Improved structure of glasses rope
By using a floating fabric and anti-slip layer on the eyeglasses strap, the problem of the strap easily sinking in water is solved, achieving structural simplification and ease of use, and ensuring that the eyeglasses do not sink in water.
Patent Information
- Application Number
- CN202423118195.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-12-17
AI Technical Summary
Existing eyeglass straps tend to sink to the bottom when used in water, causing inconvenience to users, and their installation structure is complex and troublesome.
The floatable fabric is used as the base material for the eyeglasses strap. The floatable fabric has embedded channels at both ends, and an anti-slip layer is provided on the inner surface of the channel. The joint is formed by sewing, hot melting or high-frequency welding to form the embedded channels. The middle part can be covered with float strip units to increase buoyancy.
The structure of the eyeglasses strap has been simplified, improving ease of use, ensuring that the eyeglasses do not sink in water, and is easy to assemble.
Smart Images

Figure CN223471201U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of glasses ropes, in particular to an improved structure of glasses ropes. Background Art
[0002] Once the hot summer arrives, everyone flocks to it, wearing sunglasses to participate in water activities. Water activities include any sports, leisure and work activities carried out in, near or on the water, such as fishing, swimming, diving, water volleyball, surfing, water scooters, and even water ballet. Enjoying the coolness and excitement of water activities has always been everyone's favorite. Since water activities help to activate muscles throughout the body, sweat and activate muscles and bones throughout the body, increase cardiopulmonary strength and other benefits, the cool stimulation in the water can indeed make people feel refreshed.
[0003] Many people with myopia, hyperopia, or astigmatism still wear glasses when engaging in aquatic activities, or for sun protection or to prevent water from entering their eyes. However, glasses can often be dropped into the water during intense activity or carelessness. Once dropped, glasses, due to their considerable weight, can easily sink and become difficult to retrieve, causing inconvenience or even danger to the user.
[0004] Thus, there is a structure of glasses that can float on the water surface, such as that disclosed in Publication No. TW281305U. The structure comprises temples embedded at both ends of a lens body. The tail ends of the temples each have a through-hole and are connected to a rope that can be securely worn on the head. Specifically, the rope is equipped with a floating tube. If a person accidentally drops the glasses while wearing them for water leisure, the floating tube will float on the water surface and pull the glasses to prevent them from sinking to the bottom, allowing them to be easily found. However, the rope is mounted by a pivotal body provided at the end of each temple. The pivotal body has a through-hole for passing the rope, and the rope is connected to a float and a stopper for adjusting the rope length. After the two ends of the rope are respectively passed through the through-holes of the pivotal body, the rope must be tied with two ties to prevent it from slipping out of the through-holes.
[0005] Although the above structure can achieve the effect of preventing glasses from sinking underwater, the rope body needs to be positioned through a tie ring, and because a pivot body needs to be installed at the end of the temple to pass the rope body, the structure is complicated and the installation process with the temple is also more troublesome. The applicant has further provided an improved structure of the glasses rope to achieve the purpose of greater practical value. Utility Model Content
[0006] The purpose of the utility model is to provide an improved structure of a glasses rope, in particular a glasses rope structure that can be used in water to prevent glasses from sinking.
[0007] In order to achieve the above object, the utility model adopts the following technical scheme:
[0008] An improved structure of glasses cord, comprising a water floating cloth piece, two ends of the water floating cloth piece are respectively provided with embedding channels for embedding glasses legs, and the inner ring surface of the embedding channels is provided with a slip stop layer, and the slip stop layer is in contact with the glasses legs.
[0009] Preferably, the water floating cloth piece mainly comprises a middle part and a connecting part at two ends of the middle part, the connecting part is provided with a slip stop layer on the end face, and the two side edges of the connecting part are connected together to form an embedding channel for embedding glasses legs, and the slip stop layer is located on the inner ring surface of the embedding channel and is in contact with the glasses legs.
[0010] Preferably, the first floating strip unit is arranged on the middle part, and the two side edges of the middle part are connected and cover the first floating strip unit.
[0011] Preferably, the water floating cloth piece adopts Neoprene diving material.
[0012] Preferably, the connecting part is connected by sewing, hot melting or high-frequency welding.
[0013] Preferably, the connecting part is connected by sewing, hot melting or high-frequency welding.
[0014] Preferably, the water floating cloth piece mainly comprises a middle part and a connecting part at two ends of the middle part, the connecting part is provided with a slip stop layer on the end face, and the two side edges of the connecting part are connected together to form an embedding channel for embedding glasses legs, and the slip stop layer is located on the inner ring surface of the embedding channel and is in contact with the glasses legs.
[0015] The first water floating cloth piece is provided with a first connecting part at the connecting part of one end of the main water floating cloth piece, the end face of the first connecting part is provided with a first slip stop layer corresponding to the main slip stop layer, one end of the first connecting part is provided with a first middle part, the first middle part corresponds to the main middle part and the length is greater than half of the main middle part, and the two side edges of the first water floating cloth piece are connected to the main connecting part at one end of the main water floating cloth piece and the two side edges of the main middle part, so that the first connecting part and the main connecting part form a first embedding channel for embedding glasses legs, and a first space is formed between the first middle part and the main middle part.
[0016] The second floating cloth piece is provided with a second joint part at the main joint part at the other end of the main floating cloth piece. The end face of the second joint part is provided with a second anti-skid layer corresponding to the main anti-skid layer. One end of the second joint part is provided with a second intermediate part corresponding to the main intermediate part and having a length greater than half of the length of the main intermediate part. The two side edges of the second floating cloth piece correspond to the joint of the main joint part at the other end of the main floating cloth piece and the two side edges of the main intermediate part, so that the second joint part and the main joint part form a second embedding channel for the eyeglass leg, and a second space is formed between the second intermediate part and the main intermediate part. The second intermediate part of the second floating cloth piece partially overlaps the first intermediate part of the first floating cloth piece to form an embedding group opening.
[0017] The second floating strip unit is arranged in the first space and the second space.
[0018] Preferably, the second floating strip unit is arranged in the first space and the second space by the embedding group opening.
[0019] Preferably, the main floating cloth piece is sewn, hot-melted or high-frequency welded to the first floating cloth piece and the second floating cloth piece.
[0020] Preferably, the main floating cloth piece, the first floating cloth piece and the second floating cloth piece are made of Neoprene diving material.
[0021] Compared with the background art, the present application has the following advantages:
[0022] The main floating cloth piece is provided with an intermediate part and joint parts at two ends. The end face of the joint part is provided with an anti-skid layer. The joint part is sewn to form an embedding channel, and the anti-skid layer is arranged on the inner ring surface of the embedding channel. In this way, the embedding channel of the eyeglass cord can be used to embed the eyeglass leg, and the anti-skid layer can prevent the eyeglass leg from falling off, thereby achieving the advantages and effects of simple structure, convenient use and easy assembly.
[0023] Further, a floating strip unit is arranged in the intermediate part. The floating strip unit is covered by the intermediate part, which can assist and increase the floating effect, thereby improving and ensuring that the eyeglass does not sink in water. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 FIG. 1 is a floating cloth piece in a flat state according to the improved eyeglass cord structure of the present application;
[0025] Figure 2 FIG. 2 is a perspective view of the floating cloth piece according to the improved eyeglass cord structure of the present application;
[0026] Figure 3 Figure 2 is a schematic view of the floating cloth member of the eyeglass cord improved structure embodiment two in a flat state;
[0027] Figure 4 Figure 3 is a schematic view of the floating cloth member of the eyeglass cord improved structure embodiment two in a three-dimensional appearance;
[0028] Figure 5 Figure 4 is a schematic view of the eyeglass cord improved structure embodiment three in a three-dimensional exploded view;
[0029] Figure 6 Figure 5 is a schematic view of the eyeglass cord improved structure embodiment three in a combined appearance;
[0030] Figure 7 Figure 6 is a schematic view of the eyeglass cord improved structure embodiment three in a cross-sectional view;
[0031] Figure 8 Figure 7 is a schematic view of the eyeglass cord improved structure in an eyeglass cord and eyeglass exploded state;
[0032] Figure 9 Figure 8 is a schematic view of the eyeglass cord improved structure in an eyeglass cord and eyeglass combined state;
[0033] Figure 10 Figure 9 is a schematic view of the eyeglass cord improved structure in a possible model pattern of each slip stop layer represented by (A)-(E).
[0034] BRIEF DESCRIPTION OF THE DRAWINGS
[0035] 1, floating cloth member; 11, middle part; 12, combined part; 121, slip stop layer; 13, embedded channel;
[0036] 2, first floating strip unit;
[0037] 3, main floating cloth member; 31, main middle part; 32, main combined part; 321, main slip stop layer;
[0038] 4, first floating cloth member; 41, first combined part; 411, first slip stop layer; 42, first middle part; 43, first embedded channel; 44, first space;
[0039] 5, second floating cloth member; 51, second combined part; 511, second slip stop layer; 52, second middle part; 53, second embedded channel; 54, second space;
[0040] 6, second floating strip unit;
[0041] S, embedded group port;
[0042] A, eyeglass leg. DETAILED DESCRIPTION
[0043] In order to make the purpose, technical scheme and advantages of the utility model more clear, the utility model will be further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model and not to limit the utility model. In addition, it should be noted that:
[0044] The terms "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the devices or elements of the utility model must have a specific orientation, so it cannot be understood as a limitation on the utility model.
[0045] When an element is referred to as "fixed to" or "provided with" or "provided in" another element, it can be directly on another element or indirectly on the other element. When an element is referred to as "connected to" another element, it can be directly connected to another element or indirectly connected to the other element.
[0046] Unless otherwise specified and limited, the terms "mounting", "connection", "connection" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the internal communication of two elements or the interaction relationship between two elements. For those skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.
[0047] Embodiment
[0048] In order to more completely and clearly disclose the technical content, novel purpose and technical effects realized by the utility model, the following will be described in combination with the drawings and figure numbers in the specification.
[0049] Please refer to Figure 1-Figure 4 As shown in the figure, first of all, the improved structure of the glasses cord of the utility model mainly uses a material with elasticity, waterproofness and shock absorption, i.e. a float cloth piece (1), further uses Neoprene (also known as chloroprene rubber), which is a synthetic rubber foam body, has a delicate, soft, elastic, shockproof, heat-insulating, elastic, water-tight and air-tight characteristics; the float cloth piece (1) is provided with an embedding hole for the glasses leg (A) to be embedded at both ends, and a slip stop layer (121) is arranged on the inner ring surface of the embedding hole (13), and the slip stop layer (121) is in contact with the glasses leg (A). However, the utility model uses a float cloth piece as the basis of the glasses cord, and derives the following several implementation modes, which are described as follows:
[0050] Please refer to Figure 1 and Figure 2 , the flat state and the three-dimensional appearance of the improved structure of the glasses rope embodiment one are shown, which mainly comprises a floating cloth piece (1), the floating cloth piece (1) has a middle part (11) and a combination part (12) located at both ends of the middle part (11), the end surface of the combination part (12) is provided with a non-slip layer (121), and the two side edges of the combination part (12) are correspondingly combined together to form an embedded hole (13) for embedding the glasses leg (A), and the non-slip layer (121) is located in the inner ring surface of the embedded hole (13) and contacts the glasses leg (A).
[0051] In actual use, the combination part (12) can be further combined by sewing, hot melting, high-frequency welding and the like; as shown in the figure, the ends of the glasses legs (A) on both sides of the glasses are respectively embedded in the embedded holes (13) of the two combination parts (12) of the floating cloth piece (1), the non-slip layer (121) in the inner ring surface of the embedded hole (13) contacts the glasses leg (A) to generate a non-slip positioning effect, so that the glasses leg (A) does not fall off, and when the user wears the glasses, the middle part (11) is framed behind the head, and the tightness of the head circumference can be adjusted by the floating cloth piece (1) with elastic properties.
[0052] Please refer to Figure 3 and Figure 4 , the flat state and the three-dimensional appearance of the improved structure of the glasses rope embodiment two are shown, this embodiment two is a continuation of the embodiment one, the structure is basically the same, the area of the middle part (11) is increased, and the first floating strip unit (2) is arranged on the middle part (11), the two side edges of the middle part (11) are correspondingly combined and cover the first floating strip unit (2), in this way, when the user wears the glasses rope, the first floating strip unit (2) inside the middle part (11) can assist and increase the floating effect, so as to improve and ensure the effect of preventing the glasses from sinking in water; in addition, the first floating strip unit (2) is further selected from foamed materials or various foamed materials that can float on the water surface.
[0053] Please refer to Figure 5-Figure 7 , the flat state and the three-dimensional appearance of the improved structure of the glasses rope embodiment three are shown, which mainly comprises:
[0054] a main floating cloth piece (3), provided with a main middle part (31) and a main combination part (32) located at both ends of the main middle part (31), the end surface of the main combination part (32) is provided with a main non-slip layer (321);
[0055] The first floating cloth member (4) is provided with a first joint part (41) at the main joint part (32) of one end of the main floating cloth member (3). The end surface of the first joint part (41) is provided with a first anti-slip layer (411) corresponding to the main anti-slip layer (321). One end of the first joint part (41) is provided with a first intermediate part (42). The first intermediate part (42) corresponds to the main intermediate part (31) and its length is greater than half of the length of the main intermediate part (31). The two side edges of the first floating cloth member (4) correspond to the two side edges of the main joint part (32) and the main intermediate part (31) of one end of the main floating cloth member (3), so that the first joint part (41) and the main joint part (32) form a first embedding channel (43) for embedding the glasses leg (A), and the first intermediate part (42) and the main intermediate part (31) form a first space (44).
[0056] The second floating cloth member (5) is provided with a second joint part (51) at the main joint part (32) of the other end of the main floating cloth member (3). The end surface of the second joint part (51) is provided with a second anti-slip layer (511) corresponding to the main anti-slip layer (321). One end of the second joint part (51) is provided with a second intermediate part (52). The second intermediate part (52) corresponds to the main intermediate part (31) and its length is greater than half of the length of the main intermediate part (31). The two side edges of the second floating cloth member (5) correspond to the two side edges of the main joint part (32) and the main intermediate part (31) of the other end of the main floating cloth member (3), so that the second joint part (51) and the main joint part (32) form a second embedding channel (53) for embedding the glasses leg (A), and the second intermediate part (52) and the main intermediate part (31) form a second space (54). The second intermediate part (52) of the second floating cloth member (5) partially overlaps the first intermediate part (42) of the first floating cloth member (4) to form an embedding group port (S).
[0057] The second floating strip unit (6) is arranged in the first space (44) and the second space (54).
[0058] When assembling, please refer to Figure 8 and Figure 9As shown, the main floating cloth member (3) has one end corresponding to the first floating cloth member (4), and the other end corresponding to the second floating cloth member (5). The two side edges of the main floating cloth member (3), the first floating cloth member (4) and the second floating cloth member (5) are combined together, and the combination method can be sewing, hot melting, high-frequency melting, etc. In the drawing, the combination is shown by sewing. When combined, the first embedded channel (43) and the second embedded channel (53) and the first space (44) and the second space (54) are formed in the glasses cord, and the second intermediate part (52) of the second floating cloth member (5) partially overlaps the first intermediate part (42) of the first floating cloth member (4), and forms an embedded group opening (S). In order to consider the appearance beauty, the embedded group opening (S) is turned over, and the main anti-slip layer (321) and the first anti-slip layer (411) are located in the inner ring surface of the first embedded channel (43), and the main anti-slip layer (321) and the second anti-slip layer (511) are located in the inner ring surface of the second embedded channel (53). Then, the second floating strip unit (6) is disposed in the embedded group opening (S), so that the second floating strip unit (6) can be completely assembled in the first space (44) and the second space (54).
[0059] In use, the two glasses legs (A) of the glasses correspond to the embedded first embedded channel (43) and second embedded channel (53) at the end of the glasses cord, respectively. The main anti-slip layer (321), the first anti-slip layer (411) and the second anti-slip layer (511) in the inner ring surface of the first embedded channel (43) and the second embedded channel (53) contact the glasses legs (A) to produce anti-slip positioning effect, so that the glasses legs do not fall off. When the user wears the glasses, the main floating cloth member (3), the first floating cloth member (4) and the second floating cloth member (5) with elastic properties can adjust the tightness of the head circumference, and the second floating strip unit (6) can assist and increase the floating effect, so as to improve and ensure the glasses not to sink in water. In addition, the second floating strip unit (6) is suitable for foamed materials or various foamed materials that can float on the water surface.
[0060] Please refer to Figure 10 As shown, the anti-slip layer (121), the main anti-slip layer (321), the first anti-slip layer (411) and the second anti-slip layer (511) can have various patterns, such as Figure 10 represented in (A)-(E), such as diagonal, dot, wave, zigzag or full plane, etc. (the drawing reference only takes the main anti-slip layer (321) as a representative), but is not limited to the above patterns.
[0061] The above merely describes a preferred embodiment of the present application, and the protection scope of the present application is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical scope disclosed by the present application, which should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. An eyeglass cord improvement, comprising: The utility model relates to a floating cloth piece (1) which is provided with embedding channels (13) for embedding eyeglass legs (A) at both ends, and the inner circumferential surface of the embedding channels (13) is provided with a non-slip layer (121) which is in contact with the eyeglass legs (A).
2. An eyeglass cord improvement, comprising: The utility model relates to a floating cloth piece (1) which has a middle part (11) and connecting parts (12) at both ends of the middle part (11), the connecting parts (12) are provided with a non-slip layer (121) on the end surface, and the two side edges of the connecting parts (12) are connected together to form an embedding channel (13) for embedding eyeglass legs (A), and the non-slip layer (121) is located on the inner circumferential surface of the embedding channel (13) and is in contact with the eyeglass legs (A).
3. The eyeglass cord improvement of claim 2, wherein: The utility model further comprises a first floating strip unit (2) which is arranged in the middle part (11), and the two side edges of the middle part (11) are connected together and cover the first floating strip unit (2).
4. The eyeglass cord improvement of claims 2 or 3, wherein: The floating cloth piece (1) is made of Neoprene diving material.
5. The eyeglass cord improvement of claims 2 or 3, wherein: The two side edges of the connecting parts (12) are connected together by sewing, hot melting or high-frequency melting.
6. The eyeglass cord improvement of claim 3 wherein: The two side edges of the middle part (11) are connected together by sewing, hot melting or high-frequency melting.
7. An eyeglass cord improvement comprising: The utility model relates to a main floating cloth piece (3) which has a main middle part (31) and main connecting parts (32) at both ends of the main middle part (31), and the main connecting parts (32) are provided with a main non-slip layer (321) on the end surface. The utility model further comprises a first floating cloth piece (4) which is provided with a first connecting part (41) at the main connecting part (32) at one end of the main floating cloth piece (3), and the first connecting part (41) is provided with a first non-slip layer (411) which corresponds to the main non-slip layer (321) on the end surface, and the first connecting part (41) is provided with a first middle part (42) at one end, the first middle part (42) corresponds to the main middle part (31) and is longer than half of the main middle part (31), and the two side edges of the first floating cloth piece (4) are connected to the two side edges of the main middle part (31) at one end of the main floating cloth piece (3) and the main connecting part (32), so that the first connecting part (41) and the main connecting part (32) form a first embedding channel (43) for embedding eyeglass legs (A), and a first space (44) is formed between the first middle part (42) and the main middle part (31). The second floating cloth member (5) is provided with a second joint part (51) at the other end of the main joint part (32) of the main floating cloth member (3). The end surface of the second joint part (51) is provided with a second anti-skid layer (511) corresponding to the main anti-skid layer (321). One end of the second joint part (51) is provided with a second intermediate part (52) corresponding to the main intermediate part (31) and longer than half of the main intermediate part (31). The two side edges of the second floating cloth member (5) correspond to the two side edges of the main joint part (32) and the main intermediate part (31) at the other end of the main floating cloth member (3). The second joint part (51) and the main joint part (32) form a second embedding channel (53) for embedding the glasses legs (A). The second intermediate part (52) and the main intermediate part (31) form a second space (54). The second intermediate part (52) of the second floating cloth member (5) partially overlaps with the first intermediate part (42) of the first floating cloth member (4) to form a group embedding opening (S). The second floating strip unit (6) is arranged in the first space (44) and the second space (54).
8. The eyeglass cord improvement of claim 7, wherein: The second floating strip unit (6) is arranged in the first space (44) and the second space (54) by the group embedding opening (S).
9. The eyeglass cord improvement of claims 7 or 8, wherein: The main floating cloth member (3) is combined with the two side edges of the first floating cloth member (4) and the second floating cloth member (5) by sewing, hot melting, or high-frequency melting.
10. The eyeglass cord improvement of claims 7 or 8, wherein: The main floating cloth member (3), the first floating cloth member (4), and the second floating cloth member (5) are made of Neoprene diving material.
Citation Information
Patent Citations
Glasses that float on water
TW281305U