CN210169608U - Water cup discharge external adjusting device - Google Patents

Water cup discharge external adjusting device Download PDF

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Publication number
CN210169608U
CN210169608U CN201920345831.0U CN201920345831U CN210169608U CN 210169608 U CN210169608 U CN 210169608U CN 201920345831 U CN201920345831 U CN 201920345831U CN 210169608 U CN210169608 U CN 210169608U
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China
Prior art keywords
inner tube
disc
shell
connecting shaft
shaft
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CN201920345831.0U
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Chinese (zh)
Inventor
Donghai Chen
陈东海
Yun Wang
王云
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Suzhou Benxu Plastic Technology Co.,Ltd.
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Shenzhen Futaihong Precision Industry Co Ltd
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Priority to CN201920345831.0U priority Critical patent/CN210169608U/en
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Abstract

The utility model relates to a directly drink formula drinking cup field, in particular to flow external regulating device is told out to drinking cup, include: the device comprises a shell, an upper disc, a lower disc, a connecting shaft, a spring, a side shaft, a side sealing bearing, a toggle block and an adjusting button; the hanging wall is the tubbiness cylinder of the open face in upper portion, and its inside center department is provided with the last inner tube of the bellied siphonozooid that makes progress, and the last top surface of going up the inner tube is the closed surface, and just above inner tube is central, and the circle array sets up a plurality of passive dead slots in top, and the passive dead slot in top is fan-shaped from last down looking the cross-section, is provided with the last pipe side channel of a plurality of rectangles perpendicularly at the circumference side wall of last inner tube, the utility model discloses a contact of regulating part with the finger in the cup has stopped food safety's hidden danger, and has realized that multipolar regulation is put out, has strengthened user's.

Description

Water cup discharge external adjusting device
Technical Field
The utility model belongs to the technical field of direct drinking type drinking cup and specifically relates to an external adjusting device of flow is told to drinking cup is related to.
Background
The cup has various forms as daily necessities, and a portable cup is carried with the cup to supplement water for the body, so that the cup becomes the choice of many people who pursue health;
if children use, because the characteristics of health, the demand is less flow, if the people drinks hot drink, also need suitable flow, people are when going on a journey or taking exercise, and the environment decides to be difficult to get the water source, needs less, intermittent drinking to the needs of water conservation meeting journey time.
To address this problem, the skilled artisan has devised an internal dial type adjustable discharge volume arrangement, such as the following: 201511002825.8 the title is an adjustable discharge amount structure of a direct drinking type water cup bottle plug and a water cup, the structure is simple, but the adjusting part is in the cup and at the direct contact part of the beverage, which undoubtedly generates hidden danger of food safety and needs to be improved;
the patent adopts 3 adjustable spitting holes, multi-pole adjustment cannot be achieved, and improvement is needed;
SUMMERY OF THE UTILITY MODEL
Therefore, the present invention has been made in view of the above problems, and an object of the present invention is to provide an external regulating device for cup discharge flow, which can achieve the above objects by the following technical solutions:
an external cup discharge flow adjustment device comprising: the device comprises a shell, an upper disc, a lower disc, a connecting shaft, a spring, a side shaft, a side sealing bearing, a toggle block and an adjusting button;
the shell is a tubular body, the upper part of the shell is fixedly arranged with the drinking port, and the middle part of the shell is provided with a hole platform formed by round holes with different inner diameters;
the upper wall is a barrel-shaped cylinder with an open upper surface, an upper inner tube of a tubular body protruding upwards is arranged in the center of the upper wall, the upper top surface of the upper inner tube is a closed surface, the upper inner tube is used as the center, a plurality of top passive grooves are arranged in a circular array, the cross section of each top passive groove is in a fan shape when viewed from top to bottom, a plurality of rectangular upper tube side grooves are vertically arranged on the circumferential side wall surface of the upper inner tube, the upper inner tubes of the rectangular hollow grooves are arranged in a central circular array, and the height of each rectangular hollow groove is larger than the height of the outer circumferential side of the inner;
the lower disc is a barrel-shaped cylinder with an open lower surface and is fixedly arranged on a hole table on the inner wall of the shell, an annular lower disc bulge with a rectangular cross section is arranged below the upper disc in the direction close to the upper disc, an upper disc groove matched with the lower disc bulge is arranged on the bottom surface of the upper disc corresponding to the lower disc bulge, a lower inner tube of a bulged upper sealing tubular body is arranged in the direction from the center of the lower disc to the upper disc 2, the peripheral side wall of the lower inner tube is embedded and assembled with the inner wall of the upper inner tube, and a rectangular lower tube side groove is vertically arranged on the peripheral side wall surface of the lower inner tube;
the upper end of the connecting shaft is connected with the upper end wall of the lower inner tube through the upper end of the upper inner tube, the lower end of the connecting shaft is connected with the upper end wall of the lower inner tube through the lower end of the connecting shaft, the upper end of the connecting shaft penetrates through the top of the upper inner tube and the top of the lower inner tube and extends out of the upper inner tube, the upper end of the connecting shaft is sleeved with the upper retaining ring, the upper retaining ring is abutted against the outer top surface of the upper inner tube;
one end of the side shaft penetrates through the shell and extends into the center of the interior of the shell, the side part of the upper end of the connecting shaft penetrates through the connecting shaft, a shell side hole is formed in the position of the shell through which the side shaft penetrates, a shaft side hole is formed in the position of the side shaft penetrating through the connecting shaft, and the other end of the side shaft penetrates through the exterior of the shell;
the outer ring of the side sealing bearing is fixedly arranged on the side hole of the shell, and the inner ring of the side sealing bearing is fixedly connected with the side shaft;
the shifting block is a plurality of fan-shaped block bodies, the side shafts are sleeved on the side shafts in an array mode by taking the side shafts as centers, the shifting block is located above the top driven groove, one fan-shaped block of the shifting block extends into the top driven groove, when the upper disc and the lower disc are embedded, the shifting block shifts the wall of the top driven groove when the side shafts rotate, and then the upper disc is driven to rotate, so that the lower pipe side groove is overlapped with one upper pipe side groove with different heights;
the adjusting button is disc-shaped, and is sleeved on the side shaft outside the shell.
In one embodiment, the upper tube side slots are provided as a plurality of slots that are laterally smaller to larger.
In one embodiment, the upper disc open face is configured to be upwardly tapered.
In one embodiment, the open face of the lower disc is configured to be downwardly tapered.
In one embodiment, the connecting shaft and the upper inner tube are arranged in a sealed bearing connection.
In one embodiment, the knob is provided with a plurality of protrusions/recesses on a circumferential side.
In one embodiment, the upper disc is provided with an annular fluted disc on the top surface of the outer periphery side, and the shifting block is provided with a vertical gear meshed with the annular fluted disc.
In one embodiment, a horizontal bevel gear is arranged on the upper top surface of the upper inner pipe, and the shifting block is arranged to be a vertical bevel gear meshed with the shifting block.
In one embodiment, in order to increase the adjustment mode of the discharge quantity, the device is additionally provided with a linear pushing mechanism, and the linear pushing mechanism comprises: the button comprises a button shell, a connecting rod, an external gear, straight teeth and an adjusting push button; the button casing is built-in hollow cuboid, and fixed the setting is in shell outer wall side, and inside the button casing stretched into to the outer end of side shaft to the external gear is established to the cover on the inside side shaft of button casing, sets up the straight-tooth perpendicularly with the external gear, and external gear and straight-tooth meshing, straight-tooth lateral wall are connected to the outside rectangle of button casing through the connecting rod and adjust and push away the button, and set up the button wall hole that link up the button casing wall in the position that the connecting rod runs through the button casing.
The utility model has the advantages as follows:
1. the utility model realizes the contact of the adjusting part with fingers in the cup, and eliminates the hidden danger of food safety;
2. the utility model discloses accomplish multipolar regulation volume of spouting, strengthened user's experience.
Drawings
Fig. 1 is an overall schematic view of the present invention.
Fig. 2 is a top view of the internal structure of the present invention.
Fig. 3 is a bottom view of the internal structure of the present invention.
Fig. 4 is an expanded application schematic diagram of the present invention.
Fig. 5 is an application schematic diagram of the outer ring transmission of the present invention.
Fig. 6 is an application schematic diagram of the inner ring transmission of the present invention.
FIG. 7 is a schematic view of the application of the linear pushing mechanism of the present invention
Detailed Description
The preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings, which are easily implemented by those having ordinary skill in the art to which the present invention pertains. The invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. In addition, for the purpose of more clearly describing the present invention, parts not connected with the present invention will be omitted from the drawings.
As shown in figures 1 and 4, the external regulating device for the water cup discharge flow comprises a shell 1, an upper disc 2, a lower disc 3, a connecting shaft 4, a spring 5, a side shaft 6, a side sealing bearing 7, a dial block 8 and a regulating button 9;
as shown in fig. 1 and 2, the housing 1 is a tubular body, the upper part of the housing is fixed to the drinking spout 100, and the middle part of the housing 1 is provided with a hole platform 11 formed by circular holes with different inner diameters;
the upper disc 2 is a barrel-shaped cylinder with an open upper surface, an upper inner tube 22 of a tubular body which is convex upwards is arranged at the center of the upper disc 2, the upper top surface of the upper inner tube 22 is a closed surface, the upper inner tube 22 is used as the center, a plurality of top passive grooves 221 are arranged in a circular array, the cross section of each top passive groove 221 viewed from top to bottom is in a fan shape, a plurality of rectangular upper tube side grooves 222 are vertically arranged on the circumferential side wall surface of the upper inner tube 22, the inner tube 22 above the rectangular empty grooves is used as the central circular array, and the height of each rectangular empty groove is larger than the height of the outer circumferential side of the inner;
as shown in fig. 2 and 3, the lower plate 3 is a cylindrical body with an open lower surface and is fixedly arranged on the hole table 11 on the inner wall of the housing 1, an annular lower plate protrusion 31 with a rectangular cross section is arranged below the upper plate 2 in the direction close to the upper plate 2, an upper plate groove 21 matched with the lower plate protrusion 31 is arranged on the bottom surface of the upper plate 2 corresponding to the lower plate protrusion 31, a lower inner tube 32 with a protruded upper sealing tubular body is arranged in the direction from the center of the lower plate 3 to the upper plate 2, the outer peripheral side wall of the lower inner tube 32 is embedded and assembled with the inner wall of the upper inner tube 22, and a rectangular lower tube side groove 321 is vertically arranged on the peripheral side wall surface of the lower inner tube 32;
the two ends of the connecting shaft 4 are provided with a cylindrical upper retainer ring 41 and a cylindrical lower retainer ring 42, one end of the connecting shaft 4, the cylindrical lower retainer ring 42 abuts against the spring 5 and is connected with the inner top wall of the lower inner tube 32, the other end of the connecting shaft 4 penetrates through the tops of the upper inner tube 22 and the lower inner tube 32 and extends out of the upper inner tube 22, the upper retainer ring 41 is sleeved on the connecting shaft 4, the upper retainer ring 41 abuts against the outer top surface of the upper inner tube 22, and the connecting shaft 4 is movably connected with the upper inner tube 22 and the lower inner tube 32, so that the upper retainer ring 41 and the lower retainer ring 42 are movably arranged, and the upper inner tube 22 and the upper disc groove 21 of the upper disc 2 are;
one end of the side shaft 6 penetrates through the shell 1, extends into the center of the interior of the shell 1, penetrates through the connecting shaft 4 from the side part of the upper end of the connecting shaft 4, a shell side hole 13 is formed at the position of the shell 1 through which the side shaft 6 penetrates, a shaft side hole 43 is formed at the position of the side shaft 6 penetrating through the connecting shaft 4, and the other end of the side shaft penetrates through the exterior of the shell 1;
the outer ring of the side sealing bearing 7 is fixedly arranged on the shell side hole 13, and the inner ring is fixedly connected with the side shaft 6;
the poking block 8 is a plurality of fan-shaped block bodies, is sleeved on the side shaft 6 by taking the side shaft 6 as a central circle array and is positioned above the top driven groove 221, one fan-shaped block of the poking block 8 extends into the top driven groove 221, when the upper disc 2 and the lower disc 3 are embedded, and the poking block 8 rotates on the side shaft 6, the wall of the top driven groove 221 is poked, so that the upper disc 2 is driven to rotate, and the lower tube side groove 321 is overlapped with one upper tube side groove 222 with different heights;
the adjusting button 9 is disc-shaped and is sleeved on the side shaft 6 outside the shell 1.
As shown in fig. 4, preferably, as an implementation mode, the upper tube side grooves 222 are provided with a plurality of grooves from small to large in the transverse direction, so that the discharge amount can be adjusted steplessly.
Preferably, as an alternative, the open face of the upper tray 2 is provided with an upper taper 20 to facilitate the excess flow of beverage fluid into the upper spout 100.
Preferably, as an alternative, the open face of the lower plate 3 is provided with a lower taper 30 to facilitate the flow of drink fluid into the lower pipe-side groove 321.
Preferably, as an implementation mode, the connecting shaft 4 and the upper inner tube 22 are arranged to be connected by a sealing bearing 103, so that the rotation resistance is reduced.
Preferably, as an implementation mode, the adjusting knob 9 is provided with a plurality of projections/grooves on the circumference side to increase the friction force when adjusting by fingers.
As shown in fig. 5, as an embodiment, it is preferable that an annular toothed disc 203 is provided on the top surface on the outer peripheral side of the upper plate 2, the dial 8 is provided as a vertical gear 204 that meshes with the annular toothed disc, the vertical gear 204 rotates with the side shaft 6, the annular toothed disc 203 is further driven, the upper plate 2 and the upper inner tube 22 rotate, and the position where the lower tube side groove 321 and the upper tube side groove 222 having different heights overlap each other is changed.
As shown in fig. 6, preferably, as an implementation mode, a horizontal bevel gear 201 is disposed on the top surface of the upper inner tube 22, the dial 8 is disposed as a vertical bevel gear 202 engaged with the dial, and the rotation of the side shaft 6 drives the vertical bevel gear 202, and further drives the horizontal bevel gear 201 and the upper inner tube 22 to rotate, thereby changing the forming overlapping position of the lower tube side groove 321 and the upper tube side groove 222 with different heights.
As shown in fig. 6 and 7, in order to increase the adjustment mode of the discharge amount, the device is additionally provided with a linear pushing mechanism, and the linear pushing mechanism comprises: a button shell 301, a connecting rod 302, an outer gear 303, a straight gear 304 and an adjusting push button 305; the button shell 301 is a hollow rectangular body, and is fixedly arranged on the outer wall side of the shell 1, the outer end of the side shaft 6 extends into the button shell 301, the outer gear 303 is sleeved on the side shaft 6 in the button shell 301, a straight tooth 304 is provided perpendicularly to the outer gear 303, the outer gear 303 is engaged with the straight tooth 304, the outer side wall of the straight tooth 304 is connected to a rectangular adjusting push button 305 outside the button housing 301 through a link, and a button wall hole 3011 penetrating through the button shell 301 is arranged at the position where the connecting rod 302 penetrates through the button shell 301, the arrangement enables an operator to use the thumb to directly push the button to adjust the discharge quantity, the operator uses the thumb to push the adjusting push button 305 to drive the straight teeth 304 to move up and down, thereby driving the external gear 303 engaged with the external gear to rotate, the external gear 303 rotates to drive the side shaft 6 to rotate, and the dial block 8 dials the upper plate 2 to rotate horizontally, so that the forming overlapping position of the lower pipe side groove 321 and the upper pipe side grooves 222 with different heights is changed.
The utility model discloses the theory of operation:
① As shown in FIGS. 2 and 3, the operator rotates the knob 9 to rotate the side shaft 6 and thus the dial block 8 to dial the wall of the driven groove 221 and thus the upper inner tube 22, and thus the overlapping position of the lower tube side groove 321 and the upper tube side groove 222 of different heights is changed, and the amount of beverage discharged from the lower tray 3 to the upper tray 2 is changed.

Claims (8)

1. An external cup discharge flow adjustment device comprising: the device comprises a shell (1), an upper disc (2), a lower disc (3), a connecting shaft (4), a spring (5), a side shaft (6), a side sealing bearing (7), a toggle block (8) and an adjusting button (9);
the shell (1) is a tubular body, the upper part of the shell is fixedly arranged with the drinking spout (100), and the middle part of the shell (1) is provided with a hole platform (11) formed by round holes with different inner diameters;
the method is characterized in that: the upper disc (2) is a barrel-shaped cylinder with an open upper surface, an upper inner tube (22) of a tubular body protruding upwards is arranged in the center of the upper disc (2), the upper top surface of the upper inner tube (22) is a closed surface, the upper inner tube (22) is used as the center, a plurality of top passive grooves (221) are arranged in a circular array, the cross section of each top passive groove (221) is in a fan shape when viewed from top to bottom, a plurality of rectangular upper tube side grooves (222) are vertically arranged on the circumferential side wall surface of the upper inner tube (22), the rectangular empty grooves are arranged above the inner tube (22) in a central circular array, and the rectangular empty grooves are arranged from small to large above the outer circumferential side of the inner tube (;
the lower disc (3) is a barrel-shaped cylinder with an open lower surface and is fixedly arranged on a hole table (11) on the inner wall of the shell (1), an annular lower disc bulge (31) with a rectangular cross section is arranged below the upper disc (2) in the direction close to the upper disc (2), an upper disc groove (21) matched with the lower disc bulge (31) is arranged on the bottom surface of the upper disc (2) corresponding to the lower disc bulge (31), a lower inner tube (32) with a bulged upper sealing tubular body is arranged at the center of the lower disc (3) in the direction towards the upper disc (2), the peripheral side wall of the lower inner tube (32) is embedded and assembled with the inner wall of the upper inner tube (22), and a rectangular lower tube side groove (321) is vertically arranged on the peripheral side wall surface of the lower inner tube (32);
the connecting shaft is characterized in that cylindrical upper check rings (41) and lower check rings (42) are arranged at two ends of the connecting shaft (4), the lower check rings (42) at one end of the connecting shaft (4) abut against the spring (5) and are connected to the inner top wall of the lower inner tube (32), the other end of the connecting shaft penetrates through the tops of the upper inner tube (22) and the lower inner tube (32) and extends out of the upper inner tube (22), the upper check rings (41) are sleeved on the connecting shaft (4), the upper check rings (41) abut against the outer top surface of the upper inner tube (22), and the connecting shaft (4) is movably connected with the upper inner tube (22);
one end of the side shaft (6) penetrates through the shell (1) and extends into the center of the interior of the shell (1), the connecting shaft (4) penetrates through the side part of the upper end of the connecting shaft (4), a shell side hole (13) is formed in the position, through which the side shaft (6) penetrates, of the shell (1), a shaft side hole (43) is formed in the position, through which the side shaft (6) penetrates, of the connecting shaft (4), and the other end of the side shaft penetrates through the exterior of the shell (1);
the outer ring of the side sealing bearing (7) is fixedly arranged on the shell side hole (13), and the inner ring of the side sealing bearing is fixedly connected with the side shaft (6);
the poking blocks (8) are a plurality of fan-shaped block bodies, the side shafts (6) are sleeved on the side shafts (6) in an array mode by taking the side shafts (6) as a center circle, the side shafts are located above the top driven grooves (221), one fan-shaped block of the poking blocks (8) extends into the top driven grooves (221), when the upper disc (2) and the lower disc (3) are embedded, the poking blocks (8) poke the walls of the top driven grooves (221) when the side shafts (6) rotate, the upper disc (2) is further driven to rotate, and the lower pipe side grooves (321) are overlapped with one upper pipe side groove (222) of different heights;
the adjusting button (9) is disc-shaped, and is sleeved on the side shaft (6) outside the shell (1).
2. The external regulating device for the spitting flow of the water cup as claimed in claim 1, wherein: the upper pipe side grooves (222) are arranged into a plurality of grooves which are transversely enlarged from small to large.
3. The external regulating device for the spitting flow of the water cup as claimed in claim 1, wherein: the open surface of the upper disc (2) is provided with an upper cone (20).
4. The external regulating device for the spitting flow of the water cup as claimed in claim 1, wherein: the open surface of the lower disc (3) is arranged to be a lower cone (30).
5. The external regulating device for the spitting flow of the water cup as claimed in claim 1, wherein: the connecting shaft (4) and the upper inner pipe (22) are connected through a sealing bearing (103).
6. The external regulating device for the spitting flow of the water cup as claimed in claim 1, wherein: the adjusting knob (9) is provided with a plurality of projections/grooves on the circumference side.
7. The external regulating device for the spitting flow of the water cup as claimed in claim 1, wherein: an annular fluted disc (203) is arranged on the top surface of the outer periphery of the upper disc (2), the poking block (8) is a vertical gear (204) meshed with the poking block, and a rotating vertical gear (204) of the side shaft (6).
8. The external regulating device for the spitting flow of the water cup as claimed in claim 1, wherein: the upper top surface of the upper inner pipe (22) is provided with a horizontal bevel gear (201), and the toggle block (8) is provided with a vertical bevel gear (202) meshed with the toggle block.
CN201920345831.0U 2019-03-19 2019-03-19 Water cup discharge external adjusting device Active CN210169608U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920345831.0U CN210169608U (en) 2019-03-19 2019-03-19 Water cup discharge external adjusting device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920345831.0U CN210169608U (en) 2019-03-19 2019-03-19 Water cup discharge external adjusting device

Publications (1)

Publication Number Publication Date
CN210169608U true CN210169608U (en) 2020-03-24

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ID=69829645

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920345831.0U Active CN210169608U (en) 2019-03-19 2019-03-19 Water cup discharge external adjusting device

Country Status (1)

Country Link
CN (1) CN210169608U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111972093A (en) * 2020-09-15 2020-11-24 黑龙江省农业科学院马铃薯研究所 Sowing mechanism based on potato cultivation

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111972093A (en) * 2020-09-15 2020-11-24 黑龙江省农业科学院马铃薯研究所 Sowing mechanism based on potato cultivation
CN111972093B (en) * 2020-09-15 2022-05-20 黑龙江省农业科学院马铃薯研究所 Sowing mechanism based on potato cultivation

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Effective date of registration: 20220114

Address after: 215000 Building 1, No. 15, Sitong North Road, Loudong street, Taicang City, Suzhou City, Jiangsu Province

Patentee after: Suzhou Benxu Plastic Technology Co.,Ltd.

Address before: 232063 5th floor, Jianghuai cloud industrial platform, Taikang street, Shannan high tech Zone, Huainan City, Anhui Province

Patentee before: Anhui Guandong Electronic Technology Co.,Ltd.