WO2022257368A1 - 一种密封盖及储物容器 - Google Patents

一种密封盖及储物容器 Download PDF

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Publication number
WO2022257368A1
WO2022257368A1 PCT/CN2021/133023 CN2021133023W WO2022257368A1 WO 2022257368 A1 WO2022257368 A1 WO 2022257368A1 CN 2021133023 W CN2021133023 W CN 2021133023W WO 2022257368 A1 WO2022257368 A1 WO 2022257368A1
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WO
WIPO (PCT)
Prior art keywords
sealing
fulcrum
cover
sealing member
actuator
Prior art date
Application number
PCT/CN2021/133023
Other languages
English (en)
French (fr)
Inventor
苏庚
叶飞鸣
吴浩杰
尹杰
Original Assignee
阳江市宜家工贸有限公司
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Filing date
Publication date
Application filed by 阳江市宜家工贸有限公司 filed Critical 阳江市宜家工贸有限公司
Publication of WO2022257368A1 publication Critical patent/WO2022257368A1/zh

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D43/00Lids or covers for rigid or semi-rigid containers
    • B65D43/02Removable lids or covers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D43/00Lids or covers for rigid or semi-rigid containers
    • B65D43/26Mechanisms for opening or closing, e.g. pedal-operated
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D53/00Sealing or packing elements; Sealings formed by liquid or plastics material
    • B65D53/02Collars or rings

Definitions

  • a sealed storage device is a device with a certain sealed volume space
  • a conventional sealed storage device is mainly composed of a container body and a sealing cover.
  • the sealing cover cooperates with the container body to play a sealing role, therefore, the design of the sealing cover is also one of the key points of the sealed storage device.
  • Most of the existing sealing cap structures are composed of a cap body, an actuating mechanism and a sealing member. The actuating mechanism is used to drive the sealing member to move so that the sealing member changes state and comes into sealing contact with the container body to achieve sealing.
  • the purpose of the present application is to provide a sealing cover and a storage container, which can enable users to intuitively and accurately observe the sealing state of the sealing cover and improve user experience.
  • the present application provides a sealing cover, including a cover body, an actuating mechanism and a sealing member, the actuating mechanism and the sealing member are installed on the cover body, and the actuating mechanism is set There is an extruding part that can be adjusted vertically;
  • the extrusion part is used to drive the deformation of the sealing member, so that the sealing member is in sealing contact with the inner wall of the container body;
  • the cover body is provided with a gap cavity for the movement of the extrusion part, and at least one visible area visually connected to the gap cavity is provided on the side of the cover body;
  • the actuating mechanism is also provided with a prompting part
  • the extrusion part drives the sealing member to deform, at least a part of the prompt part is exposed from the visible area, so that the user can observe from the side of the sealing cover.
  • the prompting part is arranged on the extruding part.
  • the actuating mechanism includes an actuator and a pressing plate
  • the actuator is one of a button actuator, a knob actuator, a sliding actuator and a dial actuator.
  • the button of the push-button actuator is connected to the extrusion plate through a support arm, and is used to drive the extrusion plate to move up and down;
  • the support arm is provided with a first fulcrum, a second fulcrum and a third fulcrum;
  • the first fulcrum part is rotatably connected with the button, or is rotatably and slidably connected with the button;
  • the second fulcrum part is rotatably connected with the cover body, or is rotatably and slidably connected with the cover body;
  • any two fulcrum parts among the first fulcrum part, the second fulcrum part and the third fulcrum part are rotatably and slidably connected, and the other fulcrum part is rotatably set and can be rotatably
  • the fulcrum portion provided on the ground is specifically provided as an integral hinge.
  • the distance from the first fulcrum to the second fulcrum is greater than the distance from the second fulcrum to the third fulcrum.
  • the cover body includes an upper cover and a lower cover
  • the upper cover is installed on the top of the lower cover, and the bottom surface of the upper cover and the top surface of the lower cover are spaced apart to form the gap cavity;
  • the through area around the gap cavity forms the visible area.
  • the sealing element surrounds and is embedded in the groove.
  • a storage container comprising a container body and the sealing cover
  • Figure 3 is an overall cross-sectional view of a sealing cover provided in the present application in an open state
  • Fig. 4 is an enlarged schematic diagram of position B in Fig. 3;
  • Figure 5 is a schematic diagram of the overall explosion of a sealing cap provided in the present application.
  • Fig. 6 is an exploded schematic diagram of an actuating mechanism of a sealing cap provided in the present application.
  • Fig. 7 is an exploded schematic diagram of the cooperation between the button and the rotating member of the actuating mechanism of the sealing cover provided in the present application;
  • Fig. 8 is a structural schematic diagram of a positioning member of an actuating mechanism of a sealing cover provided in the present application.
  • Fig. 9 is a schematic diagram of the cooperation between the support arm and the button of a sealing cover provided in the present application.
  • Fig. 10 is a first cross-sectional view of a cover body of a sealing cover provided in the present application.
  • Fig. 12 is a schematic axial side view of an upper cover of a sealing cover provided in the present application.
  • Fig. 13 is a schematic axial side view of a lower cover of a sealing cover provided in the present application.
  • Fig. 14 is a schematic axial side view of an extrusion plate of a sealing cover provided in the present application.
  • Fig. 15 is a schematic axial side view of a sealing member of a sealing cover provided in the present application.
  • Fig. 16 is a schematic diagram of a knob-type actuator applied to a sealing cap provided in this application;
  • Fig. 17 is a schematic diagram of a sliding actuator applied to a sealing cap provided in this application.
  • Fig. 18 is a schematic diagram of a dial-type actuator applied to a sealing cap provided in this application;
  • Fig. 19 is an axial schematic diagram of a storage container provided in this application.
  • connection should be understood in a broad sense, for example, it can be a fixed connection or a Replaceable connection, or integral connection, can be mechanical connection or electrical connection, direct connection or indirect connection through an intermediary, or internal communication between two components.
  • connection should be understood in a broad sense, for example, it can be a fixed connection or a Replaceable connection, or integral connection, can be mechanical connection or electrical connection, direct connection or indirect connection through an intermediary, or internal communication between two components.
  • the embodiment of the application discloses a sealing cover.
  • an embodiment of a sealing cover provided in the embodiment of the present application includes:
  • the actuating mechanism 200 there is a pressing part that can be movably adjusted in the vertical direction, and the pressing part is used to drive the deformation of the sealing member 300 so that the sealing member 300 is in sealing contact with the inner wall of the container body 400 .
  • a gap cavity 101 for the movement of the extrusion part is provided, and at the same time, the cover body 100 is provided with at least one visible area visually connected to the gap cavity 101 on the side.
  • the visible area may be a gap or a continuous through opening leading directly to the gap cavity 101 on the side of the cover body 100 , or a transparent area, which is not specifically limited.
  • the prompting part can preferably be directly a certain area part or an additional part on the extrusion part or a part distinguished by color structure, etc.
  • the cooperation between them is to set the prompt part on the extruded part to better form a contrast with the sealing part and the cover body 100 and improve the visual distinction, without limitation.
  • the extrusion part drives the sealing member 300 to deform, at least a part of the prompt part is exposed from the visible area, so that the user can observe from the side of the sealing cover.
  • the extrusion part does not drive the sealing member 300 to deform, that is, when the sealing cover is in an open state
  • the prompt part of the extrusion part is hidden and cannot be observed by the user from the side.
  • Its concealment can be realized by covering the cover body 100 , the seal member 300 , or the cover body 100 and the seal member 300 cooperate to block the prompting part, or directly block the visible area by the seal member 300 .
  • the sealing member 300 can be designed to form a shielding of the visible area before deformation; after deformation, it forms a visually connected visible area with the cover body 100 and is used to observe the prompt part. Observe gap 102 .
  • the design of the sealing member 300 blocking the visible area can reduce the exposure of the internal structure of the cover and improve the aesthetics; at the same time, it also avoids the situation where the sealing cover is in an unsealed state and the prompting part is observed through the visible area from other angles of view. Avoid situations that affect the user's judgment.
  • the extrusion part drives the sealing member 300 to deform, at least part of a prompt part leaks out, so that it can be observed by the user through the visible area.
  • the use of the prompt part can also be as follows:
  • the prompting part is visually distinguished from the seal and the cover.
  • the sealing cover When the sealing cover is opened, the prompting part is hidden, and at the same time or at least the part of the non-prompting part leaks out, and the part corresponding to the leakage of the non-prompting part can be the same color as the cover body 100 and the sealing member 300 . That is to say, when the sealing cover is in the open state, the user can observe the same non-reminder portion as the cover body 100 and the sealing member 300 , forming a same-color recognition state that can be used to remind the open state. And when the sealing cover is in the sealed state, the prompting part leaks out now, and the user can see the prompting part different in color from the cover body 100 and the sealing member 300, thereby forming a different color recognition state different from the open state. It should be noted that the visual distinction is not only reflected in color, but also in shape and structure, without limitation.
  • the sealing cover When the sealing cover is opened, the prompting part is hidden, and at the same time or at least the non-prompting part leaks out, and the leaked non-prompting part can be of a different color from the cover body 100 and the sealing member 300 . That is to say, when the sealing cap is in the open state, the user forms a different color state for indicating the open state. In the sealed state, the prompting part leaks out to form the same color state for prompting the sealed state.
  • the sealing cap disclosed in the present application realizes the control of the sealing connection or non-seal connection between the sealing member 300 and the container body 400 through the actuating mechanism 200 having the deformable extrusion part that can drive the sealing member, and then Realize the sealing or opening control of the sealing cover.
  • the extruding part is provided with a prompting part
  • the side of the cover body 100 is provided with a visible area which can communicate with the gap cavity 101 visually and allow the user to observe the prompting part.
  • the extrusion part drives the deformation of the sealing member 300, at least part of a prompt part is exposed from the visible area, so that the user can observe from the side of the sealing cover.
  • the actuating mechanism 200 includes the actuator and the extrusion plate 2 .
  • the extruding plate 2 is movably arranged in the gap cavity 101 along the vertical direction to form an extruding part.
  • the actuator is installed on the cover body 100 and is connected with the extrusion plate 2 for driving the extrusion plate 2 to move, and then by driving the extrusion plate 2 to impel the deformation of the sealing member 300, so that the sealing member 300 is in contact with the container body 400
  • the inner wall surface contact forms a seal.
  • the actuator is one of a button actuator, a knob actuator, a sliding actuator and a dial actuator.
  • the actuator may include a knob block a1 and a spring 3 .
  • the top of the knob block a1 protrudes upwards from the cover body 100, and the outer peripheral surface of the knob block extending into the cover body 100 is provided with a stopper flange a11 which is in contact with the inner top surface of the cover body 100 in the vertical direction, so as to achieve The vertical direction is limited and matched with the cover body 100, and the bottom of the knob block a1 is provided with a plurality of arc-shaped first locking teeth a12 at intervals around the rotation center line, and each first locking tooth a12 is positioned along the same arc length direction The thickness gradually increases, and at the same time, each first locking tooth a12 is smoothly connected to a first connecting block a13 whose top surface is a plane at the point of maximum thickness.
  • the top circumference of the extrusion plate 2 is provided with a plurality of second locking teeth a21 that cooperate with the first locking teeth a12, and the thickness of each second locking tooth a21 is gradually increased in the direction opposite to the direction in which the thickness of the first locking tooth a12 increases.
  • the second connection block a22 whose top surface is a plane is also smoothly connected at the maximum thickness.
  • the spring 3 is arranged between the pressing plate 2 and the inner bottom surface of the cover body 100 , and is used to provide the elastic force for restoring the pressing plate 2 and make the stop flange a11 keep in contact with the cover body 100 .
  • the actuation process of this embodiment is: when the first locking teeth a12 and the second locking teeth a21 are staggeredly matched, the pressing plate 2 is at a higher position and the sealing cover is at an open position. And when the knob block a1 is turned in the direction of increasing the thickness of the second locking tooth a21 , the pressing plate 2 gradually descends and gradually drives the sealing member 300 . When it is rotated until the first connecting block a13 is in contact with the second connecting block a22, the pressing plate 2 is at a lower position and the sealing cover is in a sealed state.
  • the knob block a1 can be turned again, and the first locking tooth a12 and the second locking tooth a21 can be misaligned again under the action of the elastic force provided by the spring 3. At this time, the pressing plate 2 has returned to a higher position.
  • the actuator may include a third wedge block b1 and a spring 3 .
  • the third wedge-shaped block b1 is slidably arranged in the cover body 100 and is located on the top of the extruded plate 2, and the top surface of the third wedge-shaped block b1 is provided with a lever b11 that movably protrudes from the cover body 100, and the lever b11 is moved That is to drive the third wedge block b1 to slide.
  • the top of the extruding plate 2 is correspondingly provided with a fourth wedge b21 that cooperates with the third wedge b1, and similarly, both the third wedge b1 and the fourth wedge b21 have inclined surfaces that cooperate with each other.
  • the spring 3 is also arranged between the extrusion block and the inner bottom surface of the cover body 100 to provide the elastic force for the reset of the extrusion block and make the top surface of the third wedge block b1 closely fit the inner top surface of the cover body 100 .
  • the actuation process of this embodiment is as follows: the third wedge b1 is driven to slide by moving the lever b11, and then the third wedge b1 and the fourth wedge b21 are relatively displaced, thereby realizing the downward driving of the extrusion plate 2 sports.
  • the driving lever b11 can be reversed, and now the extrusion plate 2 can be reset under the elastic force provided by the spring 3.
  • the actuator may include a cam lever b11 and a spring 3 .
  • the cam part c12 of the cam lever b11 is rotatably connected in the cover body 100 and is in contact with the top surface of the extrusion plate 2, and the rod part c11 is movably extended out of the cover body 100 for the user to dial, more specifically , the cam lever c1 may have an L-shaped structure as shown in FIG. 15 , which is not specifically limited.
  • the spring 3 is also arranged between the extrusion block and the inner bottom surface of the cover body 100, and is used to provide the elastic force for the reset of the extrusion block, and to keep the top surface of the extrusion plate 2 in contact with the cam portion c12.
  • the actuation process of this embodiment is: by turning the rod c11, the cam part c12 assembly changes from the state where the part close to the center of the circle is in contact with the extrusion plate 2 to the state where the part far from the center of the circle is in contact with the extrusion plate 2, and then Drive extrusion plate 2 to move downwards.
  • the lever portion c11 can be reversely turned, and the pressing plate 2 can be reset under the action of the elastic force provided by the spring 3 .
  • the actuator structure can refer to the existing actuating structure applied to the sealing cover, as shown in Figure 6 to Figure 8, which can specifically include a movable upward extending cover
  • the button 10 is provided with a rotating shaft 14 for installing the rotating member 13 .
  • the top surface of the button 10 is provided with a downward first rotating tooth 121, and the top of the rotating member 13 is provided with a second rotating tooth 132 that cooperates with the first rotating tooth 121, and the button 10 passes through the first rotating tooth during actuation. 121 cooperates with the second rotating gear 132 to push the rotating member 13 to rotate.
  • the outer peripheral surface of the rotating member 13 is provided with a number of grooves 131, and the inner surface of the corresponding positioning member 15 is provided with convex strips 151 corresponding to the grooves 131 one by one, and the inner top surface of the rotating member 13 is also provided with buckles. 133 , the rotating member 13 can be clamped on the rotating shaft 14 of the button 10 through the setting of the buckle 133 .
  • the positioning part 15 is arranged in the middle of the inner bottom surface of the cover body 100, and the whole is also in a cylindrical structure.
  • the bottom surface of each convex strip 151 is provided with a slope that cooperates with the second rotating tooth 132 of the rotating part 13, so that it can be pushed during the actuation process.
  • the rotating member 13 rotates.
  • the rotating member 13 When the rotating member 13 is rotated due to actuation, and when the channel 131 of the rotating member 13 is no longer aligned with the protrusion 151 of the positioning member 15, the protrusion 151 will abut against the second rotating tooth 132 of the rotating member 13, thereby The rotating member 13 is positioned at a lower position, that is, the extrusion plate 2 is restricted at a lower position at this time, thereby maintaining the extrusion of the extrusion plate 2 to the sealing member 300 .
  • the spring 3 is embedded in the positioning member 15 , and one end is in contact with the inner bottom surface of the positioning member 15 , and the other end extends into the rotating member 13 to contact and resist the rotating member 13 . When the rotary member 13 is pressed down again, it can be reset by the spring 3 .
  • the button 10 is connected to the extrusion plate 2 through the support arm 6 to drive the extrusion plate 2 to move up and down.
  • the support arm 6 is provided with a first fulcrum portion 631 , a second fulcrum portion 632 and a third fulcrum portion 633 which are preferably not collinearly distributed.
  • the first fulcrum part 631 is rotatably connected with the button 10, or is rotatably and slidably connected with the button 10, and the second fulcrum part 632 is rotatably connected with the cover body 100, or is rotatably and slidably connected with the cover body 100,
  • the third fulcrum portion 633 is rotatably connected with the extruding plate 2 , or is rotatably and slidably connected with the extruding plate 2 .
  • At least two fulcrums among the first fulcrum part 631, the second fulcrum part 632 and the third fulcrum part 633 are rotatably and slidably connected.
  • the sliding directions of the two fulcrum parts that are rotatably and slidably connected are preferably designed to slide horizontally, and the sliding directions of the two fulcrum parts can also be designed to be the same direction.
  • the button 10 may be composed of a gland 11 and a rotating auxiliary part 12. It should be noted that the gland 11 and the rotating auxiliary part 12 may be detachable or integrally formed. The gland 11 moves upwards to protrude from the avoidance hole 41 of the cover body 100 . Its design purpose is to facilitate the user's pressing operation, and at the same time, it can be matched with the cover body 100 to improve the overall aesthetics. Of course, it is also possible not to set the pressing cover 11, that is, the button 10 is directly the rotation auxiliary part. In this embodiment, the first fulcrum portion of the support arm 6 is specifically connected to the rotation assisting member 12 .
  • the rotation auxiliary part 12 is connected to the bottom of the gland 11 and has a cylindrical structure as a whole. Specifically, the rotation auxiliary part 12 is provided with a rotating shaft 14 for installing the rotating part 13, and the rotating part 13 is buckled. 133 is clamped on the rotating shaft 14 of the rotating auxiliary member 12 .
  • the specific actuation process is: the gland 11 drives the button 10 to move downward, and through the connection and setting of the first fulcrum part 631 and the second fulcrum part 632, it can drive the support arm 6 to move downward in a swinging manner as a whole, and then drive the second fulcrum part 631 to move downward.
  • the three fulcrums 633 do not move vertically downwards. Since the third fulcrums 633 are also provided for flexible connections, the third fulcrums 633 can smoothly drive the extrusion plate 2 to move downwards, thereby driving the sealing member 300 to deform.
  • the button 10 when the button 10 is moved to a certain low position and locked, the extrusion plate 2 can be restricted and the sealed state can be maintained.
  • the button 10 resets and moves, and then drives the pressing plate 2 to reset through the support arm 6.
  • Such a design can make the overall structure of the sealing cover more compact.
  • any two of the first fulcrum portion 631, the second fulcrum portion 632, and the third fulcrum portion 633 are rotatably and slidably connected, and the other fulcrum is rotatably connected. That is to say, the first fulcrum portion 631 and the second fulcrum portion 632 may be rotatably and slidably connected, while the third fulcrum portion 633 may be hinged. Or the first fulcrum part 631 is hinged, and the second fulcrum part 632 and the third fulcrum part 633 are rotatably and slidably connected.
  • the fulcrum part that is rotatably connected may be integrally hinged, that is, the support arm 6 is formed integrally with the cover body 100 , or with the button 10 , or with the extrusion plate 2 .
  • the hinged fulcrum of the support arm 6 is connected with the corresponding parts to be integrally formed in a repeatable bending manner, and then the fulcrum of the support arm 6 can be hinged after integral molding Therefore, the assembly work for the fulcrum portion is reduced.
  • the specific integral molding situation can be as follows.
  • the second fulcrum portion 632 and the third fulcrum portion 633 are respectively rotatably and slidably connected.
  • the corresponding first fulcrum portion 631 and the third fulcrum portion 633 are rotatably and slidably connected.
  • the supporting arm 6 is integrally formed with the extrusion plate 2
  • the corresponding first fulcrum portion 631 and the second fulcrum portion 632 are rotatably and slidably connected.
  • the part of the support arm 6 and the cover body 100 can be integrally formed according to the structure of the cover body 100.
  • the support arm 6 can be It is integrally formed with the upper cover 4 or the lower cover 5, and its integral forming can refer to the integral forming design between the aforementioned button 10 and the straight arm 6, without limitation.
  • the distance between the rotation axis of the first fulcrum part 631 and the rotation axis of the second fulcrum part 632 is greater than the distance between the rotation axis of the second fulcrum part 632 and the rotation axis of the third fulcrum part 633 .
  • the rotation axis refers to an axis around which the fulcrum part can rotate relatively.
  • the support arm 6 in terms of the structure of the support arm 6 , as shown in FIG. 9 , it includes a power arm 61 and a resistance arm 62 .
  • the first end portion of the power arm 61 is provided with a first fulcrum portion 631
  • the second end portion of the power arm 61 is provided with a second fulcrum portion 632.
  • the first end portion of the power arm 61 is adapted to the button 10.
  • a concave avoidance groove 611 can be provided, which can form a kind of clamping for the button 10 and improve the stability of the connection; at the same time, a vertical surface 122 can be provided on the outer peripheral surface of the button 10 to provide the connection of the first fulcrum part 631 convenient.
  • the first end of the resistance arm 62 is fixedly connected to the bottom surface of the power arm 61 and is distributed with the power arm 61 in a T-shape as shown in FIG. 633.
  • the principle of the button 10 driving the extrusion plate 2 through the support arm 6 is as follows:
  • the power arm 61 When the button 10 moves down, the power arm 61 is driven to swing downwards. When the power arm 61 swings downwards, it also drives the resistance arm 62 to move down. Since the first fulcrum portion 631 is rotatably arranged, the power arm 61 moves downward. The swing and the subsequent downward movement of the resistance arm 62 will generate a horizontal displacement component, and the horizontal displacement component produced by the power arm 61 can be released by the second fulcrum part 632 which is rotatably and slidably arranged on the power arm 61, so that the power arm 61 can swing down smoothly. The horizontal displacement component generated by the resistance arm 62 can be released by the rotatable and slidable third fulcrum portion 633 on the resistance arm 62 , so that the resistance arm 62 can move down smoothly to push the extrusion plate 2 .
  • the first fulcrum 631 , the second fulcrum 632 and the third fulcrum 633 can all be shafts, then the button 10 , the cover 100 and the extrusion
  • the plate 2 can also be correspondingly provided with a hole or groove structure matched with the shaft.
  • the button 10 is provided with a shaft hole 123 rotatably matched with the first fulcrum; the cover 100 is provided with a first chute cavity 450 matched with the second fulcrum, so that the second fulcrum It can be rotated and slid relative to the cover body 100; the extrusion plate 2 is provided with a second chute cavity 251 matched with the third fulcrum, so that the third fulcrum can be relative to the extrusion plate 2 can be rotated and slid.
  • first fulcrum portion 631, the second fulcrum portion 632, and the third fulcrum portion 633 of the present application can be designed as grooves or holes, and the corresponding button 10, cover body 100, and extrusion plate 2 are provided with matching shafts. structure, forming a fit opposite to the foregoing.
  • first fulcrum portion 631 , the second fulcrum portion 632 and the third fulcrum portion 633 can all be detachably connected to facilitate disassembly and maintenance.
  • the cover body 100 includes an upper cover 4 and a lower cover 5 .
  • the upper cover 4 is installed on the top of the lower cover 5, and the bottom surface of the upper cover 4 and the top surface of the lower cover 5 are distributed at intervals to form a gap cavity 10, and the through area around the gap cavity forms the visible area correspondingly.
  • the upper cover 4 is also provided with a avoidance hole 41 for avoiding the actuating mechanism 200 .
  • the avoidance hole 41 can be used for avoiding the button 10 so as to be convenient for the user to press.
  • the bottom surface of the upper cover 4 extends downward along the escape hole 41 with a first side wall 42, the outer surface of the first side wall 42 is provided with a first card slot 421, and the inner surface of the first side wall 42 is provided with a second card slot 422.
  • the top surface of the lower cover 5 protrudes upwards with a first connecting seat 51 corresponding to the first card slot 421 one-to-one, and a second connecting seat 52 corresponding to the second card slot 422; the first connecting seat 51
  • a first hook 511 is provided on the top to engage with the first slot 421 ;
  • a second hook 521 is provided on the second connection seat 52 to engage with the second slot 422 .
  • the positioning member 15 can also be installed at the center of the top surface of the cover body 100 .
  • the arrangement of the first connecting seat 51 and the second connecting seat 52 there may be a plurality of them and they may be distributed around the center circumference of the lower cover 5, specifically, there may be two and they may be arranged symmetrically, without limitation.
  • the connection between the upper cover 4 and the lower cover 5 is realized through the cooperation between the upwardly protruding connecting seat and the slot, and at the same time, a gap cavity 101 is formed between the upper cover 4 and the lower cover 5 .
  • other connection and coordination designs are also possible, without limitation.
  • a second side wall 43 matching with the container body 400 can be provided downward on the outer edge of its bottom, and the second side wall 43 can be threaded with the opening end of the container body 400 Coordination, embedded co-ordination, there is no specific limitation.
  • the bottom of the second side wall 43 can also extend downwards and set an extension flange 44 that extends into the container itself.
  • This extension flange 44 can play a positioning role, and can also cooperate with the sealing member 300, so as to The gap cavity 101 is blocked or opened, and then when the sealing cover is in the open state, the gap cavity can be blocked between the sealing member 300 and the extension flange 44 to realize the blocking of the prompting part, and when the sealing cover is in the sealing state , a viewing gap 102 may be formed between the sealing member 300 and the extension flange 44 .
  • On the bottom surface of the upper cover 4 there are first reinforcing ribs 46 arranged radially between the first side wall 42 and the second side wall 43 to improve the overall structural strength of the upper cover 4 .
  • first reinforcing ribs 46 arranged radially between the first side wall 42 and the second side wall 43 to improve the overall structural strength of the upper cover 4 .
  • the top surface of the lower cover 5 can be provided with an annular second reinforcing rib 54 near the outer edge position, and the inner side of the second reinforcing rib 54 can also be provided with multiple ribs.
  • a third reinforcing rib 55 in a triangular plate structure radiating inwards cooperates with the second reinforcing rib 54 to further improve the overall structural strength.
  • the extruded plate 2 may be provided with a first through hole 22 that avoids the first connecting seat 51, and The middle position can be provided with the second through hole 21 that avoids both the second connecting seat 52 and the actuator.
  • the outer edge of the extruded plate 2 may be provided with a third side wall 23 , and the upper and lower surfaces of the extruded plate 2 are provided with fourth reinforcing ribs 24 distributed radially.
  • the shapes of the upper cover 4 , the extruding plate 2 and the lower cover 5 are compatible, and the specific shape can be designed according to the actual shape of the opening of the container body 400 , without limitation.
  • first fulcrum part 631 is rotatably connected with the button 10 .
  • a shaft hole 123 may be provided on the elevation 122 of the button, through which the hinged fit with the first fulcrum portion 631 is realized.
  • the second fulcrum portion 632 is rotatably and slidably connected with the cover body 100 .
  • the inner surface of the first side wall 42 is provided above the second slot 422 with an engaging block 45 which can be engaged with the top surface of the second connecting seat 52, and the bottom surface of the engaging block 45 is provided with a first Corresponding to the groove 451 , a second groove 522 matching with the first groove 451 is formed on the top surface of the second connecting seat 52 .
  • the first groove 451 and the second groove 522 form a first sliding groove cavity 450
  • the second fulcrum portion 632 is rotatably mounted on the first sliding groove cavity 450 and is slidingly matched with the first sliding groove cavity 450 .
  • the connection and cooperation between the second fulcrum portion 632 and the cover body 100 can be realized, and the overall installation and disassembly are also convenient.
  • Those skilled in the art can make appropriate transformation design based on this, without limitation.
  • a third engaging groove 523 is provided on the top surface of the second connection seat 52 next to the second groove 522 .
  • the bottom surface of the engaging block 45 is provided with a third hook 452 that engages with the third slot 523 on the side of the first groove 451. The engagement between the connection seat 52 and the engagement block 45 is tighter.
  • the third fulcrum portion 633 hinged to the extruded plate 2 and slidingly connected in the horizontal direction as an example.
  • the top surface of the extruding plate 2 is provided with a third connection seat 25 protruding upwards
  • the third connection seat 25 is provided with a second chute cavity 251
  • the third fulcrum part 633 is rotatably mounted on the second chute cavity 251, and is slidably matched with the second chute cavity 251.
  • a third groove 53 recessed inward may be provided on the outer edge of the lower cover 5 , and then the sealing member 300 is embedded around the third groove 53 .
  • the sealing member 300 may specifically include a first sealing ring part 71 that fits with the third groove 53, and a second sealing ring part 72 integrally arranged on the top outer edge of the first sealing ring part 71 and distributed upwards.
  • the internal space of the ring portion 72 gradually increases from bottom to top, and is designed in a tapered ring structure.
  • the present application also provides a storage container, including a container body 400 and a sealing cover as in Embodiment 1 or Embodiment 2 above; the container wall on the container body 400 at least corresponds to the visible area of the sealing cover
  • the segment is a transparent wall segment to ensure that the user can observe the prompting portion of the extrusion plate 2 .
  • the second sealing ring part 72 deforms and moves down, a certain height difference will be formed between the second sealing ring part 72 and the extension flange 44 , thereby forming an observation gap 102 .
  • the extrusion plate 2 is exposed from the observation gap 102 between the upper cover 4 and the sealing member 300 , and the user can see the extrusion plate 2 from the side of the container body 400 .
  • the movement value of the upper surface of the gland 11 is slightly lower than the upper surface of the upper cover 4, the gland 11 moves to the lowest point, and the rotating member 13 triggers the rotation, and the gland 11 is released at this time.
  • the elastic force of the spring 3 makes the gland 11 bounce back slightly, and the groove 131 of the rotating member 13 is no longer aligned with the raised line 151 of the positioning member 15 due to the rotation of the rotating member 13, and the raised line 151 is offset against the second rotating tooth 132 of the rotating member 13 , the height position of the rotary member 13 is locked, so that the position of the gland 11 is locked.
  • the upper surface of the gland 11 and the upper surface of the upper cover 4 are at the same height, the sealing member 300 is still pressed on the inner wall of the container body 400, the extrusion plate 2 can still be observed from the side of the container body 400, and the sealing cover is completely opened from the open state. Switch to sealed state.
  • the rotating part 13 triggers the rotation, at this time the gland 11 is released, the rotation auxiliary part 12, the groove 131 of the rotating part 13 is aligned with the protrusion 151 of the positioning part 15, the rotating part 13 is unlocked, and the elastic force of the spring 3 makes the rotation
  • the part 13, the button 10 and the gland 11 continue to reset upwards to the initial position, and at the same time drive the support arm 6 to swing upwards, and the third fulcrum part 633 of the support arm 6 moves up accordingly and drives the extrusion plate 2 to move up.
  • the extrusion plate 2 no longer squeezes the sealing member 300, the sealing member 300 returns to its original shape under its own elasticity, and no longer clings to the inner wall of the container body 400, the sealing member 300 and the extended flange 44 of the upper cover 4 contact again, or The sealing member 300 does not cover the bottom of the extended flange 44 upwards, thereby covering the extrusion plate 2 so that it cannot be observed from the side of the container body 400, and the sealing cover completes the switch from the sealed state to the open state.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Closures For Containers (AREA)

Abstract

本申请公开了一种密封盖及储物容器,涉及密封储物装置技术领域,其中密封盖包括盖体、致动机构以及密封件,致动机构以及密封件均安装于盖体,致动机构设有沿竖直方向可活动调节的挤压部;挤压部用于驱动密封件变形,以使得密封件与容器本体内壁密封接触;盖体设有用于供挤压部活动的间隙腔,且盖体侧面上至少设有一处在视觉上连通间隙腔的可视区域;致动机构还设有提示部;挤压部在驱动密封件变形后,至少有某一提示部的部分从可视区域露出,以使得使用者可从密封盖的侧面观察到。能够使得使用者直观准确地观察到密封盖的密封状态,提高使用体验。

Description

一种密封盖及储物容器 技术领域
本申请涉及密封储物装置技术领域,尤其涉及一种密封盖及储物容器。
背景技术
密封储物装置是一种带有一定密封容积空间的装置,常规的密封储物装置主要由容器本体与密封盖组成。其中密封盖与容器本体配合起到密封作用,因此,密封盖的设计也是密封储物装置的重点之一。现有的密封盖结构大多由盖体、致动机构以及密封件组成,致动机构用于驱动密封件动作,以使得密封件改变状态与容器本体密封接触实现密封。但是,现有的密封盖结构安置于容器本体后,使用者难以直观准确地观察到密封盖的密封状态,而这就存在对密封盖的密封状态形成错误判断的情况,影响后续的密封储存或重复操作致动机构情况,降低使用者的使用体验。
实用新型内容
有鉴于此,本申请的目的是提供一种密封盖及储物容器,能够使得使用者直观准确地观察到密封盖的密封状态,提高使用体验。
为达到上述技术目的,本申请提供了一种密封盖,包括盖体、致动机构以及密封件,所述致动机构以及所述密封件均安装于所述盖体,所述致动机构设有沿竖直方向可活动调节的挤压部;
所述挤压部用于驱动所述密封件变形,以使得所述密封件与容器本体内壁密封接触;
所述盖体设有用于供所述挤压部活动的间隙腔,且所述盖体侧面上至少设有一处在视觉上连通所述间隙腔的可视区域;
所述致动机构还设有提示部;
所述挤压部在驱动所述密封件变形后,至少有某一所述提示部的部分从所述可视区域露出,以使得使用者可从密封盖的侧面观察到。
进一步地,所述提示部可视地区别于所述盖体以及所述密封件。
进一步地,所述提示部的颜色与所述盖体的颜色以及所述密封件的颜色不同。
进一步地,所述提示部设于所述挤压部上。
进一步地,所述密封件变形前,对所述可视区域形成遮挡;
所述密封件变形后,与所述盖体之间形成用于观察所述可视区域的观察间隙。
进一步地,所述致动机构包括致动器以及挤压板;
所述挤压板沿竖直方向活动设置于所述间隙腔内,形成所述挤压部;
所述致动器安装于所述盖体上,且与所述挤压板连接,用于驱动所述挤压板活动。
进一步地,所述致动器为按钮式致动器、旋钮式致动器、滑动式致动器以及拨转式致动器中的一种。
进一步地,所述致动器具体为按钮式致动器;
所述按钮式致动器的按钮向上活动伸出所述盖体;
所述按钮式致动器的按钮通过支臂与所述挤压板连接,用于带动所述挤压板上下运动;
所述支臂设有第一支点部、第二支点部以及第三支点部;
所述第一支点部与所述按钮可转动地连接,或与所述按钮可转动可滑动地连接;
所述第二支点部与所述盖体可转动地连接,或与所述盖体可转动可滑动地连接;
所述第三支点部与所述挤压板可转动地连接,或与所述挤压板可转动可滑动地连接;
所述第一支点部、所述第二支点部以及所述第三支点部中至少两个支点部为可转动可滑动地连接设置。
进一步地,所述第一支点部、所述第二支点部以及所述第三支点部中任意两个支点部为可转动可滑动地连接设置,另一个支点部为可转动地设置,可转动地设置的支点部具体为一体铰接设置。
进一步地,所述第一支点部、所述第二支点部以及所述第三支点部呈不 共线分布。
进一步地,所述第一支点部到第二支点部的距离大于第二支点部到第三支点部的距离。
进一步地,所述盖体包括上盖以及下盖;
所述上盖安装于所述下盖顶部,且所述上盖底面与所述下盖顶面之间间隔分布,形成所述间隙腔;
所述间隙腔四周的贯通区域形成所述可视区域。
进一步地,所述下盖的外边缘设有向内凹陷的凹槽;
所述密封件环绕嵌设于所述凹槽。
一种储物容器,包括容器本体以及所述的密封盖;
所述容器本体上至少对应所述密封盖的可视区域的容器壁段为透明壁段。
从以上技术方案可以看出,本申请公开的密封盖,通过具有可驱动密封件变形挤压部的致动机构,实现对密封件与容器本体密封连接或非密封连接的控制,进而实现对密封盖的密封或开启控制。其中,挤压部设有提示部,而盖体侧面设有可与间隙腔在视觉上连通且可供使用者观察提示部的可视区域。在挤压部驱动密封件变形后,至少有某一提示部的部分从可视区域露出,以使得使用者可从密封盖的侧面观察到。也即是使用者通过可视区域观察到至少部分的提示部时,即可判断密封盖处于密封状态。通过这样的结构设计能够使得使用者直观准确地观察到密封盖的密封状态,提高使用体验。
从以上技术方案可以看出,本申请公开的储物容器,包括容器本体以及上述的改进的密封盖,其中,容器本体上至少对应密封盖的可视区域的容器壁段为透明壁段。其具有上述密封盖一样的有益效果,能够使得使用者直观准确地观察到储物容器的密封状态,提高使用体验。
附图说明
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲, 在不付出创造性劳动性的前提下,还可以根据这些附图获得其它的附图。
图1为本申请中提供的一种密封盖处于密封状态的整体剖视图;
图2为图1中的A位置放大示意图;
图3为本申请中提供的一种密封盖处于开启状态的整体剖视图;
图4为图3中的B位置放大示意图;
图5为本申请中提供的一种密封盖整体爆炸示意图;
图6为本申请中提供的一种密封盖的致动机构爆炸示意图;
图7为本申请中提供的一种密封盖的致动机构的按钮与旋转件配合的爆炸示意图;
图8为本申请中提供的一种密封盖的致动机构的定位件的结构示意图;
图9为本申请中提供的一种密封盖的支臂与按钮配合的示意图;
图10为本申请中提供的一种密封盖的盖体的第一剖视图;
图11为本申请中提供的一种密封盖的盖体的第二剖视图;
图12为本申请中提供的一种密封盖的上盖的轴侧示意图;
图13为本申请中提供的一种密封盖的下盖的轴侧示意图;
图14为本申请中提供的一种密封盖的挤压板的轴侧示意图;
图15为本申请中提供的一种密封盖的密封件的轴侧示意图;
图16为本申请中提供的一种密封盖应用旋钮式致动器的示意图;
图17为本申请中提供的一种密封盖应用滑动式致动器的示意图;
图18为本申请中提供的一种密封盖应用拨转式致动器的示意图;
图19为本申请中提供的一种储物容器的轴侧示意图;
图中:100、盖体;101、间隙腔;102、观察间隙;200、致动机构;300、密封件;400、容器本体;10、按钮;11、压盖;12、旋转辅助件;121、第一转齿;122、立面;123、轴孔;13、旋转件;131、槽道;132、第二转齿;133、卡扣;14、转轴;15、定位件;151、凸条;2、挤压板;21、第二通孔;22、第一通孔;23、第三侧壁;24、第四加强筋;25、第三连接座;251、第二滑槽腔;3、弹簧;4、上盖;41、避让孔;42、第一侧壁;421、第一卡槽;422、第二卡槽;43、第二侧壁;44、延伸凸缘;45、接合块;450、第一滑槽腔;451、第一凹槽;452、第三卡勾;46、第一加强筋;5、下盖;51、第 一连接座;511、第一卡勾;52、第二连接座;521、第二卡勾;522、第二凹槽;523、第三卡槽;53、第三凹槽;54、第二加强筋;55、第三加强筋;6、支臂;61、动力臂;611、内凹避让槽;62、阻力臂;631、第一支点部;632、第二支点部;633、第三支点部;71、第一密封圈部;72、第二密封圈部;a1、旋钮块;a11、止挡凸缘;a12、第一卡齿;a13、第一连接块;a21、第二卡齿;a22、第二连接块;b1、第三楔形块;b11、拨杆;b21、第四楔形块;c1、凸轮杆;c11、杆部;c12、凸轮部。
具体实施方式
下面将结合附图对本申请实施例的技术方案进行清楚、完整地描述,显然,所描述的实施例是本申请实施例一部分实施例,而不是全部的实施例。基于本申请实施例中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请实施例保护的范围。
在本申请实施例的描述中,需要说明的是,术语“中心”、“上”、“下”、“左”、“右”、“竖直”、“水平”、“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请实施例和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请实施例的限制。此外,术语“第一”、“第二”、“第三”仅用于描述目的,而不能理解为指示或暗示相对重要性。
在本申请实施例的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可更换连接,或一体地连接,可以是机械连接,也可以是电连接,可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本申请实施例中的具体含义。
本申请实施例公开了一种密封盖。
请参阅图1至图4所示,本申请实施例中提供的一种密封盖的一个实施例包括:
盖体100、致动机构200以及密封件300。其中,致动机构200以及密封 件300均安装于盖体100。
就致动机构200来说,设有沿竖直方向可活动调节的挤压部,该挤压部用于驱动密封件300变形,以使得密封件300与容器本体400内壁密封接触。
就盖体100来说,为了保证挤压部的活动,设有用于供挤压部活动的间隙腔101,同时盖体100在侧面上至少设有一处在视觉上连通间隙腔101的可视区域。就可视区域来说,可以是盖体100侧面上直通间隙腔101的缺口或连贯的贯通口,或透明区域形成,具体不做限制。
就致动机构来说,还设有提示部,其中提示部优选可以直接就是挤压部上的某一区域部分或增设部分或通过颜色结构等区别出来的部分等,利用挤压部与密封件之间的配合,将提示部设于挤压部上,更好地形成与密封件以及盖体100之间的对比,提高可视区别性,不做限制。在挤压部驱动所述密封件300变形后,至少有某一所述提示部的部分从所述可视区域露出,以使得使用者可从密封盖的侧面观察到。具体来说,在挤压部未驱动密封件300变形时,也即是密封盖处于打开状态时,挤压部的提示部为隐藏状态,无法被使用者从侧面观察到。其隐藏可以通过盖体100遮挡、密封件300遮挡、或盖体100与密封件300配合遮挡提示部实现,还可以通过密封件300直接遮挡可视区域实现。以密封件300遮挡为例,密封件300可以设计为在变形前,对可视区域形成遮挡;而变形后,则与盖体100之间形成可视连通可视区域且用于观察提示部的观察间隙102。另外,通过密封件300遮挡可视区域的设计,可以减少盖体内部结构暴露,提高美观性;同时,也避免密封盖在非密封状态存在从其它视角经可视区域观察到提示部的情况,避免存在影响使用者判断的情况。而在挤压部驱动密封件300变形后,则至少有一提示部的部分漏出,从而可以被使用者通过可视区域观察到。为了更加清楚直观的对密封盖的密封状态,对提示部的使用还可以是如下情况:
(1)提示部可视地区别于密封件与盖体情况。
密封盖打开状态时,提示部隐藏,同时或至少非提示部的部分漏出,对应漏出的非提示部的部分可以是与盖体100以及密封件300同一颜色。也即是在密封盖处于打开状态时,使用者可以观察到与盖体100以及密封件300相同的非提示部,形成可以用于提示打开状态的同色识别状态。而在密封盖 处于密封状态时,此时提示部漏出,使用者就可以看到与盖体100以及密封件300颜色不同的提示部,从而形成一种区别于打开状态时的异色识别状态。需要说明地是,可视地区别不仅仅是体现于颜色上,还可以是形状结构上,不做限制。
(2)提示部可视地等同于密封件与盖体情况。
在密封盖打开状态时,提示部隐藏,同时或至少非提示部的部分漏出,对应漏出的非提示部的部分可以是与盖体100以及密封件300不同颜色。也即是,使用者在密封盖处于打开状态时,形成用于提示打开状态的异色状态。而密封状态时,提示部漏出,形成用于提示密封状态的同色状态。
当然,也不仅仅局限于以上两种额外情况,本领域技术人员可以以此为基础做适当的变化。
从以上技术方案可以看出,本申请公开的密封盖,通过具有可驱动密封件变形挤压部的致动机构200,实现对密封件300与容器本体400密封连接或非密封连接的控制,进而实现对密封盖的密封或开启控制。其中,挤压部设有提示部,而盖体100侧面设有可与间隙腔101在视觉上连通且可供使用者观察提示部的可视区域。在挤压部驱动密封件300变形后,至少有某一提示部的部分从可视区域露出,以使得使用者可从密封盖的侧面观察到。也即是使用者通过可视区域观察到至少部分的提示部时,即可判断密封盖处于密封状态。通过这样的结构设计能够使得使用者直观准确地观察到密封盖的密封状态,提高使用体验。
以上为本申请实施例提供的一种密封盖的实施例一,以下为本申请实施例提供的一种密封盖的实施例二,具体请参阅图1至图18。
基于上述实施例一的方案:
进一步地,就致动机构200结构来说,包括致动器以及挤压板2。其中,挤压板2沿竖直方向活动设置于间隙腔101内,形成挤压部。而致动器安装于盖体100上,且与挤压板2连接,用于驱动挤压板2活动,进而通过带动挤压板2来促使密封件300变形,使得密封件300与容器本体400的内壁面接触形成密封。
进一步地,所述致动器为按钮式致动器、旋钮式致动器、滑动式致动器 以及拨转式致动器中的一种。
以旋钮式致动器为例,如图16所示,致动器可以包括旋钮块a1以及弹簧3。其中,旋钮块a1顶部向上伸出盖体100,而伸入盖体100的旋扭块外周面上设有在竖直方向与盖体100内顶面接触的止挡凸缘a11,实现在竖直方向与盖体100限位配合,而且旋钮块a1的底部绕旋转中心线圆周间隔设有多个呈弧形的第一卡齿a12,各个第一卡齿a12沿相同的自身弧长方向在厚度上逐渐增大,同时各个第一卡齿a12在厚度最大处平滑连接一顶面为平面的第一连接块a13。对应的,挤压板2的顶部圆周设有多个与第一卡齿a12配合的第二卡齿a21,各个第二卡齿a21的厚度与第一卡齿a12厚度增大方向相反的方向逐渐增大,且在最大厚度处也平滑连接有顶面为平面的第二连接块a22。弹簧3则设置在挤压板2与盖体100内底面之间,用于提供挤压板2复位弹性力,并使得止挡凸缘a11能够保持与盖体100接触相抵。本实施例的致动过程为:当第一卡齿a12与第二卡齿a21交错配合时,此时挤压板2处于较高位置,密封盖处于打开位置。而当沿第二卡齿a21厚度增大方向转动旋钮块a1时,挤压板2逐渐下降并逐渐驱动密封件300。当旋转至第一连接块a13与第二连接块a22接触时,此时挤压板2处于较低位置,密封盖处于密封状态。当需要使得挤压板2进行复位时,可再转动旋钮块a1,即可在弹簧3提供的弹性力作用下使得第一卡齿a12与第二卡齿a21再次错位配合,此时挤压板2又恢复到较高位置。
以滑动式致动器为例,如图17所示,致动器可以包括第三楔形块b1以及弹簧3。其中,第三楔形块b1滑动设置在盖体100内且位于挤压板2顶部,且第三楔形块b1的顶面设有活动伸出盖体100的拨杆b11,通过拨动拨杆b11即可带动第三楔形块b1滑动。挤压板2顶部对应设置有与第三楔形块b1配合的第四楔形块b21,同理第三楔形块b1与第四楔形块b21均具有相互配合的斜面。弹簧3也是设置在挤压块与盖体100内底面之间,用于提供挤压块复位用的弹性力,并使得第三楔形块b1的顶面可以紧密贴合盖体100内顶面。本实施例的致动过程为:通过拨动拨杆b11以带动第三楔形块b1滑动,进而实现的第三楔形块b1与第四楔形块b21发生相对位移,从而实现向下驱动挤压板2运动。当需要使得挤压板2进行复位时,即可反向拨动拨杆b11,此时 挤压板2即可在弹簧3提供的弹性力作用下进行复位。
以拨旋式驱动器为例,如图18所示,致动器可以包括凸轮拨杆b11以及弹簧3。其中,凸轮拨杆b11的凸轮部c12转动连接于盖体100内且与挤压板2顶面接触,杆部c11则活动伸出盖体100,可供使用者拨转,更具体的来说,凸轮杆c1可以如图15所示的呈L形结构,具体不做限制。弹簧3也是设置在挤压块与盖体100内底面之间,用于提供挤压块复位用的弹性力,并使得挤压板2顶面可以保持与凸轮部c12接触相抵。本实施例的致动过程为:通过拨转杆部c11使得凸轮部c12组件从自身靠近圆心的部分与挤压板2抵接状态转变为远离圆心的部分与挤压板2抵接状态,进而带动挤压板2向下运动。当需要使得挤压板2进行复位时,即可反向拨转杆部c11,此时挤压板2即可在弹簧3提供的弹性力作用下进行复位。
以致动器为按钮式致动器为例,其致动器结构可以参考现有的应用于密封盖上的致动结构,如图6至图8所示,具体可以包括可向上活动伸出盖体100的按钮10、旋转件13、弹簧3以及定位件15。其中,按钮10内设有用于安装旋转件13的转轴14。同时,按钮10内顶面设有向下的第一转齿121,而旋转件13顶部设有与第一转齿121配合第二转齿132,按钮10在致动过程中通过第一转齿121与第二转齿132的配合推动旋转件13转动。旋转件13的外周面上设有若干槽道131,对应的定位件15的内侧面上设有与槽道131一一对应配合的凸条151,旋转件13的内顶面还设有卡扣133,通过卡扣133的设置能够将旋转件13卡接于按钮10的转轴14上。定位件15设置在盖体100内底面中部位置,整体也呈柱体结构,各个凸条151的底面设有与旋转件13的第二转齿132配合的斜面,以便在致动过程中可以推动旋转件13转动。当旋转件13因致动而旋转,且旋转件13的槽道131与定位件15的凸条151不再对齐时,凸条151会抵接再旋转件13的第二转齿132上,从而使得旋转件13定位在较低的位置,此时也即是将挤压板2限制在一个较低的位置,从而保持挤压板2对密封件300的挤压。弹簧3的嵌设于定位件15内,且一端与定位件15内底面接触相抵,另一端伸入旋转件13内与旋转件13接触相抵。当旋转件13再次受压下移时即可通过弹簧3进行复位。本领域技术人基于上述公开的手段还可结合现有的致动器进行进一步理解,因此不再过多赘述。
具体的,按钮10通过支臂6与挤压板2连接,以带动挤压板2上下运动。其中,支臂6设有优选呈不共线分布的第一支点部631、第二支点部632以及第三支点部633。第一支点部631与按钮10可转动地连接,或与按钮10可转动可滑动地连接,第二支点部632与盖体100可转动地连接,或与盖体100可转动可滑动地连接,第三支点部633与挤压板2可转动地连接,或与挤压板2可转动可滑动地连接。为了保证旋钮式致动器能够正常带动挤压板2运动,第一支点部631、第二支点部632以及第三支点部633中至少两个支点部为可转动可滑动地连接设置,同时这两个可转动可滑动地连接设置的支点部在滑动方向上均优选地设计为水平滑动,而且两个支点部的滑动方向亦可设计为相同方向。
就按钮10结构来说,可以由压盖11和旋转辅助件12组成,需说明地是,压盖11与旋转辅助件12之间可以是可拆卸配合,亦可是一体成型。压盖11向上活动伸出盖体100的避让孔41,其设计目的是方便使用者按压操作,同时可以与盖体100实现搭配,提升整体的美观性。当然,不设置压盖11亦可以,也即是按钮10直接即为旋转辅助件。本实施例中,支臂6的第一支点部具体与旋转辅助件12连接。
以配置有压盖11为例,旋转辅助件12连接于压盖11底部且整体呈柱体结构,具体为旋转辅助件12内设有用于安装旋转件13的转轴14,旋转件13通过卡扣133卡接于旋转辅助件12的转轴14上。
具体的致动过程为:压盖11带动按钮10向下运动,通过第一支点部631与第二支点部632的连接设置,可以带动支臂6整体呈摆动式地向下运动,进而带动第三支点部633非竖直的向下运动,由于第三支点部633也为活动连接设置,进而即可顺利的通过第三支点部633带动挤压板2向下运动,从而驱动密封件300变形,待按钮10移动至一定低位并锁止时,即可对挤压板2进行限制,保持密封状态。复位时,在弹簧3的作用下,按钮10复位运动,进而通过支臂6带动挤压板2进行复位。这样的设计,可以使得密封盖整体结构更加紧凑。
进一步地,为了较好实现按钮10通过支臂6对挤压板2的驱动。第一支点部631、第二支点部632以及第三支点部633中任意两个支点部为可转动可 滑动地连接设置,另一个支点部为可转动地连接设置。也即是可以是第一支点部631、第二支点部632为可转动可滑动地连接设置,而第三支点部633为铰接设置。或第一支点部631为铰接设置,第二支点部632第三支点部633为可转动可滑动地连接设置等情况。
进一步地,本申请中,可转动地连接设置的支点部具体可以为一体铰接设置,也即是使得支臂6与盖体100,或与按钮10,或与挤压板2一体成型。一体成型设计时,使得支臂6的铰接设置的支点部与对应要一体成型的部件呈可重复弯折式的连接一起,进而一体成型后即可使得支臂6的该支点部已经为铰接设置了,从而也就减少了对该支点部的装配工作。本领域技术人员可以以此为基础做适当的变换,具体不做限制。具体一体成型情况可以如下,当支臂6与按钮10一体成型时,第二支点部632与第三支点部633则分别为可转动可滑动地连接设置。当支臂6与盖体100一体成型时,对应第一支点部631与第三支点部633则为可转动可滑动地连接设置。当支臂6与挤压板2一体成型时,对应第一支点部631与第二支点部632则为可转动可滑动地连接设置。需要说明的是,支臂6具体与盖体100那个部分一体成型可以根据盖体100的结构而定,例如以盖体100为具有上盖4以及下盖5为例,那么支臂6即可与上盖4或下盖5一体成型,其一体成型情况可以参考前述按钮10与直臂6之间的一体成型设计,不做限制。
进一步地,所述第一支点部631的转动轴线到第二支点部632的转动轴线之间的距离大于第二支点部632的转动轴线到第三支点部633的转动轴线之间的距离。需要说明地是,本实施例中转动轴线即指的是支点部可以绕其相对转动的一轴线。通过这样的设计,可以使得按钮10与挤压板2的行程不同,使得按钮10的按压能够更加省力,同时在在保持更好的操作体验的同时,可减小盖体的厚度。
进一步地,就支臂6结构来说,如图9所示,包括动力臂61以及阻力臂62。其中,动力臂61的第一端部设有第一支点部631,动力臂61的第二端部设有第二支点部632,动力臂61的第一端部为了能够适配与按钮10的连接,可以设置有一个内凹避让槽611,进而可以对按钮10形成一种夹持,提高连接的稳固性;同时,按钮10外周面上可以设置立面122,提供第一支点部631 的连接便利。阻力臂62的第一端部与动力臂61底面固定连接且与动力臂61从侧向方向看呈如图5所示的T字形分布,阻力臂62的第二端部设有第三支点部633。
以第一支点部631可转动地设置,第二支点部632与第三支点部633为可转动可滑动地设置为例,按钮10通过支臂6以驱动挤压板2的原理如下:
按钮10下移过程,带动动力臂61向下摆动,动力臂61向下摆动的同时也即带动阻力臂62随之下移,由于第一支点部631为可转动地设置,动力臂61向下摆动以及阻力臂62的随之下移都会产生一个水平位移分量,而动力臂61产生的水平位移分量可以由动力臂61上可转动可滑动地设置的第二支点部632进行释放,使得动力臂61可以顺畅向下摆动。而阻力臂62产生的水平位移分量则可以由阻力臂62上可转动可滑动地设置的第三支点部633进行释放,使得阻力臂62可以顺畅下移而推动挤压板2。
进一步地,如图9所示,就支点部的结构来说,第一支点部631、第二支点部632以及第三支点部633均可以为轴杆,那么按钮10、盖体100以及挤压板2上也就可以相应设有与轴杆相配合的孔或槽结构。具体例如,按钮10设有与所述第一支点部可转动配合的轴孔123;所述盖体100设有与第二支点部配合的第一滑槽腔450,使所述第二支点部可相对于所述盖体100可转动可滑动;所述挤压板2设有与第三支点部配合的第二滑槽腔251,使所述第三支点部可相对于所述挤压板2可转动可滑动。
当然,本申请的第一支点部631、第二支点部632以及第三支点部633可以为槽或孔结构设计,对应按钮10、盖体100以及挤压板2相应设有与之配合轴杆结构,形成与前述相反的配合。另外,第一支点部631、第二支点部632以及第三支点部633均可以是可拆卸连接设置,便于拆卸维护。
进一步地,就盖体100结构来说,如图5、图10以及图11所示,包括上盖4以及下盖5。其中,上盖4安装于下盖5顶部,且上盖4底面与下盖5顶面之间间隔分布,形成间隙腔10,而所述间隙腔四周的贯通区域则对应形成所述可视区域。上盖4还设有用于避让致动机构200的避让孔41,以按钮式致动器来说,该避让孔41则可以用于避让按钮10,以方便使用者压按。
进一步地,上盖4底面沿避让孔41向下延伸有第一侧壁42,第一侧壁 42外表面设有第一卡槽421,第一侧壁42的内表面设有第二卡槽422。对应的,下盖5顶面向上凸设有与第一卡槽421一一对应的第一连接座51,以及与第二卡槽422一一对应的第二连接座52;第一连接座51上设有与第一卡槽421扣合的第一卡勾511;第二连接座52上设有与第二卡槽422扣合的第二卡勾521。需要说明的是,以盖体100这一结构设计来说,定位件15也即可以安装于盖体100顶面中心位置。再者,关于第一连接座51与第二连接座52设置来说,其数量均可以为多个且绕下盖5中心圆周分布,具体可以是两个并且两两对称设置,具体不做限制。通过向上凸起设置的连接座与卡槽之间的配合,实现上盖4下盖5的连接配合,同时使得上盖4与下盖5之间形成间隙腔101。当然,还可以是其它连接配合设计,不做限制。
另外,就上盖4的结构设计来说,其底部外侧边缘可以向下设置有与容器本体400配合的第二侧壁43,而第二侧壁43可以与容器本体400的开口端之间螺纹配合,嵌设配合,具体不做限制。同时在第二侧壁43的底部还可以向下延伸设置伸入容器本内的延伸凸缘44,这一延伸凸缘44即可起到定位作用,亦可与密封件300相互配合,从而对间隙腔101进行遮挡或开放,进而在密封盖处于打开状态时,密封件300与延伸凸缘44之间可以通过对间隙腔的遮挡从而实现对提示部的遮挡,而在密封盖处于密封状态时,密封件300与延伸凸缘44之间可以形成观察间隙102。上盖4底面上于第一侧壁42与第二侧壁43之间设有呈辐射状排列的第一加强筋46,以提高上盖4的整体结构强度。本领域技术人员可以以此为基础做适当的变换设计,不做限制。
就下盖5的结构设计来说,同样为了进一步提高自身的结构强度,下盖5顶面靠外侧边缘位置可以设有环形的第二加强筋54,第二加强筋54内侧还可以设有多个向内辐射设置的呈三角板结构的第三加强筋55,与第二加强筋54配合进一步提高整体结构强度。
就挤压板2的结构设计来说,以上述上盖4以及上盖4的这一结构设计为例,挤压板2上可以设有避让第一连接座51的第一通孔22,而中部位置可以设有即可避让第二连接座52又可避让致动器的第二通孔21。同时,为了起到加强作用,挤压板2的外边缘可以设置第三侧壁23,并且在挤压板2上下表面均设有呈辐射状分布的第四加强筋24。
本申请中上盖4、挤压板2与下盖5之间的形状相适配,具体形状可以根据实际配合的容器本体400开口形状进行设计,不做限制。
进一步地,以第一支点部631具体与按钮10可转动地连接为例。如图9所示,所述按钮的立面122上可以设置有轴孔123,通过轴孔123实现与第一支点部631的铰接配合。
进一步地,以第二支点部632具体与盖体100可转动可滑动地连接为例。如图10以及图13所示,第一侧壁42的内侧面于第二卡槽422上方设有可与第二连接座52顶面接合的接合块45,接合块45的底面设有第一凹槽451,对应的,第二连接座52的顶面设有与第一凹槽451配合的第二凹槽522。第一凹槽451与第二凹槽522形成第一滑槽腔450,第二支点部632可转动安装于第一滑槽腔450,且与第一滑槽腔450滑动配合。通过这样的结构设计,即可实现第二支点部632与盖体100的连接配合,也方便整体的安装与拆卸。本领域技术人员可以以此为基础做适当的变换设计,不做限制。
进一步地,为了使得第二连接座52与接合块45之间的接合更加紧密,如图13所示,第二连接座52顶面于第二凹槽522旁侧设有第三卡槽523。对应的,如图12所示,接合块45底面于第一凹槽451旁侧设有与第三卡槽523扣合的第三卡勾452,通过卡槽与卡勾之间配合使得第二连接座52与接合块45之间的接合更加紧密。
进一步地,以第三支点部633与挤压板2铰接并沿水平方向滑动连接为例。如图13所示,挤压板2顶面向上凸设有第三连接座25,第三连接座25上设有第二滑槽腔251,第三支点部633可转动安装于第二滑槽腔251,且与第二滑槽腔251滑动配合。
进一步地,就密封件300的安装来说,可以是在下盖5的外外边缘设有向内凹陷的第三凹槽53,再将密封件300环绕嵌设于第三凹槽53。密封件300具体可以包括与第三凹槽53嵌设配合第一密封圈部71,以及一体环设于第一密封圈部71顶部外边缘且向上分布的第二密封圈部72,第二密封圈部72内部空间自下而上逐渐增大,呈锥形圈结构设计。本领域技术人员可以以此为基础做适当的变换设计,不做限制。
如图19所示,本申请还提供了一种储物容器,包括容器本体400以及如 上述实施例一或实施例二的密封盖;容器本体400上至少对应密封盖的可视区域的容器壁段为透明壁段,保证使用者可以观察到挤压板2的提示部。
以形成有观察间隙的情况为例:
密封盖从开启状态到密封状态的工作过程:
将盖子盖在容器本体400开口处,按下压盖11,旋转辅助件12和旋转件13随之向下移动,推动支臂6向下摆动,支臂6的第三支点部633随之下移并推动挤压板2下移。挤压板2下移挤压下盖5上的密封件300,使得密封件300发生变形,密封件300的第二密封圈部72被挤压在容器本体400内壁上,使罐口处于密封状态。此时,由于第二密封圈部72以发生变形并下移,与延伸凸缘44之间就会形成一定的高度差,进而形成一个观察间隙102。同时,挤压板2也就从上盖4和密封件300之间的观察间隙102中露出,使用者可从容器本体400的侧面看见挤压板2。当压盖11上表面运动值略低于上盖4上表面时,使得压盖11运动至最低点,旋转件13触发转动,此时松开压盖11。弹簧3弹力使压盖11略微回弹,旋转件13的槽道131因旋转件13的旋转不再和定位件15的凸条151对齐,凸条151和旋转件13的第二转齿132相抵,旋转件13的高度位置被锁定,从而使压盖11位置被锁定。此时压盖11上表面和上盖4上表面处于同一高度,密封件300仍被压在容器本体400内壁上,挤压板2仍能从容器本体400侧面观察到,密封盖完成从开启状态到密封状态的切换。
密封盖从密封状态到开启状态的工作过程:
再次按下压盖11,旋转件13触发转动,此时松开压盖11,旋转辅助件12旋转件13槽道131与定位件15凸条151对齐,旋转件13解锁,弹簧3弹力使旋转件13、按钮10和压盖11继续向上复位至初始位置,同时带动支臂6向上摆动,支臂6第三支点部633随之上移并带动挤压板2上移。挤压板2不再挤压密封件300,密封件300在自身弹性下恢复原形状,不再紧贴在容器本体400内壁上,密封件300和上盖4的延伸凸缘44重新接触,或密封件300向上没过延伸凸缘44底部,从而遮挡住挤压板2使其不能从容器本体400侧面被观察到,密封盖完成从密封状态到开启状态的切换。
以上对本申请所提供的一种密封盖及储物容器进行了详细介绍,对于本 领域的一般技术人员,依据本申请实施例的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本申请的限制。

Claims (14)

  1. 一种密封盖,包括盖体、致动机构以及密封件,所述致动机构以及所述密封件均安装于所述盖体,其特征在于,所述致动机构设有沿竖直方向可活动调节的挤压部;
    所述挤压部用于驱动所述密封件变形,以使得所述密封件与容器本体内壁密封接触;
    所述盖体设有用于供所述挤压部活动的间隙腔,且所述盖体侧面上至少设有一处在视觉上连通所述间隙腔的可视区域;
    所述致动机构还设有提示部;
    所述挤压部在驱动所述密封件变形后,至少有某一所述提示部的部分从所述可视区域露出,以使得使用者可从密封盖的侧面观察到。
  2. 根据权利要求1所述的一种密封盖,其特征在于,所述提示部可视地区别于所述盖体以及所述密封件。
  3. 根据权利要求2所述的一种密封盖,其特征在于,所述提示部的颜色与所述盖体的颜色以及所述密封件的颜色不同。
  4. 根据权利要求1所述的一种密封盖,其特征在于,所述提示部设于所述挤压部上。
  5. 根据权利要求1所述的一种密封盖,其特征在于,所述密封件变形前,对所述可视区域形成遮挡;
    所述密封件变形后,与所述盖体之间形成可视连通所述可视区域的观察间隙。
  6. 根据权利要求1所述的一种密封盖,其特征在于,所述致动机构包括致动器以及挤压板;
    所述挤压板沿竖直方向活动设置于所述间隙腔内,形成所述挤压部;
    所述致动器安装于所述盖体上,且与所述挤压板连接,用于驱动所述挤压板活动。
  7. 根据权利要求6所述的一种密封盖,其特征在于,所述致动器为按钮式致动器、旋钮式致动器、滑动式致动器以及拨转式致动器中的一种。
  8. 根据权利要求7所述的一种密封盖,其特征在于,所述致动器具体为按钮式致动器;
    所述按钮式致动器的按钮向上活动伸出所述盖体;
    所述按钮式致动器的按钮通过支臂与所述挤压板连接,用于带动所述挤压板上下运动;
    所述支臂设有第一支点部、第二支点部以及第三支点部;
    所述第一支点部与所述按钮可转动地连接,或与所述按钮可转动可滑动地连接;
    所述第二支点部与所述盖体可转动地连接,或与所述盖体可转动可滑动地连接;
    所述第三支点部与所述挤压板可转动地连接,或与所述挤压板可转动可滑动地连接;
    所述第一支点部、所述第二支点部以及所述第三支点部中至少两个支点部为可转动可滑动地连接设置。
  9. 根据权利要求8所述的一种密封盖,其特征在于,所述第一支点部、所述第二支点部以及所述第三支点部中任意两个支点部为可转动可滑动地连接设置,另一个支点部为可转动地设置,可转动地设置的支点部具体为一体铰接设置。
  10. 根据权利要求8所述的一种密封盖,其特征在于,所述第一支点部、所述第二支点部以及所述第三支点部呈不共线分布。
  11. 根据权利要求8所述的一种密封盖,其特征在于,所述第一支点部到第二支点部的距离大于第二支点部到第三支点部的距离。
  12. 根据权利要求8所述的一种密封盖,其特征在于,所述盖体包括上盖以及下盖;
    所述上盖安装于所述下盖顶部,且所述上盖底面与所述下盖顶面之间间隔分布,形成所述间隙腔;
    所述间隙腔四周的贯通区域形成所述可视区域。
  13. 根据权利要求12所述的一种密封盖,其特征在于,所述下盖的外边缘设有向内凹陷的凹槽;
    所述密封件环绕嵌设于所述凹槽。
  14. 一种储物容器,其特征在于,包括容器本体以及如权利要求1-13任 意一项所述的密封盖;
    所述容器本体上至少对应所述密封盖的可视区域的容器壁段为透明壁段。
PCT/CN2021/133023 2021-06-07 2021-11-25 一种密封盖及储物容器 WO2022257368A1 (zh)

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