spray container
The spray container with a rotatable nozzle on an inclined surface addresses the inefficiency of manual direction adjustment, providing easy and precise spray direction control for improved cleaning efficacy.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-09-03
- Publication Date
- 2026-03-13
AI Technical Summary
Existing spray containers require manual adjustment of the ejection direction, which is cumbersome and inefficient, particularly in narrow spaces like toilet bowls.
A spray container with a rotatable spray nozzle mounted on an inclined surface, allowing easy adjustment of the spray direction by in-plane rotation, and equipped with an operating lever or button for fluid ejection.
Facilitates effortless and precise control of spray direction, enhancing user convenience and efficiency in cleaning applications.
Smart Images

Figure 2026046743000001_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a spray container, and more particularly to a spray container provided with a spray nozzle for ejecting a liquid at the tip of a main body.
Background Art
[0002] For example, as shown in Patent Document 1, various spray containers provided with a spray nozzle capable of ejecting a liquid such as a drug or a detergent have been proposed.
Prior Art Documents
Patent Documents
[0003]
Patent Document No. 1
Summary of the Invention
Problems to be Solved by the Invention
[0004] By the way, the above-described spray container is often used for cleaning or the like in a state filled with a drug, a detergent, or the like. For example, in toilet cleaning or the like, it is often used while changing the ejection direction of the spray nozzle in order to clean the inside of a narrow toilet bowl. In such a case, the ejection direction of the spray nozzle is changed while manually changing the angle of the spray container. However, the operation of changing the ejection direction in this way is not resistant to annoyance, and the development of a new spray container has been demanded.
[0005] The present invention has been made in view of such circumstances, and an object thereof is to provide a spray container capable of changing the ejection direction of a spray nozzle.
Means for Solving the Problems
[0006] To achieve the above objective, the spray container according to the present invention is a spray container having a spray nozzle at the tip of the main body from which liquid is sprayed, wherein the main body has an installation portion for installing the spray nozzle at the tip, and the installation portion is configured to install the spray nozzle so that the spray direction of the spray nozzle can be changed.
[0007] According to the present invention, the main body has an installation portion at its tip for providing the injection nozzle, and the installation portion is configured to provide the injection nozzle so that the injection direction of the injection nozzle can be changed, thereby allowing the injection direction of the injection nozzle to be changed.
[0008] The injection nozzle can be rotated to change the direction of injection. The installation portion has an installation surface on which the injection nozzle is provided, and the installation surface has an inclined surface. The injection nozzle is rotatably mounted along the inclined surface, and the direction of injection of the injection nozzle can be changed by rotation.
[0009] The injection nozzle is configured to allow switching the injection on and off by rotating it, making it easy to switch the injection on and off.
[0010] The injection nozzle has a roughly rectangular prism shape and is configured to allow switching the injection on and off by rotating it, making it easy to switch the injection on and off. This allows users to easily switch the injection on and off by hooking their fingers into the corners of the roughly rectangular prism shape.
[0011] The aforementioned roughly rectangular prism shape can be, for example, a roughly square prism shape.
[0012] The inclined surface is provided so as to face upward, and the injection nozzle is provided on the inclined surface facing upward and is configured to rotate so that the injection direction is directed upward, thereby allowing the injection direction of the injection nozzle to be directed upward.
[0013] Furthermore, the inclined surface is provided so as to face downward, and the injection nozzle is provided on the inclined surface facing downward and is configured to rotate so that the injection direction is directed downward, thereby allowing the injection direction of the injection nozzle to be directed downward.
[0014] Here, it is preferable that the spray container has an operating part, and that the operating part is configured to allow air pressure to be applied to spray the liquid from the spray nozzle by gripping it.
[0015] The aforementioned operating section is preferably composed of an operating lever or an operating button. [Effects of the Invention]
[0016] As described above, according to the present invention, the spray direction of the injection nozzle can be changed. [Brief explanation of the drawing]
[0017] [Figure 1] This figure shows the configuration of a spray container according to the first embodiment of the present invention. [Figure 2] This diagram shows a configuration in which the spray nozzle of the spray container is rotated to direct the spray direction upwards. [Figure 3] This figure shows the configuration of a spray container according to a second embodiment of the present invention. [Figure 4] This diagram shows a configuration in which the spray nozzle of the spray container is rotated to direct the spray direction downwards. [Figure 5] This diagram shows the configuration of a conventional spray container. [Figure 6]This is a front view of a spray container according to an embodiment of the present invention.
Embodiments for Carrying Out the Invention
[0018] Hereinafter, embodiments of the present invention will be described in detail with reference to FIGS. 1 to 4. Spray containers 100 and 200 according to embodiments of the present invention are spray containers 100 and 200 provided with injection nozzles 110 and 210 for injecting liquid at the tips 101A and 201A of bodies 101 and 201. The bodies 101 and 201 have installation parts 111 and 211 for providing the injection nozzles 110 and 210 at the tips 101A and 201A, and the installation parts 111 and 211 are configured to provide the injection nozzles 110 and 210 such that the injection direction of the injection nozzles 110 and 210 can be changed. The spray containers 100 and 200 are filled with a liquid such as a medicine or a detergent.
[0019] And the installation parts 111 and 211 have installation surfaces 111A and 211A for providing the injection nozzles 110 and 210, and the installation surfaces 111A and 211A have inclined surfaces 111B and 211B. The injection nozzles 110 and 210 can change the injection direction of the injection nozzles 110 and 210 by rotating. More specifically, the injection nozzles 110 and 210 are provided rotatably along the inclined surfaces 111B and 211B and can change the injection direction of the injection nozzles 110 and 210 by rotating. Even more specifically, the injection nozzles 110 and 210 are provided rotatable in the plane along the inclined surfaces 111B and 211B via predetermined rotation axes 111C and 211C, and can change the injection direction of the injection nozzles 110 and 210 by rotating in the plane.
[0020] Thus, in the spray containers 100 and 200, the bodies 101 and 201 have the installation parts 111 and 211 for providing the injection nozzles 110 and 210 at the tips 101A and 201A, and the installation parts 111 and 211 are configured to provide the injection nozzles 110 and 210 such that the injection direction of the injection nozzles 110 and 210 can be changed. Therefore, the injection direction of the injection nozzles 110 and 210 can be changed.
[0021] Furthermore, the installation sections 111 and 211 have installation surfaces 111A and 211A on which the injection nozzles 110 and 210 are installed, and the installation surfaces 111A and 211A have inclined surfaces 111B and 211B, and the injection nozzles 110 and 210 can change their injection direction by rotating, more specifically, the injection nozzles 110 and 210 are rotatably mounted along the inclined surfaces 111B and 211B, and the injection direction of the injection nozzles 110 and 210 can be changed by rotating, more specifically, the injection nozzles 110 and 210 are rotatably mounted in-plane along the inclined surfaces 111B and 211B via predetermined rotation axes 111C and 211C, and the injection direction of the injection nozzles 110 and 210 can be changed by rotating in-plane.
[0022] In other words, in a conventional spray container 300, as shown in Figure 5, the installation section 311 has an installation surface 311A for installing the spray nozzle 310, but the installation surface 311A does not have an inclined surface and only has a vertical surface 311B. Therefore, even if the spray nozzle 310 is rotated in-plane along the vertical surface 311B via a predetermined rotation axis 311C, it is not possible to change the spray direction of the spray nozzle 310. The present invention solves this problem.
[0023] Furthermore, as shown in Figure 6, it is preferable that the injection nozzles 110 and 210 are configured to be able to switch the injection on and off by rotating them in plane.
[0024] More specifically, the injection nozzles 110 and 210 are preferably configured to have a roughly rectangular prism shape and to allow switching between injection on and off by in-plane rotation. The roughly rectangular prism shape can be, for example, a roughly square prism shape (for example, when the ON side is facing upwards, the liquid is injected in the ON state, and when the OFF side is facing upwards, the liquid is not injected in the OFF state).
[0025] Thus, the injection nozzles 110 and 210 are configured to allow switching the injection on and off by rotating them in-plane, and the injection nozzles 110 and 210 have a roughly rectangular prism shape, and the injection nozzles 110 and 210 are configured to allow switching the injection on and off by rotating them in-plane, making it easy to switch the injection on and off, and allowing users to easily switch the injection on and off by hooking their fingers into the corners of the roughly rectangular prism shape.
[0026] The following describes the spray container 100 according to the first embodiment of the present invention and the spray container 200 according to the second embodiment.
[0027] [First Embodiment] A spray container 100 according to the first embodiment of the present invention will be described in detail with reference to Figures 1 and 2.
[0028] In the spray container 100 according to the first embodiment of the present invention, the inclined surface 111B is provided to face upward, and the spray nozzle 110 is provided on the inclined surface 111B facing upward and is configured to direct the spray direction upward by rotating in the plane.
[0029] Furthermore, the spray container 100 has an operating section 120, which is configured to allow air pressure to be applied to spray liquid from the spray nozzle 110 by gripping it. The operating section 120 is composed of an operating lever or an operating button.
[0030] Thus, the inclined surface 111B is positioned to face upward, and the injection nozzle 110 is mounted on the upward-facing inclined surface 111B and configured to rotate in-plane so that the injection direction can be directed upward.
[0031] [Second Embodiment] A spray container 200 according to a second embodiment of the present invention will be described in detail with reference to Figures 3 and 4.
[0032] In the spray container 200 according to the second embodiment of the present invention, the inclined surface 211B is provided so as to face downward, and the spray nozzle 210 is provided on the downward-facing inclined surface 211B and is configured to rotate in-plane so as to direct the spray direction downward.
[0033] Furthermore, the spray container 200 has an operating section 220, which is configured to allow air pressure to be applied to spray liquid from the spray nozzle 210 by gripping it. The operating section 220 is composed of an operating lever or an operating button.
[0034] Thus, the inclined surface 211B is positioned to face downward, and the injection nozzle 210 is positioned on the downward-facing inclined surface 211B and is configured to rotate in-plane so that the injection direction is directed downward.
[0035] It should be noted that the present invention is not limited to the embodiments described above and can be modified and applied in various ways.
[0036] In other words, in the embodiments described above, the spray container 100 is provided with an inclined surface 111B facing upward, and the spray nozzle 110 is provided on the inclined surface 111B facing upward and configured to direct the spray direction upward by in-plane rotation, or the spray container 200 is provided with an inclined surface 211B facing downward, and the spray nozzle 210 is provided on the inclined surface 211B facing downward and configured to direct the spray direction downward by in-plane rotation, but it is of course possible to direct the spray in any direction set by sideways or in-plane rotation.
[0037] Furthermore, it is also possible to orient the injection nozzles 110 and 210 in any direction other than by in-plane rotation.
[0038] In other words, the desired effect can be achieved even if the injection nozzles 110 and 210 are simply made capable of changing the injection direction by rotation, and the desired effect can also be achieved even if the injection nozzles 110 and 210 are simply provided to be rotatable along the inclined surfaces 111B and 211B, and the injection direction of the injection nozzles 110 and 210 is changed by rotation. However, a more preferable embodiment is one in which the injection nozzles 110 and 210 are provided to be rotatable in-plane along the inclined surfaces 111B and 211B via predetermined rotation axes 111C and 211C, and the injection direction of the injection nozzles 110 and 210 is changed by in-plane rotation.
[0039] Furthermore, while spray containers 100 and 200 are intended to be filled with liquids such as chemicals or detergents, the desired effect can also be achieved by filling them with various other liquids. [Explanation of symbols]
[0040] 100, 200, 300: Spray containers 101,201: Main unit 101A, 201A: Tip 110, 210, 310: Spray nozzles 111,211,311: Installation part 111A, 211A, 311A: Installation surface 111B, 211B: Inclined surface 311B: Vertical surface 111C, 211C, 311C: Rotation axis 120,220:Operation unit
Claims
1. A spray container having a spray nozzle at the tip of the main body from which liquid is ejected, The spray container is characterized in that the main body has a mounting portion at its tip for providing the spray nozzle, and the mounting portion is configured to provide the spray nozzle so that the spray direction of the spray nozzle can be changed.
2. The spray container according to claim 1, characterized in that the spray nozzle can change the spray direction by rotating the spray nozzle.
3. The spray container according to claim 1, characterized in that the installation portion has an installation surface on which the spray nozzle is provided, the installation surface has an inclined surface, the spray nozzle is rotatably provided along the inclined surface, and the spray direction of the spray nozzle can be changed by the rotation.
4. The spray container according to claim 1, characterized in that the spray nozzle is configured to be able to switch the spray on and off by rotating it.
5. The spray container according to claim 1, characterized in that the spray nozzle has a substantially rectangular prism shape and is configured to allow switching the spray on and off by rotating it.
6. The spray container according to claim 5, characterized in that the aforementioned roughly rectangular prism shape is a roughly square prism shape.
7. The spray container according to claim 1, characterized in that the inclined surface is provided so as to face upward, and the spray nozzle is provided on the inclined surface facing upward and is configured to rotate so as to direct the spray direction upward.
8. The spray container according to claim 1, characterized in that the inclined surface is provided so as to face downward, and the spray nozzle is provided on the inclined surface facing downward and is configured to rotate so as to direct the spray direction downward.
9. The spray container according to claim 1, characterized in that it has an operating part, and the operating part is configured to apply air pressure for spraying the liquid from the spray nozzle by gripping it.
10. The spray container according to claim 1, characterized in that the operating section is comprised of an operating lever or an operating button.
Citation Information
Patent Citations
Two-liquid curing type coating material
JP2014080458A