CN115370681A - Wind power hub emergency braking protection device - Google Patents

Wind power hub emergency braking protection device Download PDF

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Publication number
CN115370681A
CN115370681A CN202210776819.1A CN202210776819A CN115370681A CN 115370681 A CN115370681 A CN 115370681A CN 202210776819 A CN202210776819 A CN 202210776819A CN 115370681 A CN115370681 A CN 115370681A
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China
Prior art keywords
piston
brake
wind
supply pipe
oil supply
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Pending
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CN202210776819.1A
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Chinese (zh)
Inventor
丁盛
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Individual
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Individual
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Priority to CN202210776819.1A priority Critical patent/CN115370681A/en
Publication of CN115370681A publication Critical patent/CN115370681A/en
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D65/00Parts or details
    • F16D65/14Actuating mechanisms for brakes; Means for initiating operation at a predetermined position
    • F16D65/16Actuating mechanisms for brakes; Means for initiating operation at a predetermined position arranged in or on the brake
    • F16D65/18Actuating mechanisms for brakes; Means for initiating operation at a predetermined position arranged in or on the brake adapted for drawing members together, e.g. for disc brakes
    • F16D65/186Actuating mechanisms for brakes; Means for initiating operation at a predetermined position arranged in or on the brake adapted for drawing members together, e.g. for disc brakes with full-face force-applying member, e.g. annular
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B1/00Cleaning by methods involving the use of tools
    • B08B1/10Cleaning by methods involving the use of tools characterised by the type of cleaning tool
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B1/00Cleaning by methods involving the use of tools
    • B08B1/20Cleaning of moving articles, e.g. of moving webs or of objects on a conveyor
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F03MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
    • F03DWIND MOTORS
    • F03D7/00Controlling wind motors 
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D65/00Parts or details
    • F16D65/005Components of axially engaging brakes not otherwise provided for
    • F16D65/0068Brake calipers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D65/00Parts or details
    • F16D65/78Features relating to cooling
    • F16D65/84Features relating to cooling for disc brakes
    • F16D65/847Features relating to cooling for disc brakes with open cooling system, e.g. cooled by air
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F05INDEXING SCHEMES RELATING TO ENGINES OR PUMPS IN VARIOUS SUBCLASSES OF CLASSES F01-F04
    • F05BINDEXING SCHEME RELATING TO WIND, SPRING, WEIGHT, INERTIA OR LIKE MOTORS, TO MACHINES OR ENGINES FOR LIQUIDS COVERED BY SUBCLASSES F03B, F03D AND F03G
    • F05B2260/00Function
    • F05B2260/90Braking
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D2121/00Type of actuator operation force
    • F16D2121/02Fluid pressure
    • F16D2121/04Fluid pressure acting on a piston-type actuator, e.g. for liquid pressure
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/70Wind energy
    • Y02E10/72Wind turbines with rotation axis in wind direction

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • Sustainable Energy (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Braking Arrangements (AREA)

Abstract

The invention discloses an emergency braking protection device for a wind power hub, which relates to the technical field of wind power hubs and comprises a brake disc, brake calipers, a cooling mechanism and a centrifugal power mechanism; install the rotating main shaft on the wind-powered electricity generation wheel hub, install the brake disc on the rotating main shaft, the brake disc outside is provided with brake caliper, wind-powered electricity generation wheel hub outside fixed mounting has centrifugal power mechanism, utilize centrifugal power mechanism to realize the output of power, when wind-powered electricity generation wheel hub's rotational speed is lower, the output can be realized to the power supply, the power drive brake caliper of output presss from both sides tightly the brake disc, realize mechanical braking, increase braking effect, make opportunity to adopt mechanical braking more accurate to the accuse, only when wind-powered electricity generation wheel hub's rotational speed reduces to certain value, just can automatic start mechanical braking, adopt mechanical braking to lead to giving out heat when having avoided wind-powered electricity generation wheel hub to rotate at a high speed and increase and cause the conflagration, make wind-powered electricity generation wheel hub's emergency braking safety more.

Description

Wind power hub emergency braking protection device
Technical Field
The invention relates to the technical field of wind power hubs, in particular to an emergency braking protection device for a wind power hub.
Background
Wind power generation refers to converting kinetic energy of wind into electric energy. Wind energy is a clean and pollution-free renewable energy source and is used by people for a long time, mainly water is pumped and ground through a windmill, and people are interested in how to use wind to generate electricity.
The wind power generation is very environment-friendly, and the wind energy is huge, so that the wind power generation is increasingly paid attention by various countries in the world.
The hub of the wind driven generator is an important part in the power generation process, whether the wind driven generator hub can be normally used or not is directly related to the safety of wind power generation, when the wind power of the existing wind driven generator set is large, the emergency braking can be carried out on the wind driven generator set so as to protect the wind driven generator set, when the existing wind driven generator set is braked, the fan blades are usually firstly used for braking, the rotating speed is reduced by using a mechanical braking mode after the rotating speed is reduced, but the opportunity of adopting the mechanical braking cannot be well mastered, the too high temperature of a brake disc can be caused by the too early mechanical braking, the general wind driven generator set is caused by the reason, the protection in the emergency braking process of the wind driven generator set is realized, and the problem to be solved by people is solved, so people urgently need a wind driven generator hub emergency braking protection device to solve the problems.
Disclosure of Invention
The invention aims to provide an emergency braking protection device for a wind power hub, which aims to solve the problems in the prior art.
In order to achieve the purpose, the invention provides the following technical scheme: a wind power hub emergency braking protection device comprises a rotary main shaft, a brake disc, brake calipers, a cooling mechanism and a centrifugal power mechanism;
wind-powered electricity generation wheel hub is connected to the rotating main shaft, drives the rotating main shaft through wind-powered electricity generation wheel hub's rotation and rotates, realizes wind power generation, install the brake disc on the rotating main shaft, the brake disc is used for realizing mechanical braking to the rotating main shaft, the brake disc outside is provided with brake caliper, contact between brake caliper and the brake disc, increase frictional force realizes the mechanical braking of rotating main shaft, wind-powered electricity generation wheel hub outside fixed mounting has centrifugal power mechanism, centrifugal power mechanism is used for providing the power source for brake caliper's braking through the centrifugal force of wind-powered electricity generation wheel hub rotation in-process, and does not provide power for brake caliper through hydraulic pressure or atmospheric pressure's mode, more energy-concerving and environment-protective.
Preferably, the brake caliper comprises a slide bar, a slide pad, a brake pad and a first drive mechanism;
the brake disc comprises a slide rod, a brake disc and a slide piece, wherein the slide rod is provided with a slide piece at two ends, one side of the slide piece close to the brake disc is provided with a brake pad, the brake pad is arranged at two sides of the brake disc, one side of the slide piece far away from the brake pad is provided with a first driving mechanism, and the first driving mechanism is used for driving the slide piece to slide on the slide rod, so that the contact between the brake pad and the brake disc is realized, and further the mechanical braking is realized.
Preferably, the centrifugal power mechanism comprises a mounting disc, a power source, a first oil supply pipe, a rotary adapter and a second oil supply pipe;
the utility model discloses a power supply device, including mounting disc fixed mounting and wind-powered electricity generation wheel hub, a plurality of power supply is installed to mounting disc one side, the power supply utilizes wind-powered electricity generation wheel hub to rotate the centrifugal force of in-process and realizes power supply, when wind-powered electricity generation wheel hub's rotational speed reduces, and the power supply carries out power take off, with power transmission to first actuating mechanism, realizes mechanical braking for mechanical braking's opportunity is more accurate, has avoided carrying out mechanical braking under the too fast condition of rotatory main shaft rotational speed and has leaded to generating heat to light on fire, power supply one end is connected with first fuel feed pipe, rotary adapter is installed to first fuel feed pipe one end, rotary adapter one side is provided with the second and supplies the fuel feed pipe, first fuel feed pipe and second supply fuel feed pipe are used for realizing the transmission of power supply power, wind-powered electricity generation wheel hub is together rotated along with one side of rotary adapter, and the opposite side does not rotate, realizes power supply, the inside graphite seal that passes through of rotary adapter.
Preferably, the power source comprises a mounting plate, a first piston cylinder, a first piston, a first limiting slide rod and a return spring;
the power source is installed on the installation disc through the installation plate, a first piston cylinder is arranged on one side of the installation plate, a first piston is arranged in the first piston cylinder and slides in the first piston cylinder, a first limiting slide rod is arranged at one end, far away from the center of the installation disc, of the first piston, the first limiting slide rod is used for guaranteeing the stability of the first piston in the sliding process, a reset spring is installed at one end, far away from the first limiting slide rod, of the first piston in the first piston cylinder, and the reset spring is used for providing power for the movement of the first piston when the rotating speed of the wind power hub is reduced, and outputting of the power is achieved;
the first driving mechanism comprises a second piston cylinder, a second piston and a third oil supply pipe;
the brake pad is kept away from to the slide block one side and is provided with the second piston, the second piston cup joints inside the second piston cylinder, pass through the third between second piston cylinder and the second oil feed pipe and supply oil piping connection, the third supplies oil pipe to be used for carrying the power of power supply output to first actuating mechanism position department, first fuel feed pipe, second fuel feed pipe, third fuel feed pipe, first piston cylinder and second piston cylinder inside all is filled with hydraulic oil.
Preferably, a plurality of exhaust grooves are formed in the side wall of the first limiting slide bar, and the exhaust grooves are used for discharging gas when the second piston slides in the second piston cylinder, so that the second piston can slide more smoothly in the second piston cylinder.
Preferably, the cooling mechanism comprises a cooling box, a second driving mechanism, a fourth oil supply pipeline, a cleaning assembly and a second limiting slide rod;
brake disc below is provided with the cooling box, the inside coolant liquid that is equipped with of cooling box for brake disc after mechanical braking cools down, second actuating mechanism is installed to cooling box bottom, second actuating mechanism is used for the drive cooling box to rise, makes the inside coolant liquid of cooling box can contact with the brake disc, realizes the cooling to the brake disc, second actuating mechanism supplies oil pipe with the second through the fourth and supplies oil union coupling for can carry the power of power supply output to second actuating mechanism position department, realize the rising to the cooling box, the inside both ends of cooling box are provided with the clearance subassembly, the clearance subassembly is used for cleaning the brake disc after the coolant liquid cooling, avoids coolant liquid to remain on the brake disc to influence brake caliper's braking effect, simultaneously, still is used for cleaning the part that does not contact the coolant liquid on the brake disc and cools down, kills two birds with one stone, the cooling box carries out spacing slip through the spacing slide bar of second and goes up and down.
Preferably, the second drive mechanism comprises a third piston cylinder and a third piston;
the third piston is installed to cooling box bottom, the second piston cup joints in the inside of second piston cylinder, through supplying with hydraulic oil to the inside of second piston cylinder for the inside pressure increase of second piston cylinder realizes the rising to the cooling box.
Preferably, the cleaning assembly comprises a fixed shaft, a rotating rod and a cleaning sponge;
the fixed axle is installed at cooling box inside both ends, the fixed axle is used for fixing the clearance subassembly, a plurality of rotary rod has been cup jointed on the fixed axle, the clearance sponge has been cup jointed on the rotary rod, the clearance sponge is used for wiping and cooling the brake disc.
Preferably, the rotary rod is installed on the fixed axle through rotatory gasbag, rotatory gasbag inboard and fixed axle fixed connection, rotatory gasbag outside and rotary rod fixed connection, rotatory gasbag is elastic air bag, has the resilience, rotatory gasbag inboard is provided with gas transmission pipeline, gas transmission pipeline is used for realizing the gas transport between a plurality of rotary rod for when one or more of them rotary rod take place rotatoryly, the inside gas of other rotary rods can increase, a plurality of through-hole has been seted up to the rotary rod both sides, the through-hole outside is provided with inflation rubber, through-hole and inflation rubber are used for expanding the clearance sponge of parcel in the rotary rod outside, make the clearance sponge can be abundant with the brake disc contact, realize wiping and the cooling to the brake disc.
Preferably, the thickness of brake disc is less than the width of cooling box for the brake disc can get into the cooling box inside and cool down with the coolant liquid contact.
Compared with the prior art, the invention has the beneficial effects that:
1. the invention is provided with the centrifugal power mechanism and the brake calipers, the centrifugal power mechanism is used for outputting power, when the rotating speed of the wind power hub is lower, the power source can output power, the output power drives the brake calipers to clamp a brake disc, mechanical braking is realized, and the braking effect is increased.
2. The centrifugal power mechanism and the cooling mechanism are arranged, so that when the rotating speed of the wind power hub is reduced and mechanical braking is adopted, the brake disc can be cooled through the cooling mechanism, the brake disc is prevented from being too high in temperature, and the wind power hub is braked in a mechanical braking mode more safely and reliably.
3. The cleaning assembly is arranged, so that the brake disc after being cooled can be cleaned, the brake disc is prevented from being adhered with more cooling liquid to influence the braking effect, meanwhile, in the process of lifting the cooling box, the rotating rod is driven by the brake disc to rotate, gas in the rotating air bag enters the adjacent rotating rod, the rotating rod can drive the cleaning sponge to expand, the cleaning sponge is in closer contact with the brake disc, and the cleaning sponge is better in cleaning and cooling effects on the brake disc.
Drawings
Fig. 1 is a schematic structural diagram of an emergency braking protection device for a wind turbine hub according to the present invention;
fig. 2 is a schematic structural diagram of a centrifugal power mechanism of the emergency braking protection device for a wind turbine hub according to the present invention;
FIG. 3 is a schematic structural diagram of a power source of the emergency braking protection device for a wind turbine hub according to the present invention;
FIG. 4 is a schematic structural diagram of a brake caliper and a cooling mechanism of the emergency braking protection device for a wind power hub of the invention;
FIG. 5 is a schematic view of an installation structure of a second driving mechanism of the emergency braking protection device for a wind power hub according to the present invention;
FIG. 6 is a schematic structural diagram of a cooling mechanism of the wind turbine hub emergency braking protection device according to the present invention;
FIG. 7 is a schematic view of a disassembled structure of a cleaning assembly of the wind power hub emergency braking protection device of the present invention;
FIG. 8 is a schematic structural diagram of a rotating rod of the emergency braking protection device for a wind turbine hub according to the present invention;
fig. 9 is a schematic structural diagram of a region a in fig. 8 of the emergency braking protection device for a wind turbine hub according to the present invention.
Reference numbers in the figures: 1. rotating the main shaft; 2. a brake disc;
3. a brake caliper;
301. a slide bar; 302. a slide sheet; 303. a brake pad;
3041. a second piston cylinder; 3042. a second piston; 3043. a third oil supply pipe;
4. a cooling mechanism;
401. a cooling box;
4021. a third piston cylinder; 4022. a third piston;
403. a fourth oil supply pipe;
4041. a fixed shaft; 4042. rotating the rod; 4043. cleaning the sponge; 4044. rotating the air bag; 4045. a gas pipeline; 4046. a through hole; 4047. an expanded rubber;
405. a second limit slide bar;
5. a centrifugal power mechanism;
501. installing a disc;
5021. mounting a plate; 5022. a first piston cylinder; 5023. a first piston; 5024. a first limit slide bar; 5025. a return spring;
503. a first oil supply pipe; 504. rotating the adapter; 505. a second oil supply pipe; 506. an exhaust groove.
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.
Example (b): as shown in fig. 1 to 9, the invention provides the following technical solutions, a wind power hub emergency braking protection device, which comprises a rotating main shaft 1, a brake disc 2, brake calipers 3, a cooling mechanism 4 and a centrifugal power mechanism 5;
wind-powered electricity generation wheel hub is connected to rotating main shaft 1, rotation through wind-powered electricity generation wheel hub drives rotating main shaft 1 and rotates, realize wind power generation, install brake disc 2 on the rotating main shaft 1, brake disc 2 is used for 1 mechanical braking of rotation main shaft, the 2 outside of brake disc is provided with brake caliper 3, the contact between brake caliper 3 and the brake disc 2, increase frictional force, realize the mechanical braking of rotation main shaft 1, wind-powered electricity generation wheel hub outside fixed mounting has centrifugal power mechanism 5, centrifugal power mechanism 5 is used for providing the power source for brake caliper 3's braking through the centrifugal force of wind-powered electricity generation wheel hub rotation in-process, rather than come to provide power for brake caliper 3 through the mode of hydraulic pressure or atmospheric pressure, more energy-concerving and environment-protective.
The brake caliper 3 includes a slide bar 301, a slide plate 302, a brake plate 303, and a first driving mechanism;
slide bar 301 both ends slidable mounting has slide 302, and slide 302 is close to brake disc 2 one side and is provided with brake block 303, and brake block 303 is located 2 both sides of brake disc, and slide 302 is kept away from brake block 303 one side and is provided with a actuating mechanism, and a actuating mechanism is used for driving slide 302 and slides on slide bar 301, realizes the contact between brake block 303 and the brake disc 2, and then realizes mechanical braking.
The centrifugal power mechanism 5 comprises a mounting disc 501, a power source, a first oil supply pipe 503, a rotary joint 504 and a second oil supply pipe 505;
mounting disc 501 fixed mounting and the wind-powered electricity generation wheel hub outside, a plurality of power supply is installed to mounting disc 501 one side, the power supply utilizes wind-powered electricity generation wheel hub to rotate the centrifugal force of in-process and realizes power supply, when wind-powered electricity generation wheel hub's rotational speed reduces, the power supply carries out power take off, with power transmission to first actuating mechanism, realize mechanical braking, make mechanical braking's opportunity more accurate, it leads to generating heat to light on fire to have avoided carrying out mechanical braking under the too fast condition of rotatory main shaft 1 rotational speed, power supply one end is connected with first oil feed pipe 503, rotary joint 504 is installed to first oil feed pipe 503 one end, rotary joint 504 one side is provided with second oil feed pipe 505, first oil feed pipe 503 and second oil feed pipe 504 are used for realizing the transmission of power supply power, one side of rotary joint 504 follows wind-powered electricity generation wheel hub and rotates together, the opposite side does not rotate, realize power supply, the inside graphite seal that passes through of rotary joint 504.
The power source comprises a mounting plate 5021, a first piston cylinder 5022, a first piston 5023, a first limit slide bar 5024 and a return spring 5025;
the power source is mounted on the mounting disc 501 through a mounting plate 5021, a first piston cylinder 5022 is arranged on one side of the mounting plate 5021, a first piston 5023 is arranged inside the first piston cylinder 5022, the first piston 5023 slides inside the first piston cylinder 5022, a first limit slide bar 5024 is arranged at one end, far away from the center of the mounting disc 501, of the first piston 5023, the first limit slide bar 5024 is used for guaranteeing stability of the first piston 5023 in the sliding process, a reset spring 5025 is mounted at one end, far away from the first limit slide bar 5024, of the first piston 5023 inside the first piston cylinder 5022, and the reset spring 5025 is used for providing power for movement of the first piston 5023 when the rotating speed of the wind power hub is reduced, so that power output is achieved;
the first drive mechanism includes a second piston cylinder 3041, a second piston 3042, and a third oil supply pipe 3043;
a second piston 3042 is arranged on one side, away from the brake pad 303, of the sliding pad 302, the second piston 3042 is sleeved inside the second piston cylinder 3041, the second piston cylinder 3041 is connected with the second oil supply pipe 505 through a third oil supply pipe 3043, the third oil supply pipe 3043 is used for conveying power output by a power source to the position of the first driving mechanism, and hydraulic oil is filled in the first oil supply pipe 503, the second oil supply pipe 505, the third oil supply pipe 3043, the first piston cylinder 5022 and the second piston cylinder 3041.
A plurality of exhaust grooves 506 are formed in the side wall of the first limit sliding bar 5024, and the exhaust grooves 506 are used for discharging gas when the second piston 3042 slides inside the second piston cylinder 3041, so that the second piston 3042 can slide more smoothly inside the second piston cylinder 3041.
The cooling mechanism 4 comprises a cooling box 401, a second driving mechanism, a fourth oil supply pipe 403, a cleaning assembly and a second limiting slide rod 405;
brake disc 2 below is provided with cooling box 401, the inside coolant liquid that is equipped with of cooling box 401, a brake disc for after mechanical braking cools down, second actuating mechanism is installed to cooling box 401 bottom, second actuating mechanism is used for driving cooling box 401 and risees, make the inside coolant liquid of cooling box 401 can contact with brake disc 2, the realization is to the cooling of brake disc 2, second actuating mechanism supplies oil pipe 403 through the fourth and supplies oil pipe 505 with the second to be connected, make can carry the power of power supply output to second actuating mechanism position department, the realization is to the rise of cooling box 401, the inside both ends of cooling box 401 are provided with the clearance subassembly, the clearance subassembly is used for wiping brake disc 2 after the coolant liquid cooling, avoid the residual influence brake caliper 3's of brake caliper 3 of coolant liquid on brake disc 2 braking effect, simultaneously, still be used for wiping the cooling to the part that does not contact the coolant liquid on brake disc 2, kill two birds with one stone, cooling box 401 carries out spacing slip through second spacing slide bar 405 and goes up and down.
The second drive mechanism comprises a third piston cylinder 4021 and a third piston 4022;
the bottom of the cooling box 401 is provided with a third piston 4022, the second piston 3042 is sleeved inside the second piston cylinder 3041, and hydraulic oil is supplied to the inside of the second piston cylinder 3041, so that the pressure inside the second piston cylinder 3041 is increased, and the cooling box 401 is lifted.
The cleaning assembly comprises a fixed shaft 4041, a rotating rod 4042 and a cleaning sponge 4043;
fixed axle 4041 is installed to the inside both ends of cooling box 401, and fixed axle 4041 is used for fixing the clearance subassembly, has cup jointed a plurality of rotary rod 4042 on the fixed axle 4041, has cup jointed clearance sponge 4043 on the rotary rod 4042, and clearance sponge 4043 is used for wiping and cooling brake disc 2.
Rotary rod 4042 installs on fixed axle 4041 through rotatory gasbag 4044, rotatory gasbag 4044 inboard and fixed axle 4041 fixed connection, rotatory gasbag 4044 outside and rotary rod 4042 fixed connection, rotatory gasbag 4044 is the elasticity gasbag, the resilience has, rotatory gasbag 4044 inboard is provided with gas transmission pipeline 4045, gas transmission pipeline 4045 is used for realizing the gas transport between a plurality of rotary rod 4042, make when one or more of them rotary rod 4042 takes place rotatoryly, the inside gas of other rotary rod 4042 can increase, a plurality of through-hole 4046 has been seted up to rotary rod 4042 both sides, the through-hole 4046 outside is provided with inflation rubber 4047, through-hole 4046 and inflation rubber 4047 are used for carrying out the inflation to the clearance sponge 4043 of rotary rod 4042 outside parcel, make clearance sponge 4043 can be abundant with brake disc 2 contact, the realization is to the wiping and the cooling of brake disc 2.
The thickness of brake disc 2 is less than the width of cooling box 401 for brake disc 2 can get into cooling box 401 inside and cool down with the coolant liquid contact.
The working principle of the invention is as follows: when the emergency braking device is used, when the wind power hub needs to be emergently braked, resistance is increased by rotation of the fan blades to achieve preliminary reduction of the rotating speed of the wind power hub, along with continuous reduction of the rotating speed of the wind power hub, centrifugal force on a first piston 5023 in a power source is smaller and smaller, so that a reset spring 5025 can drive the first piston 5023 to slide in a first piston cylinder 5022, hydraulic oil in the first piston cylinder 5022 is conveyed to the position of a rotary adapter 504 through a first oil supply pipe 503 and conveyed to the position of a first driving mechanism through a second oil supply pipe 505 and a third oil supply pipe 3043, the input hydraulic oil enables a second piston 3042 in a second piston cylinder 3041 to slide out, a sliding sheet 302 is driven to slide on a sliding rod 301, and a brake sheet 303 is in contact with a brake disc 2, at the moment, mechanical braking of the wind power hub is achieved, and the opportunity of mechanical braking is more accurately mastered;
after the hydraulic oil in the first piston cylinder 5022 is conveyed to the position of the rotary adapter 504, the hydraulic oil can be conveyed to the position of the second driving mechanism through the second oil supply pipe 505 and the fourth oil supply pipe 403, the third piston 4022 in the third piston cylinder 4021 extends out to lift the cooling box 401, so that the brake disc 2 which is in contact with the brake pad 303 can be in contact with the cooling liquid in the cooling box 401 to cool the brake disc 2;
when the brake disc 2 enters the cooling box 401, the brake disc 2 drives a part of the rotating rods 4042 to rotate downwards, at this time, due to the rotation of a part of the rotating rods 4042, gas inside the rotating air bags 4044 is extruded out, the extruded gas is conveyed into the adjacent rotating rods 4042, the gas pressure inside the adjacent rotating rods 4042 is increased, the expanded rubber 4047 is expanded due to the increased pressure, the cleaning sponge 4043 can be driven to expand, and the contact between the cleaning sponge 4043 and the brake disc 2 is tighter, on one hand, the cleaning sponge 4043 can be used for wiping the cooling liquid on the brake disc 2, so that the influence of the residual cooling liquid on the braking effect of the brake disc 2 is avoided, on the other hand, the part of the brake disc 2 which is not in contact with the cooling liquid can be cooled, and on the third hand, the friction force between the brake disc 2 can be further increased, so that the mechanical braking effect is better;
through the mode, the protection to the wind power wheel hub in the emergency braking process is realized, and the fire caused by overhigh heat due to the adoption of a mechanical braking mode under the high-speed rotation of the wind power wheel hub is avoided.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (2)

1. The utility model provides a wind-powered electricity generation wheel hub emergency braking protection device which characterized in that: the protection device comprises a rotating main shaft (1), a brake disc (2), brake calipers (3), a cooling mechanism (4) and a centrifugal power mechanism (5);
the wind power generator is characterized in that the rotating main shaft (1) is connected with a wind power wheel hub, a brake disc (2) is installed on the rotating main shaft (1), brake calipers (3) are arranged on the outer side of the brake disc (2), and a centrifugal power mechanism (5) is fixedly installed on the outer side of the wind power wheel hub;
the brake caliper (3) comprises a sliding rod (301), a sliding sheet (302), a brake sheet (303) and a first driving mechanism;
the two ends of the sliding rod (301) are provided with sliding sheets (302) in a sliding mode, one side, close to the brake disc (2), of each sliding sheet (302) is provided with a brake pad (303), the brake pads (303) are located on two sides of the brake disc (2), and one side, far away from the brake pads (303), of each sliding sheet (302) is provided with a first driving mechanism;
the centrifugal power mechanism (5) comprises a mounting disc (501), a power source, a first oil supply pipe (503), a rotary joint (504) and a second oil supply pipe (505);
the wind power generator is characterized in that the mounting disc (501) is fixedly mounted on the outer side of the wind power hub, a plurality of power sources are mounted on one side of the mounting disc (501), one end of each power source is connected with a first oil supply pipe (503), one end of each first oil supply pipe (503) is provided with a rotary adapter (504), and one side of each rotary adapter (504) is provided with a second oil supply pipe (505);
the power source comprises a mounting plate (5021), a first piston cylinder (5022), a first piston (5023), a first limiting sliding rod (5024) and a return spring (5025);
the power source is installed on the installation disc (501) through an installation plate (5021), a first piston cylinder (5022) is arranged on one side of the installation plate (5021), a first piston (5023) is arranged inside the first piston cylinder (5022), the first piston (5023) slides inside the first piston cylinder (5022), a first limit slide bar (5024) is arranged at one end, far away from the center of the installation disc (501), of the first piston (5023), and a reset spring (5025) is installed at one end, far away from the first limit slide bar (5024), of the first piston (5023) inside the first piston cylinder (5022);
the first driving mechanism comprises a second piston cylinder (3041), a second piston (3042) and a third oil supply pipe (3043);
a second piston (3042) is arranged on one side, away from the brake pad (303), of the sliding plate (302), the second piston (3042) is sleeved inside the second piston cylinder (3041), the second piston cylinder (3041) is connected with the second oil supply pipe (505) through a third oil supply pipe (3043), and hydraulic oil is filled inside the first oil supply pipe (503), the second oil supply pipe (505), the third oil supply pipe (3043), the first piston cylinder (5022) and the second piston cylinder (3041);
a plurality of exhaust grooves (506) are formed in the side wall of the first limiting sliding rod (5024);
the cooling mechanism (4) comprises a cooling box (401), a second driving mechanism, a fourth oil supply pipe (403), a cleaning assembly and a second limiting slide rod (405);
a cooling box (401) is arranged below the brake disc (2), cooling liquid is filled in the cooling box (401), a second driving mechanism is installed at the bottom of the cooling box (401), the second driving mechanism is connected with a second oil supply pipe (505) through a fourth oil supply pipe (403), cleaning assemblies are arranged at two ends of the interior of the cooling box (401), and the cooling box (401) is limited to slide and lift through a second limiting slide rod (405);
the second drive mechanism comprises a third piston cylinder (4021) and a third piston (4022);
and a third piston (4022) is installed at the bottom of the cooling box (401), and the second piston (3042) is sleeved inside the second piston cylinder (3041).
2. The wind power hub emergency brake protection device of claim 1, wherein: the thickness of the brake disc (2) is smaller than the width of the cooling box (401).
CN202210776819.1A 2021-01-14 2021-01-14 Wind power hub emergency braking protection device Pending CN115370681A (en)

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CN202210776819.1A CN115370681A (en) 2021-01-14 2021-01-14 Wind power hub emergency braking protection device

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CN202110050667.2A CN112901680B (en) 2021-01-14 2021-01-14 Wind-powered electricity generation wheel hub emergency braking protection device
CN202210776819.1A CN115370681A (en) 2021-01-14 2021-01-14 Wind power hub emergency braking protection device

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Family Cites Families (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE2018652A1 (en) * 1970-04-18 1971-12-02 Daimler-Benz AG, 7000 Stuttgart-Untertürkheim Hydrodynamic brakes (retarders) for vehicles, in particular motor vehicles
AU2003903927A0 (en) * 2003-07-28 2003-08-14 Pbr Australia Pty Ltd Brake assembly and actuating mechanism
CN102352823A (en) * 2010-05-19 2012-02-15 特雷布技术有限公司 Oil brake system used for locking position of engine room of wind turbine
DK201270179A (en) * 2012-04-11 2013-10-11 Envision Energy Denmark Aps Wind turbine with improved cooling
CN102943747B (en) * 2012-11-30 2015-05-13 威特龙消防安全集团股份公司 Heat radiation and ventilation device of mechanical brake of wind generating unit
CN105604787B (en) * 2016-03-02 2017-12-08 山东交通学院 A kind of Wind turbines are from power taking and Bidirectional pulling dynamic formula electro-mechanical brake apparatus
CN106979262A (en) * 2017-05-09 2017-07-25 安徽中捷矿山运输设备有限责任公司 A kind of hydraulic rail-clamping brakes of mine endless rope winch
JP2019098881A (en) * 2017-11-30 2019-06-24 ダイムラー・アクチェンゲゼルシャフトDaimler AG Energy recovery apparatus
CN108561458B (en) * 2018-05-31 2024-05-07 江苏三斯风电科技有限公司 Hub braking system of wind generating set
CN208381169U (en) * 2018-06-27 2019-01-15 潍坊盛瑞零部件有限公司 clutch and automobile
CN209818207U (en) * 2019-04-29 2019-12-20 马龙云能投新能源开发有限公司 Yaw brake system of wind turbine generator
CN110979272A (en) * 2019-12-31 2020-04-10 曹延香 Intelligent automobile emergency braking system
CN111692249B (en) * 2020-06-02 2021-11-09 玉环江宏机械有限公司 Preheating and cooling device for disc brake

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