Quantitative medicine powder bottle

By installing baffles, springs, and locking devices on the powder bottle, quantitative dispensing of the powder is achieved, solving the problem of difficulty in dispensing powder and improving the accuracy and convenience of medication.

CN224061634UActive Publication Date: 2026-03-31邓洁
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-22
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing powder bottles make it difficult to ensure the precise dosage of the powder, leading to inaccurate medication and affecting treatment efficacy.

Method used

A quantitative powder bottle was designed. By setting a baffle, spring and locking element on the bottle cap, the powder can be dispensed quantitatively by the movement of the baffle and the elastic force of the spring. The sealing performance and convenience are improved by combining a magnetic ring and a sealing ring.

Benefits of technology

This method enables the quantitative dispensing of medicinal powder, improving the accuracy and convenience of medication and reducing waste of medicinal materials and medication errors.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224061634U_ABST
    Figure CN224061634U_ABST
Patent Text Reader

Abstract

The utility model belongs to the technical field of medicine bottles, and particularly relates to a quantitative medicine powder bottle. Comprising a bottle body, a bottle opening of the bottle body is in threaded connection with a bottle cap, the bottle cap is provided with a quantitative area communicated with the bottle opening, the bottle cap is hinged to a cover plate used for blocking the quantitative area, a fixing groove is formed in the bottle cap, a baffle used for separating the bottle opening from the quantitative area is arranged in the fixing groove, and powder outlet holes are formed in the baffle. A spring is arranged between the baffle and the fixing groove, a pressing plate extending out of the outer side of the bottle cap is arranged on the baffle, the pressing plate corresponds to the spring, and a locking piece used for fixing the position of the pressing plate is arranged on the bottle cap. According to the quantitative medicine powder taking device, medicine powder can be quantitatively taken, the medicine powder taking operation is convenient, and the accuracy and convenience of medicine taking are improved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of medicine bottle, especially a kind of quantitative medicine powder bottle. BACKGROUND

[0002] As the packaging container of medicine, medicine powder bottle is used to store and protect medicine powder, to ensure its stability and safety during storage and use, especially in the patient group needing long-term, regular medicine powder taking. When using medicine powder bottle, patients often manually estimate medicine powder dosage, so it is difficult to ensure the quantitative medicine powder amount each time, resulting in dosage deviation, and further affecting treatment effect. UTILITY MODEL CONTENTS

[0003] The utility model aims at providing a kind of quantitative medicine powder bottle, and the quantitative medicine powder bottle is used to take medicine powder quantitatively.

[0004] The quantitative medicine powder bottle includes bottle body, bottle mouth of bottle body is threadedly connected with bottle cap, bottle cap is connected with the quantitative area of bottle mouth, hinged cover plate for plugging quantitative area is arranged on bottle cap, fixed slot is formed in bottle cap, and baffle for blocking bottle mouth and quantitative area is arranged in fixed slot, powder outlet hole is formed in baffle, spring is arranged between baffle and fixed slot, pressing plate is arranged on baffle and extends outside bottle cap, pressing plate and spring correspond to each other, and locking piece for fixing the position of pressing plate is arranged on bottle cap.

[0005] Further, the locking piece includes clamping plate slidably connected to the bottle cap, and clamping groove is formed in the pressing plate and correspondingly clamped with the clamping plate.

[0006] Further, annular grooves are formed in the side walls of the cover plate and the bottle cap, and magnetic rings are embedded in the annular grooves and attract each other.

[0007] Further, the inner wall of the bottle mouth of the bottle body is in the shape of a funnel.

[0008] Further, the diameter of the bottle mouth of the bottle body is consistent with the diameter of the powder outlet hole.

[0009] Further, anti-slip patterns are arranged on the outer side wall of the clamping plate.

[0010] Further, a sealing ring is arranged on the cover plate.

[0011] Compared with the prior art, the utility model has the following beneficial effects:

[0012] The utility model discloses a quantitative medicine bottle, which comprises a bottle body, a bottle cap, a spring, a cover plate, a baffle, a quantitative area and a powder outlet hole. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 It is the structure schematic diagram of the utility model;

[0014] Figure 2 It is the utility model three-dimensional view;

[0015] Figure 3 It is the utility model explosion map;

[0016] Names of components in the drawing: 1, bottle body; 2, bottle cap; 3, spring; 4, cover plate; 5, baffle; 6, quantitative area; 7, powder outlet hole; 8, magnetic ring; 9, pressing plate; 10, clamping plate. DETAILED DESCRIPTION

[0017] The utility model will be further described below by specific embodiment in combination with the drawings, but not to limit the utility model, any modification, equivalent replacement, improvement etc. that is made within the spirit and principles of the utility model should be included in the protection scope of the utility model. EMBODIMENT

[0018] The quantitative medicine bottle described in the embodiment, as shown in Figure 1 , Figure 2 and Figure 3 , comprises a bottle body 1, a bottle cap 2 is threadedly connected at the bottle mouth of the bottle body 1, the bottle cap 2 is provided with a quantitative area 6 communicated with the bottle mouth, the bottle cap 2 is hingedly provided with a cover plate 4 for plugging the quantitative area 6, the bottle cap 2 is provided with a fixing groove, a baffle 5 for blocking the bottle mouth and the quantitative area 6 is arranged in the fixing groove, the baffle 5 is provided with a powder outlet hole 7, a spring 3 is arranged between the baffle 5 and the fixing groove, the baffle 5 is provided with a pressing plate 9 extending outside the bottle cap 2, the pressing plate 9 corresponds to the spring 3, the bottle cap 2 is provided with a locking member for fixing the position of the pressing plate 9.

[0019] The bottle cap 2 is threaded onto the bottle mouth of the bottle body 1. The bottle cap 2 has a metering area 6 that is open from top to bottom. The bottle cap 2 is hinged to a cover plate 4 by a hinge or hinge. The cover plate 4 seals the metering area 6. A slot can be opened on the bottle cap 2. A corresponding plug is fixed on the cover plate 4 to the slot. The plug and the slot are connected to each other to fix the cover plate 4 and ensure that the powder entering the metering area 6 is sealed.

[0020] A fixing groove is provided on the side wall of the bottle body 1, and a baffle 5 is provided in the fixing groove. A powder outlet hole 7 is provided on the baffle 5. The diameter of the bottle mouth of the bottle body 1 is the same as the diameter of the powder outlet hole 7. The baffle 5 moves in the fixing groove. When the baffle 5 moves to the bottle mouth, the powder outlet hole 7 connects the bottle mouth and the quantitative area 6. The bottle body 1 is flipped so that the powder in the bottle body 1 passes through the bottle mouth and the powder outlet hole 7 and enters the quantitative area 6 to collect the powder and ensure that the patient takes the correct amount of powder.

[0021] A spring 3 is installed between the baffle 5 and the inner wall of the fixing groove. One end of the spring 3 is welded to the inner wall of the fixing groove, and the other end is welded to the side wall of the baffle 5. A pressing plate 9 is welded or glued to the other side of the baffle 5. The pressing plate 9 extends out of the fixing groove and is located outside the bottle cap 2. The positions of the pressing plate 9 and the spring 3 correspond to each other. A locking element is provided on the pressing plate 9. The locking element is a spring plunger. The spring plunger is welded or glued to the side wall of the pressing plate 9. Two slots are opened on the inner wall of the fixing groove to engage with the spring plunger. In use, pressing the pressing plate 9 moves it into the fixing groove, thereby moving the baffle 5 in the fixing groove. The spring 3 is compressed and deformed. The powder outlet 7 on the baffle 5 connects the bottle mouth to the metering area 6. At this time, the end of the spring plunger engages with the slots, fixing the positions of the cap 4 and the baffle 5. The powder in the bottle 1 enters the metering area 6 through the powder outlet 7 after passing through the bottle mouth, so that the powder is filled. Within the metering zone 6, the cover plate 4 is released, and under the elastic force of the spring 3, the baffle 5 is pushed to move, causing the cover plate 4 to move outward of the bottle cap 2. The end of the spring plunger disengages from the slot. When the baffle 5 seals the bottle opening and metering zone 6 again, the spring plunger engages with another slot, fixing the cover plate 4 again. This ensures good sealing of the powder falling into the metering zone 6. When the powder is needed, the cover plate 4 is opened, and the powder in the metering zone 6 is poured out for easy use by the patient. The amount of powder in the metering zone 6 is the amount the patient needs for each use. By metering the powder, the patient no longer needs to remember complex dosages or use additional measuring tools. They can easily obtain the required amount of powder by simply following the design of the bottle 1, improving the convenience of medication and reducing medication errors caused by improper operation. Metered dispensing also avoids the waste of medicines caused by overdose.

[0022] In actual use, the locking mechanism is used to loosen the fixation of the cover plate 4, and the cover plate 4 is pressed to move the baffle 5 in the fixed groove, so that the powder outlet 7 on the baffle 5 is connected to the bottle mouth of the bottle body 1 and the metering area 6 in the bottle cap 2. Then, the bottle body 1 is rotated so that the bottle cap 2 is facing down, and the powder in the bottle body 1 falls into the metering area 6 after passing through the powder outlet 7 through the bottle mouth, so that the powder is metered and used. Then, the cover plate 4 is loosened, so that the baffle 5 and the cover plate 4 are moved under the elastic force of the spring 3. The baffle 5 seals the bottle mouth and the metering area 6 again. Then, the cover plate 4 is opened and rotated around the hinge point to pour out the powder in the metering area 6, which makes it convenient for patients to use the powder. The operation of taking medicine is more convenient and improves the accuracy and convenience of medication.

[0023] This embodiment further explains the technology. The locking component includes a locking plate 10 slidably connected to the bottle cap 2. A locking groove is provided on the pressing plate 9 to engage with the locking plate 10. A sliding groove is provided on the outer wall of the bottle cap 2, and a slider is provided in the sliding groove to slide with it. The locking plate 10 is welded or glued on the slider. A locking groove is provided on the pressing plate 9 to engage with the locking plate 10. When the powder outlet 7 connects the bottle mouth and the metering area 6, the locking groove on the cover plate 4 engages with the locking plate 10. Then, the locking plate 10 is moved to release its restraint on the cover plate 4. Under the elastic force of the spring 3, the baffle 5 and the cover plate 4 are pushed to move. The baffle 5 blocks the bottle mouth and the metering area 6. The locking plate 10 is moved again to engage with it, thereby fixing the position of the locking plate 10 again.

[0024] This embodiment further illustrates the technology. Both the cover plate 4 and the bottle cap 2 have annular grooves on their sidewalls where they fit together, and magnetic rings 8 that attract each other are embedded in these grooves. When the cover plate 4 rotates to a horizontal position via the hinge point and fits against the bottle cap 2, the two magnetic rings 8 attract each other, thus fixing the cover plate 4 inside the bottle cap 2 and sealing the powder in the metering area 6 to prevent leakage. Furthermore, a sealing ring is provided on the cover plate 4, which is adhered to the outer wall of the cover plate 4. The inner wall of the sealing ring fits against the outer wall of the bottle cap 2, making the connection between the cover plate 4 and the bottle cap 2 more airtight and preventing the powder from getting damp.

[0025] This embodiment further illustrates the technology. The inner wall of the bottle opening of the bottle body 1 has a funnel-shaped structure. When the bottle opening of the bottle body 1 is facing the same direction, the funnel-shaped inner wall of the bottle opening facilitates the powder to fall into the metering area 6 along the inclined inner wall, so as to avoid residual powder in the bottle body 1 and avoid waste of powder.

[0026] This embodiment further illustrates the technology. The diameter of the bottle opening 1 is the same as the diameter of the powder outlet 7. When the powder is poured out, because the diameters of the bottle opening and the powder outlet 7 are the same, the powder can flow out at a relatively uniform and controllable speed. This avoids the powder from suddenly gushing out in large quantities due to an excessively large bottle opening, resulting in taking too much or too little. By maintaining the consistency of the diameters of the bottle opening and the powder outlet 7, patients can more accurately control the amount of powder taken each time, thereby ensuring the accuracy and consistency of medication use. It also helps to reduce powder waste and contamination, and improve the efficiency of drug use.

[0027] This embodiment further illustrates the technology. The outer wall of the card plate 10 is provided with anti-slip texture; several anti-slip strips can be glued to the outer wall of the card plate 10, or several anti-slip grooves can be opened on the card plate 10 to increase the friction between the card plate 10 and the hand, so as to move the card plate 10 better and fix the pressing plate 9 better.

Claims

1. A quantitative powder bottle, comprising a bottle body (1), a bottle cap (2) threadedly connected to the bottle mouth of the bottle body (1), a quantitative area (6) communicating with the bottle mouth on the bottle cap (2), and a cover plate (4) hinged to the bottle cap (2) for sealing the quantitative area (6), characterized in that: The bottle cap (2) is provided with a fixing groove, a baffle (5) for blocking the bottle opening and the quantitative area (6) is arranged in the fixing groove, the baffle (5) is provided with a powder outlet hole (7), a spring (3) is arranged between the baffle (5) and the fixing groove, a pressing plate (9) extending outside the bottle cap (2) is arranged on the baffle (5), the pressing plate (9) corresponds to the spring (3), and a locking member for fixing the position of the pressing plate (9) is arranged on the bottle cap (2).

2. The metered dose powder bottle of claim 1, wherein: The locking member comprises a clamping plate (10) slidably connected to the bottle cap (2), and a clamping groove corresponding to the clamping plate (10) is arranged on the pressing plate (9).

3. The metered dose powder bottle of claim 1, wherein: The side wall of the cover plate (4) and the bottle cap (2) is provided with an annular groove, and a magnetic ring (8) is embedded in the annular groove.

4. The metered dose powder bottle of claim 1, wherein: The inner wall of the bottle opening of the bottle body (1) is in a funnel-shaped structure.

5. The metered dose powder bottle of claim 1, wherein: The diameter of the bottle opening of the bottle body (1) is consistent with the diameter of the powder outlet hole (7).

6. The metered dose powder bottle of claim 2, wherein: The outer side wall of the clamping plate (10) is provided with an anti-skid pattern.

7. The metered dose powder bottle of claim 3, wherein: The cover plate (4) is provided with a sealing ring.