CN103066743B - Magnetic electricity mixed continuous driving method and motive power device - Google Patents

Magnetic electricity mixed continuous driving method and motive power device Download PDF

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Publication number
CN103066743B
CN103066743B CN201310022606.0A CN201310022606A CN103066743B CN 103066743 B CN103066743 B CN 103066743B CN 201310022606 A CN201310022606 A CN 201310022606A CN 103066743 B CN103066743 B CN 103066743B
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piston
drive coil
coil
permanent magnet
connecting rod
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CN201310022606.0A
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CN103066743A (en
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罗琨
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Abstract

The invention discloses a magnetic electricity mixed continuous driving method. The magnetic electricity mixed continuous driving method comprises the following steps: (1) a connection rod, a piston and a crank shaft are prepared; (2) a cylinder body, a pole changing coil and a drive coil are prepared;(3) a control system is prepared; (4) in an original state, the pole changing coil is power-off; (5) the pole changing coil is power-on, and the piston drives the connection rod to move; (6) a first drive coil is power-on, and the piston moves; a current of the first drive coil flows reversely, and the piston moves; (7) a second drive coil is power-on, and the piston moves; the first drive coil is power-off, the step (6) is repeated, and a third drive coil and an n drive coil are power-on and power-off in sequence; (8) the control system controls the current direction of the pole changing coil to enable the current to flow, and actions of the step (6) and the step (7) are repeated; (9) actions of the steps (5), (6), (7) and (8) are repeated, and driving methods of magnetic electricity mixed continuous driving and output motive power driving are achieved. The invention further discloses a motive power device of the magnetic electricity mixed continuous driving.

Description

A kind of magnetoelectricity mixing Continuous Drive method and power set
Technical field
The present invention relates to the technical field of magnet, magnetoelectricity hybrid technology and power set, be specifically related to a kind of magnetoelectricity mixing Continuous Drive method and power set.
Background technology
At present, existing various motive power engine such as gasoline engine, diesel engine, fuel vapor machine etc. have been widely used in the numerous areas such as industry, agricultural, traffic, national defence, the use of these machineries is with rice easily simultaneously to people, has also buried hidden danger to society; The investment that these equipment have is huge, have to expend fuel cost large, and refuse to visit the environmental pollutions such as discharge, noise serious.And the energy that adopts of above-mentioned engine be with coal, oil, etc. non-renewable resource, due to resource-constrained, energy resource consumption is more and more valued by the people, and its energy conversion process is complicated, cost is high, efficiency is low, and environmental pollution is serious.
At present, market does not also have a kind of engine can use electric energy and magnetic property, or only with less electric energy, get final product continual output energy, and the power output of conventional motor or engine can be realized.
Summary of the invention
In order to solve the problem, magnetoelectricity mixing Continuous Drive method disclosed by the invention, the method can be magnetic property by electric energy conversion, thus promote to do the upper and lower straight reciprocating motion of continuous print with the piston of permanent magnet, the action of piston driving connecting rod, the action of connecting rod band dynamic crankshaft, thus realize the output of power; The invention also discloses the power set of a kind of magnetoelectricity mixing Continuous Drive.
The technical scheme that the present invention is adopted for achieving the above object is:
A kind of magnetoelectricity mixing Continuous Drive method, it is characterized in that, it comprises the following steps:
(1) prepare connecting rod, piston and bent axle, be fixedly installed piston permanent magnet in top land, described connecting rod one end is fixedly connected with piston, and the change of angle does not occur for connecting rod and piston, and the described connecting rod other end is connected with crankshaft mobility;
(2) prepare cylinder body, this cylinder body is provided with at least one cylinder barrel, is fixedly installed cylinder body permanent magnet in cylinder barrel top, and described piston is plugged in described cylinder barrel, and the magnetic field force that the magnetic field force that described cylinder body permanent magnet produces and described piston permanent magnet produce repels mutually; Pole-changing coil is fixedly installed bottom cylinder body permanent magnet; Spaced set many groups drive coil on described cylinder barrel outer wall, the first drive coil, the second drive coil ... .. n-th drive coil;
(3) prepare control system, this control system connects described drive coil and pole-changing coil, controls its electrical condition, size of current and the sense of current;
(4) initial condition, pole-changing coil blackout, piston is at a distance of from dead-centre position away from farthest under the magnetic force of piston permanent magnet and cylinder body permanent magnet;
(5) pole-changing coil electricity, produces the magnetic field force attracted each other with piston permanent magnet, makes the rectilinear motion of close pole-changing coil, piston driving connecting rods moving at streight line under the attraction that piston produces at pole-changing coil and piston permanent magnet;
(6) piston moved is near described first drive coil, first drive coil energising, produce the magnetic field force attracted mutually with described piston permanent magnet, piston is under the effect of this magnetic field force, move near the direction of the first drive coil, until piston and this first drive coil are on the same line; Described control system controls the reverse direction current flow of this first drive coil, and this first drive coil produces the magnetic field force repelled mutually with piston permanent magnet, and piston, under the effect of this magnetic field force, moves to the direction away from this first drive coil;
(7) when piston movement is to during near the second drive coil, described control system controls described second drive coil energising, this second drive coil results from the magnetic field force that piston permanent magnet attracts mutually, under the magnetic field force that piston produces at described second drive coil and the first drive coil, move near the direction of described second drive coil; Described control system controls the first drive coil power-off, second drive coil reverse current direction, piston moves to away from the second drive coil and near the 3rd drive coil direction, 3rd drive coil and the n-th drive coil repeat the action of step (6), the power-off energising successively of 3rd drive coil, the n-th drive coil, until piston movement arrives the top dead center position near pole-changing coil;
(8) described control system controls the sense of current flowing of pole-changing coil, this pole-changing coil produces the magnetic field force repelled mutually with piston permanent magnet, piston moves downward under the active force of this repulsion magnetic field force, repeats the action of step (6), (7), until piston movement is to the position of lower dead center;
(9) repeat the action of step (5), (6), (7), (8), piston does upper and lower straight reciprocating motion; Drivening rod also does upper and lower straight reciprocating motion, the left circular motion of connecting rod band dynamic crankshaft, realizes magnetoelectricity mixing Continuous Drive, the driving method of driver output power.
As a further improvement on the present invention, step (2) specifically also comprises following content, and the height of drive coil is 1/30-1/5 times of cylinder barrel height.
As a further improvement on the present invention, the magnetic field produced during described drive coil energising is greater than the volume of piston permanent magnet.
A kind of power set implementing above-mentioned magnetoelectricity mixing Continuous Drive method, it is characterized in that, it comprises control circuit, cylinder body, connecting rod, piston, piston permanent magnet, cylinder barrel permanent magnet, pole-changing coil, drive coil, described cylinder body comprises at least one cylinder barrel, described connecting rod is fixedly connected with described piston, described piston permanent magnet is fixedly installed on described piston, described cylinder barrel permanent magnet is fixedly installed on bottom described cylinder barrel, described pole-changing coil is fixedly installed on below described cylinder body permanent magnet, described piston is movably arranged in described cylinder barrel, many groups of described drive coils are set in qually spaced on described cylinder barrel outer wall, control circuit is electrically connected described pole-changing coil and drive coil.
As a further improvement on the present invention, described power set also comprise planet circumferential running mechanism, this planet circumferential running mechanism comprises a small circular pulley and a large circular chute, described bent axle is provided with maneton, described small circular pulley connects described bent axle, during motion, small circular pulley makes spinning motion centered by the axis of maneton, and makes planetary rotation around large circular chute.
As a further improvement on the present invention, described connecting rod is the bipitch connecting rod of symmetrical structure, and described cylinder body comprises two cylinder barrels be oppositely arranged, and described bipitch connecting rod to be plugged in two cylinder bodies and to connect piston, is flexibly connected described bent axle in the middle part of described bipitch connecting rod.
As a further improvement on the present invention, described cylinder barrel quantity is even numbers.
Beneficial effect of the present invention is: by arranging the connecting rod of moving linearly, pole-changing coil, drive coil, piston permanent magnet and cylinder body permanent magnet, conducting and size of current, the sense of current of pole-changing coil and drive coil is controlled by control system, pole-changing coil and drive coil produce magnetic field force, driven plunger is moved, thus realizes the output of power.
Upper and lower straight reciprocating motion done by connecting rod, and by planet circumferential running, the rectilinear motion of connecting rod is converted to rotary motion by mechanism, thus realizes the Power output of bent axle; Upper and lower rectilinear motion made by connecting rod, makes piston seldom lateral stressed, and then effectively reduces the friction between piston and cylinder barrel, improves energy conversion rate.
Below in conjunction with accompanying drawing and embodiment, the present invention is further described.
Accompanying drawing explanation
Fig. 1 is the structural representation of the embodiment of the present invention;
In figure:
1. cylinder body 12. cylinder body permanent magnet 13. drive coil
14. pole-changing coil 2. piston permanent magnet 3. connecting rods
4. the large circular chute of bent axle 5. small circular pulley 6..
Embodiment
Embodiment, see Fig. 1, magnetoelectricity mixing Continuous Drive method provided by the invention, it comprises the following steps:
(1) prepare connecting rod 3, piston and bent axle 4, be fixedly installed piston permanent magnet 2 in top land, described connecting rod 3 one end is fixedly connected with piston, and the change of angle does not occur for connecting rod 3 and piston, and described connecting rod 3 other end is flexibly connected with bent axle 4;
(2) cylinder body 1 is prepared, this cylinder body 1 is provided with at least one cylinder barrel, be fixedly installed cylinder body permanent magnet 12 in cylinder barrel top, described piston is plugged in described cylinder barrel, and the magnetic field force that the magnetic field force that described cylinder body permanent magnet 12 produces and described piston permanent magnet 2 produce repels mutually; Pole-changing coil 14 is fixedly installed bottom cylinder body permanent magnet 12; Spaced set many groups drive coil 13, first drive coil 13, second drive coil 13..... n-th drive coil 13 on described cylinder barrel outer wall; The height of drive coil 13 is 1/30-1/5 times of cylinder barrel height, and the magnetic field produced when described drive coil 13 is energized is greater than the volume of piston permanent magnet 2;
(3) prepare control system, this control system connects described drive coil 13 and pole-changing coil 14, controls its electrical condition, size of current and the sense of current;
(4) initial condition, pole-changing coil 14 power-off, piston is at a distance of from dead-centre position away from farthest under piston permanent magnet 2 magnetic force with cylinder body permanent magnet 12;
(5) pole-changing coil 14 is energized, and produces the magnetic field force attracted each other with piston permanent magnet 2, makes the rectilinear motion of close pole-changing coil 14, piston driving connecting rod 3 moving linearly under the attraction that piston produces at pole-changing coil 14 and piston permanent magnet 2;
(6) piston moved is near described first drive coil 13, first drive coil 13 is energized, produce the magnetic field force attracted with described piston permanent magnet 2 phase, piston is under the effect of this magnetic field force, move near the direction of the first drive coil 13, until piston and this first drive coil 13 are on the same line; Described control system controls the reverse direction current flow of this first drive coil 13, and this first drive coil 13 produces the magnetic field force repelled with piston permanent magnet 2 phase, and piston, under the effect of this magnetic field force, moves to the direction away from this first drive coil 13;
(7) when piston movement is to during near the second drive coil 13, described control system controls described second drive coil 13 and is energized, this second drive coil 13 results from the magnetic field force that piston permanent magnet 2 phase attracts, under the magnetic field force that piston produces at described second drive coil 13 and the first drive coil 13, move near the direction of described second drive coil 13; Described control system controls the first drive coil 13 power-off, second drive coil 13 reverse current direction, piston moves to away from the second drive coil 13 and near the 3rd drive coil 13 direction, 3rd drive coil 13 and the n-th drive coil 13 repeat the action of step (6), the power-off energising successively of 3rd drive coil 13, n-th drive coil 13, until piston movement arrives the top dead center position near pole-changing coil 14;
(8) described control system controls the sense of current flowing of pole-changing coil 14, this pole-changing coil 14 produces the magnetic field force repelled with piston permanent magnet 2 phase, piston moves downward under the active force of this repulsion magnetic field force, repeat the action of step (6), (7), until piston movement is to the position of lower dead center;
(9) repeat the action of step (5), (6), (7), (8), piston does upper and lower straight reciprocating motion; Drivening rod 3 also does upper and lower straight reciprocating motion, and the left circular motion of dynamic crankshaft 4 is with by connecting rod 3, realizes magnetoelectricity mixing Continuous Drive, the driving method of driver output power.
Described connecting rod 3 is the bipitch connecting rod 3 of symmetrical structure, and described cylinder body comprises two cylinder barrels be oppositely arranged, and described bipitch connecting rod 3 to be plugged in two cylinder bodies and to connect piston, is flexibly connected described bent axle 4 in the middle part of described bipitch connecting rod 3.When needs arrange multiple cylinder barrel, cylinder barrel quantity is even numbers, and during to make piston movement, cylinder body reaches dynamic equilibrium.
A kind of power set implementing above-mentioned magnetoelectricity mixing Continuous Drive method, it comprises control circuit, cylinder body 1, connecting rod 3, piston, piston permanent magnet 2, cylinder barrel permanent magnet, pole-changing coil 14, drive coil 13, described cylinder body 1 comprises at least one cylinder barrel, described connecting rod 3 is fixedly connected with described piston, described piston permanent magnet 2 is fixedly installed on described piston, described cylinder barrel permanent magnet is fixedly installed on bottom described cylinder barrel, described pole-changing coil 14 is fixedly installed on below described cylinder body permanent magnet 12, described piston is movably arranged in described cylinder barrel, many groups of described drive coils 13 are set in qually spaced on described cylinder barrel outer wall, control circuit is electrically connected described pole-changing coil 14 and drive coil 13.
Described power set also comprise planet circumferential running mechanism, this planet circumferential running mechanism comprises small circular pulley 5 and a large circular chute 6, described bent axle 4 is provided with bent axle 4 neck, described small circular pulley 5 connects described bent axle 4, during motion, small circular pulley 5 makes spinning motion centered by the axis of bent axle 4 neck, and makes planetary rotation around large circular chute 6.
Described connecting rod 3 is the bipitch connecting rod 3 of symmetrical structure, and described cylinder body comprises two cylinder barrels be oppositely arranged, and described bipitch connecting rod 3 to be plugged in two cylinder bodies and to connect piston, is flexibly connected described bent axle 4 in the middle part of described bipitch connecting rod 3.When needs arrange multiple cylinder barrel, cylinder barrel quantity is even numbers, and during to make piston movement, cylinder body reaches dynamic equilibrium.
Fig. 1 is the power set of single cylinder, is used for the embodiment of single cylinder power set according to the present invention, and those skilled in the art can not need cost creative work just can draw two or more power set.
The present invention is not limited to above-mentioned execution mode, adopts or approximation apparatus identical with the above embodiment of the present invention, and other obtaining are for magnetoelectricity mixing Continuous Drive method and the power set implementing the method, all within protection scope of the present invention.

Claims (8)

1. a magnetoelectricity mixing Continuous Drive method, it is characterized in that, it comprises the following steps:
(1) prepare connecting rod, piston and bent axle, be fixedly installed piston permanent magnet in top land, described connecting rod one end is fixedly connected with piston, and the described connecting rod other end is connected with crankshaft mobility;
(2) prepare cylinder body, this cylinder body is provided with at least one cylinder barrel, is fixedly installed cylinder body permanent magnet in cylinder barrel top, and described piston is plugged in described cylinder barrel, and the magnetic field force that the magnetic field force that described cylinder body permanent magnet produces and described piston permanent magnet produce repels mutually; Pole-changing coil is fixedly installed bottom cylinder body permanent magnet; Spaced set many groups drive coil on described cylinder barrel outer wall, the first drive coil, the second drive coil ... .. n-th drive coil; Cylinder barrel height is 5-30 times of drive coil height;
(3) prepare control system, this control system connects described drive coil and pole-changing coil, controls its electrical condition, size of current and the sense of current;
(4) initial condition, pole-changing coil blackout, piston is at a distance of from dead-centre position away from farthest under the magnetic force of piston permanent magnet and cylinder body permanent magnet;
(5) pole-changing coil electricity, produces the magnetic field force attracted each other with piston permanent magnet, makes the rectilinear motion of close pole-changing coil, piston driving connecting rods moving at streight line under the attraction that piston produces at pole-changing coil and piston permanent magnet;
(6) piston moved is near described first drive coil, first drive coil energising, produce the magnetic field force attracted mutually with described piston permanent magnet, piston is under the effect of this magnetic field force, move near the direction of the first drive coil, until piston and this first drive coil are on the same line; Described control system controls the reverse direction current flow of this first drive coil, and this first drive coil produces the magnetic field force repelled mutually with piston permanent magnet, and piston, under the effect of this magnetic field force, moves to the direction away from this first drive coil;
(7) when piston movement is to during near the second drive coil, described control system controls described second drive coil energising, this second drive coil results from the magnetic field force that piston permanent magnet attracts mutually, under the magnetic field force that piston produces at described second drive coil and the first drive coil, move near the direction of described second drive coil; Described control system controls the first drive coil power-off, second drive coil reverse current direction, piston moves to away from the second drive coil and near the 3rd drive coil direction, 3rd drive coil and the n-th drive coil repeat the action of step (6), the power-off energising successively of 3rd drive coil, the n-th drive coil, until piston movement arrives the top dead center position near pole-changing coil;
(8) described control system controls the sense of current flowing of pole-changing coil, this pole-changing coil produces the magnetic field force repelled mutually with piston permanent magnet, piston moves downward under the active force of this repulsion magnetic field force, repeat the action of step (6), (7), until piston movement is to the position of lower dead center;
(9) repeat the action of step (5), (6), (7), (8), piston does upper and lower straight reciprocating motion; Drivening rod also does upper and lower straight reciprocating motion, the left circular motion of connecting rod band dynamic crankshaft, realizes magnetoelectricity mixing Continuous Drive, the driving method of driver output power.
2. magnetoelectricity mixing Continuous Drive method according to claim 1, it is characterized in that, the magnetic field produced during described drive coil energising is greater than the volume of piston permanent magnet.
3. magnetoelectricity mixing Continuous Drive method according to claim 1 and 2, it is characterized in that, described connecting rod is the bipitch connecting rod of symmetrical structure, described cylinder body comprises two cylinder barrels be oppositely arranged, described bipitch connecting rod to be plugged in two cylinder bodies and to connect piston, is flexibly connected described bent axle in the middle part of described bipitch connecting rod.
4. magnetoelectricity mixing Continuous Drive method according to claim 3, it is characterized in that, described cylinder barrel quantity is even numbers.
5. one kind implements the claims the power set of one of 1 ~ 4 described magnetoelectricity mixing Continuous Drive method, it is characterized in that, it comprises control circuit, cylinder body, connecting rod, piston, piston permanent magnet, cylinder barrel permanent magnet, pole-changing coil, drive coil, described cylinder body comprises at least one cylinder barrel, described connecting rod is fixedly connected with described piston, described piston permanent magnet is fixedly installed on described piston, described cylinder barrel permanent magnet is fixedly installed on bottom described cylinder barrel, described pole-changing coil is fixedly installed on below described cylinder body permanent magnet, described piston is movably arranged in described cylinder barrel, many groups of described drive coils are set in qually spaced on described cylinder barrel outer wall, control circuit is electrically connected described pole-changing coil and drive coil.
6. power set according to claim 5, it is characterized in that, it also comprises planet circumferential running mechanism, this planet circumferential running mechanism comprises a small circular pulley and a large circular chute, described bent axle is provided with maneton, and described small circular pulley connects described bent axle, during motion, small circular pulley makes spinning motion centered by the axis of maneton, and makes planetary rotation around large circular chute.
7. the power set according to claim 5 or 6, it is characterized in that, described connecting rod is the bipitch connecting rod of symmetrical structure, and described cylinder body comprises two cylinder barrels be oppositely arranged, described bipitch connecting rod to be plugged in two cylinder bodies and to connect piston, is flexibly connected described bent axle in the middle part of described bipitch connecting rod.
8. power set according to claim 5, is characterized in that, described cylinder barrel quantity is even numbers.
CN201310022606.0A 2013-01-22 2013-01-22 Magnetic electricity mixed continuous driving method and motive power device Expired - Fee Related CN103066743B (en)

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CN105515337A (en) * 2015-11-15 2016-04-20 贺时喜 Proper force machine
CN105673200A (en) * 2016-03-16 2016-06-15 魏录群 Mixed magnetic power driving mechanism and engine
CN110112861B (en) * 2019-06-06 2021-04-13 张开荣 Electromagnetic type driving machine
CN115121390A (en) * 2022-07-06 2022-09-30 中国计量大学 Directional smell release device inducing dreaming through olfaction

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US4213428A (en) * 1977-02-22 1980-07-22 Phecell Bradley Electromagnetic augmentation of internal combustion engines
US4317058A (en) * 1979-12-28 1982-02-23 Troy L. Cook Electro-magnetic reciprocating engine
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