Bottle cap and beverage bottle with the same
A beverage bottle and bottle cap technology, applied in the field of bottle caps, inner caps and beverage bottles, can solve the problems of getting out of the cup, failing to control the liquid discharge speed, and difficult to control the liquid discharge, and achieve the effect of easy liquid discharge
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Embodiment 1
[0022] Embodiment 1. The bottom cover, the bottom cover S3 is cylindrical; the outer cylindrical surface of the bottom cover S3 forms a sealed connection with the bottle mouth S4 to prevent leakage. The bottom cover S3 is cylindrical and has a stop ring S33 at its upper end to prevent the bottom cover S3 from falling into the bottom of the bottle. The bottom cover S3 has a liquid outlet nozzle S31. The base end of the liquid nozzle S31 is connected with the bottom surface of the inner cavity of the bottom cover S3. The liquid outlet nozzle S31 of the bottom cover S3 faces the bottle mouth S4 from the bottom of the inner cavity of the bottom cover S3. The outer extension is called the end. The outlet nozzle S31 of the bottom cover S3 has a outlet hole S32. One end of the outlet hole S32 is opened on the outer bottom surface of the bottom cover S3, and one end of the outlet hole S32 is opened on the end of the outlet nozzle S31. .
Embodiment 2
[0023] Embodiment 2. The inner cover, the inner cover S2 is cylindrical, the wall between the inner cavity cylindrical surface and the outer cylindrical surface of the inner cover S2 has an inner hole S21, and the axis of the inner hole S21 is parallel to the axis of the inner cover S2. The number of holes S21 is three, and all the inner holes S21 are distributed in a circular array with the axis of the inner cover S2 as the array axis.
Embodiment 3
[0024] Embodiment 3. The bottle cap includes the inner cap S2 and the bottom cap S3; the diameter of the inner cavity cylinder of the inner cap S2 is larger than the diameter of the liquid outlet nozzle S31 of the bottom cap S3. The diameter of the inner cavity of the bottom cover S3 is equal to the diameter of the outer cylindrical surface of the inner cover S2. The bottom cover S3 and the inner cover S2 are coaxially assembled, the inner cavity cylindrical surface of the bottom cover S3 and the outer cylindrical surface of the inner cover S2 are attached and sealed, and the end of the liquid outlet S31 of the bottom cover S3 is inserted into the inner cavity of the inner cover S2 .
[0025] Further, the cross-sectional area of the inner cavity of the inner cover S2 is larger than the liquid outlet nozzle S31 of the bottom cover S3.
[0026] Further, it also includes an outer cover, which maintains the spatial relationship between the inner cover S2 and the bottom cover S3 and ...
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