Life-saving equipment around pond
The invention discloses a life-saving device around a pond, comprising a base, wherein a pillar is fixed on the top surface of the base, a ceiling is fixed on the top surface of the pillar, and a cavity is provided in the ceiling. A recovery shaft is rotatably provided in the cavity, and two sets of ropes are wound around the periphery of the recovery shaft. A hanging plate is fixed on the right side of the column, and a life ring is mounted on the hanging plate. The life ring It can be tied with the rope so that when the life buoy is thrown into the water, it can be rotated by the recovery shaft to pull the life buoy back. The present invention can inflate the life buoy and oxygen mask through the rotation of the inflatable shaft. Accelerating the inflation efficiency, eliminating the need to replace the oxygen mask and life buoy back and forth, saving rescue time, meanwhile, rescuers and rescued people can be quickly pulled back to the shore by a rope at the same time, saving rescue time and energy.
The present application claims priority from Chinese application No. 2019110783617 filed on Nov. 6, 2019 which is hereby incorporated by reference in its entirety.
TECHNICAL FIELDThe present invention relates to the technical field of life rescue, in particular to a life-saving equipment around pond.
BACKGROUND OF THE INVENTIONThere are often people fishing or swimming near the pond. Even if warning signs are posted, drowning events often occur. Therefore, there should be lifesaving equipment beside the pond. Traditional lifesaving devices have only a single lifebuoy, and the lifebuoy often leaks air. The phenomenon occurs. When a person drowns, it is necessary to inflate it first, which is troublesome, and rescue personnel should also wear life-saving equipment for rescue when entering the water.
BRIEF SUMMARY OF THE INVENTIONAn object of the present invention is to provide a life-saving device around a pond, which is used to overcome the above defects in the prior art.
A life-saving device around a pond according to the present invention includes a base, wherein a pillar is fixed on the top surface of the base, a ceiling is fixed on the top surface of the pillar, and a cavity is provided in the ceiling. A recovery shaft is rotatably provided in the cavity, and two sets of ropes are wound around the periphery of the recovery shaft. A hanging plate is fixed on the right side of the column, and a life ring is mounted on the hanging plate. The life ring It can be tied with the rope so that when the life buoy is thrown into the water, it can be rotated by the recovery shaft to pull the life buoy back. A pump air box is fixed on the left side of the upright post. An air cavity is provided in the pump air box, and an inflation shaft is rotatably provided in the air cavity. A spiral leaf fan is arranged on the outer periphery of the inflation shaft. A hose is fixed on the top surface of the pump air box. An inflation nozzle is fixed at one end, and the hose communicates with the air cavity. The inflation nozzle can inflate the lifebuoy. A mask cavity is opened on the top surface of the base, and the left side of the mask cavity is provided. An inflatable tube is fixed on the wall, an oxygen mask is stored in the mask cavity, and the oxygen mask is fixed on the wall. An air inlet pipe, which can be inflated into the air inlet pipe, the air cavity and the air inlet pipe communicate with each other through a ventilation line, a power cavity is opened in the base, and the left side of the power cavity A power motor is embedded in the wall, and the power motor can provide power for the rotation of the inflatable shaft and the rotation of the recovery shaft.
In a further technical solution, a top cavity is opened in the top plate on the left side of the cavity, a left extension of the recovery shaft extends into the top cavity, and a left end of the recovery shaft is fixedly provided. A first bevel gear, a vertical rotation shaft extending up and down is rotated in the column, a top extension of the vertical shaft extends into the top cavity, and a second bevel gear is fixed at the end, and the second cone A gear meshes with the first bevel gear, and a third bevel gear located in the power cavity is fixed at the bottom end of the vertical rotation shaft.
Beneficially or exemplarily, a fixing block is fixed on the left side of the upright post, the inflatable nozzle can be put into the fixing block, and a filter screen is fixed on the wall of the air cavity, and the filtering The net can prevent sundries and dust from entering the air cavity, and a cover plate that can cover the mask cavity is hinged on the top surface of the base.
Advantageously or exemplarily, a switching slider is slidably arranged in the power chamber, and a spline sleeve is provided in the rotation of the switching slider, and a fourth bevel gear is fixed on the right end of the spline sleeve. A four-bevel gear can be engaged with the third bevel gear. A fifth bevel gear is fixed at the left end of the spline sleeve. A power shaft is connected to the right end of the power motor, and the power shaft is inserted into the spline sleeve. Inside, and the power shaft is splined with the spline sleeve, a large gear is rotated in the top wall of the power cavity, and a sixth bevel gear is fixed at the bottom end of the large gear, and the sixth A bevel gear can be meshed with the fifth bevel gear. A small gear is fixed on the outer periphery of the pneumatic shaft, the small gear meshes with the large gear, and the diameter of the large gear is much larger than that of the small gear. diameter.
Beneficially or exemplarily, a slide groove is formed on the bottom wall of the power chamber, and a slide plate is slidably arranged in the slide groove. The slide plate is fixed to the bottom surface of the switching slide, and the left and right sides of the slide plate An electromagnet is fixed in the chute, a magnetic block is slid on the right side of the electromagnet on the right side, and a baffle is slid on the right side of the power chamber. The ventilation pipe is closed, the baffle and the magnetic block are fixed by a pull wire, and a reset mechanism is fixed on the left side of the baffle.
The beneficial effect of the present invention is that the present invention can inflate the life buoy and oxygen mask respectively through the rotation of the inflation shaft, which speeds up the inflation efficiency, does not require the oxygen mask and the life buoy to be replaced back and forth, and saves rescue time. At the same time, rescuers can And the rescued person can be quickly pulled back to the shore by the rope at the same time, saving rescue time and energy, and the rotation of the recovery shaft and the inflation of the inflatable shaft are driven by the same power source, saving the number of motors and controlling costs The device is more novel, and the invention has a simple structure, convenient operation, and easy use.
The present invention will be described in detail below with reference to
Referring to
Beneficially or exemplarily, a top cavity 25 is opened in the top plate 11 on the left side of the cavity 30, and a left extension of the recovery shaft 29 extends into the top cavity 25, and the recovery shaft A first bevel gear 27 is fixed on the left end of 29, and a vertical rotation shaft 43 extending up and down is rotated in the column 13. A top extension of the vertical rotation shaft 43 extends into the top cavity 25, and its end A second bevel gear 26 is fixedly fixed, the second bevel gear 26 is meshed with the first bevel gear 27, and a third bevel gear 46 is fixed in the bottom end of the vertical shaft 43 and located in the power cavity 42. By rotating the vertical shaft 43, the second bevel gear 26 drives the first bevel gear 27 to rotate, and then the recovery shaft 29 is rotated, so that the rope 28 pulls the life buoy 23 back.
Beneficially or exemplarily, a fixing block 14 is fixed on the left side of the upright 13, the inflatable nozzle 15 can be put into the fixing block 14, and a filter is fixed on the wall of the air cavity 21 A net 20, the filter 20 can prevent debris from entering the air cavity 21, and a cover plate 31 can be hingedly provided on the top surface of the base 10 to cover the mask cavity 33.
Beneficially or exemplarily, a switching slider 52 is slidably disposed in the power cavity 42, and a spline sleeve 53 is rotatably disposed in the switching slider 52, and a fourth cone is fixed at the right end of the spline sleeve 53. A gear 48, the fourth bevel gear 48 can be meshed with the third bevel gear 46, a fifth bevel gear 41 is fixed at the left end of the spline sleeve 53, and a power shaft is dynamically connected to the right end of the power motor 39 54. The power shaft 54 is inserted into the spline sleeve 53 and the power shaft 54 is spline-fitted with the spline sleeve 53. A large gear 36 is provided in the top wall of the power cavity 42 to rotate. A sixth bevel gear 40 is fixed on the bottom end of the large gear 36, and the sixth bevel gear 40 can mesh with the fifth bevel gear 41. A small gear 38 is fixed on the outer periphery of the inflatable shaft 18. The small gear 38 meshes with the large gear 36, and the diameter of the large gear 36 is much larger than the diameter of the small gear 38. By the work of the power motor 39, the fifth bevel gear 41 can drive the The sixth bevel gear 40 rotates, so that the large gear 36 drives the small gear 38 to rotate, so that the inflatable shaft 18 drives the screw. Leaf 17 is inflated.
Beneficially or exemplarily, a slide groove 65 is provided on the bottom wall of the power chamber 42, and a slide plate 51 is slidably arranged in the slide groove 65. The slide plate 51 is fixed to the bottom surface of the switch slide block 52. An electromagnet 49 is fixed in the sliding groove 65 on the left and right sides of the slide plate 51. A magnetic block 50 is slidably arranged on the right side of the electromagnet 49 on the right side, and a right side of the power cavity 42 is slidably provided. There is a baffle 44 which can close the ventilation pipe 45. The baffle 44 and the magnetic block 50 are fixed by a pull wire 47. A reset is fixed on the left side of the baffle 44 The mechanism 60, through the operation of the electromagnet 49, can slide the switching slider 52 to the left and right, and slide the baffle 44 up and down to open or close the ventilation duct 45.
When life-saving is required, firstly control the electromagnet 49 on the left side to be electrified, move the slide plate 51 to the left, and then move the switch slider 52 to the left, mesh the fifth bevel gear 41 with the sixth bevel gear 40, and then control the power motor 39 works, the fifth bevel gear 41 drives the sixth bevel gear 40, and then the large gear 36 drives the small gear 38 to rotate, and the inflatable shaft 18 rotates, so that the spiral leaf fan 17 rotates and blows, and at the same time aligns the inflatable nozzle 15 The inflatable mouth on the life buoy 23 is inflated, then the inflatable mouth 15 is inserted into the fixing block 14 so that the inflatable mouth 15 does not leak air, and then the negative electricity of the electromagnet 49 on the right is controlled to move the magnetic block 50 to the left. Further, the baffle 44 is moved down, the ventilation pipe 45 is opened, and the inflatable tube 72 inflates the oxygen mask 32. After the inflation is completed, the oxygen mask 32 is taken out, and then a rope 28 is tied to the lifebuoy 23, so that the lifeguards Wear the life buoy 23, put the oxygen mask 32 on your face, and breathe. Then the lifeguards tie another rope 28 with another life buoy 23, jump into the water for rescue, and put the life buoy 23 on the rescued person. Then control the positive electricity of the electromagnet 49 on the right side, and the electromagnet 49 on the left side loses power to move the slider 51 to the right while the magnetic block 50 is pushed away and the slider 52 is moved to the right to make the fourth bevel gear 48 drives the third bevel gear 46 to mesh, so that the fourth bevel gear 48 drives the third bevel gear 46 to rotate, and the vertical shaft 43 rotates, so that the vertical shaft 43 drives the recovery shaft 29 to rotate, and the rope 28 pulls the lifebuoy 23 to retract, and further Pull rescuers and rescued people ashore.
The beneficial effect of the present invention is that the present invention can inflate the life buoy and oxygen mask respectively through the rotation of the inflation shaft, which speeds up the inflation efficiency, does not require the oxygen mask and the life buoy to be replaced back and forth, and saves rescue time. At the same time, rescuers can And the rescued person can be quickly pulled back to the shore by the rope at the same time, saving rescue time and energy, and the rotation of the recovery shaft and the inflation of the inflatable shaft are driven by the same power source, saving the number of motors and controlling costs The device is more novel, and the invention has a simple structure, convenient operation, and easy use.
Those skilled in the art can clearly understand that various modifications to the above embodiments can be made without departing from the overall spirit and concept of the present invention. They all fall within the protection scope of the present invention. The protection scheme of the present invention is subject to the claims attached to the present invention.
Claims
1. A lifesaving device around a pond, comprising a base, characterized in that: a column is fixed on the top surface of the base, a top plate is fixed on the top surface of the column, and an empty space is provided in the top plate. A recovery shaft is rotated in the cavity, and two sets of ropes are wound around the periphery of the recovery shaft, and a hanging plate is fixed on the right side of the column, and the hanging plate is provided with a lifebuoy. The life buoy can be tied with the rope, so that when the life buoy is thrown into the water, it can be rotated by the recovery shaft to pull the life buoy back, and a pump air box is fixed on the left side of the column, An air cavity is provided in the pump air box, and an inflation shaft is rotatably provided in the air cavity. A spiral leaf fan is arranged on the outer periphery of the inflation shaft. A hose is fixed on the top surface of the pump air box. An inflation nozzle is fixed at one end of the hose, and the hose is in communication with the air cavity. The inflation nozzle can inflate the lifebuoy. A mask cavity is provided on the top surface of the base. An inflatable tube is fixed on the left wall body, and an oxygen mask is stored in the mask cavity. There is an air intake pipe, the inflation pipe can inflate into the air intake pipe, the air cavity and the inflation pipe communicate with each other through a ventilation pipe, and a power cavity is opened in the base, and the left side of the power cavity A power motor is embedded in the side wall, and the power motor can provide power for the rotation of the inflatable shaft and the rotation of the recovery shaft.
2. The lifesaving device around a pond according to claim 1, wherein a top cavity is opened in the top plate on the left side of the cavity, and a left extension of the recovery shaft extends into the top portion. 3. A first bevel gear is fixed on the left end of the recovery shaft, and a vertical shaft extending up and down is rotated in the column, and a top extension of the vertical shaft extends into the top cavity, and A second bevel gear is fixed at the end, the second bevel gear meshes with the first bevel gear, and a third bevel gear located in the power cavity is fixed at the bottom end of the vertical shaft.
3. The life-saving device around a pond according to claim 2, characterized in that: a fixed block is fixed on the left side of the upright post, and the inflatable mouth can be put into the fixed block, and the gas A filter screen is fixed on the wall of the cavity. The filter screen can prevent debris from entering the air cavity, and a cover plate can be hinged on the top surface of the base to cover the mask cavity.
4. The lifesaving device around a pond according to claim 3, characterized in that: a switching slider is slidably arranged in the power chamber, and a spline sleeve is arranged inside the switching slider, and the spline sleeve A fourth bevel gear is fixed at the right end, the fourth bevel gear can mesh with the third bevel gear, a fifth bevel gear is fixed at the left end of the spline sleeve, and the right end of the power motor is dynamically connected with A power shaft, the power shaft is inserted into the spline sleeve, and the power shaft is splined with the spline sleeve, and a large gear is rotated in the top wall of the power cavity, and the bottom of the large gear is A sixth bevel gear is fixed on the end, and the sixth bevel gear can mesh with the fifth bevel gear. A small gear is fixed on the outer periphery of the inflatable shaft, and the small gear meshes with the large gear. The diameter of the large gear is much larger than the diameter of the small gear.
5. The lifesaving device around a pond according to claim 4, wherein a chute is provided on the bottom wall of the power chamber, and a slide plate is slidably arranged in the slide groove, and the slide plate is switched with the slide plate. The bottom surface of the slider is fixed, and electromagnets are fixed in the slide grooves on the left and right sides of the slide plate. A magnetic block is slid on the right side of the electromagnet on the right side, and the right side of the power chamber slides A baffle is provided, the baffle can close the ventilation pipeline, the baffle and the magnetic block are fixed by a pull wire, and a reset mechanism is fixed on the left side of the baffle.
Type: Application
Filed: Feb 20, 2020
Publication Date: Jun 18, 2020
Inventor: Xi Yang (Qingdao City)
Application Number: 16/795,589