Positioning structure and storage container
Patent Information
- Application Number
- CN202522392612.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-11
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-11-11
AI Technical Summary
但由于目前市面上的无论是咖啡机,还是磨豆机,又或者是杯体,不同品牌的器具其大小各不相同,特别是器具的长度,如果箱包过大会导致器具在箱包内产生晃动,这样同样会对器具造成磨损
[0006]本实用新型的实施例相对于现有技术而言,由于定位结构包括第一绑定件和第二绑定件,且第一绑定件和第二绑定件彼此相对设置,并均可形变,同时第二绑定件还可与第一绑定件可拆卸连接,使得第一绑定件与第二绑定件之间形成可定位器具的定位区,并且该定位区的长度可随着第一绑定件和/或第二绑定件形变的形态不同而发生改变,使得同一种尺寸的储物容器可满足收纳不同长度器具时对器具的定位需求,因此有效避免了器具在携带时在储物容器内因乱晃而导致其出现磨损的现象,从而在提高器具携带时的稳定性和可靠性的同时,还降低了箱包的设计和制造成本。
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Figure CN224776235U_ABST
Abstract
Description
Technical Field
[0001] Some embodiments of this utility model relate to storage tools, and in particular to a positioning structure and storage container. Background Technology
[0002] Bags, as a storage tool, facilitate the organization and storage of various appliances, such as portable coffee makers, portable coffee grinders, and cups, making them convenient for users to carry. However, inventors discovered that current methods simply involve placing these appliances into bags, which often contain other everyday items and electronic devices like keys, wallets, and other valuables. Furthermore, the movement and swaying of these items during transport can easily cause the appliances to rub against other objects, resulting in wear and tear. Therefore, to overcome this issue, specialized bags have been developed to protect these appliances during transport. However, the sizes of coffee machines, grinders, and even cups vary greatly between different brands, especially in length. If the case is too large, the equipment will wobble inside, causing wear and tear. Conversely, if the case is too small, it won't be able to properly store the equipment. Designing separate cases for different sized equipment would increase both design and manufacturing costs. Utility Model Content
[0003] The purpose of this utility model is to design a positioning structure and storage container that can accommodate appliances of different lengths within the container, preventing them from wobbling around inside when carried, thus effectively protecting them and greatly reducing the probability of wear and tear.
[0004] To achieve the above objectives, some embodiments of the present invention provide a positioning structure for positioning implements of at least two lengths, the positioning structure comprising: The first binding component is deformable; The second fastener is disposed relative to the first fastener and is deformable; the second fastener is used to be detachably connected to the first fastener and forms a positioning area between the second fastener and the first fastener for positioning the appliance; The length of the positioning area changes with the different deformation shapes of the first binding member and / or the second binding member.
[0005] In addition, some embodiments of this utility model also provide a storage container, the storage container comprising: The container body includes: a box body and a lid that can close or open the box body, and when the lid closes the box body, a storage space is formed between the box body and the lid. The positioning structure described above is disposed within the housing to form the positioning area within the housing and to bind the appliance to the positioning area.
[0006] Compared with the prior art, the embodiments of this utility model have an advantage in that the positioning structure includes a first binding member and a second binding member, which are arranged opposite to each other and are both deformable. The second binding member can also be detachably connected to the first binding member, so that a positioning area for positioning the device is formed between the first binding member and the second binding member. The length of the positioning area can change with the different deformation shapes of the first binding member and / or the second binding member. This allows a storage container of the same size to meet the positioning requirements of devices of different lengths when storing them. Therefore, it effectively avoids the phenomenon of wear and tear on the device caused by shaking in the storage container when carrying it. This improves the stability and reliability of the device when carrying it, while also reducing the design and manufacturing costs of the bag. Attached Figure Description
[0007] Figure 1 This is a schematic diagram of the structure of the first and second binding members connected to the box body when a positioning area is formed between the first fixed end and the second fixed end in some embodiments of the present utility model. Figure 2 This is a schematic diagram of the structure of the first and second binding members connected to the box body when a positioning area is formed between the positioning part and the second fixed end in some embodiments of this utility model. Figure 3 This is a schematic diagram of the structure of the storage container in some embodiments of the present invention; Figure 4 This is a schematic diagram of the cover body in some embodiments of the present utility model. Detailed Implementation
[0008] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the various embodiments of this utility model will be described in detail below with reference to the accompanying drawings. However, those skilled in the art will understand that many technical details have been presented in the various embodiments of this utility model to enable the reader to better understand this application. However, the technical solutions claimed in this application can be implemented even without these technical details and with various changes and modifications based on the following embodiments.
[0009] Example 1 The first embodiment of this utility model relates to a positioning structure, such as Figure 1 and Figure 2 As shown, the positioning structure is used to position appliances of at least two lengths, and the positioning structure 1 includes: a first binding member 11 and a second binding member 12.
[0010] Among them, combined Figure 1 and Figure 2 As shown, both the first binding member 11 and the second binding member 12 are deformable. The second binding member 12 is disposed relative to the first binding member 11, and the second binding member 12 is also used for detachable connection with the first binding member 11, so that the second binding member 12 and the first binding member 11 can form a positioning area 13 for a positioning device. Furthermore, it is worth noting that in some embodiments, the length of the positioning area 13 changes with the different deformation forms of the first binding member 11 and / or the second binding member.
[0011] As can be seen from the above, since the positioning structure 1 includes a first binding member 11 and a second binding member 12, and the first binding member 11 and the second binding member 12 are arranged opposite to each other and can both be deformed, and the second binding member 12 can also be detachably connected to the first binding member 11, a positioning area 13 for positioning the device is formed between the first binding member 11 and the second binding member 12. The length of the positioning area 13 can change with the different deformation forms of the first binding member 11 and / or the second binding member 12, so that the same size bag can meet the positioning requirements of the device when storing devices of different lengths. Therefore, it effectively avoids the phenomenon of wear and tear caused by the device shaking inside the bag when carrying it. Thus, while improving the stability and reliability of the device when carrying it, it also reduces the design and manufacturing cost of the bag.
[0012] Specifically, in some embodiments, such as Figure 1 and Figure 2 As shown, the first binding member 11 has a first fixed end 111 and a first movable end 112 away from the first fixed end 111 along its length direction. Similarly, as Figure 1 and Figure 2 As shown, the second fastener 12 has a second fixed end 121 and a second movable end 122 away from the second fixed end 121 along its length direction. Furthermore, as... Figure 1 and Figure 2 As shown, the first fixed end 111 and the second fixed end 121 are arranged in a direction that moves them away from each other. Furthermore, it is worth noting that in some embodiments, such as... Figure 1As shown, the positioning area 13 can be located between the first fixed end 111 and the second fixed end 121. At this time, the first binding member 11 and the second binding member 12 can both partially overlap and be connected to each other. Therefore, the first binding member 11 and the second binding member 12 can jointly bind the appliance 20 located in the positioning area 13. It is easy to see that when the positioning area 13 is located between the first fixed ends 111 of the first binding member 11, the positioning area 13 has the maximum length in the storage container. Therefore, the first binding member 11 and the second binding member 12 can meet the positioning and binding requirements of the longest appliance.
[0013] In addition, in order to enable the first binding member 11 and the second binding member 12 to meet the positioning requirements of appliances 20 of other lengths, in some other embodiments, in order to accommodate the length of the appliance, such as Figure 2 As shown, the first binding member 11 can be deformed first, so that after the first binding member 11 is deformed, the first binding member 11 includes a positioning part 113 formed between the first fixed end 111 and the second fixed end 121, such that the positioning area 13 is located between the positioning part 113 and the second fixed end 121, and when the appliance is placed in the positioning area 13, as shown... Figure 2 As shown, the second binding member 12 can be deformed, so that after the second binding member 12 is deformed, part of the second binding member 12 can pass over the positioning part 113 and overlap with the first binding member 11. It is easy to see that when the overall length of the appliance 20 is short, the first binding member 11 can be deformed first so that it can be used as a positioning component for positioning the appliance 20, and then the second binding member 12 can be deformed so that it can be used as a binding component for independently binding the appliance 20. The appliance 20 located in the positioning area 13 can also be bound by the second binding member 12.
[0014] Furthermore, it is worth noting that when the positioning area 13 is located between the positioning part 113 and the second fixed end 121, in order to ensure that the first binding member 11 can provide a certain supporting force to the positioning part 113 after deformation, in some embodiments, such as Figure 2 As shown, after deformation, the first binding member 11 further includes an arched portion 114, which is connected to both the first fixed end 111 and the positioning portion 113. This arched portion 114 can support the positioning portion 113. Therefore, when the appliance 20 is placed in the positioning area 13, the supporting force of the arched portion 114 on the positioning portion 113 allows the positioning portion 113 to firmly hold one end of the appliance 20, thereby improving the positioning performance of the positioning portion 113 on the appliance 20 and further preventing the appliance 20 from shaking within the positioning area 13. Furthermore, after the positioning area 13 has completed positioning the appliance 20, the arched portion 114 can be detachably connected to the second binding member 12, allowing the second binding member 12 to bind the appliance 20 within the positioning area 13.
[0015] Furthermore, it is not difficult to see from the above that since the positioning part 113 relies on the support force provided by the arched part 114 to achieve the positioning of the appliance 20, the distance between the positioning part 113 and the second fixed end 121 can be changed by adjusting the bending radius of the arched part 114, so that the positioning area 13 formed between the first binding member 11 and the second binding member 12 can have different lengths to meet the positioning requirements of appliances 20 of different lengths.
[0016] However, as a preferred embodiment, in some other embodiments, when the positioning area 13 is located between the positioning part 113 and the second fixed end 121, such as Figure 2 As shown, after the first binding member 11 deforms, the first binding member 11 further includes a fixing part 115, which extends from the end of the positioning part 113 away from the arched part 114 in a direction away from the first fixing end 111, and the fixing part 115 is used to maintain the arched part 114 and the positioning part 113 in their current state after being fixed. For example, in some embodiments, such as Figure 2 As shown, the fixing part 115 can be formed by bending horizontally from the end of the positioning part 113 away from the arched part 114 in a direction away from the first fixing end 121. After the fixing part 115 is bent, it can be connected to the box body 31 of the bag, so that the first binding member 11 has good stability at this time, thereby ensuring the reliability and stability of the positioning part 113 when it is against the device.
[0017] Furthermore, it is worth noting that, in order to enable the first binding member 11 and the second binding member 12 to deform, in some embodiments, the first binding member 11 and the second binding member 12 are both flexible straps that can be bent, so that the first binding member 11 and the second binding member 12 can be freely transformed into different shapes. Of course, in other embodiments, the first binding member 11 and the second binding member 12 can also be other flexible components, or they can be composed of multiple rigid materials that are hinged to each other. In this embodiment, the type of the first binding member 11 and the second binding member 12 is not specifically limited.
[0018] Furthermore, it is worth mentioning that in some other embodiments, after the first binding member 11 and the second binding member 12 have completed their deformation, they can be connected by a snap-fit mechanism. For example, several snap fasteners can be provided on the first binding member 11 and the second binding member 12 respectively, allowing them to be snap-fitted together, thereby binding the appliance 20 within the positioning area 13. Of course, in other embodiments, the first binding member 11 and the second binding member 12 can also be connected by an adhesive method, for example, as... Figure 1 and Figure 2As shown, Velcro 14 can be provided on the first binding member 11 and the second binding member 12 respectively. For example, the Velcro 14 provided on the first binding member 11 is a female Velcro, and the Velcro 14 provided on the second binding member 12 is a male Velcro. By bonding the female and male Velcro, the first binding member 11 and the second binding member 12 can also complete the binding of the device 20 within the positioning area 13. Furthermore, it is worth noting that in order to enable any part of the first binding member 11 to connect with any part of the second binding member 12, the Velcro 14 can be spread across the entire first binding member 11 and the second binding member 12 respectively. Alternatively, multiple Velcro 14 can be provided along the length of the first binding member 11 and the second binding member 12 respectively, so that any part of the first binding member 11 can be bonded to any part of the second binding member 12, thereby achieving the purpose of adjusting the length of the positioning area 13. Furthermore, it should be noted that since the first binding member 11 can be covered with male stickers along its length, a male sticker (not shown in the figure) can be placed inside the box 31 of the storage container to correspond to the female sticker on the first binding member 11. Thus, when the fixing part 115 of the binding member 11 bends and extends away from the fixing part 111, the fixing part 115 can maintain the current bending state of the first binding member 11 through the adhesion of the female sticker on it to the male sticker inside the box 31, so that the positioning part 113 of the first binding member 11 can stably achieve the positioning of the device 20 with the second fixing end 121 of the second binding member 12.
[0019] Furthermore, it should be noted that the appliance 20 mentioned in the above embodiments can be a coffee machine, a coffee grinder, or an ordinary cup, or other items. Users can bind different appliances 20 in the storage container through the positioning structure 1 described above according to their own needs. However, in this embodiment, the type of appliance 20 is not specifically limited.
[0020] Example 2 Embodiment 2 of this utility model relates to a storage container, such as... Figure 3 As shown, the storage container includes: a container body 3 and a positioning structure 1 as described in Embodiment 1.
[0021] In some embodiments, such as Figure 3 As shown, the container body 3 includes: a box body 31 and a lid 32 that can close or open the box body 31. When the lid 32 closes the box body 31, a storage space 33 is formed between the box body 31 and the lid 32, and the storage space 33 is used to store the appliance 20.
[0022] Additionally, in other embodiments, such as Figure 1 The positioning structure 1 is disposed inside the box 31. The positioning structure 1 is used to form a positioning area 13 inside the box 31 and to bind the appliance 20 to the positioning area 13.
[0023] As can be seen from the above, the storage container includes a container body 3 and a positioning structure 1. A storage space 33 for storing the appliance 2 is formed between the box 31 and the lid 32 of the container body 3. Furthermore, the positioning structure 1 is also located within the box 31 of the container body 3. The positioning structure 1 includes a first binding member 11 and a second binding member 12, which are positioned opposite each other and are both deformable. The second binding member 12 can also be detachably connected to the first binding member 11, allowing the first binding member 11 to be detachably connected to the second binding member 12. A positioning area 13 for positioning the device 20 is formed between the fixing parts 12, and the length of the positioning area 13 can change with the different deformation forms of the first binding part 11 and / or the second binding part 12. This allows the storage container of the same size to meet the positioning requirements of the device 20 when storing devices of different lengths. Therefore, it effectively avoids the phenomenon of wear and tear caused by the device 20 shaking inside the storage container when it is carried. This improves the stability and reliability of the device 20 when it is carried, and also reduces the design and manufacturing cost of the storage container.
[0024] Specifically, in some embodiments, such as Figure 3 As shown, the first fastener 11 and the second fastener 12 can be fixed inside the housing 31, for example, as Figure 1 As shown, within the box body 31, the first fixing end 111 of the first binding member 11 and the second fixing end 121 of the second binding member 12 can be fixed relative to each other within the box body 31 along its length. For example, the first fixing end 111 and the second fixing end 121 can be sewn to the side wall of the box body 31, thereby allowing the first binding member 11 and the second binding member 12 to fully utilize the space within the box body 31 to meet the positioning and binding requirements of appliances of different lengths. Alternatively, in other embodiments, the first binding member 11 and the second binding member 12 can also be detachably mounted within the box body 31. For example, Velcro 14 can be used on the first binding member 11 and the second binding member 12 to similarly bond and fix the first binding member 11 and the second binding member 12 within the box body 31.
[0025] In addition, as a preferred embodiment, in some other embodiments, the box body 31 or the cover 32 is also provided with a mark (not shown in the figure) to guide the first binding member 11 and the second binding member 12 to deform. For example, the guide mark can be set on the inner wall of the box body 31, so that the user can observe the guide mark to deform the first binding member 11 and the second binding member 12 in turn during the positioning of the device 2, so that the first binding member 11 and the second binding member 12 can achieve different deformation forms, thereby enabling the first binding member 11 and the second binding member 12 to complete the positioning and binding of the device 2 in the box body 31.
[0026] Furthermore, it is worth noting that in some other embodiments, such as Figure 4 As shown, a mezzanine space 34 is also provided inside the lid 32. This mezzanine space 34 can be used to store accessories or other items, such as coffee capsules. Specifically, as... Figure 1 As shown, a binding component 35 can be provided on one side of the lid 32 relative to the box body 31. The binding component 35 can form a sandwich space 34 with the lid 32. It should be noted that the binding component 35 can be an elastic binding component, such as an elastic mesh bag. The elastic mesh bag can effectively fix the items stored in the sandwich space 34, thereby effectively preventing the items from shaking around in the sandwich space 34.
[0027] Those skilled in the art will understand that the above embodiments are specific implementations of the present invention, and in practical applications, various changes can be made to them in form and detail without departing from the spirit and scope of the present invention.
Claims
1. A positioning structure, characterized in that, The positioning structure (1) is used to position instruments (20) of at least two lengths, and the positioning structure (1) includes: The first binding element (11) is deformable; The second binding member (12) is provided relative to the first binding member (11) and is deformable; the second binding member (12) is used to detachably connect with the first binding member (11) and form a positioning area (13) between the second binding member (11) and the first binding member (11) for positioning the appliance (20). The length of the positioning area (13) changes with the different deformation forms of the first binding member (11) and / or the second binding member (12).
2. The positioning structure according to claim 1, characterized in that, The first binding member (11) has a first fixed end (111) and a first movable end (112) away from the first fixed end (111) along its length direction, and the second binding member (12) has a second fixed end (121) and a second movable end (122) away from the second fixed end (121) along its length direction. The positioning area (13) is located between the first fixed end (111) and the second fixed end (121). The first binding member (11) and the second binding member (12) are both used to partially overlap each other and bind the appliance (20) located in the positioning area (13). Alternatively, after deformation, the first binding member (11) includes a positioning part (113) formed between the first fixed end (111) and the first movable end (112), the positioning area (13) being located between the positioning part (113) and the second fixed end (121); after deformation, the second binding member (12) partially extends beyond the positioning part (113) and overlaps with the first binding member (11), binding the appliance (20) located in the positioning area (13).
3. The positioning structure according to claim 2, characterized in that, When the positioning area (13) is located between the positioning part (113) and the second fixed end (121), after the first binding member (11) is deformed, the first binding member (11) further includes: The arched portion (114) is connected to the first fixed end (111) and the positioning portion (113) respectively, and is used to support the positioning portion (113). The arched portion (114) is also used to be detachably connected to the second binding member (12), so that the second binding member (12) can bind the appliance (20) to the positioning area (13).
4. The positioning structure according to claim 3, characterized in that, When the positioning area (13) is located between the positioning part (113) and the second fixed end (121), after the first binding member (11) is deformed, the first binding member (11) further includes: The fixing part (115) extends from the end of the positioning part (113) away from the arched part (114) in a direction away from the first fixing end (111); The fixing part (115) is used to maintain the arched part (114) and the positioning part (113) in their current state after they are fixed.
5. The positioning structure according to claim 1, characterized in that, The first binding member (11) is snapped or glued to the second binding member (12).
6. The positioning structure according to any one of claims 1-5, characterized in that, Both the first binding member (11) and the second binding member (12) are flexible straps that can be bent.
7. A storage container, characterized in that, The storage container includes: The container body (3) includes: a box (31) and a lid (32) that can close or open the box (31), and when the lid (32) closes the box (31), a storage space (33) is formed between the box (31) and the lid (32). The positioning structure (1) as described in any one of claims 1-6 is disposed within the housing (31) for forming the positioning area (13) within the housing (31) and for binding the appliance (20) within the positioning area (13).
8. The storage container according to claim 7, characterized in that, The first binding member (11) and the second binding member (12) are fixed inside the box body (31) or detachably disposed inside the box body (31).
9. The storage container according to claim 7, characterized in that, The box (31) or the cover (32) is also provided with markings to guide the first binding member (11) and the second binding member (12) to deform.
10. The storage container according to claim 7, characterized in that, The cover (32) also has a mezzanine space (34).