CN114688222A - Combined gear rack subsection transmission power pulling and rotating device of reciprocating motion unidirectional rotating device - Google Patents

Combined gear rack subsection transmission power pulling and rotating device of reciprocating motion unidirectional rotating device Download PDF

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Publication number
CN114688222A
CN114688222A CN202011644576.3A CN202011644576A CN114688222A CN 114688222 A CN114688222 A CN 114688222A CN 202011644576 A CN202011644576 A CN 202011644576A CN 114688222 A CN114688222 A CN 114688222A
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China
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gear
rack
gears
reciprocating motion
groups
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CN202011644576.3A
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Chinese (zh)
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何景安
何祖鑫
何祖强
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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
    • F16HGEARING
    • F16H19/00Gearings comprising essentially only toothed gears or friction members and not capable of conveying indefinitely-continuing rotary motion
    • F16H19/02Gearings comprising essentially only toothed gears or friction members and not capable of conveying indefinitely-continuing rotary motion for interconverting rotary or oscillating motion and reciprocating motion
    • F16H19/04Gearings comprising essentially only toothed gears or friction members and not capable of conveying indefinitely-continuing rotary motion for interconverting rotary or oscillating motion and reciprocating motion comprising a rack
    • F16H19/043Gearings comprising essentially only toothed gears or friction members and not capable of conveying indefinitely-continuing rotary motion for interconverting rotary or oscillating motion and reciprocating motion comprising a rack for converting reciprocating movement in a continuous rotary movement or vice versa, e.g. by opposite racks engaging intermittently for a part of the stroke

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Transmission Devices (AREA)

Abstract

The invention discloses a reciprocating motion one-way rotating device combined with a gear rack subsection transmission power puller, relates to a reciprocating motion rotating device in the mechanical field, and utilizes mechanical vibration, motor vehicles, airplanes, trains, ships and sea wave vibration reciprocating motion to be changed into rotation towards one direction to generate power. The main technical scheme is that a unidirectional rotation device is arranged on a shaft, a large gear, a middle gear and a small gear are arranged on the periphery of the unidirectional rotation device, a large segmented rack, a middle segmented rack and a small segmented rack are correspondingly arranged, a parallel channel lower than the racks rotates according to the high, middle and low matched peripheral gears, a vibration source is connected to make reciprocating motion on the gears, a large gear is started, the middle gear and the small gear transmit power to accelerate one by one according to vibration frequency, and a plurality of groups of gears and racks transmit power to pull the rotation device in a segmented mode. Multiple sets can be installed to form a resultant force. The main application is that the driving force which periodically changes is existed between media to do work when mechanical vibration, motor vehicle, airplane, train operation and ship utilize sea wave vibration, and the mechanical vibration is utilized to generate electricity.

Description

Combined gear rack subsection transmission power pulling and rotating device of reciprocating motion unidirectional rotating device
1. The technical field is as follows: the invention relates to a reciprocating motion rotating device in the field of machinery, in particular to a device which makes full use of vibration frequency to rotate in the process of pulling and rotating a plurality of groups of gears and racks by transferring power in a segmented mode.
2. Background art: since most of energy sources are non-renewable, the exhaustion of petroleum and energy crisis, the search for new energy sources has become a current and future development trend. The demand of energy is increasing, and therefore, new energy sources are sought. The wave vibration of sea water utilized by mechanical vibration, motor vehicles, airplanes and trains and ships is a new energy which is not completely developed, the vibration is fluctuation, the motion form of vibration is transmitted, a periodically changed driving force exists between media, the driving force can do work, and the energy is transmitted as a result of the work. Vibration is of course one type of energy, and vibration has a tremendous amount of energy. Vibration is a pollution nuisance. It is a physical pollution like noise and is temporary. Vibration is a very common motion form, almost any object is vibrated, almost any object can not be vibrated, but the vibration energy is not fully applied, and some mechanical motion energy is consumed by vibration or generates vibration pollution nuisance. The invention relates to a reciprocating motion rotating device in the mechanical field, wherein a reciprocating motion unidirectional rotating device is a gear, a rack is not easy to start when being pulled out for the first time, or the gear and the rack are damaged, the reciprocating motion unidirectional rotating device is combined with the gear and the rack to transmit power, the gear and the rack are started by utilizing a large gear, the power transmitted by a middle gear and a small gear is accelerated one by one according to vibration frequency, and the device is a device which rotates in the pulling and rotating process of a plurality of groups of gears and racks by utilizing the vibration frequency in a segmented power transmission manner. The mechanical reciprocating motion in the form of vibration is utilized to drive the generator to move or generate power.
3. The invention content is as follows: 1 unidirectional rotating device is installed on a shaft by a screw fixing bracket, 3 groups of gears, namely a large gear, a middle gear and a small gear, are installed on the periphery of the unidirectional rotating device, 2 groups of gears up to n groups of gears can be installed on the periphery, and the gear arrangement can be large, medium and small; small, medium and large; large, small and medium. The rack is correspondingly arranged on the rack fixing frame, a rack gear rack, a middle gear rack and a pinion rack are respectively arranged in the respective rack running range in a segmented mode according to the mode that 3 groups of gears are arranged on the periphery, parallel channels lower than the rack are arranged outside the segmented racks, the segmented racks are ensured to be capable of transferring power to pull the unidirectional rotating device to rotate in the respective running range, 3 groups of gears can be arranged in a matched mode according to the sequence of the gear, the middle gear and the pinion, 2 groups of the gears up to n groups of the gears can be arranged according to the periphery, and the rack arrangement can be large, medium and small; small, medium and large; large, small and medium. A rack is connected with a vibration source and reciprocates a gear, the large gear is fully utilized for starting, the middle gear and the small gear transmit power, and the unidirectional rotating device is pulled to drive a shaft to rotate by accelerating the power transmitted by a plurality of groups of gears and racks in a segmented mode one by one according to vibration frequency, so that the shaft continuously rotates towards one direction. The two sets of the unidirectional rotation devices are installed on the same shaft, the other 1 set of the gears are connected with the same vibration source through racks in the opposite directions and reciprocate the gears, when the unidirectional rotation devices do reciprocating motion, the unidirectional rotation devices of the other 1 set idle, the other 1 set of the unidirectional rotation devices drive the shaft to rotate, the unidirectional rotation devices of the other 1 set always drive the shaft to rotate during the reciprocating motion, the reciprocating motion can be performed by all the unidirectional rotation devices, the shaft can continuously rotate towards one direction, the influence of vibration amplitude is avoided, the length of the racks can be lengthened, and the vibration amplitude can be adjusted through the lever principle. A plurality of groups are arranged on one shaft to form a resultant force.
4. Description of the drawings: FIG. 1 is the front view and the top view of a combined rack and pinion device of reciprocating unidirectional rotation device for power transmission, consisting of unidirectional rotation device, gear wheel, middle gear, pinion, rack and pinion gear rack fixing rack, fixing screw, shaft, gear and pinion gear,
Figure BSA0000229449820000021
And a fixed connecting rod.
5. The specific implementation mode is as follows: mechanical vibration, motor vehicles, airplanes and trains are used for running and ships are used for rotating by utilizing the wave vibration reciprocating motion of seawater, the influence of vibration amplitude is avoided, the length of the rack can be lengthened, the vibration amplitude is adjusted by utilizing the lever principle, and the generator is driven to rotate or generate power. The invention relates to a reciprocating motion rotating device in the mechanical field, which is simple and easy to implement, thereby having high energy utilization rate and being convenient to popularize and use.

Claims (5)

1. 1 unidirectional rotating device is installed on a shaft by a screw fixing bracket, 3 groups of gears, namely a large gear, a middle gear and a small gear, are installed on the periphery of the unidirectional rotating device, 2 groups of gears up to n groups of gears can be installed on the periphery, and the gear arrangement can be large, medium and small; small, medium and large; and (3) arranging the materials in any of large, small and medium sizes.
2. The rack is correspondingly arranged on the rack fixing frame, a rack gear rack, a middle gear rack and a pinion rack are respectively arranged in the respective rack running range in a segmented mode according to the mode that 3 groups of gears are arranged on the periphery, parallel channels lower than the rack are arranged outside the segmented racks, the segmented racks are ensured to be capable of transferring power to pull the unidirectional rotating device to rotate in the respective running range, 3 groups of gears can be arranged in a matched mode according to the sequence of the gear, the middle gear and the pinion, 2 groups of the gears up to n groups of the gears can be arranged according to the periphery, and the rack arrangement can be large, medium and small; small, medium and large; and (3) arranging the materials in any of large, small and medium sizes.
3. A rack is connected with a vibration source and reciprocates a gear, the large gear is fully utilized for starting, the middle gear and the small gear transmit power, and the unidirectional rotating device is pulled to drive a shaft to rotate by accelerating the power transmitted by a plurality of groups of gears and racks in a segmented mode one by one according to vibration frequency, so that the shaft continuously rotates towards one direction.
4. 2 sets of the unidirectional rotation devices are arranged on the same shaft, the other 1 set of the gears are also connected with the same vibration source by racks in the opposite directions and carry out reciprocating motion on the gears, when the unidirectional rotation devices carry out reciprocating motion, the unidirectional rotation devices of 1 set idle, the other 1 set of the unidirectional rotation devices drive the shaft to rotate, the unidirectional rotation devices of 1 set always drive the shaft to rotate during reciprocating motion, the reciprocating motion can be realized, and the shaft can continuously rotate towards one direction.
5. The length of the rack can be lengthened without being influenced by the vibration amplitude, and the vibration amplitude can be adjusted by utilizing the lever principle. And a plurality of groups are arranged on one shaft to form a resultant force technology.
CN202011644576.3A 2020-12-26 2020-12-26 Combined gear rack subsection transmission power pulling and rotating device of reciprocating motion unidirectional rotating device Pending CN114688222A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202011644576.3A CN114688222A (en) 2020-12-26 2020-12-26 Combined gear rack subsection transmission power pulling and rotating device of reciprocating motion unidirectional rotating device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202011644576.3A CN114688222A (en) 2020-12-26 2020-12-26 Combined gear rack subsection transmission power pulling and rotating device of reciprocating motion unidirectional rotating device

Publications (1)

Publication Number Publication Date
CN114688222A true CN114688222A (en) 2022-07-01

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Family Applications (1)

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Country Status (1)

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CN (1) CN114688222A (en)

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