial effects: the scheme relates to a light local follow-up safety lifesaving protection device for mining ores in a mountain, which creatively applies a local mass principle to the technical field of ore mining according to the contradictory technical problems that the protection device has the advantages of good protection performance, good applicability, strong universality and incapability of being too heavy, an outer protection layer carries and bears falling rocks and is stressed to be sunken under the condition of no induction identification element, at the moment, a transversely-shifted locally-suddenly-stressed contracted soft-woven protection layer generates transverse-contracted polymerization movement to a stressed position to carry out fixed-point shifted polymerization blocking on the falling rocks, solves the technical problems that the applicability and the universality of the traditional protection device can increase the quality under different actions, realizes the technical effect of the light dynamic follow-up accurately-positioned deformation polymerization blocking protection on the falling rocks, and utilizes the characteristic that the state of electrorheological fluid changes along with the change of the electric field intensity, the dynamic balance anti-bumping shock-absorbing type movable bearing mechanism is creatively applied to the technical field of ore mining protection, under the action of an electric field, electrorheological fluid can be immediately changed into a solid state from free flowing liquid within milliseconds, the solid strength is increased along with the increase of the electric field strength and voltage, the technical effect of rapid and safe protection for miners is realized, according to the complex, changeable and rugged conditions of the terrain in a mine tunnel, a stable structure of a triangle is utilized, and a dynamic balance characteristic principle is combined, the dynamic balance anti-bumping shock-absorbing type movable bearing mechanism is creatively designed, when a bumpy road section is encountered, wheels are lifted or lowered to drive a connecting plate to rotate up and down, under the action of a shock-absorbing spring, shock-absorbing type rotation is realized, a dynamic connecting plate is further driven to rotate, the six groups of wheels are arranged, the technical effect of stable forward movement of the triangle on two sides of a vehicle body can be realized, and dynamic balance adjustment can be carried out, the technical effect of dynamic balance type stable movement on a complex uneven road surface is realized by effectively preventing the protective device from toppling over, and the technical problem that the traditional protective device is easy to topple over when encountering a bumpy road section is thoroughly solved.
Drawings
FIG. 1 is a schematic view of the overall structure of a light local follow-up safety lifesaving protection device for mining ore in a mountain body;
FIG. 2 is a schematic structural view of a light local follow-up safety lifesaving protection device for mining ore in a mountain body;
FIG. 3 is a right side view of the light weight partially-follow-up safety lifesaving device for mining ore in mountain bodies according to the present invention;
FIG. 4 is a top view of a light weight partially-following type safety lifesaving protection device for mining ore in mountain bodies to drive a connecting plate;
FIG. 5 is a sectional view of a light weight local follow-up type mountain ore mining safety lifesaving protection device driving connection plate according to the present invention;
FIG. 6 is a schematic structural view of a light local follow-up type mountain ore mining safety lifesaving protection device soft weaving transverse shifting type local shock type shrinkage protection ceiling;
FIG. 7 is a schematic structural view of a rigid protective layer of a light local follow-up safety lifesaving protective device for mining ore in a mountain according to the invention;
FIG. 8 is a schematic structural view of an activated carbon purification device of a light local follow-up safety lifesaving protection device for mining ore in a mountain according to the invention;
FIG. 9 is a schematic structural view of a microwave activation and regeneration device of a light local follow-up type mountain ore mining safety lifesaving protection device according to the invention;
FIG. 10 is a schematic structural view of a microwave closing device of a light local follow-up safety lifesaving protection device for ore mining in mountains;
FIG. 11 is a schematic structural view of a gas suction device of the light local follow-up type safety lifesaving protection device for mining ore in mountain bodies according to the invention;
FIG. 12 is a schematic structural view of a main driving gear and a meshed lifting gear of the light local follow-up type mountain ore mining safety lifesaving protection device;
fig. 13 is a partially enlarged view of a portion a in fig. 1.
Wherein, 1, dynamic balance bump-proof shock-absorbing type movable bearing mechanism, 2, gear meshing transmission type height adjusting mechanism, 3, current-variable state-changing type protective enclosure, 4, soft-woven transverse shifting type local sudden-hitting type contractive protective ceiling, 5, microwave activation type air purification safety protective mechanism, 6, multilayer material supply station, 7, bearing plate, 8, hinged fixed body, 9, dynamic balance moving connection driving device, 10, shock-absorbing spring, 11, wheel, 12, driving connecting plate, 13, height adjusting through hole, 14, driving motor placing cavity, 15, driving motor, 16, dynamic connecting plate, 17, height adjusting stud, 18, gear protective shell, 19, main driving gear, 20, meshing lifting gear, 21, height adjusting motor, 22, outer protective layer, 23, inner driving gear, 24, transverse shifting type local sudden-hitting type contractive soft-woven protective layer, 25. a bearing protection plate 26, a flexible deformation protection layer 27, an electrorheological fluid 28, an electric field applying device 29, an upper capacitor plate 30, a lower capacitor plate 31, a power supply battery 32, a protection opening and closing door 33, a microwave activation purification cavity 34, an air purification filter frame 35, a rigid protection layer 36, a sponge filter layer 37, an activated carbon purification device 38, a gas suction device 39, a microwave activation regeneration device 40, an observation window 41, a net-shaped activated carbon storage bag 42, activated carbon 43, a clamping sliding plate 44, a clamping sliding cavity 45, a suction fixing body 46, a suction fan blade 47, a suction motor 48, a microwave generation cavity 49, an activation regeneration cavity 50, a displacement regeneration chute 51, a magnetron 52, an antenna 53, a waveguide tube 54, a stirrer 55, a microwave closing device 56, a closing plate 57 and an electric hydraulic push rod, 58. the cabinet is placed to the goods and materials, 59, baffle, 60, emergent goods and materials are placed to the goods and materials.
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the principles of the invention and not to limit the invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments; all other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
As shown in figures 1, 2, 3, 4 and 5, the light local follow-up mountain ore mining safety lifesaving protective device comprises a dynamic balance anti-bumping shock-absorbing type moving bearing mechanism 1, a gear meshing transmission type height adjusting mechanism 2, a current variable type state change type protective enclosure 3, a soft weaving transverse shift type local shock-absorbing type contraction protective ceiling 4, a microwave activation type air purification safety protective mechanism 5 and a multilayer material supply station 6, wherein the gear meshing transmission type height adjusting mechanism 2 is arranged on the upper wall of the dynamic balance anti-bumping shock-absorbing type moving bearing mechanism 1, the soft weaving transverse shift type local shock-absorbing type contraction protective ceiling 4 is arranged on the gear meshing transmission type height adjusting mechanism 2, the current variable type state change type protective enclosure 3 is arranged on the dynamic balance anti-bumping shock-absorbing type moving mechanism 1 and the soft weaving transverse shift type local shock-absorbing type contraction protective ceiling 4, the microwave activation type air purification safety protection mechanism 5 is arranged on the side wall of the current variable type state change type protection enclosure body 3, and the multilayer material supply station 6 is arranged on the dynamic balance anti-bumping shock absorption type moving bearing mechanism 1 and is arranged in the current variable type state change type protection enclosure body 3; the dynamic balance anti-bump shock absorption type movable bearing mechanism 1 comprises a bearing plate 7, a hinged fixing body 8, a dynamic balance movable connection driving device 9, a shock absorption spring 10 and wheels 11, wherein the hinged fixing body 8 is arranged on the bottom wall of the bearing plate 7, the dynamic balance movable connection driving device 9 is rotatably connected with the hinged fixing body 8, the shock absorption spring 10 is arranged between the bearing plate 7 and the dynamic balance movable connection driving device 9, and the wheels 11 are arranged on the dynamic balance movable connection driving device 9; the dynamic balance moving connection driving device 9 comprises a driving connecting plate 12, height adjusting through holes 13, a driving motor placing cavity 14, a driving motor 15 and a dynamic connecting plate 16, one end of the driving connecting plate 12 is rotatably arranged on the hinged fixing body 8, the wheels 11 are rotatably arranged at the other end of the driving connecting plate 12, the height adjusting through holes 13 are arranged on the driving connecting plate 12, the driving motor placing cavity 14 is arranged in the driving connecting plate 12, the driving motor 15 is arranged in the driving motor placing cavity 14, the output end of the driving motor 15 is connected with the wheels 11, the dynamic connecting plate 16 is rotatably connected with the driving connecting plate 12, the driving connecting plate 12 is provided with six groups, the dynamic connecting plate 16 is provided with four groups, and the number of the wheels 11 is equal to the number of the driving connecting plates 12; the driving motor 15 rotates and drives the wheel 11 to rotate, realize the technical effect that dynamic balance shock attenuation formula that jolts prevention removed bearing mechanism 1 and removed, the setting of dynamic link board 16, when meetting the highway section of jolting, wheel 11 rises or reduces and drives the rotation about drive link board 12, and under damping spring 10's effect, realize the shock attenuation formula and rotate, and then drive dynamic link board 16 and rotate, the setting of six group's wheels 11, can realize the stable antecedent technical effect of triangle-shaped of automobile body both sides, dynamic balance adjustment can be carried out, effectively prevent that protector from empting.
As shown in fig. 1 and 12, the gear mesh transmission type height adjusting mechanism 2 comprises a height adjusting stud 17, a gear guard 18, a main driving gear 19, a mesh lifting gear 20 and a height adjusting motor 21, wherein the height adjusting stud 17 is rotatably arranged on the bearing plate 7, the height adjusting stud 17 is meshed with the bearing plate 7 and connected, the diameter of the height adjusting stud 17 is smaller than that of the height adjusting through hole 13, the height adjusting stud 17 can freely extend and retract in the height adjusting through hole 13, the gear guard 18 is arranged on the bearing plate 7, the main driving gear 19 is rotatably arranged on the upper wall of the bearing plate 7, the main driving gear 19 is arranged in the gear guard 18, the mesh lifting gear 20 is meshed with the main driving gear 19, the height adjusting stud 17 is penetratingly arranged on the mesh lifting gear 20, the height adjusting motor 21 is arranged in the bearing plate 7, the output end of the height adjusting motor 21 is connected with the main driving gear 19, the height adjusting motor 21 rotates to drive the main driving gear 19 to rotate, the main driving gear 19 rotates to drive the meshed lifting gear 20 to rotate, and the meshed lifting gear 20 rotates to drive the height adjusting stud 17 to rotate to lift, so that the technical effect of height adjustment of the protection device is achieved, and the protection device is suitable for freely advancing in mine holes with different heights.
As shown in fig. 1 and 5, the soft woven lateral shifting type local impulsive property shrinkage protective ceiling 4 comprises an outer protective layer 22, an inner protective layer 23, a lateral shifting type local impulsive property shrinkage soft woven protective layer 24 and a bearing protective plate 25, wherein the bearing protective plate 25 is arranged on a height adjusting stud 17, the height adjusting stud 17 is rotatably connected with the bearing protective plate 25, the outer protective layer 22 and the inner protective layer 23 are respectively arranged on the bearing protective plate 25, the outer protective layer 22 and the inner protective layer 23 are respectively arranged in an arc shape, the lateral shifting type local impulsive property shrinkage soft woven protective layer 24 is arranged between the outer protective layer 22 and the inner protective layer 23, and the lateral shifting type local impulsive property shrinkage soft woven protective layer 24 is formed by hinging and movably weaving; when falling rocks fall on the outer protective layer 22, the stress of the outer protective layer 22 is sunken, at the moment, the transversely-shifted locally-assaulting contractible soft woven protective layer 24 transversely-contracted polymerization moves to the stress position, fixed-point shifting polymerization blocking is carried out on the falling rocks, the technical effect of dynamic follow-up accurate positioning polymerization blocking protection on the falling rocks is realized under the condition that no identified element exists, and the falling rocks are thoroughly prevented from puncturing the protective device.
As shown in fig. 1, 2 and 3, the electrorheological state-changing type protective enclosure 3 includes a flexible deformation protective layer 26, an electrorheological fluid 27 and an electric field applying device 28, the electric field applying device 28 is respectively disposed on the bearing protective plate 25 and the bearing plate 7, the flexible deformation protective layer 26 is disposed on the electric field applying device 28, and the electrorheological fluid 27 is filled in the flexible deformation protective layer 26; the electric field applying device 28 comprises an upper capacitor plate 29, a lower capacitor plate 30 and a power supply battery 31, wherein the upper capacitor plate 29 is arranged on the bottom wall of the bearing protection plate 25, the lower capacitor plate 30 is arranged on the upper wall of the bearing plate 7, the power supply battery 31 is arranged in the bearing plate 7, the upper capacitor plate 29 and the lower capacitor plate 30 are respectively and electrically connected with the power supply battery 31, the flexible deformation protection layer 26 is arranged between the upper capacitor plate 29 and the lower capacitor plate 30, when the power supply battery 31 respectively supplies power to the upper capacitor plate 29 and the lower capacitor plate 30, the electrorheological fluid 27 is immediately changed into a solid state from a freely flowing liquid within a few milliseconds under the action of an electric field, the strength of the solid state is also increased along with the increase of the electric field strength and the voltage, when the electric field is cancelled, the electrorheological fluid 27 can be immediately changed back into the liquid from the solid state, and the technical effect of rapid and safety protection for mining personnel can be realized.
As shown in fig. 1, 2, 3, 7, 8, 9, 10, and 11, the microwave activated air purifying safety protection mechanism 5 includes a protection opening/closing door 32, a microwave activation purification chamber 33, an air purifying filter frame 34, a rigid protection layer 35, a sponge filter layer 36, an activated carbon purification device 37, a gas suction device 38, a microwave activation regeneration device 39, and an observation window 40, wherein the protection opening/closing door 32 is disposed in the flexible deformation protection layer 26, the microwave activation purification chamber 33 is disposed in the protection opening/closing door 32, the observation window 40 is disposed on the protection opening/closing door 32, the observation window 40 is disposed above the microwave activation purification chamber 33, the observation window 40 is made of transparent bulletproof glass, the air purifying filter frame 34 is disposed in the microwave activation purification chamber 33, the rigid protection layer 35 is disposed in the air purifying filter frame 34, the rigid protection layer 35 can effectively protect against falling rocks, the sponge filter layer 36 is disposed in the air purifying filter frame 34, the sponge filter layer 36 can isolate large particles in the air, the activated carbon purification device 37 is arranged in the air purification filter frame 34, the sponge filter layer 36 is arranged between the rigid protective layer 35 and the activated carbon purification device 37, the gas suction device 38 is arranged in the air purification filter frame 34 and close to the activated carbon purification device 37, the microwave activation regeneration device 39 is arranged in the air purification filter frame 34, and the microwave activation regeneration device 39 is arranged on one side of the activated carbon purification device 37; the activated carbon purification device 37 comprises a mesh activated carbon storage bag 41, activated carbon 42, a clamping sliding plate 43 and a clamping sliding cavity 44, wherein the clamping sliding cavity 44 is arranged in the air purification filter frame 34, the clamping sliding plate 43 is arranged in the clamping sliding cavity 44 in a clamping sliding mode, the clamping sliding plate 43 can freely slide in the clamping sliding cavity 44, the mesh activated carbon storage bag 41 is arranged on the clamping sliding plate 43, and the activated carbon 42 is arranged in the mesh activated carbon storage bag 41; the gas suction device 38 comprises a suction fixing body 45, a suction fan blade 46 and a suction motor 47, the suction fixing body 45 is arranged in the air purification filter frame 34, the suction fan blade 46 is arranged on the suction fixing body 45, the suction motor 47 is arranged on the protective opening-closing door 32, the output end of the suction motor 47 is connected with the suction fan blade 46, the suction motor 47 rotates to drive the suction fan blade 46 to rotate, the suction fan blade 46 rotates to suck external air for filtration and purification, and mining personnel are effectively prevented from sucking dust particles and endangering life; the microwave activation regeneration device 39 comprises a microwave generation cavity 48, an activation regeneration cavity 49, a displacement regeneration chute 50, a magnetron 51, an antenna 52, a waveguide 53, a stirrer 54 and a microwave closing device 55, wherein the microwave generation cavity 48 is arranged in the air purification filter frame 34, the displacement regeneration chute 50 is arranged in the air purification filter frame 34, the clamping sliding plate 43 is arranged in the displacement regeneration chute 50 in a clamping and sliding manner, the clamping sliding plate 43 can freely slide in the displacement regeneration chute 50, the activation regeneration cavity 49 is arranged in the air purification filter frame 34, the magnetron 51 is arranged in the microwave generation cavity 48, the magnetron 51 is electrically connected with the power supply battery 31, the waveguide 53 is arranged in the microwave generation cavity 48, one end of the antenna 52 is connected with the magnetron 51, the other end of the antenna 52 is arranged in the waveguide 53, the stirrer 54 is arranged in the waveguide 53, and the microwave closing device 55 is arranged in the protection opening and closing door 32; the microwave closing device 55 comprises a closing plate 56 and an electric hydraulic push rod 57, the electric hydraulic push rod 57 is arranged in the protective opening and closing door 32, the closing plate 56 is arranged at the movable end of the electric hydraulic push rod 57, the closing plate 56 is arranged between the active carbon purification device 37 and the microwave generation cavity 48 in a telescopic sliding mode, the magnetron 51 is electrified to generate microwaves, the microwaves are transmitted to the waveguide tube 53 through the antenna 52, the microwaves are transmitted to the microwave generation cavity 48 through the stirrer 54 to perform microwave-assisted activation and regeneration on the active carbon 42, the service life of the active carbon 42 is prolonged, and the purification rate of air is further enhanced.
As shown in fig. 1, multilayer goods and materials supply station 6 includes that cabinet 58 is placed to the goods and materials, baffle 59 and emergent goods and materials 60 are placed to the goods and materials, and on the cabinet 58 was placed to the goods and materials located gear protective housing 18 upper wall, the even interval arrangement of baffle 59 was placed to the goods and materials was located in the cabinet 58 was placed to the goods and materials, emergent goods and materials 60 were located on the baffle 59 was placed to the goods and materials.
As shown in fig. 6, the material of the laterally displaced partially impactedly shrinkable soft woven shield 24 is aramid fiber, the material of the outer shield 22 is flexible rubber, and the material of the inner shield 23 and the load-bearing shield 25 is titanium metal.
When the emergency lifesaving device is used in concrete, when emergency lifesaving protection is needed, a user opens the protection opening and closing door 32 to enter the protection device, the protection opening and closing door is closed, the suction motor 47 is started, the suction motor 47 rotates to suck outside air, the sucked air enters the sponge filter layer 36 through the rigid protective layer 35, the sponge filter layer 36 can isolate large particles in the air, the primarily filtered air enters the activated carbon 42 and is purified in all directions through the activated carbon 42, the purified air enters the protection device to be breathed by mining personnel, the problem that the mining personnel inhale the air containing dust to cause respiratory diseases is thoroughly solved, the life safety of the mining personnel is further ensured, and due to the consideration of the conditions of harsher mines and material shortage, the adsorption and purification effect of the activated carbon 42 is weakened after long-time use, but the replacement is inconvenient, creatively applies the regeneration principle to the technical field, the clamping sliding plate 43 slides to the displacement regeneration sliding groove 50 along the clamping sliding cavity 44, the electric hydraulic push rod 57 is started, the electric hydraulic push rod 57 works to drive the closing plate 56 to lift, so as to seal the microwave generation cavity 48 and the activation regeneration cavity 49, the magnetron 51 is electrified to generate microwaves, the microwaves are transmitted to the waveguide tube 53 through the antenna 52, the microwaves are transmitted to the microwave generation cavity 48 through the stirrer 54 to carry out microwave auxiliary activation regeneration on the activated carbon 42, after the regeneration is finished, the electric hydraulic push rod 57 is started, the electric hydraulic push rod 57 works to drive the closing plate 56 to descend, the clamping sliding plate 43 slides to the clamping sliding cavity 44 along the displacement regeneration sliding groove 50, the air is adsorbed and purified again, the service life of the activated carbon 42 is prolonged, the purification rate of the air is further enhanced, when the rockfall on the outer protective layer 22, the outer protective layer 22 is stressed to be concave, at this time, the transversely-shifted type locally-impacted shrinkage soft weaving protective layer 24 transversely-shrunk polymerization moves towards the stressed position, fixed-point displacement polymerization blocking is carried out on falling rocks, the technical effect of dynamic follow-up type accurate positioning polymerization blocking protection on the falling rocks is achieved under the condition that no identified element exists, the falling rocks are thoroughly prevented from puncturing the protective device, when the falling rocks fall on the flexible deformation protective layer 26, the power supply battery 31 respectively supplies power to the upper capacitor plate 29 and the lower capacitor plate 30, under the action of an electric field, the electrorheological fluid 27 immediately changes from freely flowing liquid into solid within milliseconds, the strength of the solid increases along with the increase of the electric field strength and the voltage, and when the electric field is cancelled, the electrorheological fluid 27 can immediately change back to the liquid from the solid, and the technical effect of rapid and safe protection for mining personnel can be achieved, the driving motor 15 is started, the driving motor 15 rotates to drive the wheels 11 to rotate, the technical effect of moving the dynamic balance anti-bumping shock absorption type moving bearing mechanism 1 is achieved, the dynamic connecting plate 16 is arranged, when a bumpy road section is met, the wheels 11 are lifted or lowered to drive the driving connecting plate 12 to rotate up and down, the shock absorption type rotating is achieved under the action of the shock absorption spring 10, the dynamic connecting plate 16 is further driven to rotate, the six groups of wheels 11 are arranged, the technical effect of stable forward movement of triangles on two sides of a vehicle body can be achieved, dynamic balance adjustment can be carried out, the protector is effectively prevented from toppling over, the moving operation of the protector is achieved, when the protector cannot move due to large collapse, the multilayer material supply stations 6 are arranged, the material supply for the mining personnel to maintain life can be guaranteed, the safety protection performance of the protector is further enhanced, and the whole working flow is the invention, repeating the steps when the medicine is used next time.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
The present invention and its embodiments have been described above, and the description is not intended to be limiting, and the drawings are only one embodiment of the present invention, and the actual structure is not limited thereto. In summary, those skilled in the art should appreciate that they can readily use the disclosed conception and specific embodiments as a basis for designing or modifying other structures for carrying out the same purposes of the present invention without departing from the spirit and scope of the invention as defined by the appended claims.

Claims (10)

1. The utility model provides a local follow-up formula massif ore is opened and is adopted safe lifesaving protector which characterized in that of light: the device comprises a dynamic balance anti-bumping shock-absorbing type movable bearing mechanism, a gear meshing transmission type height adjusting mechanism, a current variable state change type protective enclosure, a soft weaving transverse shifting type local sudden-attack protective ceiling, a microwave activation type air purification safety protection mechanism and a multilayer material supply station, wherein the gear meshing transmission type height adjusting mechanism is arranged on the upper wall of the dynamic balance anti-bumping shock-absorbing type movable bearing mechanism, the soft weaving transverse shifting type local sudden-attack protective ceiling is arranged on the gear meshing transmission type height adjusting mechanism, the current variable state change type protective enclosure is arranged on the dynamic balance anti-bumping shock-absorbing type movable bearing mechanism and the soft weaving transverse shifting type local sudden-attack protective ceiling, the microwave activation type air purification safety protection mechanism is arranged on the side wall of the current variable state change type protective enclosure, the multilayer material supply station is arranged on the dynamic balance anti-bumping shock absorption type movable bearing mechanism and is arranged in the current variable state change type protective enclosure; the electric field applying device is respectively arranged on the soft weaving transverse shifting type local shock-absorbing shrinkage protection ceiling and the dynamic balance anti-bumping shock absorption type moving bearing mechanism, the flexible deformation protective layer is arranged on the electric field applying device, and the electric rheological fluid is filled in the flexible deformation protective layer; the electric field applying device comprises an upper capacitor plate, a lower capacitor plate and a power supply battery, the upper capacitor plate is arranged on the bottom wall of the soft weaving lateral shifting type local shock-absorbing shrinkage protection ceiling, the lower capacitor plate is arranged on the dynamic balance anti-bumping shock-absorbing type movement bearing mechanism, the power supply battery is arranged in the dynamic balance anti-bumping shock-absorbing type movement bearing mechanism, the upper capacitor plate and the lower capacitor plate are respectively electrically connected with the power supply battery, and the flexible deformation protective layer is arranged between the upper capacitor plate and the lower capacitor plate.
2. The light weight local follow-up type mountain ore mining safety lifesaving protection device according to claim 1, characterized in that: the soft local sudden change nature shrink protection ceiling of formula of weaving transversely shifts includes outer inoxidizing coating, interior inoxidizing coating, the soft inoxidizing coating and the bearing guard plate of weaving of the local sudden change nature of formula of transversely shifting, the bearing guard plate is located on the gear engagement driven type height control mechanism, outer inoxidizing coating and interior inoxidizing coating are located respectively on the bearing guard plate, outer inoxidizing coating and interior inoxidizing coating are the arc setting respectively, the soft inoxidizing coating of weaving of the local sudden change nature of transversely shifting is located between outer inoxidizing coating and the interior inoxidizing coating, the soft inoxidizing coating of weaving of the local sudden change nature of transversely shifting is formed for articulated movable the weaving.
3. The light weight local follow-up type mountain ore mining safety lifesaving protection device according to claim 2, characterized in that: the microwave activation type air purification safety protection mechanism comprises a protection opening and closing door, a microwave activation purification cavity, an air purification filter frame, a rigid protective layer, a sponge filter layer, an active carbon purification device, a gas suction device, a microwave activation regeneration device and an observation window, wherein the protection opening and closing door is arranged in the flexible deformation protective layer, the microwave activation purification cavity is arranged in the protection opening and closing door, the observation window is arranged on the protection opening and closing door, the observation window is arranged above the microwave activation purification cavity, the observation window is transparent bulletproof glass, the air purification filter frame is arranged in the microwave activation purification cavity, the rigid protective layer is arranged in the air purification filter frame, the sponge filter layer is arranged in the air purification filter frame, the active carbon purification device is arranged in the air purification filter frame, and the sponge filter layer is arranged between the rigid protective layer and the active carbon purification device, the gas suction device is arranged in the air purification filter frame and is close to the active carbon purification device, the microwave activation regeneration device is arranged in the air purification filter frame, and the microwave activation regeneration device is arranged on one side of the active carbon purification device.
4. A light weight partially following type safety lifesaving protection device for ore mining in mountain body according to claim 3, characterized in that: the active carbon purification device comprises a mesh active carbon storage bag, active carbon, a clamping sliding plate and a clamping sliding cavity, wherein the clamping sliding cavity is arranged in the air purification filter frame, the clamping sliding plate is arranged in the clamping sliding cavity in a clamping sliding mode, the mesh active carbon storage bag is arranged on the clamping sliding plate, and the active carbon is arranged in the mesh active carbon storage bag.
5. The light weight local follow-up type mountain ore mining safety life-saving protection device as claimed in claim 4, wherein: the gas suction device comprises a suction fixing body, a suction fan blade and a suction motor, the suction fixing body is arranged in the air purification filter frame, the suction fan blade is arranged on the suction fixing body, the suction motor is arranged on the protective opening and closing door, and the output end of the suction motor is connected with the suction fan blade.
6. The light weight local follow-up type mountain ore mining safety lifesaving protection device according to claim 5, characterized in that: the microwave activation regeneration device comprises a microwave generation cavity, an activation regeneration cavity, a displacement regeneration chute, a magnetron, an antenna, a waveguide tube, a stirrer and a microwave closing device, wherein the microwave generation cavity is arranged in an air purification filter frame, the displacement regeneration chute is arranged in the air purification filter frame, a clamping sliding plate is clamped and slidably arranged in the displacement regeneration chute, the activation regeneration cavity is arranged in the air purification filter frame, the magnetron is arranged in the microwave generation cavity, the magnetron is electrically connected with a power supply battery, the waveguide tube is arranged in the microwave generation cavity, one end of the antenna is connected with the magnetron, the other end of the antenna is arranged in the waveguide tube, the stirrer is arranged in the waveguide tube, and the microwave closing device is arranged in a protective opening and closing door; the microwave closing device comprises a closing plate and an electric hydraulic push rod, the electric hydraulic push rod is arranged in the protective opening and closing door, the closing plate is arranged at the movable end of the electric hydraulic push rod, and the closing plate is arranged between the active carbon purification device and the microwave generation cavity in a telescopic sliding mode.
7. The light weight local follow-up type mountain ore mining safety life-saving protection device as claimed in claim 6, wherein: the dynamic balance anti-bumping shock-absorbing type movable bearing mechanism comprises a bearing plate, a hinged fixing body, a dynamic balance movable connection driving device, a shock absorbing spring and wheels, wherein the hinged fixing body is arranged on the bottom wall of the bearing plate; the dynamic balance moving connection driving device comprises a driving connecting plate, a height adjusting through hole, a driving motor placing cavity, a driving motor and a dynamic connecting plate, wherein one end of the driving connecting plate is rotatably arranged on the hinged fixing body, the wheel is rotatably arranged at the other end of the driving connecting plate, the height adjusting through hole is arranged on the driving connecting plate, the driving motor placing cavity is arranged in the driving connecting plate, the driving motor is arranged in the driving motor placing cavity, the output end of the driving motor is connected with the wheel, the driving motor is connected with a power supply battery, the dynamic connecting plate is rotatably connected with the driving connecting plate, the driving connecting plate is provided with six groups, the dynamic connecting plate is provided with four groups, and the number of the wheels is equal to the number of the driving connecting plate.
8. The light weight local follow-up type mountain ore mining safety lifesaving protection device according to claim 7, characterized in that: gear engagement transmission formula altitude mixture control mechanism includes altitude mixture control double-screw bolt, gear protecting crust, main drive gear, meshing elevating gear and altitude mixture control motor, the altitude mixture control double-screw bolt rotates and locates on the bearing plate, the altitude mixture control double-screw bolt links to each other with the bearing plate meshing, the diameter of altitude mixture control double-screw bolt is less than the diameter of altitude mixture control through-hole, the gear protecting crust is located on the bearing plate, main drive gear rotates and locates on the bearing plate upper wall, main drive gear locates in the gear protecting crust, meshing elevating gear links to each other with the main drive gear meshing, the altitude mixture control double-screw bolt link up locates on the meshing elevating gear, altitude mixture control motor locates in the bearing plate, altitude mixture control motor's output links to each other with main drive gear.
9. The light weight local follow-up type mountain ore mining safety lifesaving protection device according to claim 8, characterized in that: multilayer goods and materials supply station includes that the cabinet body is placed to the goods and materials, baffle and emergent goods and materials are placed to the goods and materials, the goods and materials are placed on the cabinet body locates gear protecting shell upper wall, the even interval arrangement of baffle is placed to the goods and materials is located in the cabinet body is placed to the goods and materials, emergent goods and materials are located on the baffle is placed to the goods and materials.
10. The light weight local follow-up type mountain ore mining safety lifesaving protection device according to claim 9, characterized in that: the material of the transverse displacement type local shock type shrinkage soft weaving protective layer is aramid fiber, the material of the outer protective layer is flexible rubber, and the material of the inner protective layer and the material of the bearing protective layer are titanium metal.
CN202110810428.2A 2021-07-19 2021-07-19 Light local follow-up type safety lifesaving protection device for ore exploitation in mountain Active CN113279810B (en)

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