Hidden reaction force power device

文档序号:1956358 发布日期:2021-12-10 浏览:26次 中文

阅读说明:本技术 一种隐反作用力动力装置 (Hidden reaction force power device ) 是由 王安康 于 2021-09-17 设计创作,主要内容包括:本发明是一种隐反作用力动力装置,包括底板和底板上设有左动力锤、右动力锤和通电线圈,所述左动力锤和右动力锤为磁性材质制成,所述左动力锤和右动力锤相对称设置,左动力锤和右动力锤均设在通电线圈内,左动力锤和右动力锤的端部均设有牵引装置,通电线圈连接开关组,开关组连接直流电源,底座的两侧设有助推磁铁,所述牵引装置用于将左动力锤和右动力锤在通电线圈和助推磁铁之间做往返运动,本发明结构简单,制造成本低,使用方便。(The invention relates to a hidden reaction force power device which comprises a bottom plate and a left power hammer, a right power hammer and an electrified coil, wherein the left power hammer, the right power hammer and the electrified coil are arranged on the bottom plate, the left power hammer and the right power hammer are made of magnetic materials, the left power hammer and the right power hammer are symmetrically arranged, the left power hammer and the right power hammer are both arranged in the electrified coil, the end parts of the left power hammer and the right power hammer are both provided with traction devices, the electrified coil is connected with a switch group, the switch group is connected with a direct-current power supply, boosting magnets are arranged on two sides of a base, and the traction devices are used for enabling the left power hammer and the right power hammer to do reciprocating motion between the electrified coil and the boosting magnets.)

1. The invention relates to a hidden reaction force power device which is characterized by comprising a base and a left power hammer, a right power hammer and an electrified coil which are arranged on the base, wherein the left power hammer and the right power hammer are made of magnetic materials, the left power hammer and the right power hammer are symmetrically arranged, the left power hammer and the right power hammer are arranged in the electrified coil, the end parts of the left power hammer and the right power hammer are respectively provided with a traction device, the electrified coil is connected with a switch group, the switch group is connected with a direct-current power supply, boosting magnets are arranged on two sides of the base, and the traction assembly is used for enabling the left power hammer and the right power hammer to do reciprocating motion between the corresponding electrified coil and the boosting magnets.

2. The hidden reaction force power plant according to claim 1, characterized in that: the boosting magnet is a left magnet and a right magnet, one end of the left magnet, which is in contact with the left power hammer, is set to be the same magnetic pole, and one end of the right magnet, which is in contact with the right power hammer, is set to be the same magnetic pole.

3. The hidden reaction force power plant according to claim 1, characterized in that: the adjacent one side of left side power hammer and right power hammer is established to the opposite magnetic pole, establishes buffer spacer between the adjacent one side of left side power hammer and right power hammer, buffer spacer is the elastic material.

4. The hidden reaction force power plant according to claim 1, characterized in that: the switch group comprises an initial power switch and a piezoresistor, and the piezoresistor is arranged in the buffer pad; the piezoresistor is connected to the one end of first power switch, and the piezoresistor connects the one end of power, and two circular telegram coils are parallelly connected, and the other end of first power switch and the other end of power all are connected with the parallel connection department of two circular telegram coils.

5. The hidden reaction force power plant according to claim 1, characterized in that: the traction assembly comprises a left pull rod and a right pull rod, the bottom plate is horizontally provided with the left pull rod and the right pull rod, one ends of the left pull rod and the right pull rod are hinged to the base, the left pull rod is connected with a left power hammer, and the right pull rod is connected with a right power hammer.

6. The hidden reaction force power plant according to claim 1, characterized in that: the traction assembly is a left slide rail and a right slide rail, and the left slide rail and the right slide rail are respectively connected with the corresponding electrified coil and the boosting magnet in a guiding manner.

7. The hidden reaction force power plant according to claim 1, characterized in that: and pulleys are arranged at the bottoms of the left power hammer and the right power hammer.

Technical Field

The invention relates to a power device, in particular to a hidden reaction force power device.

Background

In the prior art, most of power sources are converted into kinetic energy by consuming fuels such as oil, coal and the like, and the power sources waste energy and pollute the environment. The existing power propellers, such as jet engines, plasma power propellers and the like, are all the pushing force generated by the reaction force generated by jetting a large amount of gas or plasma at high speed at the tail parts of the existing power propellers, so that the existing power propellers have the disadvantages that a large amount of fuel is required to be carried by the existing power propellers, the fuel cannot provide the pushing force, and the existing power propellers are large in load, high in manufacturing cost, high in technical requirement and very high in cost.

Disclosure of Invention

The invention aims to overcome the defects of the prior art and design a hidden reaction force power device.

In order to solve the technical problems, the invention adopts the technical scheme that:

the invention relates to a hidden reaction power device which comprises a base and a left power hammer, a right power hammer and an electrified coil, wherein the left power hammer, the right power hammer and the electrified coil are arranged on the base, the left power hammer and the right power hammer are made of magnetic materials and are symmetrically arranged, the left power hammer and the right power hammer are arranged in the electrified coil, the end parts of the left power hammer and the right power hammer are respectively provided with a traction device, the electrified coil is connected with a switch group, the switch group is connected with a direct-current power supply, boosting magnets are arranged on two sides of the base, and the traction components are used for enabling the left power hammer and the right power hammer to do reciprocating motion between the corresponding electrified coil and the boosting magnets.

The boosting magnet is a left magnet and a right magnet, one end of the left magnet, which is in contact with the left power hammer, is set to be the same magnetic pole, and one end of the right magnet, which is in contact with the right power hammer, is set to be the same magnetic pole.

The adjacent one side of left side power hammer and right power hammer is established to the opposite magnetic pole, establishes buffer spacer between the adjacent one side of left side power hammer and right power hammer, buffer spacer is the elastic material.

The switch group comprises an initial power switch and a piezoresistor, and the piezoresistor is arranged in the buffer pad; the piezoresistor is connected to the one end of first power switch, and the piezoresistor connects the one end of power, and two circular telegram coils are parallelly connected, and the other end of first power switch and the other end of power all are connected with the parallel connection department of two circular telegram coils.

The traction assembly comprises a left pull rod and a right pull rod, the bottom plate is horizontally provided with the left pull rod and the right pull rod, one ends of the left pull rod and the right pull rod are hinged to the base, the left pull rod is connected with a left power hammer, and the right pull rod is connected with a right power hammer.

The traction assembly is a left slide rail and a right slide rail, and the left slide rail and the right slide rail are respectively connected with the corresponding electrified coil and the boosting magnet in a guiding manner.

And pulleys are arranged at the bottoms of the left power hammer and the right power hammer.

The invention has the beneficial effects that: the invention can provide power without carrying a large amount of fuel, and the power device has the characteristics of simple structure, low manufacturing cost, convenient use, no pollution, no noise, environmental protection and energy saving, and can play a role in providing thrust in vacuum or space.

The invention utilizes the two electrified coils to be electrified to respectively provide initial kinetic energy for the left power hammer and the right power hammer, simultaneously, because the two electrified coils are symmetrical left and right on the same plane, the self-borne reaction force can be counteracted, and the left and right reaction forces do not do negative work on the whole machine (because the left and right included angles of the two electrified coils are 20 degrees, partial reaction force does positive work on the whole machine, and simultaneously, the hidden reaction force does not do negative work on the whole machine) by utilizing the principle that like magnetic poles of magnets repel each other, and the symmetrical structure is adopted, so that the left and right stress balance of the power device is realized; and the left power hammer and the right power hammer move forwards to be continuously close to the corresponding boosting magnets, and interaction forces are generated between the left power hammer and the right power hammer and between the left magnet and the right magnet respectively, wherein the acting forces applied to the left magnet and the right magnet drive the device to move forwards.

Drawings

FIG. 1 is a schematic structural view of example 1;

fig. 2 is a schematic structural view of embodiment 2.

Detailed Description

The following description of the embodiments of the present invention is provided for illustrative purposes, and other advantages and effects of the present invention will become apparent to those skilled in the art from the present disclosure.

Example 1: as shown in fig. 1, the invention relates to a hidden reaction power device, which comprises a base 1 and a left power hammer 8, a right power hammer 9 and an electrified coil 7 which are arranged on the base 1. Left side power hammer 8, right power hammer 9 are the magnetism material and make, and left side power hammer 8 and right power hammer 9 one end all are equipped with electrical coil 7, and two electrical coil 7 all with base 1 fixed connection. The left power hammer 8 and the right power hammer 9 are obliquely arranged and are symmetrical to each other. The adjacent one side of left power hammer 8 and right power hammer 9 is the opposite magnetic pole, and department is equipped with buffer pad 6 in the middle of the two, buffer pad 6 is the elasticity material, makes left power hammer 8 and right power hammer 9 attract each other and extrudes buffer pad 6. The two electrified coils 7 are connected with a switch group, the switch group is connected with a direct-current power supply 12, and the 2 electrified coils 7 are connected in parallel.

During operation, the switch group is turned on to ensure that the electrified coils 7 are electrified, so that the two electrified coils 7 generate magnetic fields, the directions of the 2 magnetic fields are set to be opposite, and the left power hammer 8 and the right power hammer 9 are ejected in opposite directions.

The bottom plate is provided with a left pull rod 5 and a right pull rod 4 horizontally, the left pull rod 5 and the right pull rod 4 are obliquely arranged and are symmetrical to each other, and the movement of the left pull rod 5 and the movement of the right pull rod 4 from the electrified coil 7 to the base side part are ensured to be the same. One end of each of the left pull rod 5 and the right pull rod 4 is hinged with the base 1, the other end of the left pull rod 5 is connected with a left power hammer 8, and the other end of the right pull rod 4 is connected with a right power hammer 9. The left pull rod 5 and the right pull rod 4 respectively pull the left power hammer 8 and the right power hammer 9 to do circular motion.

One side of base 1 is fixedly connected with left magnet 2 and right magnet 3 respectively, and left magnet 2 and right magnet 3 are symmetrical setting. The end of the left magnet 2 in contact with the left power hammer 8 is set to the same magnetic pole, and the end of the right magnet 3 in contact with the right power hammer 9 is set to the same magnetic pole. When the left power hammer 8 and the right power hammer 9 do circular motion on the base, as the left power hammer 8 and the right power hammer 9 move forward and are continuously close to the corresponding magnets, interaction force is generated between the left power hammer 8 and the right power hammer 9 and the left magnet 2 and the right magnet 3 respectively, and the acting force applied to the left magnet 2 and the right magnet 3 drives the device to move forward.

Switch assembly is including just power switch 11 and piezo-resistor 10, and piezo-resistor 10 is connected to the one end of just power switch 11, and the one end of power is connected to piezo-resistor 10, and two circular telegram coils 7 are parallelly connected, and the other end of just power switch 11 and the other end of power all are connected with the parallel department of two circular telegram coils 7, establish piezo-resistor 10 in buffer shim 6. And opening the initial power switch 11, generating a magnetic field in the electrified coil 7, and providing initial kinetic energy for the left power hammer 8 and the right power hammer 9 to pop out in opposite directions. When the left power hammer 8 and the right power hammer 9 move forwards to the limit, the left power hammer 8 and the right power hammer 9 are rebounded by the reaction force, the left power hammer 8 and the right power hammer 9 respectively penetrate through the electrified coil 7 to jointly extrude the buffer gasket, most of rebounded kinetic energy is mutually counteracted, a small part of rebounded kinetic energy is utilized to carry out positive power propulsion, and the piezoresistor 10 is squeezed to reduce the resistance value and electrify the electrified coil 7 again.

The bottom of the left power hammer 8 and the bottom of the right power hammer 9 are fixedly connected with four groups of pulleys, the pulleys are in contact with the base, friction between the left power hammer 8 and the contact surface and the friction between the right power hammer 9 and the contact surface are reduced through the pulleys, and energy loss in the motion process is reduced.

Example 2: as shown in fig. 2, the left and right tie rods 5 and 4 are replaced with left and right slide rails 13 and 14. One end of a left power hammer 8 penetrates through the electrified coil 7, the other end of the left power hammer 8 is in contact with the port of a left slide rail 13, the left power hammer 8 can conveniently enter the slide rail after being popped out, and the other end of the port of the left slide rail 13 is arranged at the left magnet 2; the right power hammer and the right slide rail 14 are also provided.

The working principle is as follows: the invention utilizes the electrification of the electrified coil 7 to generate a magnetic field to provide initial kinetic energy for the left power hammer 8 and the right power hammer 9, and because the symmetry of the two electrified coils is hidden and the self-borne reaction force is utilized, the reaction force does not apply negative work to the whole machine; under the traction of the left pull rod 5 and the right pull rod 4 or in a slide rail, the left magnet 2 and the right magnet 3 respectively move (in the process, the mass sum-M which is the common mass of the power machine and an object or a spacecraft to be pushed provides larger inertia to provide centripetal force, and the left power hammer 8 and the right power hammer 9 are respectively used for changing the initial movement direction), one end of the left magnet 2, which is contacted with the left power hammer 8, is set to be the same magnetic pole, one end of the right magnet 3, which is contacted with the right power hammer 9, is set to be the same magnetic pole, and by utilizing the principle that the like magnetic poles repel, the left power hammer 8 and the right power hammer 9 respectively generate interaction force with the left magnet 2 and the right magnet 3, wherein the acting force that left magnet 2 and right magnet 3 received drives the device forward motion, and left magnet 2 and right magnet 3 symmetry set up, guarantee power device and control the force balance. The reaction force of the left power hammer 8 and the right power hammer 9 gradually consumes the initial kinetic energy of the left power hammer 8 and the right power hammer 9, along with the consumption of the initial kinetic energy, the left power hammer 8 and the right power hammer 9 are rebounded by the reaction force and are rebounded to the electrified coil 7 to jointly extrude the buffer gasket, most of rebounded kinetic energy is mutually counteracted, a small part of rebounded kinetic energy is utilized to carry out positive power propulsion, the piezoresistor 10 is squeezed to reduce the resistance value and electrify the electrified coil 7 again, and the initial kinetic energy is provided for the left power hammer 8 and the right power hammer 9 again.

The foregoing shows and describes the general principles, broad features, and advantages of the invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are given by way of illustration of the principles of the present invention, and that various changes and modifications may be made without departing from the spirit and scope of the invention as defined by the appended claims. The scope of the invention is defined by the appended claims and equivalents.

In the description of the present invention, it is to be understood that the terms "front", "rear", "left", "right", "center", etc., indicate orientations or positional relationships based on those shown in the drawings, and are used only for convenience in describing the present invention and for simplicity in description, but do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, are not to be construed as limiting the scope of the present invention.

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