Double-cavity quantitative container
A container and container body technology, which is applied in the field of containers, can solve the problems of excessive liquid pouring, requirements affecting the user's liquid consumption, waste of health, etc., and achieve the effect of preventing potential safety hazards.
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0028] Embodiment one: refer to Figure 1-Figure 9 As shown: a double-chamber quantitative container is designed, including a container body 16, a seat assembly 5 is fixed outside the neck of the container body 16, and the seat assembly 5 includes a buckle seat connected to the outside of the container neck, It is integrally formed with the buckle seat, and extends into the main pipe 181 at the bottom of the container. A section of the lower part of the main pipe 181 shrinks inwardly to form a short pipe part 121 with a diameter smaller than the main pipe. The bottom of the short pipe part 121 is closed. The side wall of the part 121 is symmetrically opened with an external liquid inlet hole 12, and the top surface of the buckle seat is integrally formed with a top pipe 201 connected to the main pipe, and the side wall of the top pipe 201 is symmetrically opened with the liquid inlet hole 12. The corresponding first and second liquid outlet holes 3, 20 are also provided with a...
Embodiment 2
[0034] Embodiment two, such as Figure 10-15Shown; Provide a kind of double-chamber quantitative container, comprise container body, be fixed with seat assembly 5 outside the neck of described container body, described seat assembly includes the buckle seat that is connected on the outside of container neck, and buckle seat Integral molding, the main pipe extending into the bottom of the container, the bottom of the main pipe is closed, the liquid inlet hole 12 is symmetrically opened on the lower side wall of the main pipe, and the top pipe 201 connected with the main pipe is integrally formed on the top surface of the buckle seat, The side wall of the top pipe is symmetrically opened with first and second liquid outlet holes 3, 20 corresponding to the liquid inlet hole 12, and a bottom of the inner hole of the main pipe is integrally formed to extend upward to the top pipe. The central tube 111 of the port, the central tube and the lower side wall are provided with a liquid ...
Embodiment 3
[0037] Embodiment three, such as Figure 16-22 Shown; Design a kind of double-chamber quantitative container, comprise container body, be fixed with seat assembly 5 outside the neck of described container body, described seat assembly includes the buckle seat that is connected on the outside of container neck, and buckle seat Integral molding, the main pipe extending into the bottom of the container, the bottom of the main pipe is closed, the liquid inlet hole 12 is symmetrically opened on the lower side wall of the main pipe, and the top pipe 201 connected with the main pipe is integrally formed on the top surface of the buckle seat, The side wall of the top pipe is symmetrically opened with first and second liquid outlet holes 3, 20 corresponding to the liquid inlet hole 12, and a bottom of the inner hole of the main pipe is integrally formed to extend upward to the top pipe. The central tube 111 of the port, the lower side wall of the central tube is provided with the liqui...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


