Fastening structure for sealed container cover, sealed container cover and container

The fastening structure with deformable fastening assemblies and a stopper maintains the seal in sealed containers by deforming during sealing and separating during unsealing, addressing the issue of gas leakage due to high internal pressure.

JP7815477B2Active Publication Date: 2026-02-17邵晖
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Patent Information

Application Number
JP2024560801
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2022-06-29
Filing Date
2023-04-11
Publication Date
2026-02-17
Estimated Expiration
2043-04-11

AI Technical Summary

Technical Problem

Existing sealed containers fail to maintain a seal when internal pressure exceeds the critical friction force between the elastic sealing member and the container wall, leading to gas leakage.

Method used

A fastening structure with multiple fastening assemblies and a stopper that cause elastic deformation during sealing and return to their initial state during unsealing, ensuring the seal is maintained under varying internal pressures.

Benefits of technology

Prevents gas leakage by allowing the fastening assemblies to separate and recover from the stopper when internal pressure exceeds the critical friction force, ensuring the container remains sealed.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

A fastening structure for a sealed container cover (300) comprising at least two fastening assemblies (100) and a stopper (200) adapted to the position of the fastening assemblies (100), the fastening assemblies (100) being evenly installed on the connecting member (320) of the sealed container cover (300), when the fastening assemblies (100) abut against the stopper (200) during the process of sealing the sealed container cover (300) and the container (400), at least a portion of the fastening assemblies (100) is held in abutment against a predetermined position on the inner layer of the container (400) causing elastic deformation, and during the process of releasing the seal between the container cover (300) and the container (400), the fastening assemblies (100) recover from the deformation and separate from the stopper (200).
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Description

[Technical Field]

[0001] The present invention relates to the technical field of sealed containers, and more particularly to a fastening structure for a sealed container cover, a sealed container cover, and a container. [Background technology]

[0002] A so-called sealed container is a container that is isolated from the outside and does not leak gas.

[0003] The applicant has previously filed a patent application for a sealed container that uses a radially deformable elastic sealing member to seal the container cover and the container. However, when the internal pressure of the sealed container exceeds a critical value of the frictional force between the elastic sealing member and the inner wall of the container, the elastic sealing member is unable to completely seal the container cover and the container, causing the container cover and the container to separate, resulting in gas leakage from the sealed container. Summary of the Invention [Problem to be solved by the invention]

[0004] Based on this, it is necessary to provide a fastening structure for a sealed container cover, a sealed container cover, and a container. [Means for solving the problem]

[0005] A fastening structure for a sealed container cover, comprising at least two fastening assemblies and a stopper that fits the position of the fastening assemblies, the fastening assemblies being evenly installed on the connecting member of the sealed container cover, and when the fastening assemblies abut against the stopper during the sealing process between the sealed container cover and the container, at least a portion of the fastening assemblies is held in abutment at a predetermined position on the inner layer of the container, causing elastic deformation, and when the sealing process between the container cover and the container is released, the fastening assemblies recover from the deformation and separate from the stopper.

[0006] In one embodiment, the fastening assembly includes a first fastening member and a spring, one end of the spring fixedly connected to the first fastening member and the other end of the spring fixedly connected to a connecting member.

[0007] In one embodiment, the fastening assembly includes a second fastening member and an elastic rubber block, one end of the elastic rubber block being fixedly connected to the second fastening member and the other end being fixedly connected to the connecting member.

[0008] In one embodiment, the fastening assembly includes a third fastening member and an elastic rubber strip, both ends of the elastic rubber strip are fixed to the connecting member, and at least a portion of the elastic rubber strip is fixedly or removably connected to the third fastening member.

[0009] In one embodiment, the first fastening member has a buckle, and the buckle abuts against or separates from a limiting portion on the connecting member during the process of separation or abutment between the first fastening member and the stopper.

[0010] In one embodiment, the third fastening member has a limiting member for controlling the movement of the elastic rubber strip.

[0011] In one embodiment, the surface of the stopper adjacent to the fastening assembly is a curved structure.

[0012] A sealed container cover with a fastening structure comprises a cover body, a connecting member and a movable base that can move up and down are sequentially provided on the underside of the cover body, an elastic sealing member is provided between the movable base and the connecting member, the elastic sealing member is connected to the connecting member or the movable base, an opening and closing mechanism for opening and closing the container cover is provided on the upper side of the container cover, the fastening assembly is evenly installed on the connecting member, the stopper is installed on the movable base and matches the position of the fastening assembly, the opening and closing mechanism controls the movable base to move toward the connecting member, the elastic sealing member seals the container through the cooperation of the connecting member and the movable base, and the fastening assembly is compressed so that the stopper moves toward the inner layer of the container until it abuts a predetermined position on the inner layer of the container.

[0013] In one embodiment, the opening / closing mechanism includes an opening / closing cover and a sliding cover, the opening / closing cover and the sliding cover are slidably connected, the opening / closing cover has a stopper member, the sliding cover has a stopper portion, and when the stopper member moves close to or away from the sliding cover to a predetermined position, the stopper portion on the sliding cover abuts against or separates from the stopper member during the process of the sliding cover sliding on the opening / closing cover.

[0014] A container with a sealed container cover having a fastening structure, wherein when the container cover and the container are sealed, the fastening assembly abuts at a predetermined position on the inner layer of the container, and when the seal between the container cover and the container is released, the fastening assembly separates from the predetermined position on the inner layer of the container, and the fastening assembly returns to its initial state. [Effects of the Invention]

[0015] In the above-mentioned fastening structure for the sealed container cover, the sealed container cover, and the container, the fastening assembly and the stopper are installed in conjunction with each other. During the process of sealing the sealed container cover and the container, when the fastening assembly abuts against the stopper, at least a portion of it abuts and is held in place at a predetermined position on the inner layer of the container, causing elastic deformation. During the process of releasing the seal between the container cover and the container, the fastening assembly recovers from the deformation and separates from the stopper. This prevents the elastic sealing member from being unable to complete the seal between the container cover and the container when the internal pressure of the container exceeds the critical value of the friction force between the elastic sealing member and the inner wall of the container, thereby ensuring normal use of the sealed container. [Brief explanation of the drawings]

[0016] [Figure 1] FIG. 1 is a structural schematic diagram of a fastening structure for a sealed container cover according to one embodiment of the present invention. [Figure 2] FIG. 2 is a structural schematic diagram of a fastening structure for a sealed container cover according to another embodiment of the present invention. [Figure 3] FIG. 3 is a structural schematic diagram of a fastening structure for a sealed container cover according to another embodiment of the present invention. [Figure 4] FIG. 4 is a schematic diagram of an assembly structure of a sealed container cover having a fastening structure according to one embodiment of the present invention. [Figure 5] FIG. 5 is a structural schematic diagram of an opening and closing structure for a sealed container cover having a fastening structure according to one embodiment of the present invention. [Figure 6] FIG. 6 is a cross-sectional view of a sealing structure of a sealed container having a fastening structure according to an embodiment of the present invention. [Figure 7] FIG. 7 is a cross-sectional view of a sealing release structure for a sealed container having a fastening structure according to an embodiment of the present invention. DETAILED DESCRIPTION OF THE INVENTION

[0017] In order to clarify the above-mentioned objects, features, and advantages of the present invention, the following detailed description of specific embodiments of the present invention will be given with reference to the accompanying drawings. In order to fully understand the present invention, many specific details will be set forth in the following description. However, the present invention may be embodied in many other ways different from those described herein, and those skilled in the art will be able to make similar modifications without departing from the scope of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.

[0018] It should be noted that when one element is referred to as being "connected" to another element, it may be directly connected to the other element, or intermediate elements may also be present. Conversely, when an element is referred to as being "directly" connected to another element, there are no intermediate elements present.

[0019] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art. The terms used in the specification of the present invention herein are only for describing specific embodiments and are not intended to limit the present invention. The term "and / or" used herein includes any and all combinations of one or more of the associated listed items.

[0020] As shown in FIG. 1, the fastening structure for a sealed container cover includes at least two fastening assemblies 100 and a stopper 200 that fits the position of the fastening assemblies 100. The fastening assemblies 100 are evenly installed on the connecting member 320 of the sealed container cover. During the process of sealing the sealed container cover 300 and the container 400, when the fastening assemblies 100 abut against the stopper 200, at least a portion of them abuts and is held in a predetermined position on the inner layer of the container 400, causing elastic deformation. During the process of releasing the seal between the container cover 300 and the container 400, the fastening assemblies 100 recover from the deformation and separate from the stopper 200.

[0021] As shown in FIG. 1, in one embodiment, the fastening assembly 100 includes a first fastening member 110 and a spring, one end of the spring being fixedly connected to the first fastening member 110 and the other end of the spring being fixedly connected to a connecting member 320.

[0022] As shown in FIG. 2, in one embodiment, the fastening assembly 100 includes a second fastening member 130 and an elastic rubber block 140, one end of which is fixedly connected to the second fastening member 130 and the other end of which is fixedly connected to the connecting member 320.

[0023] As shown in FIG. 3, in one embodiment, the fastening assembly 100 includes a third fastening member 150 and an elastic rubber strip 160, both ends of which are fixed to the connecting member 320, and at least a portion of the elastic rubber strip 160 is fixedly or removably connected to the third fastening member 150.

[0024] In one embodiment, the first fastening member 110 has a buckle 111, which abuts against or separates from a limiting portion 321 on the connecting member 320 during the process of the first fastening member 110 and the stopper 200 abutting or separating.

[0025] In one embodiment, the third fastening member 150 has a limiting member 151 for controlling the movement of the elastic rubber strip 160 .

[0026] In one embodiment, the surface of the stopper 200 that is adjacent to the fastening assembly 100 has a curved structure.

[0027] As shown in FIG. 4, a sealed container cover with a fastening structure includes a cover body 310, a connecting member 320 and a movable base 330 that can move up and down, which are sequentially provided below the cover body 310, an elastic sealing member 340 is provided between the movable base 330 and the connecting member 320, and the elastic sealing member 340 is connected to the connecting member 320 or the movable base 330, and an opening / closing mechanism 350 for opening and closing the container cover is provided above the container cover 300, the fastening assembly 100 is evenly installed on the connecting member 320, and the stopper 200 is installed on the movable base 330 and is adapted to the position of the fastening assembly 100. The opening / closing mechanism 350 controls the movable base 330 to move toward the connecting member 320, and the elastic sealing member 340 seals the container through the cooperation of the connecting member 320 and the movable base 330, and the stopper 200 compresses the fastening assembly 100 to move toward the inner layer of the container until it abuts a predetermined position on the inner layer of the container.

[0028] As shown in FIG. 5, in one embodiment, the opening / closing mechanism 350 includes an opening / closing cover 351 and a sliding cover 352, the opening / closing cover 351 and the sliding cover 352 are slidably connected, the opening / closing cover 351 has a stopper member 3511, the sliding cover 352 has a stopper portion 3522, and when the stopper member 3511 moves toward or away from the sliding cover 352 and to a predetermined position, the stopper portion 3522 on the sliding cover 352 abuts against or separates from the stopper member 3511 during the process of the sliding cover 352 sliding on the opening / closing cover 351.

[0029] As shown in Figures 6 and 7, in a sealed container cover container having a fastening structure, when the container cover 300 and the container 400 are sealed, the fastening assembly 100 abuts at a predetermined position on the inner layer of the container, and when the seal between the container cover 300 and the container 400 is released, the fastening assembly 100 separates from the predetermined position on the inner layer of the container, and the fastening assembly 100 returns to its initial state.

[0030] There are at least two fastening assemblies 100, and for example, three or four are also possible. The fastening assemblies 100 are evenly installed on the connecting member 320 of the sealed container cover. The so-called evenly installed means that when the fastening assemblies 100 are attached to the connecting member 320, the connecting member 320 may be divided into several equal parts. The stopper 200 is adapted to the number and position of the fastening assemblies 100 and may abut or separate from the fastening assemblies 100 from different directions under the action of an external force. An annular groove is provided at a predetermined position on the inner layer of the container 400.

[0031] Example 1 The fastening assembly 100 includes a first fastening member 110 and a spring, one end of which is fixedly connected to the first fastening member 110 and the other end of which is fixedly connected to the connecting member 320. A first notch 322 is formed on the connecting member 320 at a position corresponding to the first fastening member 110. During the process of sealing the container cover 300 and the container 400, an external force is applied to move the stopper 200 toward the first fastening member 110 until it abuts against the first fastening member 110. At this time, at least a portion of the first fastening member 110 is moved toward the annular groove of the container 400 through the first notch by the pushing of the stopper 200 until it abuts against and engages with the annular groove. At this time, the spring is compressed and deformed, and during the process of unsealing the container cover 300 and the container 400, the stopper 200 gradually separates from the first fastening member 110, and the spring recovers from the deformation, driving the first fastening member 110 to return to its initial position.

[0032] Furthermore, the first fastening member 110 is provided with a spring accommodating groove.

[0033] Example 2 In one embodiment, the fastening assembly 100 includes a second fastening member 130 and an elastic rubber block 140, one end of which is fixedly connected to the second fastening member 130 and the other end of which is fixedly connected to the connecting member 320. The second fastening member 130 has at least two spaced-apart second notches 131 formed in a two-step configuration at one end adjacent to the connecting member 320. During the process of sealing the container cover 300 and the container 400, an external force is applied to move the stopper 200 toward the second fastening member 130 until it abuts against the second fastening member 130. At this time, at least a portion of the second fastening member 130 is pushed by the stopper 200 and moves toward the annular groove of the container 400 through the first notches until it abuts against and engages with the annular groove. At this time, the elastic rubber block 140 is compressed and deformed, and the second notch 131 abuts against the connecting member 320. During the process of unsealing the container cover 300 and the container 400, the stopper 200 gradually separates from the second fastening member 130, and the elastic rubber block 140 recovers from the deformation, driving the second fastening member 130 to return to its initial position.

[0034] Example 3 In one embodiment, the fastening assembly 100 includes a third fastening member 150 and an elastic rubber strip 160, both ends of which are fixed to the connecting member 320, and at least a portion of the elastic rubber strip 160 is fixedly or removably connected to the third fastening member 150. The third fastening member 150 has a limiting member 151 for controlling the movement of the elastic rubber strip 160. The limiting member 151 may be a groove or a protrusion. The third fastening member 150 has a two-step third notch 152 at one end adjacent to the connecting member 320.

[0035] During the process of sealing the container cover 300 and the container 400, an external force causes the stopper 200 to move toward the third fastening member 150 until it abuts against the third fastening member 150. At this time, the third fastening member 150 is pushed by the stopper 200 and moves toward the annular groove of the container 400 through the first notch until at least a portion of the third fastening member 150 abuts against and engages with the annular groove. At this time, the elastic rubber strip 160 is bent by the force of the restricting member 151, forming an inwardly bent arc shape, and the third notch 152 abuts against the connecting member 320. During the process of releasing the seal between the container cover 300 and the container 400, the stopper 200 gradually separates from the third fastening member 150, and the elastic rubber strip 160 returns to its original shape, driving the third fastening member 150 to return to its initial position.

[0036] In this way, the fastening assembly 100 and stopper 200 are installed in conjunction with each other in the fastening structure of the sealed container cover, the sealed container cover, and the container. During the process of sealing the sealed container cover 300 and the container 400 together, when the fastening assembly 100 contacts the stopper 200, at least a portion of it is held in contact with a predetermined position on the inner layer of the container, causing elastic deformation. During the process of releasing the seal between the container cover 300 and the container 400, the fastening assembly 100 recovers from the deformation and separates from the stopper 200. This prevents the elastic sealing member from being unable to complete the seal between the container cover and the container when the internal pressure of the container exceeds the critical value of the friction force between the elastic sealing member and the inner wall of the container, thereby ensuring normal use of the sealed container.

[0037] In one embodiment, the first fastening member 110 has a buckle 111, which abuts against or separates from a limiting portion 321 on the connecting member 320 during the process of separating or abutting the first fastening member 110 and the stopper 200. The limiting portion 321 may be a groove or a protrusion. When the spring 120 drives the first fastening member 110 to move toward the opening / closing mechanism 350 during the process of recovering from deformation during the process of releasing the seal between the container cover 300 and the container 400, the buckle 111 abuts against the limiting portion 321 on the connecting member 320, preventing the first fastening member 110 from moving toward the opening / closing mechanism 350. This limits the moving distance of the first fastening member 110, preventing the first fastening member 110 from moving too far and preventing the next engagement.

[0038] In one embodiment, the surface of the stopper 200 that is adjacent to the fastener assembly 100 has a curved structure to facilitate contact between the stopper 200 and the fastener assembly 100 .

[0039] In this way, during the process of the stopper 200 approaching the fastening assembly 100, the surface of the stopper 200 approaching the fastening assembly 100 has a curved structure, and when the stopper 200 abuts against the fastening assembly 100, the fastening assembly 100 can be quickly pushed to move toward the inner layer of the container, which is done easily and quickly.

[0040] a fastening assembly (100) evenly mounted on the connecting member (320); a stopper (200) mounted on the movable base (330) and adapted to the position of the fastening assembly (100); the opening and closing mechanism (350) controls the movable base (330) to move toward the connecting member (320); the elastic sealing member (340) and a movable base (330) that can move up and down are sequentially mounted on the underside of the cover body (310); an elastic sealing member (340) that can move up and down are sequentially mounted on the movable base (330) and connected to the connecting member (320) or the movable base (330); an opening and closing mechanism (350) for opening and closing the container cover is mounted on the upper side of the container cover (300); a fastening assembly (100) is evenly mounted on the connecting member (320); a stopper (200) is mounted on the movable base (330) and adapted to the position of the fastening assembly (100); the opening and closing mechanism (350) controls the movable base (330) to move toward the connecting member (320); the elastic sealing member (340) acts in cooperation with the connecting member (320) and the movable base (330) to seal the container; and the stopper (200) compresses the fastening assembly (100) to move toward the inner layer of the container until it abuts a predetermined position on the inner layer of the container.

[0041] When sealing the container cover 300 and the container 400, the opening and closing mechanism 350 is rotated to pull the movable base 330 so that the opening and closing mechanism 350 moves toward the elastic sealing member 340, and the elastic sealing member 340 is deformed outward until it becomes larger than the diameter of the sealing point of the container through the cooperation of the connecting member 320 and the movable base 330, thereby completing the sealing of the container 400, and the fastening assembly 100 is compressed so that it moves toward the inner layer of the container until the stopper 200 on the movable base 330 abuts against a predetermined position on the inner layer of the container, thereby completing the fastening of the container 400.

[0042] In one embodiment, to prevent accidental removal of opening / closing mechanism 350, opening / closing mechanism 350 includes opening / closing cover 351 and sliding cover 352, opening / closing cover 351 and sliding cover 352 are slidably connected, opening / closing cover 351 has a stopper member 3511, sliding cover 352 has a stopper portion 3522, and when stopper member 3511 moves toward or away from sliding cover 352 to a predetermined position, stopper portion 3522 on sliding cover 352 abuts against or separates from stopper member 3511 during the process of sliding cover 352 sliding on opening / closing cover 351. Opening / closing mechanism 350 and movable base 330 are detachably connected, and sliding cover 352 slides on opening / closing cover 351, thereby increasing the length of the moment arm of the opening / closing cover. If the bottom of the sliding cover 352 is higher than the mounting seat of the movable base 330, the opening / closing mechanism 350 can be easily removed from the movable base 330. By providing a stopper member 3511 on the opening / closing cover 351 and a stopper portion 3522 on the sliding cover 352, when the opening / closing mechanism 350 does not need to be removed, the stopper member 3511 is pushed toward the sliding cover 352 until it reaches a predetermined position. At this time, the sliding cover 352 contacts and is held by the stopper portion 3522 as it slides upward, thereby lowering the bottom of the sliding cover 352 below the mounting seat of the movable base 330, thereby preventing the opening / closing mechanism 350 from being accidentally removed. When the opening / closing mechanism 350 needs to be removed from the movable base 330, the stopper member 3511 is pulled away from the sliding cover 352 until it reaches a predetermined position. At this time, if the slide cover 352 does not abut and is held against the stopper portion 3522 when sliding upward, and the position of the bottom of the slide cover 352 is higher than the height of the mounting seat of the movable base 330, the opening / closing mechanism 350 may be removed from the movable base 330.

[0043] The technical features of the above embodiments may be combined in any manner, and for the sake of brevity, not all possible combinations of the technical features of the above embodiments are described, but any combination of these technical features, unless contradictory, should be considered to be within the scope described herein.

[0044] The above examples merely illustrate some embodiments of the present invention, and although the descriptions are more specific and detailed, they should not be understood as limiting the patent scope of the invention. It should be noted that a person skilled in the art can make various modifications and improvements without departing from the concept of the present invention, and all of these fall within the scope of protection of the present invention. Therefore, the patent scope of the present invention should be determined based on the appended claims.

Claims

1. A fastening structure for a sealed container cover, A fastening structure for a sealed container cover, comprising at least two fastening assemblies and stoppers that fit into the positions of the fastening assemblies, the fastening assemblies being evenly installed on the connecting member of the sealed container cover, and when the fastening assemblies abut against the stoppers during the sealing process between the sealed container cover and the container, at least a portion of the fastening assemblies is held in abutment at a predetermined position on the inner layer of the container, causing elastic deformation, and when the sealing process between the container cover and the container is released, the fastening assemblies recover from the deformation and separate from the stoppers.

2. 2. The fastening structure of claim 1, wherein the fastening assembly includes a first fastening member and a spring, one end of the spring being fixedly connected to the first fastening member and the other end of the spring being fixedly connected to the connecting member.

3. 2. The fastening structure of claim 1, wherein the fastening assembly includes a second fastening member and an elastic rubber block, one end of the elastic rubber block being fixedly connected to the second fastening member and the other end being fixedly connected to the connecting member.

4. The fastening structure of claim 1, wherein the fastening assembly includes a third fastening member and an elastic rubber strip, both ends of the elastic rubber strip are fixed to the connecting member, and at least a portion of the elastic rubber strip is fixedly or detachably connected to the third fastening member.

5. The fastening structure for a sealed container cover according to claim 2, characterized in that the first fastening member has a buckle, and the buckle abuts against a limiting portion on the connecting member or separates from the limiting portion on the connecting member during the process of separation or abutment between the first fastening member and the stopper.

6. 5. The fastening structure for a sealed container cover according to claim 4, wherein the third fastening member has a restricting member for controlling the movement of the elastic rubber strip.

7. 2. The fastening structure for a sealed container cover according to claim 1, wherein the surface of the stopper adjacent to the fastening assembly has a curved structure.

8. A sealed container cover having the fastening structure according to any one of claims 1 to 7, a fastening structure for a sealed container cover, the fastening structure comprising a cover body, a connecting member and a movable base that can move up and down, sequentially provided below the cover body, an elastic sealing member provided between the movable base and the connecting member, the elastic sealing member connected to the connecting member or the movable base, an opening and closing mechanism for opening and closing the container cover provided above the container cover, the fastening assembly evenly installed on the connecting member, the stopper installed on the movable base and adapted to the position of the fastening assembly, the opening and closing mechanism controlling the movable base to move toward the connecting member, the elastic sealing member sealing the container through cooperation with the connecting member and the movable base, and compressing the fastening assembly so that the stopper moves toward the inner layer of the container until it abuts a predetermined position on the inner layer of the container.

9. The sealing container cover having the fastening structure described in claim 8, characterized in that the opening and closing mechanism includes an opening and closing cover and a sliding cover, the opening and closing cover and the sliding cover are slidably connected, the opening and closing cover has a stopper member, the sliding cover has a stopper portion, and when the stopper member approaches the sliding cover or moves away from the sliding cover to a predetermined position, the stopper portion on the sliding cover abuts against or separates from the stopper member during the process of the sliding cover sliding on the opening and closing cover.

10. A container for a sealed container cover having the fastening structure according to claim 8, A container with a sealed container cover having a fastening structure as described in claim 8, characterized in that when the container cover and the container are sealed, the fastening assembly abuts at a predetermined position on the inner layer of the container, and when the seal between the container cover and the container is released, the fastening assembly separates from the predetermined position on the inner layer of the container and the fastening assembly returns to its initial state.

Citation Information

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