Hollow dual-mode motor
By using a hollow dual-mode motor design and a coaxial rotor and a rhomboid hollow circumferential pole body structure, the problems of manned aircraft endurance and kinetic energy control are solved, and stable kinetic energy supply and enhanced safety are achieved under complex weather conditions.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-01-09
- Publication Date
- 2026-04-07
AI Technical Summary
In existing technologies, the endurance of manned aircraft is affected by weather conditions, and there is a lack of risk-free kinetic energy control solutions.
It adopts a hollow dual-mode motor design, utilizing two coaxial rotors and a rhomboid hollow peripheral pole body structure. Through three-dimensional mechanism and four-dimensional construction, the functional architecture is established, including the rhomboid hollow peripheral pole body, variable shaft, core space and power air bucket, to realize the independent operation and heat dissipation function of the coaxial rotor.
It achieves stable power supply under complex weather conditions, ensuring the manned aircraft's endurance and safety. The dynamic fan function of the rhomboid hollow peripheral body enhances heat dissipation, reduces airframe weight, and improves power control precision.
Smart Images

Figure CN121813786A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a hollow dual-mode motor. Background Technology
[0002] Spaceflight, a global issue, specifically addresses how to achieve the following for manned spacecraft: a mechanism for unlimited endurance, a physical process where kinetic energy is unaffected by weather conditions, and zero-risk piloting without the need for prayer. These three key principles reflect humanity's consideration of creating space-based living conditions based on a second nature. The design philosophy and feasibility of these principles represent a crucial aspect of societal development that urgently needs clarification. Summary of the Invention
[0003] To overcome the current technological gap, this invention provides a hollow dual-mode motor, which is used in applications with two coaxial rotors, thus establishing conditions to mitigate risks.
[0004] To address the aforementioned issues, the present invention employs the following technical solution: Based on the design principles: three-dimensional mechanism, four-dimensional construction. Its execution conditions establish the functional framework using a geometric rhombic variable guidance mechanism, implementing three-dimensional dimensions and hollow variable guidance. Its physical form includes: a rhombic hollow peripheral body, a hollow variable axis, a rhombic core space, a hollow central axis, and a hollow power wind bucket.
[0005] The rhomboid hollow peripheral pole body is constructed from an upper housing and a lower housing. The upper housing has a peripheral pole fastener inside the neck, which is used to secure the hollow shaft. The lower housing houses an outer stator structure for electrically controlling the rotation of the outer rotor.
[0006] The hollow variable shaft is constructed from a peripheral polarity disk, conductor-fixed inclined bracing, and a hollow shaft. The peripheral polarity disk is a power expansion condition, and its framework is the outer rotor peripheral polarity magnetic yoke. The conductor-fixed inclined bracing acts as a bridge connecting the peripheral polarity disk and the hollow shaft. The hollow shaft has an inner rotor permanent magnet structure on its inner wall. The hollow variable shaft has two coaxial rotors; its construction is based on the conductor passing through the magnetic yoke channel of the peripheral polarity disk, through the channel of the hollow shaft, and entering the permanent magnet channel of the inner rotor, forming a throat-like fixation. After completing the conductor peripheral polarity through-hole throat-fixation inner rotor structure, the outer rotor permanent magnet structure is installed according to the magnetic yoke of the peripheral polarity disk, and the closed-loop locking channel ensures that the two coaxial rotors can each perform their respective functions.
[0007] The diamond-shaped core space is based on air storage. Under the action of power, the air's scenario is the circumferential wind force. Based on the hollow variable axis functional shape, under the conductor fixed diagonal bracing, its dynamic scenario is a three-dimensional fan, which is not only a heat dissipation function condition, but also a function to overcome the weight of the machine body by dynamically establishing the function.
[0008] The hollow shaft is constructed as a fixed inner stator, and its purpose is to electrically control the operation of the inner rotor.
[0009] The hollow dynamic wind bucket is constructed to create conditions for condensing centripetal force. Attached Figure Description
[0010] Figure 1 This is a schematic diagram of the structure of the present invention.
[0011] Among them, 1. Rhomboid hollow peripheral pole body – upper and lower housing; 2. Hollow variable shaft – peripheral pole disk, conductor fixing diagonal brace, hollow shaft; 3. Rhomboid core space; 4. Hollow core shaft; 5. Hollow power air bucket; 6. Transverse bolt – fastening the hollow core shaft – upper and lower housing composite fastening – fastening the hollow power air bucket; 7. Conical bearing – installed in the upper and lower housing fixing hollow variable shaft operation; 8. Inner rotor permanent magnet structure; 9. Outer rotor permanent magnet structure; 10. Inner stator structure; 11. Outer stator structure; 12. Neck; 13. Peripheral pole buckle; 14. Conductor – A3 steel. Detailed Implementation
[0012] The present invention will now be further described in conjunction with the accompanying drawings and specific embodiments to provide a clearer understanding of the technical concept claimed by the present invention.
[0013] like Figure 1 As shown, the hollow dual-mode motor of the present invention includes a rhomboid hollow peripheral pole body 1, a hollow variable shaft 2, a rhomboid core space 3, a hollow spindle 4, a hollow power fan 5, a transverse locking bolt 6, a tapered bearing 7, an inner rotor 8, an outer rotor 9, an inner stator 10, an outer stator 11, a neck 12, a peripheral pole buckle 13, and a conductor 14.
[0014] In operation, the tooling process is based on the 3D printed workpiece, and the assembly and setting of parts are based on the structural schematic diagram. The form is two points in a line, namely: the rhomboid hollow peripheral body 1 is fixed by the upper and lower housings, and the hollow variable shaft 2 is fixed. The fixed operation condition is the tapered bearing 7.
[0015] Specifically, the implementation method is as follows: The upper housing neck 12 of the rhomboid hollow peripheral pole body 1 has a peripheral pole buckle 13 inside, which secures the hollow shaft 4. The hollow shaft 4 is a fixed inner stator structure 10, secured by a transverse locking bolt 6. An outer stator structure 11 is installed inside the lower housing. The hollow variable shaft 2 has two coaxial rotors: an inner rotor permanent magnet structure 8 and an outer rotor permanent magnet structure 9. The inner rotor permanent magnet structure is designed based on the conductor 14 passing through the peripheral pole disk yoke channel to the hollow shaft wall channel and entering the inner rotor permanent magnet structure 8 channel, resembling a throat-locking fixation. Establishing the inner rotor permanent magnet structure 8 of the hollow variable shaft 2 completes the first power setting. The second power setting is simpler: the outer rotor permanent magnet structure 9 is seated on the peripheral pole disk yoke, thus establishing a closed-loop locking channel. The conductor 14 uses the two rotors to construct a magnetic field mutual conduction mechanism to replace Hall effect sensing.
[0016] Based on the rhomboid core space 3, this invention establishes the physical response of the variable-guided body, especially the peripheral function of the hollow variable axis 2 under space conditions. The invisible air is malleable energy, not only for heat dissipation but, more importantly, for propulsion guidance, which hinges on the mechanism's execution capability. Dynamic scenarios require environmental shaping, and the rhomboid hollow peripheral body 1 is the basis for the dual-guided mechanism and also for its lifespan, as it can fly. The hollow propulsion wind tunnel 5, located outside the body, provides the conditions for further creation. Therefore, this lays the foundation for the future of aerospace, defining the underlying principles.
[0017] The above embodiments are merely preferred embodiments of the present invention and should not be construed as limiting the scope of protection of the present invention. Any non-substantial changes and substitutions made by those skilled in the art based on the present invention shall fall within the scope of protection claimed by the present invention.
Claims
1. A hollow dual-mode motor, characterized in that: The material is carbon fiber, the manufacturing process is 3D printing, and its texture has five structures: (1) rhomboid hollow peripheral body; (2) hollow variable shaft; (3) rhomboid core space; (4) hollow central shaft; (5) hollow power wind bucket.
2. The hollow dual-mode motor as described in claim 1, characterized in that: The rhomboid hollow peripheral pole body has two structures: an upper housing and a lower housing. The peripheral pole buckle inside the neck of the upper housing is used to secure the hollow shaft, while the lower housing houses the outer stator, which is used to electrically control the permanent magnet structure of the outer rotor.
3. The hollow dual-mode motor as described in claim 2, characterized in that: The hollow variable shaft is a composite structure consisting of a peripheral polar disk, a conductor-fixed inclined brace, and a hollow shaft. The peripheral polar disk is equipped with an outer rotor permanent magnet structure, the conductor-fixed inclined brace is a bridge connecting the outer rotor and the inner rotor, and the inner wall of the hollow shaft is equipped with an inner rotor permanent magnet structure.
4. The hollow dual-mode motor as described in claim 3, characterized in that: The diamond-shaped core space is for storing air.
5. The hollow dual-mode motor as described in claim 4, characterized in that: The hollow shaft is constructed with a fixed inner stator and is used to electrically control the inner rotor, which is a permanent magnet structure.
6. The hollow dual-mode motor as described in claim 5, characterized in that: The hollow powered wind turbine, with its structural function of cohesive centripetal force, is a condition for aerospace execution.