Toy orbital vehicle
Abstract
The present disclosure discloses a toy orbital vehicle, including an orbit and a flying vehicle, wherein the vehicle has a first flight attitude of flying along the orbit and a second flight attitude of flying out of the orbit; Sliding cooperation of the taxiing connector on the orbit guide a flight direction of the flying vehicle, so that the flying vehicle can fly along the orbit. Thus, different flight trajectories can be simulated based on various structures of the orbit. The toy orbital vehicle has more playing methods, for example, flying across an obstacle or passing through a complicated orbit. Meanwhile, the flying vehicle can be separated relative to the taxiing connector and can directly take off after flying along the orbit and reaching a certain speed, thus really simulating land and air flights.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A toy orbital vehicle, comprising an orbit and a flying vehicle, wherein the vehicle has a first flight attitude of flying along the orbit and a second flight attitude of flying out of the orbit;
a taxiing connector is slidably arranged on the orbit; in the first flight attitude, the flying vehicle is connected to the taxiing connector; and in the second flight attitude, the flying vehicle is separated from the taxiing connector.
2 . The toy orbital vehicle according to claim 1 , wherein the orbit is at least composed of one or more of a straight orbit section, a semicircular orbit section, and a curved orbit section.
3 . The toy orbital vehicle according to claim 2 , wherein the straight orbit section, the semicircular orbit section, and the curved orbit section each comprise a guide rail body; first insertion parts are arranged at two ends of the guide rail body; first insertion holes corresponding to the first insertion parts are also arranged at two ends of the guide rail body;
at least two symmetrical second insertion holes are also arranged on the guide rail body; the first insertion holes and the second insertion holes have the same cross sections, and axial lines of the first insertion holes and axial lines of the second insertion holes are in a crossed state; and the guide rail body is provided with a sliding limiting part that extends outwards.
4 . The toy orbital vehicle according to claim 3 , wherein the taxiing connector comprises a taxiing seat; the taxiing seat is provided with a clamping limiting part half wrapped around the sliding limiting part; the taxiing seat is provided with a connecting part; the connecting part is provided with a positioning hole;
the flying vehicle is provided with a positioning column configured to be inserted into the positioning hole; and the positioning hole and the positioning column are provided with magnetic suction connecting parts that are mutually magnetically connected.
5 . The toy orbital vehicle according to claim 4 , wherein the magnetic suction connecting parts comprise magnets or metal structures that mutually attract each other.
6 . The toy orbital vehicle according to claim 1 , wherein the flying vehicle comprises an inclined fuselage; upper and lower ends of the fuselage are respectively provided with an upper rotor group and a lower rotor group which are parallel to each other; and the upper rotor group and the lower rotor group each comprise rotors symmetrically arranged relative to the fuselage.
7 . The toy orbital vehicle according to claim 6 , wherein each rotor comprises a protective frame integrated on the fuselage, a propeller, and a motor; the propeller is rotatably mounted on the protective frame; the motor drives the propeller to rotate; and the motor is independently controlled.
8 . The toy orbital vehicle according to claim 7 , wherein an air deflector is arranged on one side of the protective frame facing an upper end of the fuselage.
9 . The toy orbital vehicle according to claim 6 , wherein both the upper rotor group and the lower rotor group are provided with guard beams, and taxiing wheels are arranged at two end portions of the guard beams.
10 . The toy orbital vehicle according to claim 6 , wherein the fuselage is a shuttle-shaped fuselage.
11 . The toy orbital vehicle according to claim 6 , wherein two ends of the fuselage are respectively provided with a signal transmitters and/or a signal receiver.
12 . The toy orbital vehicle according to claim 11 , wherein the signal transmitter and/or the signal receiver are rotatably connected to the fuselage.
13 . The toy orbital vehicle according to claim 6 , wherein a battery assembling groove is arranged below the fuselage, and a modular battery is mounted inside the battery assembling groove.
14 . The toy orbital vehicle according to claim 13 , wherein a clamping slot is arranged in the battery assembling groove, and a clamping strip that is matched with the clamping slot is arranged on the modular battery.Join the waitlist — get patent alerts
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