Glass bottle outer cover assembly

By designing a glass bottle cover assembly including a cover, a guide ring and a lid, the problem of glass bottles being damaged and leaked toxic chemicals due to impact is solved, and effective protection and safety improvements are achieved.

CN120035553AActive Publication Date: 2025-05-23OLDOWAN INC
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Patent Information

Application Number
CN202280101065.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Priority Date
2022-10-26
Filing Date
2022-10-31
Publication Date
2025-05-23
Estimated Expiration
2042-10-31

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Abstract

A glass bottle outer cover assembly according to an embodiment of the present invention relates to a glass bottle outer cover assembly for protecting a glass bottle, comprising: an outer cover for surrounding a body of the glass bottle; a guide ring fastened to an upper recessed portion formed in the upper portion of the outer peripheral surface of the glass bottle; and a cap for opening and closing an opening formed at the upper end of the glass bottle, the guide ring comprising: a first fastening part formed at the upper part of the outer peripheral surface of the guide ring and coupled to the cap; and a second fastening portion formed on the lower portion of the guide ring and coupled to the outer cover, the cap being coupled to a glass bottle thread formed on the outer peripheral surface between the opening portion and the upper recessed portion of the glass bottle and being coupled to the first fastening portion of the guide ring.
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Description

Technical Field

[0001] The present invention relates to a glass bottle outer cover assembly, and more particularly, to an outer cover assembly for protecting a glass bottle containing chemical substances used in a semiconductor process. Background Art

[0002] Glass bottles, which are widely used in daily life, have various uses depending on the characteristics of the contents and the purpose.

[0003] In order to maintain the special properties of the solution for a long time, the containers for photoresists (photosensitive solutions) used in semiconductor photolithography processes are made of special materials containing ultraviolet blocking coatings that utilize the principle of the refraction angle of light. The internal solution is also expensive, and leakage to the outside will be harmful to the human body, so it is usually stored in complete isolation.

[0004] Typically, the size of the container is 1 gallon (3.8 liters), and its volume and shape have certain specifications.

[0005] According to the characteristics of the solvent, since the photosensitivity is sensitive to the external temperature, it is stored in a constant temperature device with 23 degrees (usually, the storage temperature is below 4 degrees) as the reference point. Considering that cracks caused by improper handling may cause harm to the human body, it is classified as a hazardous substance and is restricted to be handled by authorized relevant personnel. This is the current actual situation.

[0006] In addition, with the increasing attention paid to the environment and safety in recent years, if such glass bottles containing chemical substances break and cause toxic substances to leak, it will cause personal injury to the workers and will have an adverse impact on the external image of semiconductor companies. Therefore, it is very necessary to actively formulate and implement response strategies.

[0007] By changing glass bottles to plastic materials, the problems of existing glass bottles can be improved, but plastic containers have the problem of difficulty in maintaining the purity of chemical solutions due to elution, and the use of glass bottles is expected to continue for a long time.

[0008] The protective device patent of Korean authorized patent No. 10-2071399 relates to a device for protecting a photoresist bottle used in a semiconductor lithography process, which is composed of a protection unit surrounding the outside of the bottle. However, there is a problem that the protective device needs to be peeled off to expose the bottle to the outside in order to actually use it in the lithography process.

[0009] Korean authorized patent No. 10-1746779 is a patent related to a protective outer cover assembly for a chemical container. The outer cover assembly is made based on a glass bottle with a handle. When the outer cover assembly is put on, the container lid is opened by opening the opening ring and the lid of the chemical container is opened to use the chemicals inside. Not only does it require the steps of putting the chemicals in the chemical container and re-putting on the outer cover assembly for transportation, but there is also a risk of damage in the step of transporting the chemical container in order to put on the outer cover assembly. The increase in steps leads to an increase in the actual risk, and there are effectiveness issues in using the outer cover assembly. Summary of the invention

[0010] Technical issues

[0011] The object of the present invention is to provide a glass bottle cover assembly which can prevent a glass bottle containing toxic chemicals from being damaged due to impact and prevent the toxic chemicals from leaking even if the glass bottle is broken.

[0012] Technical Solution

[0013] The glass bottle outer cover assembly of the embodiment of the present invention relates to a glass bottle outer cover assembly for users to protect glass bottles, which includes: an outer cover for surrounding the body of the glass bottle; a guide ring fastened to an upper recessed portion formed on the upper portion of the outer circumferential surface of the glass bottle; and a lid for opening and closing an opening formed on the upper side end of the glass bottle, the guide ring including: a first fastening portion formed on the upper portion of the outer circumferential surface of the guide ring and combined with the lid; and a second fastening portion formed on the lower portion of the guide ring and combined with the outer cover, the lid being threadedly combined with a glass bottle thread formed on the outer circumferential surface between the opening and the upper recessed portion of the glass bottle, and at the same time combined with the first fastening portion of the guide ring.

[0014] Effects of the Invention

[0015] According to the glass bottle outer cover assembly of the present invention, the glass bottle used to contain toxic chemicals can be prevented from being damaged, and even if the glass bottle is damaged, the toxic chemicals can be prevented from leaking to the outside of the outer cover. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 The figure is a front view of a glass bottle outer cover assembly according to an embodiment of the present invention.

[0017] Figure 2 2 is a cross-sectional view of a glass bottle cover assembly according to an embodiment of the present invention.

[0018] Figure 3 The figure is an exploded view of a glass bottle cover assembly according to an embodiment of the present invention.

[0019] Figure 4 1. A three-dimensional view and a front view of a guide ring according to an embodiment of the present invention.

[0020] Figure 5 1. A three-dimensional view and a front view of a guide ring according to an embodiment of the present invention.

[0021] Figure 6 1. A three-dimensional view and a front view of a guide ring according to an embodiment of the present invention.

[0022] Figure 7 The three-dimensional view, front view and top view of a cover according to an embodiment of the present invention are shown. DETAILED DESCRIPTION

[0023] The specific structural descriptions or functional descriptions of the multiple embodiments based on the concept of the present invention disclosed in this specification are merely examples for the purpose of illustrating the multiple embodiments of the concept of the present invention. The multiple embodiments based on the concept of the present invention can be implemented in various ways, and the present invention is not limited to the multiple embodiments described in this specification.

[0024] Various modifications may be made to the various embodiments based on the concept of the present invention, and there may be various implementations, which are shown in the drawings and described in detail in this specification. However, the various embodiments based on the concept of the present invention are not limited to the specific disclosed implementations, and include all modifications, equivalent technical solutions or alternative technical solutions within the concept and technical scope of the present invention.

[0025] The terms "first" or "second" may be used to describe a variety of structural elements, but the structural elements are not limited to the terms. The terms are only used to distinguish one structural element from other structural elements. For example, without departing from the scope of rights based on the concept of the present invention, the first structural element may be named as the second structural element, and similarly, the second structural element may also be named as the first structural element.

[0026] When it is mentioned that a certain structural element is "connected" or "coupled" to other structural elements, it should be understood that it can be directly connected or coupled to other structural elements, but other structural elements may exist in between. On the contrary, when it is mentioned that a certain structural element is "directly connected" or "directly coupled" to other structural elements, it should be understood that there are no other structural elements in between. Other expressions used to describe the relationship between multiple structural elements should also be interpreted in the same way, that is, "located between" and "directly located between" or "adjacent to" and "directly adjacent to", etc.

[0027] The terms used in this specification are only used to illustrate specific embodiments and do not limit the present invention. As long as no other meaning is clearly indicated in the context, the expression in the singular includes the expression in the plural. It should be understood that in this specification, the terms "including", "having" and the like are only used to specify the existence of the features, numbers, steps, actions, structural elements, components or combinations thereof recorded in the specification, and do not preclude the existence or additional possibility of one or more other features, numbers, steps, actions, structural elements, components or combinations thereof.

[0028] Unless otherwise defined, all terms used in this specification, including technical or scientific terms, have the same meanings as those commonly understood by those skilled in the art to which the present invention belongs. Terms defined in commonly used dictionaries should be interpreted as having the same meanings as those in the relevant art, and unless otherwise explicitly defined in this specification, their meanings will not be interpreted in an idealized form or excessively.

[0029] Hereinafter, multiple embodiments of the present invention will be described in detail with reference to the drawings in this specification. However, the scope of protection claimed by the present invention is not limited or defined by these embodiments. The same reference numerals in the drawings represent the same components.

[0030] Figure 1 This is a front view of a glass bottle cover assembly according to an embodiment of the present invention. Figure 2 It is a cross-sectional view of a glass bottle outer cover assembly (including a glass bottle) according to an embodiment of the present invention. Figure 3 The figure is an exploded view of a glass bottle cover assembly according to an embodiment of the present invention.

[0031] like Figures 1 to 3 As shown, a glass bottle outer cover assembly 10 according to an embodiment of the present invention relates to a glass bottle outer cover assembly 10 for protecting a glass bottle 1 containing chemicals, and comprises: an upper outer cover 100 and a lower outer cover 200, for surrounding the body of the glass bottle 1; a guide ring 300, which is fastened to an upper recessed portion formed on the upper portion of the outer circumference of the glass bottle 1; and a lid 400, which is used to open and close an opening 10 formed on the upper side end of the glass bottle 1, and is combined with a glass bottle thread 10 formed on the upper outer circumference of the glass bottle 1 and a fastening portion formed on the upper portion of the outer circumference of the guide ring 300.

[0032] The glass bottle cover assembly according to an embodiment of the present invention may be a glass bottle cover assembly for protecting a glass bottle 1 containing photoresist used in a semiconductor process, but is not limited thereto.

[0033] However, for the sake of convenience, it is assumed that the glass bottle cover assembly according to an embodiment of the present invention involves a photoresist used in a semiconductor process.

[0034] The glass bottle containing the photoresist used in the semiconductor process has a prescribed glass bottle specification and shape, and the steps of loading the photoresist into the glass bottle 1 have also been standardized.

[0035] The following is a brief description of the steps of loading the photoresist into the glass bottle 1, that is, after manufacturing the glass bottle 1, the steps of cleaning the inside and outside of the glass bottle 1 are performed. After cleaning the glass bottle 1, the empty glass bottle 1 that is not completely sealed with a glass bottle cap is placed on a conveyor belt to contain the photoresist, the cap is opened by a device holding the cap of the glass bottle 1, and a hose is inserted into the glass bottle 1, and then 1 gal of photoresist is added.

[0036] After that, the lid is completely screwed on to seal it and then stored, completing the process before the photoresist is put into the semiconductor process.

[0037] In order to prevent the photoresist stored in the glass bottle 1 from being contaminated or deteriorated by other components, the above steps should be performed in a completely clean state.

[0038] Furthermore, the glass bottle 1 itself is exposed to the outside, and except for the operation of wrapping it with a plastic bag or the like, there is no device capable of withstanding the danger caused by the falling of the glass bottle 1 during transportation.

[0039] The glass bottle cover assembly 10 according to an embodiment of the present invention is used to prevent the photoresist, which is a chemical substance, from leaking when the glass bottle is broken, from the step of loading the photoresist into the glass bottle to the step of storing, transporting, and inputting into the semiconductor process.

[0040] like Figure 1 and Figure 2 As shown, the glass bottle cover assembly of the embodiment of the present invention surrounds the glass bottle with a cover. Preferably, the cover is divided into an upper cover 100 and a lower cover 200, which surround the main body 50 of the glass bottle 1 after being combined.

[0041] The material of the upper outer cover 100 and the lower outer cover 200 includes one selected from the group consisting of ethylene glycol modified polyethylene terephthalate (PETG, Glycolmodified Polyethylene Terephthalate), low density polyethylene (LDPE, Low Density Polyethylene), high density polyethylene (HDPE, High Density Polyethylene), polypropylene (PP), polyethylene terephthalate (PET), acrylic resin, polycarbonate (PC), acrylonitrile butadiene styrene (ABS), Teflon (Teflon) and thermoplastic elastomer (TPE, Thermo Plastic Elastomer).

[0042] The upper outer cover 100 may include: a handle 110 formed on one side of the outer circumferential surface; a guide ring fastening portion 120, which is located at the upper part of the inner circumferential surface and protrudes from the inner circumferential surface along the direction toward the inside; a protrusion 130, which is located below the guide ring fastening portion 120, protrudes from the outer circumferential surface along the direction toward the outside, and contacts the annular shoulder 35 of the glass bottle 1; a protrusion coupling portion 140, which is located below the protrusion 130, protrudes from the outer circumferential surface along the direction toward the outside, and contacts the annular protrusion 45 of the glass bottle 1; an outer cover recess 150, which is formed below the protrusion coupling portion 140; and an upper outer cover assembly thread 160, which is formed at the lower part of the outer circumferential surface and is coupled to the lower outer cover 200.

[0043] Furthermore, in order to prevent the shape of the handle 110 from being deformed, the upper cover 100 may further include a groove (not shown) formed between the handle connection portions.

[0044] like Figure 3 As shown, the upper cover 100 is in an open state at the upper side, and the guide ring fastening part 120 can be formed at the position closest to the open upper part in a manner protruding inward. The guide ring fastening part 120 of the upper cover 100 can be combined with the lower outer peripheral surface of the guide ring 300 to more firmly seal the glass bottle 1.

[0045] A protrusion 130 is formed below the guide ring fastening portion 120, and the protrusion 130 may be formed in an arc shape protruding compared to the upper overall shape of the upper cover 100. The protrusion 130 may be a portion that firmly adheres to the annular shoulder 35 formed on the glass bottle 1 when the upper cover 100 is put on the glass bottle 1.

[0046] Furthermore, a handle 110 may be provided on the outer peripheral surface of the upper housing 100. For example, a first connection portion 111 connecting the upper portion of the handle 110 and the outer peripheral surface of the upper housing 100 may be formed below the protrusion 130, and a second connection portion 112 connecting the lower portion of the handle 110 and the outer peripheral surface of the upper housing 100 may be formed above the protrusion coupling portion 140. In other words, the handle 110 may be formed between the protrusion 130 and the protrusion coupling portion 140. The position or shape of the handle 110 is not limited thereto, and may have various deformation forms according to the form of the housing assembly.

[0047] like Figures 1 to 3 As shown, below the protruding portion 130, the diameter increases in the form of a wider cross-section to form a concave cross-section, such as the outer cover concave portion 150, and a protruding joint portion 140 can be formed at its connection position.

[0048] The protruding engaging portion 140 is a portion that is firmly in close contact with the annular protruding portion 45 formed on the glass bottle 1 when the upper outer cover 100 is put on the glass bottle 1 .

[0049] pass Figure 3 Let's look at the shape of the glass bottle used in the semiconductor process. An opening 10 is formed at the top, and a glass bottle thread 20 for fastening the lid is formed on the outer peripheral surface of the top. An upper recessed portion 30 having a diameter smaller than the opening is formed at the bottom of the glass bottle thread 20. A protruding circular ring-shaped annular shoulder 35 is formed at the bottom of the upper recessed portion 30, and the diameter gradually increases toward the bottom, and then a lower recessed portion 40 having a suddenly smaller diameter is formed.

[0050] An annular protrusion 45 is formed just above the lower recess 40, and the diameter increases from the lower recess 40 toward the lower portion of the glass bottle 1, forming a main body 50 of the same diameter at a specified height so as to accommodate 1 gallon of photoresist.

[0051] The upper recessed portion 30 and the lower recessed portion 40 formed on the glass bottle 1 are equivalent to the space for holding or fixing fingers by hand when carrying the glass bottle 1. While maintaining the shape of the existing glass bottle, the glass bottle outer cover assembly is firmly combined with the glass bottle. Even if the glass bottle is broken, the operator can be protected from the harm of the toxic chemicals inside.

[0052] Furthermore, the diameter gradient of the main body 50 of the glass bottle 1 may be as follows, that is, the diameter gradually increases from the upper part of the main body 50 toward the annular curved portion 55, and gradually decreases from the annular curved portion 55 toward the lower part of the main body 50. The annular curved portion 55 can make the glass bottle outer cover assembly and the glass bottle 1 more firmly combined.

[0053] like Figure 2 As shown, the protruding joint portion 140 of the glass bottle cover assembly described above is in close contact with the annular protrusion 45 of the glass bottle 1, and performs the function of naturally fixing the glass bottle 1 in a manner to prevent it from moving or shaking inside the glass bottle cover assembly.

[0054] The outer cover recess 150 is formed at the lower part of the protruding joint 140, and plays the role of supporting the annular protrusion 45 of the glass bottle. This structure allows the upper outer cover 100 to be easily fastened to the glass bottle 1, so that the fastened glass bottle cannot be easily separated from the upper outer cover 100.

[0055] In addition, an upper outer cover assembly thread 160 is formed on the lower outer circumferential surface of the upper outer cover 100 to be combined with the lower outer cover 200. The upper outer cover assembly thread 160 can be matched with the lower outer cover assembly thread 260 formed on the upper inner circumferential surface of the lower outer cover 200 to combine the upper outer cover 100 and the lower outer cover 200, but the present invention is not limited to this. The upper outer cover 100 and the lower outer cover 200 can also be combined by forming threads on the lower inner circumferential surface of the upper outer cover 100 and the upper outer circumferential surface of the lower outer cover 200.

[0056] In this case, the upper outer cover 100 may cover from the upper recessed portion 30 of the glass bottle 1 to the annular curved portion 55 of the glass bottle 1, and the lower outer cover 200 may cover from the upper outer cover assembly thread 160 of the upper outer cover 100 to the lower end of the glass bottle 1. However, the present invention is not limited thereto, and the lower outer cover 200 may cover from the annular curved portion 55 of the glass bottle 1 to the lower end of the glass bottle 1, and the upper outer cover 100 may cover from the upper recessed portion 30 of the glass bottle 1 to the lower outer cover assembly thread of the lower outer cover 200. In other words, the portion where the upper outer cover assembly thread 160 of the upper outer cover 100 and the lower outer cover assembly thread 260 of the lower outer cover 200 are combined may be adjacent to the annular curved portion 55 of the glass bottle 1.

[0057] Furthermore, the upper cover 100 and the lower cover 200 may be firmly attached by ultrasonic welding or other adhesive components in a state where the upper cover 100 and the lower cover 200 are screwed together. The adhesive component is preferably an adhesive component having chemical resistance.

[0058] The guide ring 300 according to an embodiment of the present invention can prevent foreign matter (such as cleaning liquid during cleaning) from penetrating through the space formed between the outer circumference of the glass bottle 10 and the inner circumference of the upper cover 100 .

[0059] Figures 4 to 6 1. A three-dimensional view and a front view of a guide ring according to an embodiment of the present invention.

[0060] like Figure 3 As shown, the guide ring 300 is fastened to the upper recessed portion 30 of the glass bottle 1. Preferably, the height is the same as that of the upper recessed portion 30, and can be stuck on the annular shoulder 35 of the glass bottle.

[0061] The guide ring 300 may be made of EPDM (Ethylene Propylene Diene Monomer), but is not limited thereto. The guide ring 300 made of EPDM has excellent adhesive force and elastic recovery force, so it is easy to be fastened to the upper recessed portion 30 of the glass bottle 1 .

[0062] Also, the guide ring 300 may contain carbon. As carbon as a conductor is mixed, charging can be prevented and adverse effects caused by static electricity can be prevented, and a separate antistatic body for protecting a glass bottle containing chemicals from static electricity or the like can be omitted.

[0063] like Figure 4 As shown, the guide ring 300 of one embodiment of the present invention may include: a first fastening portion 310, formed at the upper portion of the outer circumference of the guide ring 300, combined with the lower portion of the inner circumference of the cover 400; and a second fastening portion 320, formed at the lower portion of the outer circumference of the guide ring 300, combined with the upper portion of the inner circumference of the upper outer cover 100, in particular, combined with the guide ring fastening portion 120.

[0064] The guide ring 300 is fastened between the upper portion of the upper cover 100 and the glass bottle 1, and between the lower portion of the cap 800 and the glass bottle 1. Specifically, the inner side of the guide ring 300 is fastened to the upper recessed portion 30 of the glass bottle 1, the lower inner circumference of the cap 400 is combined with the first fastening portion 310 of the guide ring 300, and the upper inner circumference of the upper cover 100 is combined with the second fastening portion 320 of the guide ring 300. The guide ring 300 can make the glass bottle 1, the upper cover 100 and the cap 400 more firmly connected.

[0065] like Figure 2 As shown, by combining the guide ring 300 between the glass bottle 1, the upper cover 100 and the cap 400, the space between the glass bottle 1, the upper cover 100 and the cap 400 is filled, thereby eliminating the risk of penetration of foreign matter generated by washing.

[0066] In this case, the first fastening portion 310 of the guide ring 300 may include a first protrusion 311 and a second protrusion 312, which are formed by protruding toward the outside with an arc-shaped outer peripheral surface protruding relative to the overall shape of the first fastening portion 310. In this case, the first protrusion 311 is formed at the upper portion of the first fastening portion 310, and the second protrusion 312 can be formed at the lower portion of the first fastening portion 310 apart from the first protrusion 311.

[0067] The second fastening portion 320 of the guide ring 300 according to an embodiment of the present invention may include an arc-shaped slot 321 that is recessed from the outer circumference toward the inside and is combined with the guide ring coupling portion 120 of the upper housing 100 .

[0068] The shape of the fastening portion formed on the outer circumference of the guide ring 300 is not limited thereto, and may be formed in various shapes according to the diameter or shape of the fastening portion on the inner circumference of the upper housing 100 or the inner circumference of the cover 400 so as to be firmly combined with the inner circumference of the upper housing 100 and the cover 400.

[0069] For example, Figure 5 As shown, the first fastening portion 310 of the guide ring 300a is formed in an arc shape along the circumferential direction of the guide ring 300, and may include a plurality of protrusions spaced at predetermined intervals along the height direction. Figure 6 As shown, the first fastening portion 310 of the guide ring 300b may further include: a first wire fastening portion 315 having a plurality of protrusions formed at predetermined intervals along the circumference direction of the guide ring 300; a second wire fastening portion 316 having a plurality of protrusions formed at predetermined intervals along the circumference direction of the guide ring 300; and a third wire fastening portion 317 having a plurality of protrusions formed at predetermined intervals along the circumference direction of the guide ring 300. In this case, the protrusions of the second wire fastening portion 316 may be located at a lower portion between the protrusions of the first wire fastening portion 315, and the protrusions of the third wire fastening portion 317 may be located at a lower portion between the protrusions of the second wire fastening portion 316.

[0070] The second fastening portion 320 of the guide ring 300 of another embodiment of the present invention may also be formed on the inner circumference to be fastened in a manner covering the guide ring coupling portion 120 formed on the outer circumference of the upper outer cover 100. That is, the outer cover assembly of the embodiment of the present invention includes all kinds of structures that can ensure airtightness and watertightness through the coupling between the guide ring 300 and the upper outer cover 100, and is not limited to one embodiment.

[0071] In the following, for the sake of convenience, Figure 2 The illustrated embodiment is described in which the second fastening portion 320 is formed on the outer circumferential surface of the guide ring 300 .

[0072] Figure 7 1 and 2 are a three-dimensional view, a front view and a top view of a cover according to another embodiment of the present invention.

[0073] A cover 400 according to an embodiment of the present invention includes: a cover body 410; a protrusion 420, which is integrated with the cover body 410 and protrudes from the outer surface in an outward direction at the lower part of the outer circumferential surface of the cover 400; a first thread 430, formed on the upper part of the inner circumferential surface of the cover body 410; and a second thread 440, formed on the lower part of the inner circumferential surface of the cover 400.

[0074] The first thread 430 formed on the upper portion of the inner circumference of the cap 400 is combined with the glass bottle thread 20 formed on the glass bottle 1, and the second thread 440 formed on the lower portion of the inner circumference of the cap 400 is combined with the first fastening portion 310 formed on the guide ring 300, thereby sealing the glass bottle 1. The second thread 440 is not only threadedly combined with the first fastening portion 310 of the guide ring 300, but also various methods can be adopted to ensure water tightness and air tightness by tightly combining the second thread 440 with the first fastening portion 310 according to the form of the first fastening portion 310.

[0075] The cover 400 may further include a plurality of protrusions on the outer peripheral surface of the cover body 410 for facilitating opening and closing of the cover 400. In addition, in order to improve the adhesion between the inner side surface of the upper end of the cover 400 and the upper end of the opening 10 of the glass bottle 1, the cover 400 may further include a cover liner 490. In this case, the material of the cover liner 450 may be Teflon.

[0076] The applicable additional scope of the present invention will become clear through the detailed description. However, various changes and modifications within the concept and scope of the present invention can be clearly understood by ordinary technicians in this field, and the detailed description and specific embodiments such as the preferred embodiments of the present invention should be understood as only examples.

[0077] The detailed description related to the drawings will make the features and effects of the present invention more clear, so that ordinary technicians in the technical field to which the present invention belongs can easily implement the technical ideas of the present invention.

[0078] The present invention can be implemented in various variations and can have various embodiments. Specific embodiments are illustrated in the drawings and are described in detail in the detailed description. However, the present invention is not limited to specific embodiments and should be understood to include all variations, equivalent technical solutions and alternative technical solutions within the scope of the present invention.

Claims

1. A glass bottle cover assembly for protecting a glass bottle. It is characterized in that include: An outer cover, used to surround the body of the glass bottle; A guide ring is fastened to an upper recessed portion formed on an upper portion of an outer circumferential surface of the glass bottle; and A lid for opening and closing the opening formed at the upper end of the glass bottle, The guide ring comprises: A first fastening portion formed on an upper portion of an outer circumferential surface of the guide ring and combined with the cover; and A second fastening portion is formed at the lower portion of the guide ring and is combined with the outer cover. The cap is threadedly coupled to a glass bottle thread formed on an outer peripheral surface between an opening portion and an upper recessed portion of the glass bottle, and is also coupled to a first fastening portion of the guide ring.

2. The glass bottle cover assembly according to claim 1, It is characterized in that The outer cover is composed of an upper outer cover and a lower outer cover.

3. The glass bottle cover assembly according to claim 2, It is characterized in that The second fastening portion is formed on the outer peripheral surface of the guide ring and is coupled to a guide ring fastening portion formed on the upper inner peripheral surface of the upper cover.

4. The glass bottle cover assembly according to claim 3, It is characterized in that The upper housing comprises: A handle formed on one side of the outer peripheral surface; A protrusion, located below the guide ring fastening portion, protruding from the outer peripheral surface in a direction toward the outside; A protruding joint portion, located below the protruding portion, protruding from the outer peripheral surface in a direction toward the outside; an outer cover recessed portion formed at a lower portion of the protruding coupling portion; and The upper outer cover assembly thread is formed at the lower portion of the outer peripheral surface and is combined with the lower outer cover.

5. The glass bottle cover assembly according to claim 4, It is characterized in that The upper outer cover also includes a groove portion, which is located between the first connecting portion and the second connecting portion and is recessed from the outer peripheral surface along the direction toward the inside. The first connecting portion is a portion where the outer peripheral surface of the upper outer cover is connected to the upper portion of the handle, and the second connecting portion is a portion where the outer peripheral surface of the upper outer cover is connected to the lower portion of the handle.

6. The glass bottle cover assembly according to claim 4, It is characterized in that The lower outer cover includes a lower outer cover assembly thread, which is formed on an upper portion of an inner circumferential surface and is combined with the upper outer cover assembly thread of the upper outer cover.

7. The glass bottle cover assembly according to claim 6, It is characterized in that The upper cover is formed to cover from the second fastening portion of the guide ring to the annular curved portion of the glass bottle, and the lower cover is formed to cover from the upper cover assembly thread of the upper cover to the lower portion of the glass bottle.

8. The glass bottle cover assembly according to claim 3, It is characterized in that The first fastening portion of the guide ring includes at least one protrusion protruding from the outer peripheral surface in a direction toward the outside, The second fastening portion of the guide ring includes a slot recessed from the outer peripheral surface in an inward direction. The guide ring fastening portion of the upper cover protrudes from the inner peripheral surface in an inward direction and is fastened to the slot.

9. The glass bottle cover assembly according to claim 1, It is characterized in that The material of the outer cover includes one selected from the group consisting of ethylene glycol-modified polyethylene terephthalate, low-density polyethylene, high-density polyethylene, polypropylene, polyethylene terephthalate, acrylic resin, polycarbonate, acrylonitrile butadiene styrene, Teflon and thermoplastic elastomer.

10. The glass bottle cover assembly according to claim 1, It is characterized in that The guide ring is made of EPDM rubber or silicone.

11. The glass bottle cover assembly according to claim 1, It is characterized in that The guide ring is made of carbon.

12. The glass bottle cover assembly according to claim 1, It is characterized in that The cover comprises: Cover body; A protrusion is formed as a whole with the cover body and is formed at the lower part of the outer peripheral surface and protrudes from the outer peripheral surface in a direction toward the outside; A first thread, formed on an upper portion of the inner circumferential surface, combined with the thread of the glass bottle; and The second thread is formed at the lower portion of the inner circumferential surface and is combined with the first fastening portion of the guide ring.

Citation Information

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