WO2020147706A2 - 一种倒转定量容器 - Google Patents

一种倒转定量容器 Download PDF

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Publication number
WO2020147706A2
WO2020147706A2 PCT/CN2020/071942 CN2020071942W WO2020147706A2 WO 2020147706 A2 WO2020147706 A2 WO 2020147706A2 CN 2020071942 W CN2020071942 W CN 2020071942W WO 2020147706 A2 WO2020147706 A2 WO 2020147706A2
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WO
WIPO (PCT)
Prior art keywords
liquid storage
container body
storage cylinder
cover
cavity
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PCT/CN2020/071942
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English (en)
French (fr)
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WO2020147706A3 (zh
Inventor
李红彪
Original Assignee
中山市华宝勒生活用品实业有限公司
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Application filed by 中山市华宝勒生活用品实业有限公司 filed Critical 中山市华宝勒生活用品实业有限公司
Publication of WO2020147706A2 publication Critical patent/WO2020147706A2/zh
Publication of WO2020147706A3 publication Critical patent/WO2020147706A3/zh

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  • the invention relates to a packaging container, in particular to an inverted quantitative container.
  • Packaging containers are designed for various industries to protect goods. They are convenient to store and use, facilitate transportation, promote sales, prevent environmental pollution and prevent safety accidents. Different industries and different products need to adopt corresponding technical specifications. Packaging container. Among them, the existing quantitative pouring container has a relatively complicated structure, which makes the manufacturing cost high, and has the defects that the quantitative pouring operation is complicated and not convenient for people to use.
  • the present invention is proposed in view of the defects existing in the prior art.
  • the technical problem to be solved by the present invention is to provide an inverted quantitative container.
  • the container body When in use, the container body is inverted, so that the substance in the internal cavity of the container can enter the liquid storage cavity accordingly, and the user can quantify according to the needs of use, that is, when entering When the substance in the liquid storage cavity meets the requirements, the container body is erected again, and then the cover is opened, and the quantitative substance in the liquid storage cavity can be poured out.
  • the present invention has reasonable design, simple structure, and Easy to use features.
  • the present invention is an inverted quantitative container, comprising a container body 1 and a cover 2.
  • the cover 2 is detachably connected to the mouth of the container body 1, and the upper part of the inner cavity of the container body 1 is provided with a container
  • the main body 1 has a liquid storage chamber 3 communicating with the mouth.
  • a conduit 31 is provided in the liquid storage chamber 3. The lower end of the conduit 31 penetrates the bottom of the liquid storage chamber 3, and the upper end of the conduit 31 extends to the mouth of the container body 1 and is connected with The liquid storage cavity 3 is communicated, so that when the container body 1 is upside down, the substance in the inner cavity of the container body 1 enters the liquid storage cavity 3 through the conduit 31.
  • the cover 2 is provided with a plug 21 for connecting with the upper port of the pipe 31, the upper side of the pipe 31 is provided with a guide hole 32, and the side wall of the liquid storage chamber 3 is provided There are scale marks.
  • the side of the liquid storage chamber 3 is provided with a liquid pouring port 33 for exporting substances in the liquid storage chamber 3 when the liquid storage chamber 3 is separated from the container body 1.
  • the side wall of the cavity 3 is provided with scale marks.
  • the present invention also provides an inverted quantitative container, comprising a container body 1 and a cover 2, the cover 2 is detachably connected to the mouth of the container body 1, and the inner cavity of the container body 1 is provided with a liquid storage cylinder 34 with an open upper end
  • a liquid storage cavity 3 is formed in the liquid storage cylinder 34
  • an inner ring 22 is formed in the cover 2 extending downwards
  • a guide hole 32 is provided on the side of the opening of the liquid storage cylinder 34
  • the liquid storage cylinder 34 The upper opening is inserted into the inner ring 22 and when the cover 2 moves upward relative to the mouth of the container body 1, the cover 2 can drive the liquid storage cylinder 34 to move upward so that the guide hole 32 is blocked, and when the cover 2 and the container When the mouth of the body 1 is connected and moved downward, the cover 2 can press the liquid storage cylinder 34 and move downward so that the guide hole 32 is opened and communicated with the inner cavity of the container body 1.
  • the liquid storage cylinder 34 is connected with a pipe 31 for communicating the liquid storage cavity 3 and the inner cavity of the container body 1, and the upper end of the pipe 31 extends upward and is higher than the guide hole 32.
  • the lower end of the pipe 31 extends downward and is close to the bottom of the inner cavity of the container body 1.
  • the cover 2 is also provided with a sealing baffle 23 that can block the guide hole 32 when the cover 2 moves relative to the liquid storage cylinder 34.
  • the liquid storage cavity 3 side The wall is provided with scale marks.
  • the liquid storage barrel 34 is provided with two guide holes 32, and the side wall of the liquid storage cavity 3 is provided with scale marks.
  • the inner ring 22 is fixedly connected to the liquid storage barrel 34 so that the liquid storage barrel 34 and the cover 2 move simultaneously, and the lower end of the liquid storage barrel 34 is open and is provided with a removable bottom cover 341 .
  • the inner wall of the inner cavity of the container body 1 is provided with a sealing protrusion that can block or open the guide hole 32 when the liquid storage cylinder 34 and the cover 2 move simultaneously with respect to the container body 1.
  • Block 11
  • the upper opening of the liquid storage cylinder 34 is provided with a driven rotation stop block 342, and the cover 2 is provided with a driven rotation stop block 342 for pushing the driven rotation stop block 342 so that the liquid storage tube 34 faces
  • the container body 1 rotates to block or open the active stop block 343 of the guide hole 32, and the side wall of the liquid storage chamber 3 is provided with scale marks.
  • the upper opening of the liquid storage cylinder 34 is provided with a nest 344 with upper and lower openings so as to be rotatable relative to the liquid storage cylinder 34.
  • the side of the nest 344 is provided with the side surface of the liquid storage cylinder 34.
  • the through hole or notch corresponding to the upper guide hole 32, the upper opening of the nest 344 is provided with a driven rotation stop block 342, and the cover 2 is provided with a driven rotation stop block 342 for pushing the driven rotation stop block 342 to make the nesting
  • the 344 rotates relative to the liquid storage cylinder 34 to block or align the through hole or notch of the nest 344 with the guide hole 32 to open the active stop block 343, and the side wall of the liquid storage cavity 3 is provided with scale marks.
  • the present invention also provides an inverted quantitative container, comprising a container body 1, a cover 2 and a connecting seat 4, the connecting seat 4 is connected to the mouth of the container body 1, and the lower mouth of the connecting seat 4 is placed at the mouth of the container body 1.
  • the cover 2 is detachably connected to the upper mouth of the connecting seat 4, and the inner cavity of the container body 1 is relatively fixedly provided with a liquid storage cylinder 34 with an upper end opening, and the liquid storage cylinder 34
  • a liquid storage cavity 3 is formed in the liquid storage cylinder 34
  • the upper opening side of the liquid storage cylinder 34 is provided with a guide hole 32
  • the upper opening of the liquid storage cylinder 34 is sleeved on the outer side wall of the lower end of the connecting seat 4, and when the connecting seat 4 is opposite to the container body
  • the guide hole 32 can be aligned with the through hole or notch at the lower end of the connecting seat 4 to connect the liquid storage cavity 3 with the inner cavity of the container body 1, or stagger and seal the guide hole 32.
  • the liquid storage cylinder 34 is provided with a conduit 31 communicating with the liquid storage cavity 3 and the inner cavity of the container body 1, and the lower end of the conduit 31 penetrates the bottom of the liquid storage cavity 3 and extends to the container At the bottom of the inner cavity of the body 1, the upper end of the conduit 31 extends to the mouth of the container body 1, and the side wall of the liquid storage cavity 3 is provided with scale marks.
  • the present invention further provides an inverted quantitative container, comprising a container body 1, a cover 2 and a connecting seat 4.
  • the connecting seat 4 is connected to the mouth of the container body 1, and the cover 2 can be movably connected to the upper port of the connecting seat 4.
  • the lower mouth of the connecting seat 4 is placed in the mouth of the container body 1 and is relatively fixedly connected with a liquid storage tube 34.
  • the liquid storage tube 34 is formed with a liquid storage cavity 3, and the upper side of the liquid storage tube 34 is provided with There is a guide hole 32, the cover 2 extends downwards to form an inner ring 22 inserted into the liquid storage cavity 3, and the inner ring 22 is provided with a through hole or notch on the side surface.
  • the cover 2 and the inner ring 22 are connected to the seat 4 and the liquid storage cylinder 34 can make the guide hole 32 align with the through hole or notch on the side of the inner ring 22 to connect the liquid storage cavity 3 with the inner cavity of the container body 1 or stagger and block the guide hole 32.
  • the liquid storage cylinder 34 is provided with a conduit 31 communicating with the liquid storage cavity 3 and the inner cavity of the container body 1, and the lower end of the conduit 31 penetrates the bottom of the liquid storage cavity 3 and extends to the container At the bottom of the inner cavity of the body 1, the upper end of the conduit 31 extends to the mouth of the container body 1, and the side wall of the liquid storage cavity 3 is provided with scale marks.
  • the present invention also provides an inverted quantitative container, comprising a container body 1, a cover 2 and a connecting seat 4, the connecting seat 4 is connected to the mouth of the container body 1, and the cover 2 can be movably connected to the upper port of the connecting seat 4.
  • the lower mouth of the connecting seat 4 is placed in the mouth of the container body 1 and is relatively fixedly connected with a liquid storage tube 34.
  • the liquid storage tube 34 is formed with a liquid storage cavity 3, and the upper side of the liquid storage tube 34 is provided with There is a guide hole 32, and the inner wall of the inner cavity of the container body 1 is provided with a sealing protrusion 11 that can block or open the guide hole 32 when the connecting seat 4 and the liquid storage cylinder 34 move relative to the container body 1.
  • the liquid storage cylinder 34 is provided with a conduit 31 that communicates with the liquid storage cavity 3 and the inner cavity of the container body 1, and the side wall of the liquid storage cavity 3 is provided with graduation marks.
  • the lower end of 31 penetrates the bottom of the liquid storage chamber 3 and extends to the bottom of the inner cavity of the container body 1, and the upper end of the pipe 31 extends to the mouth of the container body 1.
  • the present invention also provides an inverted quantitative container, which is characterized in that it comprises a container body 1, a cover 2 and a liquid storage cylinder 34.
  • the cover 2 can be movably connected to the mouth of the container body 1, and the liquid storage cylinder 34 is formed
  • There is a liquid storage cavity 3 with an open upper end the liquid storage cylinder 34 is placed in the inner cavity of the container body 1, the upper side of the liquid storage cylinder 34 is provided with a guide hole 32, and the liquid storage cylinder 34 is provided between the container body 1.
  • the elastic member 35 when the cover 2 is separated from the mouth of the container body 1, the elastic member 35 elastically presses the liquid storage cylinder 34 and moves upward relative to the container body 1, so that the guide hole 32 is blocked by the inner side wall of the container body 1, and When the cover 2 is connected to the mouth of the container body 1, the cover 2 presses the liquid storage cylinder 34 and moves downward relative to the container body 1, and the elastic member 35 is elastically compressed, so that the guide hole 32 communicates with the inner cavity of the container body 1 .
  • the liquid storage cylinder 34 is provided with a conduit 31 that communicates with the liquid storage cavity 3 and the inner cavity of the container body 1, and the side wall of the liquid storage cavity 3 is provided with graduation marks.
  • the lower end of 31 penetrates the bottom of the liquid storage chamber 3 and extends to the bottom of the inner cavity of the container body 1, and the upper end of the pipe 31 extends to the mouth of the container body 1.
  • the elastic member 35 is an elastic piece or a spring arranged between the mouth of the container body 1 and the outside of the upper port of the liquid storage cylinder 34.
  • the elastic member 35 is arranged between the bottom of the inner cavity of the container body 1 and the bottom of the liquid storage cylinder 34.
  • the elastic member 35 is an elastic corrugated tube section arranged on the tube 31 and located outside the liquid storage cylinder 34 so that the lower end of the elastic corrugated tube section or the tube 31 elastically abuts against the bottom of the container body 1.
  • the inverted quantitative container of the present invention has the following advantages:
  • a catheter is arranged in the liquid storage cavity, and air can be conducted during use, so that the substance entering the liquid storage cavity is smooth and fast.
  • a removable bottom cover is provided at the bottom of the liquid storage chamber, that is, when the liquid storage chamber is separated from the container body, the bottom cover can be opened to quickly put the liquid in the liquid storage chamber The substance inside is poured out.
  • the cover and the liquid storage cavity can be integrally designed and formed.
  • an elastic member is provided between the container body and the liquid storage cylinder, and the elastic member generates axial elastic force.
  • Elastic top pressure reservoir is provided between the container body and the liquid storage cylinder, and the elastic member generates axial elastic force.
  • Figure 1 is a cross-sectional view of a first specific embodiment of the present invention
  • Figure 2 is one of the cross-sectional views of the second specific embodiment of the present invention.
  • Figure 3 is the second cross-sectional view of the second specific embodiment of the present invention.
  • Figure 4 is a cross-sectional view of a third specific embodiment of the present invention.
  • Figure 5 is a cross-sectional view of a fourth specific embodiment of the present invention.
  • Fig. 6 is one of the cross-sectional views of the fifth specific embodiment of the present invention.
  • Figure 8 is a cross-sectional view of a sixth specific embodiment of the present invention.
  • Figure 9 is a cross-sectional view of a seventh specific embodiment of the present invention.
  • Figure 10 is a cross-sectional view of an eighth specific embodiment of the present invention.
  • Figure 11 is a cross-sectional view of a ninth specific embodiment of the present invention.
  • Figure 12 is a cross-sectional view of a tenth specific embodiment of the present invention.
  • Figure 13 is a cross-sectional view of an eleventh specific embodiment of the present invention.
  • Figure 14 is a cross-sectional view of a twelfth specific embodiment of the present invention.
  • Figure 17 is a cross-sectional view of a fifteenth specific embodiment of the present invention.
  • Figure 18 is a cross-sectional view of a sixteenth specific embodiment of the present invention.
  • Figure 19 is a cross-sectional view of a seventeenth specific embodiment of the present invention.
  • Figure 21 is a cross-sectional view of a nineteenth specific embodiment of the present invention.
  • Figure 22 is one of the cross-sectional views of the twentieth specific embodiment of the present invention.
  • Figure 23 is the second cross-sectional view of the twentieth specific embodiment of the present invention.
  • Figure 24 is a cross-sectional view of a twenty-first specific embodiment of the present invention.
  • Figure 25 is a cross-sectional view of a twenty-second specific embodiment of the present invention.
  • Figure 26 is a cross-sectional view of the twenty-third specific embodiment of the present invention.
  • Figure 27 is a cross-sectional view of a twenty-fourth specific embodiment of the present invention.
  • Figure 28 is one of the cross-sectional views of the twenty-fifth specific embodiment of the present invention.
  • 29 is the second cross-sectional view of the twenty-fifth specific embodiment of the present invention.
  • Figure 30 is a cross-sectional view of the twenty-sixth specific embodiment of the present invention.
  • Figure 31 is a cross-sectional view of the twenty-seventh specific embodiment of the present invention.
  • Figure 34 is one of the cross-sectional views of the twenty-ninth specific embodiment of the present invention.
  • 35 is the second cross-sectional view of the twenty-ninth specific embodiment of the present invention.
  • 36 is a schematic diagram of the connection structure of the twenty-ninth type of the medium liquid storage cylinder and the elastic member of the present invention.
  • Fig. 37 is a cross-sectional view of a thirtieth specific embodiment of the present invention.
  • an inverted quantitative container of the present invention includes a container body 1 and a cover 2.
  • the cover 2 is detachably connected to the mouth of the container body 1, and the upper part of the inner cavity of the container body 1 is provided with
  • the liquid storage cavity 3 communicating with the mouth of the container body 1 is provided with a conduit 31 in which the lower end of the conduit 31 penetrates the bottom of the liquid storage cavity 3, and the upper end of the conduit 31 extends to the mouth of the container body 1 And it communicates with the liquid storage cavity 3 so that when the container body 1 is upside down, the substance in the inner cavity of the container body 1 enters the liquid storage cavity 3 through the conduit 31.
  • the container body upside down When in use, turn the container body upside down, and the substance in the container body can enter the liquid storage cavity through the guide hole.
  • the user can also quantify according to the needs of use, that is, when the substance in the liquid storage cavity meets the needs of the user, the The container body is upright, and then the cover is opened, and the quantitative substance can be poured. Therefore, it has the characteristics of reasonable design, simple structure, convenient use and low manufacturing cost.
  • the liquid storage chamber 3 is provided with two catheters 31.
  • one catheter is the liquid inlet tube and the other is the airway tube, so that the substance in the internal cavity of the container can enter the storage smoothly. In the liquid cavity.
  • the cover 2 is provided with a plug 21 for connecting with the upper port of the catheter 31, and the upper side of the catheter 31 is provided with a guide hole 32.
  • the side wall of the liquid chamber 3 is provided with scale marks.
  • the side of the liquid storage chamber 3 is provided with a pouring port 33 for the material in the liquid storage chamber 3 to be discharged when the liquid storage chamber 3 is separated from the container body 1. Also, for the convenience of the user For quantification, the side wall of the liquid storage chamber 3 is provided with scale marks.
  • the present invention also provides an inverted quantitative container, comprising a container body 1 and a cover 2.
  • the cover 2 is detachably connected to the mouth of the container body 1, and the inner cavity of the container body 1
  • a liquid storage cylinder 34 with an open upper end, a liquid storage cavity 3 is formed in the liquid storage cylinder 34, a sealing ring for sealingly fitting with the mouth of the container body is provided on the side of the liquid storage cylinder 34, and the inside of the cover 2 extends downward
  • An inner ring 22 is formed.
  • the opening side of the liquid storage cylinder 34 is provided with a guide hole 32. The upper opening of the liquid storage cylinder 34 is inserted into the inner ring 22 and is sealed when the cap 2 moves upward relative to the mouth of the container body 1.
  • the cover 2 can drive the liquid storage cylinder 34 to move upward so that the guide hole 32 is blocked, and when the cover 2 is connected to the mouth of the container body 1 and moves downward, the cover 2 can press the liquid storage cylinder 34 to move downward
  • the guide hole 32 is opened and communicated with the inner cavity of the container body 1. Initially, the guide hole connects the liquid storage cavity and the internal cavity of the container body. When in use, the container body is inverted, and the substance in the liquid storage cavity enters the liquid storage cavity through the guide hole, and then the container body is erected and the lid is rotated.
  • the cover 2 can drive the liquid storage cylinder 34 to move upward so that the guide hole 32 is blocked, and finally the substance in the liquid storage cavity can be poured out.
  • scale marks are provided on the side wall of the liquid storage cavity 3.
  • the liquid storage cylinder 34 is connected with a conduit for connecting the liquid storage cavity 3 and the inner cavity of the container body 1 31, and the upper end of the pipe 31 extends upward and higher than the guide hole 32, and the lower end of the pipe 31 extends downward to be close to the bottom of the inner cavity of the container body 1, so the pipe plays a role of exhaust.
  • the cover 2 is also provided with a sealing baffle 23 that can block the guide hole 32 when the cover 2 moves relative to the liquid storage cylinder 34. When the cover is rotated, it can be blocked accordingly. Hold or open the pilot hole.
  • the liquid storage cylinder 34 is provided with two guide holes 32, one of which is the liquid inlet.
  • the other guide hole is the air guide hole.
  • the inner ring 22 is fixedly connected to the liquid storage cylinder 34 so that the liquid storage cylinder 34 and the cover 2 move simultaneously, that is, the liquid storage cylinder 34 is integrated with the cover 2 It is designed and formed.
  • the lower end of the liquid storage cylinder 34 is open and is provided with a detachable bottom cover 341. When in use, the liquid storage cylinder is taken out of the container body, and then the bottom cover is opened to pour out the substance in the liquid storage cavity.
  • the inner wall of the inner cavity of the container body 1 is provided with a guide hole 32 that can block the guide hole 32 when the liquid storage cylinder 34 and the cover 2 move simultaneously with respect to the container body 1. Or open the sealing bump 11.
  • rotating the cover can make the liquid storage cylinder rotate relative to the container body, thereby opening or blocking the guide hole.
  • the upper opening of the liquid storage cylinder 34 is provided with a driven rotation stop block 342, and the cover 2 is provided with a driven rotation stop block 342 for pushing the driven rotation stop block 342 so that the liquid storage tube 34 is opposite to the container.
  • the main body 1 rotates to block or open the active rotation stop block 343 of the guide hole 32.
  • the upper end opening of the liquid storage cylinder 34 is provided with a nest 344 with upper and lower openings so as to be rotatable relative to the liquid storage cylinder 34.
  • the through hole or notch corresponding to the guide hole 32, the upper opening of the nest 344 is provided with a driven stop block 342, and the cover 2 is provided with a driven stop block 342 for pushing the driven stop block 342 so that the nest 344 is opposite
  • the liquid storage cylinder 34 rotates to block or align the through hole or notch of the nest 344 with the guide hole 32 to open the active stop block 343.
  • the present invention also provides an inverted quantitative container, comprising a container body 1, a cover 2 and a connecting seat 4.
  • the connecting seat 4 is connected to the mouth of the container body 1, and the connecting seat 4 is lower
  • the mouth is placed in the mouth of the container body 1 and is provided with a through hole or notch
  • the cover 2 is detachably connected to the upper mouth of the connecting seat 4, and the inner cavity of the container body 1 is relatively fixedly provided with a liquid storage cylinder with an open upper end 34.
  • a liquid storage cavity 3 is formed in the liquid storage cylinder 34, a guide hole 32 is provided on the open side of the liquid storage cylinder 34, and the upper opening of the liquid storage cylinder 34 is sleeved on the outer side wall of the lower end of the connecting seat 4, And when the connecting seat 4 is movable relative to the container body 1 and the liquid storage cylinder 34, the guide hole 32 can be aligned with the through hole or notch at the lower end of the connecting seat 4 to connect the liquid storage cavity 3 with the inner cavity of the container body 1, or stagger the sealing. Block the guide hole 32.
  • the liquid storage cylinder 34 is provided with a conduit 31 communicating with the liquid storage cavity 3 and the inner cavity of the container body 1, and the lower end of the conduit 31 penetrates the bottom of the liquid storage cavity 3 and It extends to the bottom of the inner cavity of the container body 1, and the upper end of the pipe 31 extends to the mouth of the container body 1.
  • the present invention further provides an inverted quantitative container, comprising a container body 1, a cover 2 and a connecting seat 4, the connecting seat 4 is connected to the mouth of the container body 1, and the cover 2 can be movably connected
  • the lower mouth of the connecting seat 4 is placed in the mouth of the container body 1 and is relatively fixedly connected with a liquid storage cylinder 34, and a liquid storage cavity 3 is formed in the liquid storage cylinder 34.
  • the upper side of the liquid cylinder 34 is provided with a guide hole 32, the cover 2 extends downward to form an inner ring 22 inserted into the liquid storage cavity 3, and the side of the inner ring 22 is provided with a through hole or a gap.
  • the guide hole 32 can be aligned with the through holes or notches on the side of the inner ring 22 to connect the liquid storage cavity 3 with the inner cavity of the container body 1, or stagger and seal it.
  • Guide hole 32 When in use, rotate the cover so that the guide hole is aligned with the through hole or notch on the side of the inner ring 22, and then the container body is inverted, and the substance in the liquid storage cavity enters the liquid storage cavity through the guide hole, and then the container body is erected. Rotate the connecting seat, take out the liquid storage cylinder, and then open the cover to pour out the material in the liquid storage cavity. In order to facilitate quantification, scale marks are provided on the side wall of the liquid storage cavity 3.
  • the liquid storage cylinder 34 is provided with a conduit 31 communicating with the liquid storage cavity 3 and the inner cavity of the container body 1, and the lower end of the conduit 31 penetrates the bottom of the liquid storage cavity 3 and extends into the container body 1. At the bottom of the cavity, the upper end of the conduit 31 extends to the mouth of the container body 1.
  • the present invention also provides an inverted quantitative container, comprising a container body 1, a cover 2 and a connecting seat 4, the connecting seat 4 is connected to the mouth of the container body 1, and the cover 2 can be It is movably connected to the upper port portion of the connecting seat 4, and the lower mouth of the connecting seat 4 is placed in the mouth of the container body 1 and is relatively fixedly connected with the liquid storage cylinder 34, that is, the connecting seat 4 and the liquid storage cylinder are integrally designed and formed.
  • the liquid cylinder 34 is formed with a liquid storage cavity 3, the upper side of the liquid storage cylinder 34 is provided with a guide hole 32, and the inner wall of the inner cavity of the container body 1 is provided with a connecting seat 4 and the liquid storage cylinder 34 relative to the container body 1.
  • the guide hole 32 can be blocked or opened by the sealing protrusion 11.
  • rotate the connecting seat so that the guide hole and the sealing protrusion are staggered and opened, and then the container body is turned upside down to make the substance in the container body enter the liquid storage cavity through the guide hole, and then rotate the connecting seat so that the guide hole and The sealing protrusions are aligned and blocked, and then the container body is erected, and the cover is opened to pour out the substance in the liquid storage cavity.
  • scale marks are provided on the side wall of the liquid storage cavity 3.
  • the liquid storage cylinder 34 is provided with a conduit 31 communicating with the liquid storage cavity 3 and the inner cavity of the container body 1, and the lower end of the conduit 31 penetrates the liquid storage.
  • the bottom of the cavity 3 extends to the bottom of the inner cavity of the container body 1, and the upper end of the pipe 31 extends to the mouth of the container body 1.
  • the present invention also provides an inverted quantitative container, which is characterized by comprising a container body 1, a cover 2 and a liquid storage cylinder 34.
  • the cover 2 can be movably connected to the mouth of the container body 1.
  • a liquid storage cavity 3 with an open upper end is formed in the liquid storage cylinder 34, the liquid storage cylinder 34 is placed in the inner cavity of the container body 1, and the upper side of the liquid storage cylinder 34 is provided with a guide hole 32.
  • An elastic member 35 is provided between 34 and the container body 1. When the cover 2 is separated from the mouth of the container body 1, the elastic member 35 elastically presses the liquid storage cylinder 34 and moves upward relative to the container body 1, so that the guide hole 32 is covered by the container body.
  • the container body When in use, the container body is inverted, and the substance in the inner cavity of the container body is Enter the liquid storage cavity, then stand the container body upright, open the lid, and in the process of opening the lid, the elasticity of the elastic member acts on the liquid storage cylinder, causing the liquid storage cylinder to move upward until the guide hole is covered by the inner cavity of the container body The side wall is blocked, and then the substance in the liquid storage chamber can be poured out.
  • the side wall of the liquid storage cavity 3 is provided with scale marks.
  • the liquid storage cylinder 34 is provided with a conduit 31 connected to the liquid storage cavity 3 and the inner cavity of the container body 1, and the lower end of the conduit 31 penetrates the bottom of the liquid storage cavity 3 It extends to the bottom of the inner cavity of the container body 1, and the upper end of the pipe 31 extends to the mouth of the container body 1.
  • the elastic member 35 is an elastic piece or spring arranged between the mouth of the container body 1 and the outside of the upper port of the liquid storage cylinder 34.
  • the elastic member 35 can be arranged between the bottom of the inner cavity of the container body 1 and the bottom of the liquid storage cylinder 34.
  • the elastic member 35 is an elastic bellows section arranged on the pipe 31 and located outside the liquid storage cylinder 34, so that the lower end of the elastic bellows section or the pipe 31 elastically abuts against the bottom of the container body 1.
  • the present invention can be used to quantify a variety of substances. After the container body is inverted, except for liquids that can enter the liquid storage cavity, powder, slurry, paste, etc., can enter the liquid storage cavity for quantification as long as the container body is shaken.
  • the container body 1 may be made of soft material.
  • the substance in the container body can enter the liquid storage cavity from the catheter 31 . When too much material enters, it can flow back from the via 32.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Closures For Containers (AREA)
  • Details Of Rigid Or Semi-Rigid Containers (AREA)
  • Containers And Packaging Bodies Having A Special Means To Remove Contents (AREA)

Abstract

本发明公开了一种倒转定量容器,包括容器本体和封盖,所述封盖可拆卸连接于容器本体口部,所述容器本体内腔上部设有与容器本体口部相通的储液腔,所述储液腔内设有导管,所述导管下端贯穿于储液腔底部,所述导管上端延伸至容器本体口部且与储液腔相通,使得当容器本体倒立后,位于容器本体内腔的物质则经过导管进入储液腔,使用时,倒立容器本体,则可使得容器本体内腔的物质相应进入储液腔内,使用者可以根据使用需要进行定量,即当进入储液腔内的物质满足所需时,则再把容器本体正立,接下来打开封盖,即可将储液腔内的定量物质倒出来,为此,本发明具有结构简洁、使用便捷的特点。

Description

一种倒转定量容器 【技术领域】
本发明涉及包装容器,尤其是一种倒转定量容器。
【背景技术】
包装容器设计各行各业,以用于保护商品,具有方便储存及使用,利于运输,促进销售,防止环境污染和预防安全事故等作用,不同行业及不同的产品需要按一定技术规范而采用相应的包装容器。其中现有的定量倒取容器中,由于其结构较为复杂,使得制造成本较高,以及存在定量倒取操作复杂而不方便人们使用的缺陷。
本发明即针对现有技术所存在的缺陷进行研发而提出。
【发明内容】
本发明要解决的技术问题是提供一种倒转定量容器,使用时,倒立容器本体,则可使得容器本体内腔的物质相应进入储液腔内,使用者可以根据使用需要进行定量,即当进入储液腔内的物质满足所需时,则再把容器本体正立,接下来打开封盖,即可将储液腔内的定量物质倒出来,为此,本发明具有设计合理,结构简洁、使用便捷的特点。
为解决上述技术问题,本发明一种倒转定量容器,包括容器本体1和封盖2,所述封盖2可拆卸连接于容器本体1口部,所述容器本体1内腔上部设有与容器本体1口部相通的储液腔3,所述储液腔3内设有导管31,所述导管31下端贯穿于储液腔3底部,所述导管31上端延伸至容器本体1口部且与储液腔3相通,使得当容器本体1倒立后,位于容器本体1内腔的物质则经过导管31进入储液腔3。
如上所述一种倒转定量容器,所述储液腔3内设有二导管31。
如上所述一种倒转定量容器,所述封盖2内设有用于与导管31上端口连接的堵头21,所述导管31上端侧面设有导孔32,所述储液腔3侧壁设有刻度标识。
如上所述一种倒转定量容器,所述储液腔3侧面设有当储液腔3与容器本体1分离时用于供储液腔3内的物质导出的倒液口33,所述储液腔3侧壁设有刻度标识。
本发明还提供一种倒转定量容器,包括容器本体1和封盖2,所述封盖2可拆卸连接于容器本体1口部,所述容器本体1内腔设有上端开口的储液筒34,所述储液筒34内形成有储液腔3,所述封盖2内向下延伸形成有内环22,所述储液筒34上开口侧面设有导孔32,所述储液筒34上开口与内环22插接且当封盖2相对容器本体1口部向上移时封盖2可带动储液筒34向上移动而使得导孔32被封堵住,以及当封盖2与容器本体1口部连接且向下移时封盖2可顶压储液筒34向下移动而使得导孔32打开并与容器本体1内腔连通。
如上所述一种倒转定量容器,所述储液筒34连接有用于连通储液腔3和容器本体1内腔的导管31,且所述导管31上端向上延伸且高于导孔32,所述导管31下端向下延伸而接近于容器本体1内腔底部。
如上所述一种倒转定量容器,所述封盖2上还设有当封盖2相对储液筒34活动时可将导孔32封堵住的密封挡片23,所述储液腔3侧壁设有刻度标识。
如上所述一种倒转定量容器,所述储液筒34上设有二导孔32,所述储液腔3侧壁设有刻度标识。
如上所述一种倒转定量容器,所述内环22与储液筒34固定连接使得储液筒34与封盖2同动,所述储液筒34下端开口且设有可拆卸的底盖341。
如上所述一种倒转定量容器,所述容器本体1内腔内侧壁设有当储液筒34与封盖2相对容器本体1同动活动时可将导孔32封堵住或打开的密封凸块11。
如上所述一种倒转定量容器,所述储液筒34上端开口设有从动止转块342,所述封盖2上设有用于顶推从动止转块342而使得储液筒34相对容器本体1转动进而封堵住或打开导孔32的主动止转块343,所述储液腔3侧壁设有刻度标识。
如上所述一种倒转定量容器,所述储液筒34上端开口内可相对储液筒34转动地设有上下开口的嵌套344,所述嵌套344侧面设有可与储液筒34侧面上的导孔32相对应的通孔或缺口,所述嵌套344上端开口设有从动止转块342,所述封盖2上设有用于顶推从动止转块342而使得嵌套344相对储液筒34转动进而封堵住或使得嵌套344的通孔或缺口与导孔32对齐打开的主动止转块343,所述储液腔3侧壁设有刻度标识。
本发明又提供一种倒转定量容器,包括容器本体1、封盖2和连接座4, 所述连接座4连接于容器本体1口部,所述连接座4下口部置于容器本体1口部内且设有通孔或缺口,所述封盖2可拆卸连接于连接座4上口部,所述容器本体1内腔相对固定设有上端开口的储液筒34,所述储液筒34内形成有储液腔3,所述储液筒34上开口侧面设有导孔32,所述储液筒34上开口套接在连接座4下端外侧壁上,且当连接座4相对容器本体1及储液筒34活动时可使得导孔32与连接座4下端的通孔或缺口对齐而将储液腔3与容器本体1内腔导通,或错开封堵住导孔32。
如上所述一种倒转定量容器,所述储液筒34上设有连通于储液腔3和容器本体1内腔的导管31,所述导管31下端贯穿于储液腔3底部并延伸至容器本体1内腔底部,所述导管31上端延伸至容器本体1口部,所述储液腔3侧壁设有刻度标识。
本发明再提供一种倒转定量容器,包括容器本体1、封盖2和连接座4,所述连接座4连接于容器本体1口部,所述封盖2可活动连接于连接座4上端口部,所述连接座4下口部置于容器本体1口部内而相对固定连接有储液筒34,所述储液筒34内形成有储液腔3,所述储液筒34上部侧面设有导孔32,所述封盖2内向下延伸形成有插入储液腔3内的内环22,所述内环22侧面设有通孔或缺口,当封盖2及内环22相对连接座4及储液筒34活动时可使得导孔32与内环22侧面的通孔或缺口对齐而将储液腔3与容器本体1内腔导通,或错开封堵住导孔32。
如上所述一种倒转定量容器,所述储液筒34上设有连通于储液腔3和容器本体1内腔的导管31,所述导管31下端贯穿于储液腔3底部并延伸至容器本体1内腔底部,所述导管31上端延伸至容器本体1口部,所述储液腔3侧壁设有刻度标识。
本发明又提供一种倒转定量容器,包括容器本体1、封盖2和连接座4,所述连接座4连接于容器本体1口部,所述封盖2可活动连接于连接座4上端口部,所述连接座4下口部置于容器本体1口部内而相对固定连接有储液筒34,所述储液筒34内形成有储液腔3,所述储液筒34上部侧面设有导孔32,所述容器本体1内腔内侧壁设有当连接座4及储液筒34相对容器本体1活动时可将导孔32封堵住或打开的密封凸块11。
如上所述一种倒转定量容器,所述储液筒34上设有连通于储液腔3和容器本体1内腔的导管31,所述储液腔3侧壁设有刻度标识,所述导管31下端贯穿于储液腔3底部并延伸至容器本体1内腔底部,所述导管31上端延伸至容器本体1口部。
本发明又提供一种倒转定量容器,其特征在于包括容器本体1、封盖2和储液筒34,所述封盖2可活动连接于容器本体1口部,所述储液筒34内形成有上端开口的储液腔3,所述储液筒34置于容器本体1内腔,所述储液筒34上部侧面设有导孔32,所述储液筒34与容器本体1之间设有弹性件35,当封盖2脱离容器本体1口部时弹性件35则弹性顶压储液筒34而相对容器本体1向上移动而使得导孔32被容器本体1内侧壁封堵住,且当封盖2连接在容器本体1口部时封盖2则顶压储液筒34而相对容器本体1向下移动,弹性件35则被弹性压缩,使得导孔32与容器本体1内腔连通。
如上所述一种倒转定量容器,所述储液筒34上设有连通于储液腔3和容器本体1内腔的导管31,所述储液腔3侧壁设有刻度标识,所述导管31下端贯穿于储液腔3底部并延伸至容器本体1内腔底部,所述导管31上端延伸至容器本体1口部。
如上所述一种倒转定量容器,所述弹性件35为设在容器本体1口部内与储液筒34上端口部外侧之间的弹片或弹簧。
如上所述一种倒转定量容器,所述弹性件35设在容器本体1内腔底部与储液筒34底部之间。
如上所述一种倒转定量容器,所述弹性件35为设在导管31上且位于储液筒34外的弹性波纹管段,使得弹性波纹管段或导管31下端弹性抵触于容器本体1底部。
与现有技术相比较,本发明一种倒转定量容器,具有如下优点:
1、将储液腔设在容器本体内腔上部,且当封盖连接在容器本体口部时,储液腔上的导孔可以与容器本体内腔连通,故当容器本体倒立时,容器本体内的物质则可以从导孔进入储液腔内,使用者也可以根据使用需求进行定量,即可将储液腔内的定量物质倒出来,为此,具有设计合理,结构简洁,使用便捷和制造成本较低的特点。
2、在储液腔内设置有导管,使用时,可进行导气,使得进入储液腔内的物质顺畅快速。
3、为便于将储液腔内的物质倒出,在储液腔的底部设有可拆卸底盖,即当储液腔与容器本体分离后,打开底盖则可快速地将位于储液腔内的物质倒出。
4、为了简化结构,降低制造成本,所述封盖与储液腔可为一体设计成型。
5、为了在打开封盖后,储液筒上的导孔能自动被容器本体内侧壁封堵住,故在容器本体与储液筒之间设有弹性件,该弹性件产生轴向弹力而弹性顶压储液筒。
【附图说明】
下面结合附图对本发明的具体实施方式作进一步详细说明,其中:
图1为本发明的第一种具体实施例的剖视图;
图2为本发明的第二种具体实施例的剖视图之一;
图3为本发明的第二种具体实施例的剖视图之二;
图4为本发明的第三种具体实施例的剖视图;
图5为本发明的第四种具体实施例的剖视图;
图6为本发明的第五种具体实施例的剖视图之一;
图7为本发明的第五种具体实施例的剖视图之二;
图8为本发明的第六种具体实施例的剖视图;
图9为本发明的第七种具体实施例的剖视图;
图10为本发明的第八种具体实施例的剖视图;
图11为本发明的第九种具体实施例的剖视图;
图12为本发明的第十种具体实施例的剖视图;
图13为本发明的第十一种具体实施例的剖视图;
图14为本发明的第十二种具体实施例的剖视图;
图15为本发明的第十三种具体实施例的剖视图;
图16为本发明的第十四种具体实施例的剖视图;
图17为本发明的第十五种具体实施例的剖视图;
图18为本发明的第十六种具体实施例的剖视图;
图19为本发明的第十七种具体实施例的剖视图;
图20为本发明的第十八种具体实施例的剖视图;
图21为本发明的第十九种具体实施例的剖视图;
图22为本发明的第二十种具体实施例的剖视图之一;
图23为本发明的第二十种具体实施例的剖视图之二;
图24为本发明的第二十一种具体实施例的剖视图;
图25为本发明的第二十二种具体实施例的剖视图;
图26为本发明的第二十三种具体实施例的剖视图;
图27为本发明的第二十四种具体实施例的剖视图;
图28为本发明的第二十五种具体实施例的剖视图之一;
图29为本发明的第二十五种具体实施例的剖视图之二;
图30为本发明的第二十六种具体实施例的剖视图;
图31为本发明的第二十七种具体实施例的剖视图;
图32为本发明的第二十八种具体实施例的剖视图之一;
图33为本发明的第二十八种具体实施例的剖视图之二;
图34为本发明的第二十九种具体实施例的剖视图之一;
图35为本发明的第二十九种具体实施例的剖视图之二;
图36为本发明的第二十九种中储液筒及弹性件的连接结构示意图;
图37为本发明的第三十种具体实施例的剖视图。
【具体实施方式】
下面结合附图对本发明的实施方式作详细说明。
如图1-5所示,本发明一种倒转定量容器,包括容器本体1和封盖2,所述封盖2可拆卸连接于容器本体1口部,所述容器本体1内腔上部设有与容器本体1口部相通的储液腔3,所述储液腔3内设有导管31,所述导管31下端贯穿于储液腔3底部,所述导管31上端延伸至容器本体1口部且与储液腔3相通,使得当容器本体1倒立后,位于容器本体1内腔的物质则经过导管31进入储液腔3。使用时,将容器本体倒立,容器本体内的物质则可以从导孔进入储液腔内,使用者也可以根据使用需求进行定量,即当将储液腔内的物质满足使用者需求时,将容器本体正立,之后打开封盖,将定量的物质倒即可,为此,具有设计合理,结构简洁,使用便捷和制造成本较低的特点。
如图2所示,所述储液腔3内设有二导管31,使用时,一导管为进液管,另一导管则为导气管,故可使得容器本体内腔的物质顺畅地进入储液腔内。
如1-3所示,所述封盖2内设有用于与导管31上端口连接的堵头21,所述导管31上端侧面设有导孔32,为了便于使用者进行定量,在所述储液腔3侧壁设有刻度标识。
如图5所示,在所述储液腔3侧面设有当储液腔3与容器本体1分离时用于供储液腔3内的物质导出的倒液口33,同样,为了便于使用者进行定量,所述储液腔3侧壁设有刻度标识。
如图6-12所示,本发明还提供一种倒转定量容器,包括容器本体1和封盖2,所述封盖2可拆卸连接于容器本体1口部,所述容器本体1内腔设有上端开口的储液筒34,所述储液筒34内形成有储液腔3,储液筒34侧面设有用于与容器本体口部密封配合的密封环,所述封盖2内向下延伸形成有内环22,所述储液筒34上开口侧面设有导孔32,所述储液筒34上开口与内环22插接且当封盖2相对容器本体1口部向上移时封盖2可带动储液筒34向上移动而使得导孔32被封堵住,以及当封盖2与容器本体1口部连接且向下移时封盖2可顶压储液筒34向下移动而使得导孔32打开并与容器本体1内腔连通。初始时,导孔将储液腔及容器本体内腔连通,使用时,倒立容器本体,储液腔内的物质则经过导孔进入储液腔内,然后再正立容器本体,旋转封盖,储液筒则相对容器本体1口部向上移时封盖2可带动储液筒34向上移动而使得导孔32被封堵住,最后即可将储液腔内的物质倒出。为了便于定量,在所述储液腔3侧壁设有刻度标识。
如图6-8为使得在容器本体倒立时,容器本体内的物质能顺畅地进入储液腔内,在所述储液筒34连接有用于连通储液腔3和容器本体1内腔的导管31,且所述导管31上端向上延伸且高于导孔32,所述导管31下端向下延伸而接近于容器本体1内腔底部,故该导管起到排气作用。
如图8所示,所述封盖2上还设有当封盖2相对储液筒34活动时可将导孔32封堵住的密封挡片23,当旋转封盖时,可相应封堵住或打开导孔。
如图10所示,为便于导气,使得容器本体内腔的物质顺畅地进入储液腔内,在所述储液筒34上设有二导孔32,其中一导孔为进液孔,另一导孔则为导气孔。
如图9、13、14、15、17、18所示,所述内环22与储液筒34固定连接使得储液筒34与封盖2同动,即储液筒34与封盖2一体设计成型,所述储液筒34下端开口且设有可拆卸的底盖341,使用时,将储液筒从容器本体中取出,然后打开底盖即可将储液腔内的物质倒出。
如图17、18、21、22、23所示,所述容器本体1内腔内侧壁设有当储液筒34与封盖2相对容器本体1同动活动时可将导孔32封堵住或打开的密封凸块11。使用时,转动封盖,即可使得储液筒相对容器本体转动,进而打开或封堵住导孔。
如图19-20所示,所述储液筒34上端开口设有从动止转块342,所述封盖2上设有用于顶推从动止转块342而使得储液筒34相对容器本体1转动进而封堵住或打开导孔32的主动止转块343。
如21-23所示,所述储液筒34上端开口内可相对储液筒34转动地设有上下开口的嵌套344,所述嵌套344侧面设有可与储液筒34侧面上的导孔32相对应的通孔或缺口,所述嵌套344上端开口设有从动止转块342,所述封盖2上设有用于顶推从动止转块342而使得嵌套344相对储液筒34转动进而封堵住或使得嵌套344的通孔或缺口与导孔32对齐打开的主动止转块343。
如图24-25所示,本发明又提供一种倒转定量容器,包括容器本体1、封盖2和连接座4,所述连接座4连接于容器本体1口部,所述连接座4下口部置于容器本体1口部内且设有通孔或缺口,所述封盖2可拆卸连接于连接座4上口部,所述容器本体1内腔相对固定设有上端开口的储液筒34,所述储液筒34内形成有储液腔3,所述储液筒34上开口侧面设有导孔32,所述储液筒34上开口套接在连接座4下端外侧壁上,且当连接座4相对容器本体1及储液筒34活动时可使得导孔32与连接座4下端的通孔或缺口对齐而将储液腔3与容器本体1内腔导通,或错开封堵住导孔32。同样,地,使用时,倒立容器本体,储液腔内的物质则经过导孔进入储液腔内,然后再正立容器本体,旋转连接座,导孔32则被封堵住,最后打开封盖即可将储液腔内的物质倒出。为了便于定量,在所述储液腔3侧壁设有刻度标识。
如图26所示,为了倒立进液顺畅,所述储液筒34上设有连通于储液腔3和容器本体1内腔的导管31,所述导管31下端贯穿于储液腔3底部并延伸至容 器本体1内腔底部,所述导管31上端延伸至容器本体1口部。
如图27所示,本发明再提供一种倒转定量容器,包括容器本体1、封盖2和连接座4,所述连接座4连接于容器本体1口部,所述封盖2可活动连接于连接座4上端口部,所述连接座4下口部置于容器本体1口部内而相对固定连接有储液筒34,所述储液筒34内形成有储液腔3,所述储液筒34上部侧面设有导孔32,所述封盖2内向下延伸形成有插入储液腔3内的内环22,所述内环22侧面设有通孔或缺口,当封盖2及内环22相对连接座4及储液筒34活动时可使得导孔32与内环22侧面的通孔或缺口对齐而将储液腔3与容器本体1内腔导通,或错开封堵住导孔32。使用时,旋转封盖,使得导孔与内环22侧面的通孔或缺口对齐,接着倒立容器本体,储液腔内的物质则经过导孔进入储液腔内,然后再正立容器本体,旋转连接座,取出储液筒,然后打开封盖,即可将储液腔内的物质倒出。为了便于定量,在所述储液腔3侧壁设有刻度标识。
为了倒立进液顺畅,所述储液筒34上设有连通于储液腔3和容器本体1内腔的导管31,所述导管31下端贯穿于储液腔3底部并延伸至容器本体1内腔底部,所述导管31上端延伸至容器本体1口部。
如图28-31所示,本发明又提供一种倒转定量容器,包括容器本体1、封盖2和连接座4,所述连接座4连接于容器本体1口部,所述封盖2可活动连接于连接座4上端口部,所述连接座4下口部置于容器本体1口部内而相对固定连接有储液筒34,即连接座4与储液筒一体设计成型,所述储液筒34内形成有储液腔3,所述储液筒34上部侧面设有导孔32,所述容器本体1内腔内侧壁设有当连接座4及储液筒34相对容器本体1活动时可将导孔32封堵住或打开的密封凸块11。使用时,转动连接座,使得导孔与密封凸块错开而打开,接着倒立容器本体即可使得容器本体内腔的物质经过导孔而进入储液腔内,然后转动连接座,使得导孔与密封凸块对齐而封堵住,然后正立容器本体,打开封盖,即可将储液腔内的物质倒出。为了便于定量,在所述储液腔3侧壁设有刻度标识。
如图28-29所示,为了倒立时进液顺畅,在所述储液筒34上设有连通于储液腔3和容器本体1内腔的导管31,所述导管31下端贯穿于储液腔3底部并延伸至容器本体1内腔底部,所述导管31上端延伸至容器本体1口部。
如图32-37所示,本发明又提供一种倒转定量容器,其特征在于包括容器 本体1、封盖2和储液筒34,所述封盖2可活动连接于容器本体1口部,所述储液筒34内形成有上端开口的储液腔3,所述储液筒34置于容器本体1内腔,所述储液筒34上部侧面设有导孔32,所述储液筒34与容器本体1之间设有弹性件35,当封盖2脱离容器本体1口部时弹性件35则弹性顶压储液筒34而相对容器本体1向上移动而使得导孔32被容器本体1内侧壁封堵住,且当封盖2连接在容器本体1口部时封盖2则顶压储液筒34而相对容器本体1向下移动,弹性件35则被弹性压缩,使得导孔32与容器本体1内腔连通。根据需要,在储液筒34上部侧壁设有相应的密封环和限位凸环,以确保储液筒与容器本体口部之间密封配合,以及使得当储液筒向上移动时被限位。初始时,封盖连接在容器本体口部,通过弹性件,储液筒则被弹性顶压而使得导孔与容器本体内腔连通,使用时,将容器本体倒立,容器本体内腔的物质则进入储液腔内,接着,正立容器本体,打开封盖,且在打开封盖过程中,弹性件的弹性则作用储液筒,使得储液筒向上移动,直至导孔被容器本体内腔侧壁封堵住,然后即可将储液腔内的物质倒出。为了便于使用者定量,所述储液腔3侧壁设有刻度标识。
为倒立容器本体时,进液顺畅且快速,在所述储液筒34上设有连通于储液腔3和容器本体1内腔的导管31,所述导管31下端贯穿于储液腔3底部并延伸至容器本体1内腔底部,所述导管31上端延伸至容器本体1口部。
如34-37所示,所述弹性件35为设在容器本体1口部内与储液筒34上端口部外侧之间的弹片或弹簧。
根据设计需要,可以将所述弹性件35设在容器本体1内腔底部与储液筒34底部之间。
如图32-33所示,所述弹性件35为设在导管31上且位于储液筒34外的弹性波纹管段,使得弹性波纹管段或导管31下端弹性抵触于容器本体1底部。
综上,本发明可以用来定量多种物质,将容器本体倒立后除了液体可以进入储液腔内外,粉体,浆体,糊体等,只要摇动容器本体都能进入储液腔来定量。
另外,本发明中,容器本体1可以为由软质材料制成,部分实施例中,如6-9所示,通过挤压容器本体,容器本体内物质则可从导管31进入储液腔内。当所进入的物质过多时,则可从导孔32进行回流。

Claims (23)

  1. 一种倒转定量容器,其特征在于包括容器本体(1)和封盖(2),所述封盖(2)可拆卸连接于容器本体(1)口部,所述容器本体(1)内腔上部设有与容器本体(1)口部相通的储液腔(3),所述储液腔(3)内设有导管(31),所述导管(31)下端贯穿于储液腔(3)底部,所述导管(31)上端延伸至容器本体(1)口部且与储液腔(3)相通,使得当容器本体(1)倒立后,位于容器本体(1)内腔的物质则经过导管(31)进入储液腔(3)。
  2. 根据权利要求1所述一种倒转定量容器,其特征在于所述储液腔(3)内设有二导管(31)。
  3. 根据权利要求1或2任意一项所述一种倒转定量容器,其特征在于所述封盖(2)内设有用于与导管(31)上端口连接的堵头(21),所述导管(31)上端侧面设有导孔(32),所述储液腔(3)侧壁设有刻度标识。
  4. 根据权利要求1或2任意一项所述一种倒转定量容器,其特征在于所述储液腔(3)侧面设有当储液腔(3)与容器本体(1)分离时用于供储液腔(3)内的物质导出的倒液口(33),所述储液腔(3)侧壁设有刻度标识。
  5. 一种倒转定量容器,其特征在于包括容器本体(1)和封盖(2),所述封盖(2)可拆卸连接于容器本体(1)口部,所述容器本体(1)内腔设有上端开口的储液筒(34),所述储液筒(34)内形成有储液腔(3),所述封盖(2)内向下延伸形成有内环(22),所述储液筒(34)上开口侧面设有导孔(32),所述储液筒(34)上开口与内环(22)插接且当封盖(2)相对容器本体(1)口部向上移时封盖(2)可带动储液筒(34)向上移动而使得导孔(32)被封堵住,以及当封盖(2)与容器本体(1)口部连接且向下移时封盖(2)可顶压储液筒(34)向下移动而使得导孔(32)打开并与容器本体(1)内腔连通。
  6. 根据权利要求5所述一种倒转定量容器,其特征在于所述储液筒(34)连接有用于连通储液腔(3)和容器本体(1)内腔的导管(31),且所述导管(31)上端向上延伸且高于导孔(32),所述导管(31)下端向下延伸而接近于容器本体(1)内腔底部。
  7. 根据权利要求5或6所述任意一项所述一种倒转定量容器,其特征在于所述封盖(2)上还设有当封盖(2)相对储液筒(34)活动时可将导孔(32)封堵住的密封挡片(23),所述储液腔(3)侧壁设有刻度标识。
  8. 根据权利要求5所述一种倒转定量容器,其特征在于所述储液筒(34)上设有二导孔(32),所述储液腔(3)侧壁设有刻度标识。
  9. 根据权利要求5或6所述任意一项所述一种倒转定量容器,其特征在于所述内环(22)与储液筒(34)固定连接使得储液筒(34)与封盖(2)同动,所述储液筒(34)下端开口且设有可拆卸的底盖(341)。
  10. 根据权利要求9所述一种倒转定量容器,其特征在于所述容器本体(1)内腔内侧壁设有当储液筒(34)与封盖(2)相对容器本体(1)同动活动时可将导孔(32)封堵住或打开的密封凸块(11)。
  11. 根据权利要求10所述一种倒转定量容器,其特征在于所述储液筒(34)上端开口设有从动止转块(342),所述封盖(2)上设有用于顶推从动止转块(342)而使得储液筒(34)相对容器本体(1)转动进而封堵住或打开导孔(32)的主动止转块(343),所述储液腔(3)侧壁设有刻度标识。
  12. 根据权利要求5或6所述任意一项所述一种倒转定量容器,其特征在于所述储液筒(34)上端开口内可相对储液筒(34)转动地设有上下开口的嵌套(344),所述嵌套(344)侧面设有可与储液筒(34)侧面上的导孔(32)相对应的通孔或缺口,所述嵌套(344)上端开口设有从动止转块(342),所述封盖(2)上设有用于顶推从动止转块(342)而使得嵌套(344)相对储液筒(34)转动进而封堵住或使得嵌套(344)的通孔或缺口与导孔(32)对齐打开的主动止转块(343),所述储液腔(3)侧壁设有刻度标识。
  13. 一种倒转定量容器,其特征在于包括容器本体(1)、封盖(2)和连接座(4),所述连接座(4)连接于容器本体(1)口部,所述连接座(4)下口部置于容器本体(1)口部内且设有通孔或缺口,所述封盖(2)可拆卸连接于连接座(4)上口部,所述容器本体(1)内腔相对固定设有上端开口的储液筒(34),所述储液筒(34)内形成有储液腔(3),所述储液筒(34)上开口侧面设有导孔(32),所述储液筒(34)上开口套接在连接座(4)下端外侧壁上,且当连接座(4)相对容器本体(1)及储液筒(34)活动时可使得导孔(32)与连接座(4)下端的通孔或缺口对齐而将储液腔(3)与容器本体(1)内腔导通,或错开封堵住导孔(32)。
  14. 根据权利要求13所述一种倒转定量容器,其特征在于所述储液筒(34)上 设有连通于储液腔(3)和容器本体(1)内腔的导管(31),所述导管(31)下端贯穿于储液腔(3)底部并延伸至容器本体(1)内腔底部,所述导管(31)上端延伸至容器本体(1)口部,所述储液腔(3)侧壁设有刻度标识。
  15. 一种倒转定量容器,其特征在于包括容器本体(1)、封盖(2)和连接座(4),所述连接座(4)连接于容器本体(1)口部,所述封盖(2)可活动连接于连接座(4)上端口部,所述连接座(4)下口部置于容器本体(1)口部内而相对固定连接有储液筒(34),所述储液筒(34)内形成有储液腔(3),所述储液筒(34)上部侧面设有导孔(32),所述封盖(2)内向下延伸形成有插入储液腔(3)内的内环(22),所述内环(22)侧面设有通孔或缺口,当封盖(2)及内环(22)相对连接座(4)及储液筒(34)活动时可使得导孔(32)与内环(22)侧面的通孔或缺口对齐而将储液腔(3)与容器本体(1)内腔导通,或错开封堵住导孔(32)。
  16. 根据权利要求15所述一种倒转定量容器,其特征在于所述储液筒(34)上设有连通于储液腔(3)和容器本体(1)内腔的导管(31),所述导管(31)下端贯穿于储液腔(3)底部并延伸至容器本体(1)内腔底部,所述导管(31)上端延伸至容器本体(1)口部,所述储液腔(3)侧壁设有刻度标识。
  17. 一种倒转定量容器,其特征在于包括容器本体(1)、封盖(2)和连接座(4),所述连接座(4)连接于容器本体(1)口部,所述封盖(2)可活动连接于连接座(4)上端口部,所述连接座(4)下口部置于容器本体(1)口部内而相对固定连接有储液筒(34),所述储液筒(34)内形成有储液腔(3),所述储液筒(34)上部侧面设有导孔(32),所述容器本体(1)内腔内侧壁设有当连接座(4)及储液筒(34)相对容器本体(1)活动时可将导孔(32)封堵住或打开的密封凸块(11)。
  18. 根据权利要求17所述一种倒转定量容器,其特征在于所述储液筒(34)上设有连通于储液腔(3)和容器本体(1)内腔的导管(31),所述储液腔(3)侧壁设有刻度标识,所述导管(31)下端贯穿于储液腔(3)底部并延伸至容器本体(1)内腔底部,所述导管(31)上端延伸至容器本体(1)口部。
  19. 一种倒转定量容器,其特征在于包括容器本体(1)、封盖(2)和储液筒(34),所述封盖(2)可活动连接于容器本体(1)口部,所述储液筒(34)内形成有上 端开口的储液腔(3),所述储液筒(34)置于容器本体(1)内腔,所述储液筒(34)上部侧面设有导孔(32),所述储液筒(34)与容器本体(1)之间设有弹性件(35),当封盖(2)脱离容器本体(1)口部时弹性件(35)则弹性顶压储液筒(34)而相对容器本体(1)向上移动而使得导孔(32)被容器本体(1)内侧壁封堵住,且当封盖(2)连接在容器本体(1)口部时封盖(2)则顶压储液筒(34)而相对容器本体(1)向下移动,弹性件(35)则被弹性压缩,使得导孔(32)与容器本体(1)内腔连通。
  20. 根据权利要求19所述一种倒转定量容器,其特征在于所述储液筒(34)上设有连通于储液腔(3)和容器本体(1)内腔的导管(31),所述储液腔(3)侧壁设有刻度标识,所述导管(31)下端贯穿于储液腔(3)底部并延伸至容器本体(1)内腔底部,所述导管(31)上端延伸至容器本体(1)口部。
  21. 根据权利要求19或20所述一种倒转定量容器,其特征在于所述弹性件(35)为设在容器本体(1)口部内与储液筒(34)上端口部外侧之间的弹片或弹簧。
  22. 根据权利要求19所述一种倒转定量容器,其特征在于所述弹性件(35)设在容器本体(1)内腔底部与储液筒(34)底部之间。
  23. 根据权利要求20所述一种倒转定量容器,其特征在于所述弹性件(35)为设在导管(31)上且位于储液筒(34)外的弹性波纹管段,使得弹性波纹管段或导管(31)下端弹性抵触于容器本体(1)底部。
PCT/CN2020/071942 2019-01-15 2020-01-14 一种倒转定量容器 WO2020147706A2 (zh)

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