A scooter structure includes a vertical frame and a pedal body. The bottom of the vertical frame connects to (a) front wheel(s). The rear end of the pedal body connects to (a) rear wheel(s), the front end of the pedal body connects to an auxiliary supporter. The auxiliary supporter includes a pivoti
A scooter structure includes a vertical frame and a pedal body. The bottom of the vertical frame connects to (a) front wheel(s). The rear end of the pedal body connects to (a) rear wheel(s), the front end of the pedal body connects to an auxiliary supporter. The auxiliary supporter includes a pivoting portion pivoted at the bottom of the vertical frame and an extension element located higher than that of the pivoting portion. The extension element connects to auxiliary wheels by an assembling component. The pedal body uses the pivoting portion as the rotation shaft, and is selectively rotated between an expansion position (the pedal body is away from the vertical frame and the rear wheel is on the ground) and a folded position (the pedal body is close to the vertical frame and the auxiliary wheels are on the ground) with respect to the vertical frame.
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1. A scooter structure comprising: a vertical frame comprising a top end and a bottom end, wherein the top end is higher than the bottom end, and the bottom end is disposed with a front wheel; anda pedal body comprising a front end and a rear end, wherein the rear end is disposed with a rear wheel,
1. A scooter structure comprising: a vertical frame comprising a top end and a bottom end, wherein the top end is higher than the bottom end, and the bottom end is disposed with a front wheel; anda pedal body comprising a front end and a rear end, wherein the rear end is disposed with a rear wheel, the front end is connected to an auxiliary supporter, the auxiliary supporter comprises a pivoting portion pivoted to the bottom end of the vertical frame and an extension element higher than the pivoting portion, and the extension element is assembled with at least one auxiliary wheel by using an assembling component;wherein the pedal body uses the pivoting portion as the rotary shaft and is selectively rotated between a expansion position and a folded position with respect to the vertical frame, the expansion position refers to the position that the pedal body is away from the vertical frame and the rear wheel is on the ground, and the folded position refers to the position that the pedal body is close to the vertical frame and the at least one auxiliary wheel is on the ground. 2. The scooter structure according to claim 1, wherein the top end of the vertical frame further comprises a turning handle, the bottom end comprises a front fork bracket disposed with a connecting rack and pivoted with the front wheel, and the pivoting portion of the auxiliary supporter is pivoted to the connecting rack. 3. The scooter structure according to claim 1, further comprising a fixing body for fixing the pedal body in the expansion position or in the folded position. 4. The scooter structure according to claim 3, wherein the fixing body comprises at least one slot, an elastic member, and a locking member connected to the elastic member, wherein the at least one slot is disposed on the vertical frame, and the elastic member and the locking member are disposed on the auxiliary supporter, and wherein the locking member may be selectively locking on or releasing from the at least one slot. 5. The scooter structure according to claim 4, further comprising a release body for releasing the fixing body from the fixing status. 6. The scooter structure according to claim 5, wherein the release body comprises a releasing member and a following member connected to the locking member, the releasing member is pivoted to the auxiliary supporter or the vertical frame rotatably, and the releasing member comprises a driving surface abutting against on the following member. 7. The scooter structure according to claim 1, further comprising a brake connected to the front wheel or the rear wheel, or the combination thereof. 8. The scooter structure according to claim 1, further comprising a driving motor for driving the front wheel or the rear wheel, or the combination thereof. 9. The scooter structure according to claim 1, wherein the assembling component comprises at least one pivot shaft disposed through the at least one auxiliary wheel. 10. The scooter structure according to claim 1, wherein the assembling component comprises a receiving box, at least one sliding groove, and at least one sliding brick, the at least one sliding groove is disposed on the receiving box, the least one sliding brick is slid and moved within the at least one sliding groove, the at least one sliding brick is pivoted to the extension element, and the bottom of the receiving box is assembled with the at least one auxiliary wheel. 11. The scooter structure according to claim 2, wherein the assembling component comprises a receiving box, at least one sliding groove, and at least one sliding brick, the at least one sliding groove is disposed on the receiving box, the least one sliding brick is slid and moved within the at least one sliding groove, the at least one sliding brick is pivoted to the extension element, and the bottom of the receiving box is assembled with the at least one auxiliary wheel. 12. The scooter structure according to claim 3, wherein the assembling component comprises a receiving box, at least one sliding groove, and at least one sliding brick, the at least one sliding groove is disposed on the receiving box, the least one sliding brick is slid and moved within the at least one sliding groove, the at least one sliding brick is pivoted to the extension element, and the bottom of the receiving box is assembled with the at least one auxiliary wheel. 13. The scooter structure according to claim 4, wherein the assembling component comprises a receiving box, at least one sliding groove, and at least one sliding brick, the at least one sliding groove is disposed on the receiving box, the least one sliding brick is slid and moved within the at least one sliding groove, the at least one sliding brick is pivoted to the extension element, and the bottom of the receiving box is assembled with the at least one auxiliary wheel. 14. The scooter structure according to claim 5, wherein the assembling component comprises a receiving box, at least one sliding groove, and at least one sliding brick, the at least one sliding groove is disposed on the receiving box, the least one sliding brick is slid and moved within the at least one sliding groove, the at least one sliding brick is pivoted to the extension element, and the bottom of the receiving box is assembled with the at least one auxiliary wheel. 15. The scooter structure according to claim 6, wherein the assembling component comprises a receiving box, at least one sliding groove, and at least one sliding brick, the at least one sliding groove is disposed on the receiving box, the least one sliding brick is slid and moved within the at least one sliding groove, the at least one sliding brick is pivoted to the extension element, and the bottom of the receiving box is assembled with the at least one auxiliary wheel. 16. The scooter structure according to claim 7, wherein the assembling component comprises a receiving box, at least one sliding groove, and at least one sliding brick, the at least one sliding groove is disposed on the receiving box, the least one sliding brick is slid and moved within the at least one sliding groove, the at least one sliding brick is pivoted to the extension element, and the bottom of the receiving box is assembled with the at least one auxiliary wheel. 17. The scooter structure according to claim 8, wherein the assembling component comprises a receiving box, at least one sliding groove, and at least one sliding brick, the at least one sliding groove is disposed on the receiving box, the least one sliding brick is slid and moved within the at least one sliding groove, the at least one sliding brick is pivoted to the extension element, and the bottom of the receiving box is assembled with the at least one auxiliary wheel.
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