Flexible pipe discharging control mechanism and container thereof
The design of the flexible tube discharge control mechanism solves the problems of wear and moisture ingress of the quantitative control mechanism, achieving safe and quantitative discharge and preventing agglomeration.
Patent Information
- Application Number
- CN202423171816.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-23
AI Technical Summary
In existing technologies, powdery particles can easily enter through the gaps in the quantitative control mechanism or the discharge mechanism, leading to wear and contamination. Furthermore, the discharge port is susceptible to moisture, causing problems such as particle adhesion and clumping.
A flexible tube discharge control mechanism is adopted. By squeezing or releasing the middle part of the outer surface of the flexible tube, the open and closed state of the internal channel of the flexible tube is switched. Combined with the upper and lower squeezing or releasing adjustment, quantitative discharge control is achieved. A detachable desiccant box is set at the discharge port to prevent moisture from entering.
It effectively avoids wear and contamination, achieves quantitative discharge control, prevents clumping at the discharge port, makes it safer to use, and reduces contact with external moisture.
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Figure CN223601344U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of discharge control mechanism and its container. BACKGROUND
[0002] In Chinese utility model patent announcement No.CN 218186535 U, a kind of seasoning tank of manual ration discharging is disclosed;And announcement No.CN203138225U, a kind of self-quantitative closed seasoning box is disclosed.The prior art disclosed above, there are the disadvantages that the activity gap between quantitative control mechanism or discharge mechanism is easy to enter powdery particles, rigid particles between movable parts are easy to wear, and the wear of the material of movable parts is also easy to be brought into seasoning, causing pollution, and proper gap between movable parts is the prerequisite for ensuring activity, so there is structural principle defect;At the same time, since the discharge port is not shielded, moisture is easy to enter, causing particle adhesion, caking and other situations. SUMMARY
[0003] In order to overcome the deficiencies of the prior art, the utility model provides a kind of flexible pipe discharge control mechanism and its container, hollow flexible pipe one end sealed communication storage container inner chamber, the other end is located in the discharge port of storage container, by control mechanism to the middle part of the outer surface of flexible pipe extrusion or loosening, realize the on-off state conversion of flexible pipe internal passage, effectively avoid wear and pollution, safer to use;By extrusion or loosening adjustment of two places, realize ration discharging control.
[0004] The technical scheme adopted by the utility model to solve its technical problems is:
[0005] A kind of flexible pipe discharge control mechanism, including flexible pipe and for the middle part of the outer surface of flexible pipe extrusion or loosening control mechanism, flexible pipe is hollow, the flexible pipe one end sealed communication storage container inner chamber, the other end of the flexible pipe is located in the discharge port of storage container, the action end of the control mechanism is in contact with the outer surface of the flexible pipe, realize the on-off state conversion of flexible pipe internal passage.
[0006] Further, the action end of the control mechanism is connected with the outer surface of flexible pipe.
[0007] Further, the flexible pipe is placed in the container cover of storage container, the control mechanism includes operating handle, push rod, first reset spring and second reset spring, the operating handle is linked with push rod, the end of the push rod is used as the action end of the control mechanism, the operating handle is connected with container cover by first reset spring, the push rod is connected with container cover by second reset spring.The scheme realizes the control of extrusion or loosening in one place.
[0008] Further, the control mechanism is realized by squeezing or loosening the flexible tube at two positions, and the squeezing or loosening state of the two positions is opposite to each other. The scheme realizes quantitative discharging, and the discharging amount is approximately the internal volume of the flexible tube at the two positions. Preferably, the flexible tube is arranged in the container cover of the storage container, the control mechanism comprises an operating handle, a gear and rack structure, an upper cam push rod and a lower cam push rod, the operating handle is connected with the rack of the gear and rack structure, the rack is telescopically arranged in the container cover, and the rack is connected with the container cover through a third reset spring; the gear is rotatably arranged in the container cover, the upper and lower sides of the rack are matched with an upper gear and a lower gear respectively, the upper gear is coaxially connected with the cam of the upper cam push rod, the lower gear is coaxially connected with the cam of the lower cam push rod, the extension and retraction directions of the upper cam push rod and the lower cam push rod are opposite, and the upper cam push rod and the lower cam push rod are both the action end of the control mechanism. The scheme realizes a control of squeezing or loosening at two positions.
[0009] Alternatively, the flexible tube is arranged in the container cover of the storage container, the control mechanism comprises an operating handle and a linkage rod structure, the linkage rod structure moves in the container cover along a direction perpendicular to the flexible tube, the linkage rod structure comprises a left vertical rod, a left push rod, a connecting rod, a right vertical rod and a right push rod, the upper end of the left vertical rod is connected with the left end of the connecting rod, the right end of the connecting rod is connected with the upper end of the right vertical rod, the left side of the left vertical rod is provided with the left push rod, the left vertical rod is connected with the container cover through a fourth reset spring, the left side of the right vertical rod is provided with the right push rod, the left push rod and the right push rod are arranged in an up-down staggered mode, the left push rod and the right push rod are both the action end of the control mechanism, and the action end of the operating handle is matched with the left vertical rod; and the operating handle is connected with the container cover through a first reset spring. The scheme realizes another control of squeezing or loosening at two positions.
[0010] Preferably, the flexible tube is arranged in the container cover of the storage container, the left push rod is higher than the right push rod, in the initial state, the right push rod abuts against the lower position of the flexible tube, and the left push rod loosens the upper position of the flexible tube; the entire linkage rod structure is pushed to the left through the operating handle until the push rod abuts against the upper position of the flexible tube, at this time, the right push rod loosens the lower position of the flexible tube, and the initial state is restored under the action of the first reset spring and the fourth reset spring after the operating handle is released.
[0011] Further, the flexible tube is arranged in the container cover of the storage container, the control mechanism further comprises a cover for shielding the discharging port position, the cover is arranged at the discharging port position, the cover is rotatably arranged on a rotating shaft, the rotating shaft is connected with a gear shaft, a gear on the gear shaft is engaged with a rack, the rack is connected with the operating handle, and the operating handle is connected with the container through a first reset spring.
[0012] Preferably, the operation handle is operated first to operate the protective cover and then to control the flexible tube.
[0013] More preferably, the protective cover is further provided with a detachable desiccant box for absorbing air moisture at the discharge port.
[0014] A container with a flexible tube discharge control mechanism, comprising a container body and a container cover, an outer cover is installed at the upper opening of the container body, an intermediate body is installed in the outer cover, a flexible tube and a control mechanism for pressing or releasing the intermediate part of the outer surface of the flexible tube are connected to the container cover, the flexible tube is hollow, one end of the flexible tube is sealed and connected to the inner cavity of the container body, the other end of the flexible tube is located at the discharge port of the container cover, the action end of the control mechanism is in contact with the outer surface of the flexible tube to realize the on-off state conversion of the internal passage of the flexible tube.
[0015] Further, the action end of the control mechanism is connected to the outer surface of the flexible tube. Further, the flexible tube is placed in the container cover, the control mechanism comprises an operation handle, a push rod, a first return spring and a second return spring, the operation handle is linked with the push rod, the end of the push rod serves as the action end of the control mechanism, the operation handle is connected to the container cover through the first return spring, and the push rod is connected to the container cover through the second return spring.
[0016] Further, the control mechanism is realized by pressing or releasing the upper and lower parts of the flexible tube, and the pressing or releasing states of the two parts are opposite to each other. This scheme realizes quantitative discharge, and the amount of discharge is approximately the internal volume of the upper and lower parts of the flexible tube.
[0017] Preferably, the flexible tube is placed in the container cover, the control mechanism comprises an operation handle, a gear and rack structure, an upper cam push rod and a lower cam push rod, the operation handle is linked with the rack of the gear and rack structure, the rack is telescopically located in the container cover, and the rack is connected to the container cover through a third return spring; the gear is rotatably installed in the container, the upper and lower sides of the rack are respectively matched with an upper gear and a lower gear, the upper gear is coaxially connected with the cam of the upper cam push rod, the lower gear is coaxially connected with the cam of the lower cam push rod, the extension and retraction directions of the upper cam push rod and the lower cam push rod are opposite, and the upper cam push rod and the lower cam push rod both serve as the action end of the control mechanism.
[0018] Or, the flexible pipe is arranged in the container cover, the control mechanism comprises an operating handle and a linkage rod structure, the linkage rod structure moves in the container cover along a direction perpendicular to the flexible pipe, the linkage rod structure comprises a left vertical rod, a left push rod, a connecting rod, a right vertical rod and a right push rod, the upper end of the left vertical rod is connected with the left end of the connecting rod, the right end of the connecting rod is connected with the upper end of the right vertical rod, the left side of the left vertical rod is provided with the left push rod, the left vertical rod is connected with the container cover through a fourth reset spring, the left side of the right vertical rod is provided with the right push rod, the left push rod and the right push rod are arranged in up-down staggered mode, the left push rod and the right push rod both act as the action end of the control mechanism, and the action end of the operating handle is matched with the left vertical rod; the operating handle is connected with the container cover through a first reset spring.
[0019] Preferably, the left push rod is higher than the right push rod, in the initial state, the right push rod abuts against the lower position of the flexible pipe, and the left push rod releases the upper position of the flexible pipe; the whole linkage rod structure is pushed to move leftwards through the operating handle until the push rod abuts against the upper position of the flexible pipe, at this time, the right push rod releases the lower position of the flexible pipe, and the initial state is restored under the action of the first reset spring and the fourth reset spring after the operating handle is released.
[0020] The flexible pipe is arranged in the container cover, the control mechanism further comprises a cover for shielding the discharging port position, the cover is located at the discharging port position, the cover is rotatably installed on a rotating shaft, the rotating shaft is linked with a gear shaft, a gear on the gear shaft is engaged with a rack, the rack is linked with the operating handle, and the operating handle is connected with the inner wall of the container through a first reset spring.
[0021] Preferably, the container cover comprises an outer cover and an intermediate body, the intermediate body is installed in the outer cover, and the flexible pipe passes through and is fixed in the middle part of the intermediate body.
[0022] The cover is further provided with a detachable desiccant box for absorbing air moisture at the discharging port.
[0023] More preferably, a flexible inner container is arranged in the container body, and the inner wall of the flexible inner container is concave-convex.
[0024] The bottom of the container body is provided with a breathable hole.
[0025] The utility model discloses have the beneficial effect mainly in: 1, the inside passage of flexible pipe, the on-off state conversion, effectively avoid the wear and pollution, use more safe, 2, through the adjustment of two places extrusion or release, realize the rationed discharge control, 3, the cover of discharging port is further provided with detachable desiccant box, be used for absorbing air moisture at the discharging port, prevent the discharging port contact humidity and agglomerate, 4, the container body is provided with flexible inner container, the bottom of the container body is provided with breathable hole, like this avoided the use process humidity and entered the container directly through the discharging port. Attached Figure Description
[0026] Figure 1 This is a schematic diagram of the initial state of the flexible tube in the flexible tube discharge control mechanism.
[0027] Figure 2 This is a schematic diagram showing the connection between the flexible tube and the extrusion rod in the flexible tube discharge control mechanism.
[0028] Figure 3 This is a diagram showing the state of the flexible tube being completely compressed in the flexible tube discharge control mechanism.
[0029] Figure 4 This is a schematic diagram of the first instance of adjusting by squeezing or releasing at both the top and bottom.
[0030] Figure 5 This is a schematic diagram of the second instance of adjusting by squeezing or releasing at both the top and bottom.
[0031] Figure 6 This is a schematic diagram of a container with a flexible tube discharge control mechanism. Detailed Implementation
[0032] The present invention will now be further described with reference to the accompanying drawings.
[0033] Reference Figures 1-6 A flexible tube discharge control mechanism includes a flexible tube 3 and a control mechanism 7 for squeezing or releasing the middle part of the outer surface of the flexible tube. The flexible tube 3 is hollow. One end of the flexible tube 3 is sealed and connected to the inner cavity of the storage container, and the other end of the flexible tube 3 is located at the discharge port of the storage container. The actuating end of the control mechanism 7 contacts the outer surface of the flexible tube 3 to realize the switching of the on and off state of the internal channel of the flexible tube 3.
[0034] Furthermore, the actuating end of the control mechanism is connected to the outer surface of the flexible tube 3.
[0035] In this embodiment, Figure 1 The display shows the flexible tube 3 in a state where the internal channels are fully connected, and the state of the control mechanism 7. The cross-sectional shape of the flexible tube 3 in its natural state can be elliptical, pod-shaped, etc. The flexible tube 3 can have a uniform wall thickness, or it can vary in size and thickness along its length. The actuating end of the control mechanism can be a push rod that squeezes the flexible tube from one side, or a clamp that squeezes the flexible tube from both sides, or other actuating components.
[0036] Figure 2 The diagram shows a snap-fit connection between the flexible tube 3 and the control mechanism 7. Other connection methods such as adhesion and hooks can also be used.
[0037] Figure 3The display is flexible tube 3 in the internal passage gradually closed state, and the state of control mechanism 7, if the push rod of control mechanism 7 continues to close extrusion, will completely make flexible tube 3 internal passage completely closed, here the control mechanism push rod is located in the side of flexible tube, the opposite side of flexible tube is provided with auxiliary positioning member for positioning flexible tube, so that the push rod extrusion flexible tube when the flexible tube will not shift, the flexible tube will be extruded by the end of push rod; the auxiliary positioning member at this place belongs to the technical common sense, the action end of control mechanism 7 in the embodiment can be provided with the structure.
[0038] Further, the flexible tube 3 is placed in the container cover of the storage container, the control mechanism 7 includes an operating handle 71, a push rod 73, a first reset spring 72 and a second reset spring 74, the operating handle 71 is linked with the push rod 73, the end of the push rod 73 serves as the action end of the control mechanism, the operating handle 71 is connected with the container cover through the first reset spring 72, and the push rod 73 is connected with the container cover through the second reset spring 74. This scheme realizes one extrusion or loosening control.
[0039] Further, the control mechanism is extruded or loosened at two places on the flexible tube, and the extrusion or loosening state of the two places is opposite to each other. This scheme realizes quantitative discharging, and the discharging amount is approximately equal to the internal volume of the upper and lower flexible tubes.
[0040] Referring to Figure 4 , the flexible tube 3 is placed in the container cover of the storage container, the control mechanism 7 includes an operating handle 71, a gear and rack structure 75, an upper cam push rod 76 and a lower cam push rod 77, the operating handle 71 is linked with the rack of the gear and rack structure 75, the rack is telescopically located in the container, and the rack is connected with the container cover through a third reset spring 78; the gear is rotatably installed in the container cover, the gear is coaxially connected with cams of the upper cam push rod 76 and the lower cam push rod 77 located above and below the gear respectively, the upper cam push rod 76 and the lower cam push rod 77 are opposite in the extension direction, and the upper cam push rod and the lower cam push rod both serve as the action end of the control mechanism. In this scheme, the upper and lower action ends are staggered, when the upper cam push rod 76 extrudes the upper position of the flexible tube 3, the lower cam push rod 77 loosens the lower position of the flexible tube 3; conversely, when the upper cam push rod 76 loosens the upper position of the flexible tube 3, the lower cam push rod 77 extrudes the lower position of the lower position of the flexible tube 3; this scheme extrudes or loosens the upper and lower positions of the flexible tube 3, and the control form of the interlocking state of the adjacent two positions is realized, so that quantitative discharging is realized. This scheme realizes another control of extruding or loosening at two places, and realizes quantitative discharging.
[0041] Or, the control mechanism 7 includes an operating handle 71 and a linkage structure 79, the linkage structure 79 moves along the vertical direction of the flexible tube 3 in the container cover, the linkage structure 79 includes a left vertical rod, a left push rod, a connecting rod, a right vertical rod and a right push rod, the upper end of the left vertical rod is connected with the left end of the connecting rod, the right end of the connecting rod is connected with the upper end of the right vertical rod, the left side of the left vertical rod is provided with the left push rod, the left vertical rod is connected with the container cover through the fourth reset spring 80, the left side of the right vertical rod is provided with the right push rod, the left push rod and the right push rod are arranged in up-down staggered mode, the left push rod and the right push rod both act as the action end of the control mechanism, the action end of the operating handle 71 cooperates with the left vertical rod; the operating handle 71 is connected with the container cover through the first reset spring 72. Figure 5 , the left push rod is higher than the right push rod, in the initial state, the right push rod abuts against the lower position of the flexible tube, and the left push rod releases the upper position of the flexible tube; the whole linkage structure 79 is pushed to move left through the operating handle 71 until the left push rod abuts against the upper position of the flexible tube, at this time, the right push rod releases the lower position of the flexible tube, and after the operating handle 71 is released, it returns to the initial state under the action of the first reset spring 72 and the fourth reset spring 80. This scheme realizes another control of squeezing or releasing at two positions, and realizes quantitative discharging.
[0042] Further, the flexible tube 3 is placed in the container cover of the storage container, the control mechanism further includes a cover 5 for shielding the discharging port position, the cover 5 is located at the discharging port position, the cover 5 is rotatably installed on a rotating shaft, the rotating shaft is linked with a gear shaft, a gear on the gear shaft is engaged with a rack, the rack is linked with the operating handle 71, and the operating handle 71 is connected with the container cover through the first reset spring 72. This scheme realizes the rotation control of the cover; the gear and the rack form a gear and rack structure 75 (refer to Figure 4 , the gear and rack structure 75 is shared), when the operating handle 71 acts, the cover 5 is opened, that is, the discharging port is opened; after the operation is completed, the operating handle 71 is reset by the first reset spring 72, at this time, the cover 5 also returns to the initial state of shielding the discharging port. The rotating disc type cover of the embodiment reduces the influence of air disturbance during action, and also reduces the possibility of contacting with external humid air during cooking. Preferably, when the operating handle operates, the cover 5 is operated first and then the flexible tube 3 is controlled.
[0043] Preferably, the cover 81 is further provided with a detachable desiccant box 4 for absorbing air moisture at the discharging port.
[0044] Refer to Figure 6A container with flexible tube discharge control mechanism, comprising a container body 1 and a container cover (the outer cover 6 and the intermediate body 8 constitute the container cover), the upper opening of the container body 1 is installed with the outer cover 6, the outer cover 6 is installed with the intermediate body 8, the intermediate body 8 is connected with the flexible tube 3 and the control mechanism 7 for squeezing or loosening the intermediate part of the outer surface of the flexible tube, the flexible tube 3 is hollow, one end of the flexible tube 3 is sealed and communicated with the inner cavity of the container body, the other end of the flexible tube 3 is located at the discharge port of the intermediate body 8, the action end of the control mechanism 7 is in contact with the outer surface of the flexible tube 3, realizing the on-off state conversion of the internal passage of the flexible tube 3.
[0045] The control mechanism 7 can adopt various implementation schemes of the above-mentioned embodiments, can realize one-time squeezing or loosening control, or can realize up-down two-time squeezing or loosening control, preferably the up-down two-time squeezing or loosening control scheme, and can realize quantitative treatment.
[0046] Referring to Figure 5 , the control mechanism 7 comprises an operating handle 71, a push rod 73, a first reset spring 72 and a second reset spring 74, the operating handle 71 is linked with the push rod 73, the end of the push rod 73 serves as the action end of the control mechanism, the operating handle 71 is connected with the intermediate body 8 (container cover) through the first reset spring 72, and the push rod 73 is connected with the intermediate body 8 (container cover) through the second reset spring 74. This scheme realizes one-time squeezing or loosening control.
[0047] The control mechanism further comprises a cover 5 for shielding the discharge port position, the cover 5 is located at the discharge port position, the cover 5 is rotatably installed on a rotating shaft, the rotating shaft is linked with a gear shaft, a gear on the gear shaft is engaged with a rack, the rack is linked with the operating handle 71, and the operating handle is connected with the inner wall of the container through a reset spring. This scheme realizes the rotation control of the cover; the gear and the rack form a gear and rack structure 75, when the operating handle 71 is actuated, the cover 5 is opened, that is, the discharge port is opened; after the operation is completed, the first reset spring 72 drives the operating handle 71 to reset, at this time, the cover 5 also restores to the initial state of shielding the discharge port. The rotating disc type cover of the embodiment reduces the influence of air disturbance during operation, and also reduces the possibility of contacting with external humid air during cooking.
[0048] In the embodiment, when the operating handle 71 is operated, the flexible tube 3 is controlled after the operation of the protective cover 5. The process is as follows: when the operating handle 71 is operated, the rack drives the gear to open the protective cover 5 in the shielding outlet position against the action force of the first reset spring 72, at this time, the operating handle 71 is not in contact with the push rod 73; continue to press the operating handle 71, at this time, the operating handle 71 pushes the push rod 73 to move to the right against the action force of the second reset spring 72, and the flexible tube 5 is converted from the "off" state to the "on" state, the operating handle is released after the discharging is completed, the flexible tube 5 is converted from the "on" state to the "off" state under the action of the second reset spring 72, and the protective cover 5 is reset to the shielding outlet position under the action of the first reset spring 72.
[0049] Preferably, the protective cover 5 is further provided with a detachable desiccant box 4 for absorbing air moisture at the outlet.
[0050] Preferably, the container body 1 is provided with a flexible inner container 2, and the inner wall of the flexible inner container 2 is concave-convex 2a. The scheme is a double-layer container with a flexible inner container, which deforms adaptively with the reduction of internal storage when discharging, avoids the entry of external gas caused by vacuum, and the outer container is provided with a breathable hole to enable the flexible inner container to deform freely.
[0051] The bottom of the container body 1 is provided with a breathable hole 1a.
[0052] The content of the embodiments of the present specification is only a list of implementation forms of the utility model concept, and is only for illustrative purposes. The protection scope of the utility model should not be regarded as being limited to the specific forms stated in the embodiments, and the protection scope of the utility model also extends to the equivalent technical means that can be thought of by those skilled in the art according to the utility model concept.
Claims
1. A flexible pipe discharge control mechanism, characterised in that, The utility model provides a flexible pipe and control mechanism for extruding or loosening the middle part of the outer surface of the flexible pipe, the flexible pipe is hollow, one end of the flexible pipe is sealed to communicate with the inner cavity of a storage container, the other end of the flexible pipe is located at the discharge port of the storage container, the operating end of the control mechanism is in contact with the outer surface of the flexible pipe to realize the switching of the open and closed states of the internal passage of the flexible pipe.
2. A flexible tube dispensing control mechanism as claimed in claim 1, wherein, The operating end of the control mechanism is connected with the outer surface of the flexible pipe.
3. A flexible tube dispensing control mechanism as claimed in claim 1, wherein, The flexible pipe is arranged in the container cover of the storage container, the control mechanism comprises an operating handle, a push rod, a first return spring and a second return spring, the operating handle is linked with the push rod, the end of the push rod serves as the operating end of the control mechanism, the operating handle is connected with the container cover through the first return spring, and the push rod is connected with the container cover through the second return spring.
4. A flexible tube dispensing control mechanism as claimed in claim 1, wherein, The control mechanism extrudes or loosens the upper and lower parts of the flexible pipe, and the extrusion or loosening states of the two parts are opposite to each other.
5. A flexible tube dispensing control mechanism as claimed in claim 4, wherein, The flexible pipe is arranged in the container cover of the storage container, the control mechanism comprises an operating handle, a gear and rack structure, an upper cam push rod and a lower cam push rod, the operating handle is linked with the rack of the gear and rack structure, the rack is telescopically arranged in the container cover, and the rack is connected with the container cover through a third return spring; the gear is rotatably arranged in the container cover, the upper and lower sides of the rack are matched with an upper gear and a lower gear respectively, the upper gear is coaxially connected with the cam of the upper cam push rod, the lower gear is coaxially connected with the cam of the lower cam push rod, the extension and retraction directions of the upper cam push rod and the lower cam push rod are opposite, and the upper cam push rod and the lower cam push rod both serve as the operating end of the control mechanism.
6. A flexible tube dispensing control mechanism as claimed in claim 4, wherein, The flexible pipe is arranged in the container cover of the storage container, the control mechanism comprises an operating handle and a linkage rod structure, the linkage rod structure moves along the direction perpendicular to the flexible pipe in the container cover, the linkage rod structure comprises a left vertical rod, a left push rod, a connecting rod, a right vertical rod and a right push rod, the upper end of the left vertical rod is connected with the left end of the connecting rod, the right end of the connecting rod is connected with the upper end of the right vertical rod, the left side of the left vertical rod is provided with the left push rod, the left vertical rod is connected with the container cover through a fourth return spring, the left side of the right vertical rod is provided with the right push rod, the left push rod and the right push rod are arranged in an upper and lower staggered mode, the left push rod and the right push rod both serve as the operating end of the control mechanism, and the operating end of the operating handle is matched with the left vertical rod; the operating handle is connected with the container cover through a first return spring.
7. A flexible tube dispensing control mechanism as claimed in claim 6, wherein, The left push rod is higher than the right push rod, in the initial state, the right push rod abuts against the lower station of the flexible pipe, and the left push rod loosens the upper station of the flexible pipe; the whole linkage rod structure is pushed to the left through the operating handle until the left push rod abuts against the upper station of the flexible pipe, at this time, the right push rod loosens the lower station of the flexible pipe, and the initial state is restored under the action of the first return spring and the fourth return spring after the operating handle is released.
8. A flexible pipe dispensing control mechanism according to any one of claims 3, 5 to 7, wherein, The flexible tube is arranged in the container cover of the storage container, the control mechanism further comprises a cover for shielding the discharging port position, the cover is arranged at the discharging port position, the cover is rotatably arranged on a rotating shaft, the rotating shaft is connected with a gear shaft, a gear on the gear shaft is engaged with a rack, the rack is connected with the operating handle, and the operating handle is connected with the container cover through a first reset spring.
9. A flexible pipe dispensing control mechanism as claimed in claim 8, wherein, When the operating handle is operated, the cover is operated first, and then the flexible tube is controlled.
10. A container having the flexible tube dispensing control mechanism of claim 1, comprising a container body and a container cap, the upper portion of the container body being adapted to receive the container cap, characterized in that, The container cover is connected with the flexible tube and a control mechanism for extruding or loosening the middle part of the outer surface of the flexible tube, the flexible tube is hollow, one end of the flexible tube is sealingly connected with the inner cavity of the container body, the other end of the flexible tube is located at the discharging port of the container cover, the operating end of the control mechanism is in contact with the outer surface of the flexible tube, and the opening and closing state of the internal passage of the flexible tube is converted.
Citation Information
Patent Citations
Self-quantifying sealing-type flavoring box
CN203138225U
Seasoning tank capable of manually and quantitatively discharging
CN218186535U