CN215623917U - High emulsion utilization ratio presses bottle - Google Patents
High emulsion utilization ratio presses bottle Download PDFInfo
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- CN215623917U CN215623917U CN202120242279.XU CN202120242279U CN215623917U CN 215623917 U CN215623917 U CN 215623917U CN 202120242279 U CN202120242279 U CN 202120242279U CN 215623917 U CN215623917 U CN 215623917U
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- liquid collecting
- collecting disc
- bottle
- emulsion
- suction pipe
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Abstract
The utility model discloses a high-emulsion-utilization-rate pressing bottle, which comprises a bottle body, a pressing pump head, a suction pipe and a liquid collecting disc, wherein the pressing pump head is arranged on the bottle body; the liquid collecting disc is in a spherical crown shape, and the center of the liquid collecting disc is lower than the edge of the liquid collecting disc; the liquid collecting disc is arranged in the bottle body and on the bottom of the bottle body, the bottle body is cylindrical, and the edge of the liquid collecting disc is circular and is matched with the inner contour of the cross section of the bottle body; the suction pipe is a vertical pipe body, and a liquid suction port at the bottom end of the suction pipe is arranged in an inclined manner; the liquid collecting disc is connected with the suction pipe and is positioned below the suction pipe; the lowest position in the center of the liquid collecting disc is positioned right below the liquid suction port and is in contact with the bottom end of the liquid suction port; the pump head is pressed by unscrewing and upwards lifting, the liquid collecting disc moves upwards along with the suction pipe, the edge of the liquid collecting disc scrapes off the emulsion stuck on the inner wall of the bottle body in the upward moving process, the emulsion is collected to the lower center of the liquid collecting disc from the edge of the liquid collecting disc, and the pump head can be pressed by extrusion to suck out the collected emulsion. The utility model has the advantages of scientific and reasonable structure, high emulsion utilization rate and the like.
Description
Technical Field
The utility model belongs to the field of packaging, relates to a pressing bottle, and particularly relates to a pressing bottle with high emulsion utilization rate.
Background
When the product with the pressing pump filled with the emulsions such as shampoo, shower gel, liquid soap and laundry detergent is used, when the last condition is used, the internal emulsion is rarely left, the condition that the internal emulsion cannot be extruded frequently occurs, at the moment, a user can only turn off the pump head and invert the bottle body to use the residual emulsion, but the mode not only needs to be repeatedly poured, but also needs to wait for the time that the emulsion slowly flows down, wastes time and labor, and even if the user pours the emulsion for multiple times, the emulsion cannot be completely used, and some emulsion still can be adhered to the bottom or the side wall of the bottle, so that waste is caused.
SUMMERY OF THE UTILITY MODEL
The utility model provides a pressing bottle with high emulsion utilization rate, which overcomes the defects of the prior art.
In order to achieve the above objects, the present invention provides a high emulsion utilization rate pressing bottle, comprising a bottle body, a pressing pump head and a suction tube, wherein the top of the bottle body is provided with an opening, the pressing pump head is spirally connected to the top opening, the upper end of the suction tube is connected to the pressing pump head, the rest part of the suction tube is inserted into the bottle body, the pressing pump head is squeezed, and the pressing pump head sucks out emulsion in the bottle through the suction tube, and the high emulsion utilization rate pressing bottle has the following characteristics: the device also comprises a liquid collecting disc; the liquid collecting disc is in a spherical crown shape, and the center of the liquid collecting disc is lower than the edge of the liquid collecting disc; the liquid collecting disc is arranged in the bottle body and on the bottom of the bottle body, the bottle body is cylindrical, and the edge of the liquid collecting disc is circular and is matched with the inner contour of the cross section of the bottle body; the suction pipe is a vertical pipe body, and a liquid suction port at the bottom end of the suction pipe is arranged in an inclined manner; the liquid collecting disc is connected with the suction pipe and is positioned below the suction pipe; the lowest position in the center of the liquid collecting disc is positioned right below the liquid suction port and is in contact with the bottom end of the liquid suction port; the pump head is pressed by unscrewing and upwards lifting, the liquid collecting disc moves upwards along with the suction pipe, the edge of the liquid collecting disc scrapes off the emulsion stuck on the inner wall of the bottle body in the upward moving process, the emulsion is collected to the lower center of the liquid collecting disc from the edge of the liquid collecting disc, and the pump head can be pressed by extrusion to suck out the collected emulsion.
Further, the present invention provides a high emulsion usage push bottle, which may also have the following features: wherein the liquid collecting tray is provided with a plurality of connecting rods; one end of the connecting rod is fixed with the outer wall of the suction pipe, and the other end of the connecting rod is fixed with the upper surface of the liquid collecting disc; the connecting rods are uniformly distributed.
Further, the present invention provides a high emulsion usage push bottle, which may also have the following features: wherein, the fixed position of the connecting rod on the upper surface of the liquid collecting tray does not exceed the range of the top opening of the bottle body.
Further, the present invention provides a high emulsion usage push bottle, which may also have the following features: wherein, the fixed height of the connecting rod on the outer wall of the suction pipe does not exceed the height of the liquid collecting plate.
Further, the present invention provides a high emulsion usage push bottle, which may also have the following features: wherein, the liquid collecting disc is fixedly connected with the bottom end of the liquid suction port of the suction pipe.
Further, the present invention provides a high emulsion usage push bottle, which may also have the following features: wherein, the bottom surface in the bottle body is also in a spherical crown shape and is matched with the lower surface of the liquid collecting disc.
Further, the present invention provides a high emulsion usage push bottle, which may also have the following features: wherein, the bottom surface outside the bottle body is horizontal.
Further, the present invention provides a high emulsion usage push bottle, which may also have the following features: wherein the spherical crown of the drip pan is one third to one half of the radius thereof.
The utility model has the beneficial effects that: the utility model provides a high-emulsion-utilization-rate pressing bottle which comprises a liquid collecting disc connected with a suction pipe, wherein the liquid collecting disc can scrape off the adhered emulsion on the inner side wall of the bottle by pulling up the suction pipe; meanwhile, the liquid collecting disc is in a spherical crown shape, and emulsion on the disc can be collected at the lowest position of the center, so that the absorption of a suction pipe is facilitated. In addition, the utility model also provides two fixing modes of the liquid collecting disc, is suitable for bottles without using density emulsion and with different specifications, and has practical application potential. The utility model has the advantages of scientific and reasonable structure, high emulsion utilization rate and the like.
Drawings
FIG. 1 is a schematic view showing the structure of a squeeze bottle equipped with a relatively high connecting rod according to example 1;
FIG. 2 is a schematic view showing the structure of a squeeze bottle equipped with a lower connecting rod according to example 1;
fig. 3 is a schematic structural view of the press bottle of example 2.
Detailed Description
The following describes embodiments of the present invention with reference to the drawings.
Example 1
As shown in fig. 1, the present embodiment provides a pressing bottle with high emulsion utilization rate, which comprises a bottle body 1, a pressing pump head 2 and a suction tube 3; the top of the bottle body 1 is provided with an opening, and the pressing pump head 2 is spirally connected to the opening at the top; the upper end of the suction pipe 3 is connected with the pressing pump head 2, and the rest part is inserted into the bottle body 1; the pressing pump head 2 is pressed, and the pressing pump head 2 sucks out the emulsion in the bottle through the suction pipe 3.
The press bottle also comprises a drip pan 4.
The drip pan 4 is in the shape of a spherical crown, with the centre lower than its edge. Preferably, the height of the collector disc 4 is one third to one half of the radius thereof, i.e. the height of the collector disc 4 of the spherical crown shape is one third to one half of the radius of the sphere, so as to ensure the aggregation effect of the emulsion.
The liquid collecting tray 4 is arranged in the bottle body 1 and on the bottom of the bottle. The bottle 1 is cylindrical, and the edge of liquid collecting tray 4 is circular, agrees with the matching with the profile in the cross section of bottle 1 mutually, when liquid collecting tray 4 upwards moves in bottle 1, can scrape the emulsion that remains on the bottle 1 inner wall.
Wherein, the bottom surface in the bottle 1 also is the spherical crown shape, and agrees with the matching with the lower surface of liquid collecting tray 4, and seamless between the two avoids the emulsion from collecting tray 4 edge and bottle 1 between the curb plate seepage down, guarantees the result of use. The bottom surface outside the bottle body 1 is horizontal, which is convenient for daily placement of the pressing bottle.
The straw 3 is a vertical tube, and the liquid suction port 31 at the bottom of the straw 3 is arranged in an inclined manner.
The liquid collecting disc 4 is connected with the suction pipe 3 and is positioned below the suction pipe 3. The lowest position of the center of the drip pan 4 is located right below the liquid suction port 31 and is in contact with the bottom end of the liquid suction port 31.
In particular, the drip pan 4 is provided with a plurality of connecting rods 41.
One end of the connecting rod 41 is fixed with the outer wall of the suction pipe 3, and the other end is fixed with the upper surface of the drip pan 4, so that the drip pan 4 is fixed below the suction pipe 3. The connecting rods 41 are uniformly distributed, and the fixing mode is suitable for pressing bottles with larger emulsion density and larger specification.
Wherein, the fixed position of the connecting rod 41 on the upper surface of the drip pan 4 is not more than the range of the top opening of the bottle body 1, and the upward pulling of the drip pan 4 is prevented from being influenced, as shown in figure 1.
Alternatively, the fixed height of the connecting rods 41 on the outer wall of the suction pipe 3 does not exceed the height of the drip plate, thereby avoiding affecting the lifting of the drip pan 4, as shown in fig. 2.
When the emulsion in the pressing bottle is almost used up and can not be pressed for sucking, the pressing pump head 2 is unscrewed and lifted upwards, the liquid collecting disc 4 moves upwards along with the suction pipe 3, the emulsion stuck on the inner wall of the bottle body 1 is scraped at the edge of the liquid collecting disc 4 in the upward moving process, the emulsion is collected to the lower center of the liquid collecting disc 4 from the edge of the liquid collecting disc 4, the edge of the pressing pump head 2 is supported by a hand, or the emulsion is inserted back into the suction pipe 3 and is pressed against the pump head 2 after being gathered towards the center after being completed, the emulsion collected by the suction pump head 2 can be sucked out by extruding the pressing pump head, so that more emulsion in the pressing bottle can be used, the emulsion utilization rate is higher, and the waste is avoided.
Example 2
This example provides a high emulsion usage push bottle, substantially the same structure as example 1, except that: fixing the drip pan 4 and the suction pipe 3 (without using a connecting rod): the liquid collecting disc 4 is fixedly connected with the bottom end of the liquid suction port 31 of the suction pipe 3, namely fixedly connected with the contact position, and the fixing mode is suitable for pressing bottles with small emulsion density and small specification.
Claims (6)
1. The utility model provides a bottle is pressed to high emulsion rate of utilization, includes the bottle, presses pump head and straw, and the bottle top is equipped with the opening, presses pump head screwed connection on open-top, and the upper end of straw is connected with pressing the pump head, and the rest inserts in the bottle, and the pump head is pressed in the extrusion, presses the pump head through the interior emulsion of straw suction bottle, its characterized in that:
the device also comprises a liquid collecting disc;
the liquid collecting disc is in a spherical crown shape, and the center of the liquid collecting disc is lower than the edge of the liquid collecting disc;
the liquid collecting disc is arranged in the bottle body and on the bottom of the bottle body, the bottle body is cylindrical, and the edge of the liquid collecting disc is circular and is matched with the inner contour of the cross section of the bottle body;
the suction pipe is a vertical pipe body, and a liquid suction port at the bottom end of the suction pipe is arranged in an inclined manner;
the liquid collecting disc is connected with the suction pipe and is positioned below the suction pipe;
the liquid collecting disc is provided with a plurality of connecting rods; one end of the connecting rod is fixed with the outer wall of the suction pipe, and the other end of the connecting rod is fixed with the upper surface of the liquid collecting disc; a plurality of connecting rods are uniformly distributed;
or the liquid collecting disc is fixedly connected with the bottom end of the liquid suction port of the suction pipe;
the lowest position in the center of the liquid collecting disc is positioned right below the liquid suction port and is in contact with the bottom end of the liquid suction port;
the pump head is pressed by unscrewing and upwards lifting, the liquid collecting disc moves upwards along with the suction pipe, the edge of the liquid collecting disc scrapes off the emulsion stuck on the inner wall of the bottle body in the upward moving process, the emulsion is collected to the lower center of the liquid collecting disc from the edge of the liquid collecting disc, and the pump head can be pressed by extrusion to suck out the collected emulsion.
2. The high emulsion usage push bottle of claim 1, wherein:
wherein, the fixed position of the connecting rod on the upper surface of the liquid collecting tray does not exceed the range of the top opening of the bottle body.
3. The high emulsion usage push bottle of claim 1, wherein:
wherein, the fixed height of the connecting rod on the outer wall of the suction pipe does not exceed the height of the liquid collecting plate.
4. The high emulsion usage push bottle of claim 1, wherein:
wherein, the bottom surface in the bottle body is also in a spherical crown shape and is matched with the lower surface of the liquid collecting disc.
5. The high emulsion usage push bottle of claim 4, wherein:
wherein, the bottom surface outside the bottle body is horizontal.
6. The high emulsion usage push bottle of claim 1, wherein:
wherein the spherical crown of the drip pan is one third to one half of the radius thereof.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120242279.XU CN215623917U (en) | 2021-01-28 | 2021-01-28 | High emulsion utilization ratio presses bottle |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120242279.XU CN215623917U (en) | 2021-01-28 | 2021-01-28 | High emulsion utilization ratio presses bottle |
Publications (1)
Publication Number | Publication Date |
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CN215623917U true CN215623917U (en) | 2022-01-25 |
Family
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Family Applications (1)
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CN202120242279.XU Active CN215623917U (en) | 2021-01-28 | 2021-01-28 | High emulsion utilization ratio presses bottle |
Country Status (1)
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CN (1) | CN215623917U (en) |
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2021
- 2021-01-28 CN CN202120242279.XU patent/CN215623917U/en active Active
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