Power acting and power generation integrated machine

文档序号:1089748 发布日期:2020-10-20 浏览:4次 中文

阅读说明:本技术 一种动力做功与发电一体机 (Power acting and power generation integrated machine ) 是由 聂小平 吴立恩 于 2020-07-20 设计创作,主要内容包括:本发明公开了一种动力做功与发电一体机。其两外端盖(2)用螺栓(11)固定在行走外轮壳(1)两端,且用轴承(10)活动置于空心轴(5)上,固定强磁矽钢片(3)固定在行走外轮壳(1)内端,发电机矩形强磁(4)一块N极、一块S极交叉等距排列镶嵌在固定强磁矽钢片(3)内端,矽钢片(6)固定在空心轴(5)上,强磁(7)一块N极、一块S极交叉等距排列镶嵌在矽钢片(6)外周边组成发电机定子,发电绕组线圈(13)均匀的绕在绕组矽钢片(8)外圈的线槽内,做功电机线圈(14)均匀的绕在矽钢片(8)内圈的线槽内。由于本发明的采用了发电机内转子、电机外转子和外层转子三层做功发电的电机内嵌式一体化,可实现多极同时做功供电,重量轻,体积小,材料成本减少,且噪音小,做功效率高,从而达到节能效果。(The invention discloses a power working and power generation integrated machine. Two outer end covers (2) are fixed at two ends of a walking outer wheel shell (1) by bolts (11), a bearing (10) is movably arranged on a hollow shaft (5), a fixed strong magnetic silicon steel sheet (3) is fixed at the inner end of the walking outer wheel shell (1), a generator rectangular strong magnet (4) with one N pole and one S pole are alternately arranged and embedded at the inner end of the fixed strong magnetic silicon steel sheet (3), a silicon steel sheet (6) is fixed on the hollow shaft (5), a strong magnet (7) with one N pole and one S pole are alternately arranged and embedded at the outer periphery of the silicon steel sheet (6) to form a generator stator, a generating winding coil (13) is uniformly wound in a wire slot at the outer ring of the winding silicon steel sheet (8), and an acting motor coil (14) is uniformly wound in a wire slot at the inner ring of the silicon steel sheet (8). The invention adopts the motor embedded integration of the three layers of the inner rotor of the generator, the outer rotor of the motor and the outer rotor to do work and generate electricity, can realize the simultaneous working and power supply of multiple poles, and has the advantages of light weight, small volume, reduced material cost, low noise and high working efficiency, thereby achieving the energy-saving effect.)

1. The utility model provides a power acting and electricity generation all-in-one, characterized by: two outer end covers (2) are fixed at two ends of a walking outer wheel shell (1) by bolts (11), a bearing (10) is movably arranged on a hollow shaft (5), a fixed strong magnetic silicon steel sheet (3) is fixed at the inner end of the walking outer wheel shell (1), a generator rectangular strong magnet (4) with one N pole and one S pole are crossed and equidistantly arranged and embedded at the inner end of the fixed strong magnetic silicon steel sheet (3), a silicon steel sheet (6) is fixed on the hollow shaft (5), a strong magnet (7) with one N pole and one S pole are crossed and equidistantly arranged and embedded at the outer periphery of the silicon steel sheet (6) to form a generator stator, a power generation winding coil (13) is uniformly wound in a wire slot at the outer ring of the winding silicon steel sheet (8), and a power-applying motor coil (14) is uniformly wound in a wire slot at the inner ring of the silicon steel sheet (8).

2. The integrated machine for power work and power generation as claimed in claim 1, which is characterized in that: the right outer end of the hollow shaft (5) is provided with a slip ring A, three leads (15) of the slip ring A are connected with a work-applying motor coil (14) through inner holes of the hollow shaft (5), the slip ring B is arranged at the left outer end of the hollow shaft (5), and the three leads (15) of the slip ring B are connected with a power generation winding coil (13) through inner holes of the hollow shaft (5).

3. The integrated machine for power work and power generation as claimed in claim 1, which is characterized in that: the two inner end covers (9) are fixed at two ends of the winding silicon steel sheet (8) by bolts (11) and are movably arranged on the hollow shaft (5) by a bearing (10).

4. The integrated machine for power work and power generation as claimed in claim 1, which is characterized in that: quantitative gaps (12) are reserved between the inner end of the fixed strong magnetic silicon steel sheet (3) and the outer ring of the winding silicon steel sheet (8) and between the inner ring of the winding silicon steel sheet (8) and the outer end of the silicon steel sheet (3).

The technical field is as follows:

the invention relates to a power working and power generation integrated machine used for an electric vehicle.

Background art:

energy is an important basic resource for the development of human society, along with the development of world economy, the dramatic increase of world population and the continuous improvement of people's life, the world energy demand is continuously increased, so that the competition on energy resources is intensified day by day, the environmental pollution is aggravated and the environmental protection pressure is increased. At present, the motor that domestic electric motor car used, generally be ordinary permanent-magnet machine, constitute by motor and mechanical transmission, reduction gears respectively, heavy in weight, it is bulky, thereby cause the material cost to increase, mostly be the switch and touch the formula of hindering, the rotor is the design of multipolar convex son type, easily vibrations when starting and braking, the noise is big, and mostly be the simultaneous working of multiconductor, the power supply is simultaneously carried out to the polytropism, used electric current increases, its work efficiency is low, one time continuation of the journey mileage does not exceed 100 kilometers, consequently, the energy is wasted, the power consumption cost has been increased.

The invention content is as follows:

the invention aims to solve the technical problem of providing the power working and power generating integrated machine which adopts three layers of the inner rotor of the generator, the outer rotor of the motor and the outer rotor to do work and generate power, can realize multi-pole simultaneous working and power supply, adopts a single winding to do work once, reduces the starting current in the motor by three times, increases the torque, achieves the energy-saving effect, and has the advantages of light weight, small volume, reduced material cost, low noise and high working efficiency, thereby reducing the use cost.

The technical scheme adopted by the invention for realizing the purpose is as follows: two outer end covers of the power acting and power generating integrated machine are fixed at two ends of a walking outer wheel shell through bolts, and are movably arranged on a hollow shaft through bearings, a fixed strong magnetic silicon steel sheet is fixed at the inner end of the walking outer wheel shell, an N pole and an S pole of a rectangular strong magnetic generator are alternately arranged and embedded at the inner end of the fixed strong magnetic silicon steel sheet, the silicon steel sheets are fixed on the hollow shaft, an N pole and an S pole of the strong magnetic generator are alternately arranged and embedded at the outer periphery of the silicon steel sheet to form a generator stator, a power generation winding coil is uniformly wound in a wire slot of an outer ring of the silicon steel sheet, and an acting motor coil is uniformly wound in a wire slot of an inner ring of the silicon.

The invention has the beneficial effects that: because the motor embedded integration of the three layers of the inner rotor of the generator, the outer rotor of the motor and the outer rotor of the generator for acting and generating power is adopted, multipolar simultaneous acting and power supply can be realized, single winding single acting is realized, the starting current in the motor is reduced by three times, the torque is increased, the energy-saving effect is achieved, and the problems of vibration and high noise during starting and braking are solved. And the weight is light, the volume is small, the material cost is reduced, the noise is low, the work efficiency is high, and therefore, the use cost is reduced.

Description of the drawings:

fig. 1 is a schematic structural view of the present invention.

Fig. 2 is a view from a-a of fig. 1.

The specific implementation mode is as follows:

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