裱花工具
By designing a face-to-face contact structure between the container connecting part and the discharge part in the piping tool, combined with the inclined guide and conduit section, the problems of numerous parts and complex sealing in existing piping tools are solved, achieving effective sealing of the flow path and simplifying operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- EPOCH COMPANY LTD
- Filing Date
- 2025-03-25
- Publication Date
- 2026-07-17
AI Technical Summary
Existing decorating tools have many parts and complex sealing structures, making them inconvenient to use and clean, and especially unsuitable for children.
A decorating tool has been designed, comprising a container connecting part and an ejector part. By making the end face of the container face-to-face with the bottom surface of the ejector part in a first direction, multiple flow paths are formed. The tool employs an inclined guide and conduit structure to directly suppress the leakage of creamy substances and simplify the connection of parts.
It achieves an effective seal in the flow path, preventing leakage of creamy substances, simplifies the use and cleaning process, and is suitable for children to operate.
Smart Images

Figure CN224506267U_ABST
Abstract
Claims
1. A piping tool, characterized in that, include: A container connection component includes multiple supply ports, and multiple containers can be connected to the multiple supply ports respectively along a first direction. Each of the multiple containers is configured to contain a creamy substance. as well as A discharge component configured to merge multiple flow paths, the multiple flow paths being configured to allow the passage of creamy material from the multiple containers connected to the multiple supply ports, and to discharge the merged creamy material. Each of the plurality of flow paths is configured to directly suppress leakage of the creamy substance by bringing the end face of the container connecting component or the end face of the corresponding container among the plurality of containers into face-to-face contact with the bottom surface of the discharge component in the first direction.
2. The decorating tool according to claim 1, characterized in that, wherein The discharge component includes a nozzle connection component, which is configured to be connected to the plurality of containers on one side of the nozzle connection component in the first direction, and to be connected to a piping nozzle on the other side of the nozzle connection component in the first direction.
3. The decorating tool according to claim 2, characterized in that, wherein The container and the piping nozzle are connected only by two components, consisting of the container connecting component and the nozzle connecting component, to form the plurality of flow paths.
4. The decorating tool according to claim 2 or 3, characterized in that, wherein, The nozzle connecting component includes multiple inclined guides configured to guide the multiple flow paths respectively in a second direction, whereby the multiple flow paths are in a direction that brings them closer to each other. The plurality of inclined guide portions are respectively located on the extension line of the discharge outlets of the plurality of containers in the first direction.
5. The decorating tool according to claim 4, characterized in that, wherein Each of the plurality of tilting guides includes a tilted surface having an inclination of less than or equal to 45 degrees relative to the second direction.
6. The decorating tool according to claim 4, characterized in that, wherein The nozzle connection component includes a conduit section, and the plurality of flow paths guided by the inclined guide section are arranged in parallel within the conduit section as a plurality of discharge channels.
7. The decorating tool according to claim 6, characterized in that, wherein The mouth connector includes a plurality of second supply ports configured to receive the tops of the plurality of containers respectively; Each of the plurality of discharge channels is partially or entirely disposed in the opening of a corresponding second supply port among the plurality of second supply ports in the first direction.
8. The decorating tool according to any one of claims 1 to 3, characterized in that, wherein When the end face of each of the plurality of containers comes into face-to-face contact with the bottom surface of the discharge component, the annular end face around the discharge port of each of the plurality of containers comes into face-to-face contact with the top surface of a corresponding protrusion of a plurality of protrusions formed on the bottom surface of the discharge component, each of the plurality of protrusions having an Ω shape when viewed from the first direction.
9. The decorating tool according to claim 2, characterized in that, wherein, The container and the piping nozzle are connected only by two components, namely the container connecting component and the nozzle connecting component, to form the plurality of flow paths. The nozzle connecting component includes multiple inclined guide portions configured to guide the multiple flow paths in a second direction, whereby the multiple flow paths are in a direction that allows them to approach each other. The plurality of inclined guide portions are respectively located on the extension line of the discharge outlets of the plurality of containers in the first direction. Each of the plurality of tilting guides includes a tilted surface having an angle of less than or equal to 45 degrees relative to the second direction. The nozzle connecting component includes a conduit section, and the plurality of flow paths guided by the inclined guide section are arranged in parallel within the conduit section as a plurality of discharge channels. The nozzle connecting component includes multiple second supply ports, which are configured to receive the tops of the multiple containers respectively. Wherein, each of the plurality of discharge channels is partially or entirely disposed in the opening of a corresponding second supply port among the plurality of second supply ports in the first direction. Wherein, when the end face of each of the plurality of containers is in face-to-face contact with the bottom surface of the discharge component, the annular end face around the discharge port of each of the plurality of containers is in face-to-face contact with the top surface of a corresponding protrusion among the plurality of protrusions formed on the bottom surface of the discharge component, each of the plurality of protrusions having an Ω shape when viewed from the first direction.