A soft tissue box packaging body and its matching hanging hook

CN224632316UActive Publication Date: 2026-08-14FUJIAN HENGAN HLDG CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-08
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

这种传统包装存在明显的使用局限性:首先,其必须水平放置在桌面等平面物体上,抽纸口朝上的设计导致无法实现立体空间的多点位悬挂,在卧室、厨房等需要随手取用的场景中既占用台面空间又影响取用效率;其次,现有挂壁式抽纸包装如CN201420311067.2专利所示,虽通过顶部贴合部实现悬挂功能,但存在包装体积过大、仅限底部抽纸的固有缺陷,既无法适配常规尺寸的抽纸包装,又限制了使用姿势的多样性

Benefits of technology

[0017]由上可知,本申请提供的一种软抽纸包装体及其配套悬挂装置,通过在包装体底面或侧面设置特定尺寸的虚切开口,结合可多向调节的悬挂装置,使得抽纸包装能够灵活适配水平、垂直及倒置悬挂场景,具有实现多方位悬挂、节省台面空间、提高抽纸取用效率的优点。

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Abstract

This invention relates to a multifunctional soft tissue box packaging and its matching hanging device, addressing the problems of inconvenient hanging, space occupation, and limited functionality of traditional tissue box packaging. The packaging adopts a three-dimensional closed structure, with a perforated opening on the bottom or side of the outer packaging layer. Optional reinforcement along the cut line and additional strengthening components can be added to prevent tearing and spread. The matching hanging device includes a base, an adhesive layer, and a hook body, supporting horizontal, wall-mounted, and vertical hanging modes. In use, the perforated opening is torn open, and the hook passes through the channel to achieve upside-down hanging, wall-mounted fixing, or vertical hanging, suitable for various scenarios such as kitchens and bedrooms. This design balances ease of tearing with structural integrity, allows for flexible adjustment of the hanging angle, reduces countertop space occupation, improves retrieval efficiency, and is environmentally friendly and durable, meeting diverse needs for soft tissue box packaging.
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Description

Technical Field

[0001] This application relates to the field of packaging technology for daily necessities, and more specifically, to a soft tissue box packaging body and its matching hanging device. Background Technology

[0002] The typical structure of soft tissue box packaging consists of continuous tissues stacked inside a plastic outer packaging. During production, a pre-set crease line is created on the top surface of the packaging, and the tissue box is torn along the crease to form the opening when in use. This traditional packaging has significant limitations: First, it must be placed horizontally on a flat surface such as a table. The upward-facing design prevents multi-point hanging in three-dimensional space, taking up counter space and affecting efficiency in scenarios where tissues need to be easily accessible, such as bedrooms and kitchens. Second, while existing wall-mounted tissue boxes, as shown in patent CN201420311067.2, achieve hanging functionality through a top-fitting part, they suffer from inherent defects such as excessive packaging volume and limitation to bottom tissue boxes. This makes them unsuitable for standard-sized tissue boxes and restricts the versatility of usage postures. Especially when multiple usage scenarios, such as horizontal placement, vertical hanging, and inverted installation, need to be accommodated, existing technologies lack both adaptable improvements to the packaging itself and flexible hanging solutions, preventing users from freely choosing the installation method according to their actual space requirements. In addition, traditional packaging is prone to tearing and spreading during repeated hanging and use, which affects the product's lifespan.

[0003] To address the aforementioned issues, existing technologies urgently need improvement. Utility Model Content

[0004] The purpose of this application is to provide a soft tissue box packaging body and its matching hanging device, which has the advantages of enabling multi-directional hanging, saving counter space, and improving tissue box usage efficiency.

[0005] This application provides a soft tissue box packaging body, the technical solution of which is as follows: A soft tissue box packaging body, the structure of which includes stacked tissues and an outer packaging layer covering them; wherein, the outer packaging layer is a three-dimensional closed structure, which is formed by the bottom surface, the top surface and the four sides connected by the edges, and the top surface is provided with a tissue dispensing outlet preset by a dummy tangent line. At least one set of dummy tangent openings are provided on the bottom surface or the side surface of the soft tissue box packaging body. The dummy tangent openings include two dummy tangent lines, which extend along the length direction of the surface and are parallel to each other. The length of the two dummy tangent lines is 15-60mm, and the length is 1 / 10-5 / 10 of the length of the surface where the dummy tangent lines are located.

[0006] Furthermore, this application also proposes that the virtual cut opening further includes two real tangent lines, with the two real tangent lines respectively connecting the two ends of the virtual tangent lines. The two real tangent lines can be circular arc curves, and the distance between the two virtual tangent lines of the virtual cut opening is 2-5mm.

[0007] Furthermore, this application also proposes that the edge of the dummy cut opening is provided with a reinforcement to prevent the dummy cut line from tearing the packaging layer and causing the crack to spread.

[0008] Furthermore, this application also proposes a hanging hook that is compatible with the aforementioned soft tissue box packaging, including a base, an adhesive layer and a hook body. The base is fixed to the mounting surface through the adhesive layer, and the hook body has a snap-fit ​​part at its end. This device can realize three usage modes: horizontal fixing, wall hanging and vertical hanging.

[0009] Furthermore, this application also proposes that the width of the hook body is 10-40mm, and the ratio of the width of the hook body to the width of the base is 0.5-1.0.

[0010] Furthermore, this application also proposes that the adhesive layer is a removable backing adhesive with a peel strength of 0.5-2 N / cm² and can be re-attached ≥3 times.

[0011] Furthermore, as an option, the hook body and the base adopt a detachable connection structure, and the angle α of the hook body around the axis satisfies 0°≤α≤90°, so as to achieve stepless adjustment from the parallel direction to the vertical direction with respect to the base.

[0012] Furthermore, as an option, the inner surface of the hook body is provided with anti-slip texture, with a texture depth h of 0.3-0.8mm.

[0013] Furthermore, this application also proposes a scenario in which soft tissue paper is used in conjunction with a hanging device. The hanging device is attached to the downward mounting surface through an adhesive layer. The bottom surface of the soft tissue paper package has at least one set of slits. In use, the slits on the bottom surface are torn open, and the hook body of the hanging device is passed through the soft tissue paper through the slits. The soft tissue paper package is then hung upside down on the hanging device.

[0014] Furthermore, this application also proposes a scenario where soft tissue paper is used in conjunction with a hanging device. The hanging device is attached to an upward-facing mounting surface (such as a table or windowsill) via an adhesive layer. The bottom surface of the soft tissue paper package has at least one set of perforated openings. When in use, the perforated openings on the bottom surface are torn open, and the hook body of the hanging device is passed through the soft tissue paper through the perforated openings. This can prevent the soft tissue paper package from being moved randomly on the mounting surface and keep the mounting surface clean.

[0015] Furthermore, this application also proposes a scenario in which soft tissue paper is used in conjunction with a hanging device. The hanging device is attached to a vertical mounting surface (such as a wall) through an adhesive layer. The bottom surface of the soft tissue paper package is provided with at least one set of slits. In use, the slits on the bottom surface are torn open, and the hook body of the hanging device is passed through the soft tissue paper through the slits. This embodiment can hang the soft tissue paper package on the target wall.

[0016] Furthermore, this application also proposes a scenario in which soft tissue paper is used in conjunction with a hanging device. The hanging device is attached to a vertical mounting surface (such as a wall) by an adhesive layer. One side of the soft tissue paper package is provided with at least one set of slits. In use, the slits on the side are torn open, and the hook body of the hanging device is passed through the soft tissue paper through the slits. This embodiment can hang the soft tissue paper package on the target wall.

[0017] As can be seen from the above, the soft tissue box packaging body and its matching hanging device provided in this application, by setting a specific size slit opening on the bottom or side of the packaging body, combined with a multi-directional adjustable hanging device, enables the tissue box packaging to flexibly adapt to horizontal, vertical and inverted hanging scenarios, and has the advantages of realizing multi-directional hanging, saving table space and improving tissue box usage efficiency. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of a tissue packaging bag provided by the present invention;

[0019] Figure 2 Another schematic diagram of the tissue box packaging bag provided by the present invention;

[0020] Figure 3 A schematic diagram of the hanging hook provided by the present invention;

[0021] Figure 4 for Figure 3 A sectional view along the AA direction;

[0022] Figure 5 The first embodiment is a schematic diagram of the hanging structure and hanging hook of a soft tissue paper packaging bag;

[0023] Figure 6-8 The second embodiment is a schematic diagram of the hanging structure and hanging hook of a soft tissue paper packaging bag;

[0024] Figure 9 The third method is shown in the diagram of the hanging structure and hanging hook of the soft tissue paper packaging bag.

[0025] In the diagram, 1 represents the soft tissue box packaging body, 2 represents the stacked tissues, and 3 represents the outer packaging layer; 3A represents the top surface of the soft tissue box packaging body, 3B represents the bottom surface of the soft tissue box packaging body, 3D represents the four sides of the soft tissue box packaging body, 31 represents the tissue dispensing outlet, 32 represents the dotted opening, 33 represents the dotted cutting line, 34 and 35 represent the solid cutting lines, 5 represents the hanging hook, 50 represents the mounting surface, 51 represents the adhesive layer, 52 represents the base, 52d represents the width of the base, 53 represents the hook body, 53d represents the width of the hook body, 54 represents the inner surface of the hook body, and 55 represents the snap-fit ​​part. Detailed Implementation

[0026] The technical solutions of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. The components of this application described and shown in the accompanying drawings can generally be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of this application provided in the accompanying drawings is not intended to limit the scope of the claimed application, but merely represents selected embodiments of this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application without inventive effort are within the scope of protection of this application. It should be noted that similar reference numerals and letters in the following drawings denote similar items; therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings.

[0027] In existing technologies, tissue boxes are typically made of plastic, with a pre-marked indentation on the top to form the tissue dispenser. The box must be placed on a flat surface such as a tabletop for use. This technology limits its application scenarios; for example, in spaces like bedrooms or kitchens, it's impossible to hang the tissues on walls or vertical surfaces, making them inconvenient to access and taking up counter space. While hanging tissue boxes exist that use a top handle to hang from a fitted hook, they are bulky and only support bottom-pull access, making them unsuitable for diverse usage needs.

[0028] To address the aforementioned issues, a tissue box packaging structure that can flexibly adapt to different hanging scenarios is needed. Traditional packaging relies solely on the top tissue box opening, which cannot form a stable hanging support point. Directly opening holes in the packaging surface may compromise the seal. Analysis revealed that setting controllable opening structures on the bottom surface (3B) or side surface (3D) of the packaging can both maintain the integrity of the packaging and provide a fixing point for the hanging device. Therefore, it is proposed to set a dummy opening (32) at a specific location on the packaging body, forming a hanging channel through controllable tearing, thereby solving the problems of space occupation and the single hanging direction.

[0029] like Figure 1-2 As shown, this application proposes a soft tissue box packaging 1 comprising stacked tissues 2 and an outer packaging layer 3. The outer packaging layer 3 is a three-dimensional closed structure with a tissue dispensing outlet 31 on the top surface and at least one set of dummy openings 32 on the bottom or side surface. Each dummy opening 32 includes two parallel dummy tangent lines 33 extending along the length of the surface, with a distance of 2-5 mm between the two dummy tangent lines 33. This application further proposes that the dummy opening also includes two solid tangent lines 34 and 35, which connect the two ends of the two dummy tangent lines 33 respectively. The two solid tangent lines 34 and 35 can be arc curves.

[0030] Among them, the dummy opening 32 refers to the tearable area formed by the preset cutting line. Specifically, the die-cutting process can be used to process the incompletely cut line on the packaging material, so that the user can form a hanging channel by tearing it open.

[0031] The extension direction of the dummy tangent line refers to the arrangement of the cutting line along the long side of the packaging surface. Specifically, it can be a straight line or a wavy cutting method. By extending along the length direction, it ensures that the opening length matches the size of the suspension device. The parallelism of the dummy tangent lines means that the two cutting lines maintain a constant distance. This can be achieved by adjusting the spacing parameters of the cutting mold. The parallel structure can control the tear range and avoid excessive expansion of the opening, which could lead to packaging damage.

[0032] Among them, solid tangent lines 34 and 35 refer to the cutting lines that completely sever the packaging layer material, which can be achieved using die-cutting processes to form closed opening structures at both ends of the dummy tangent lines. The arc curve refers to the bending shape of the solid tangent lines, which can be achieved using a semi-circular or elliptical contour, used to disperse stress concentration when the packaging layer is under stress. The spacing between the dummy tangent lines refers to the perpendicular distance between two parallel dummy tangent lines, which can be achieved using laser cutting or mechanical indentation processes, used to control the tear range of the opening area.

[0033] Specifically, the dummy opening consists of two parallel dummy lines 33 and solid lines 34 and 35 connecting their ends, forming a closed area. When the user tears the packaging layer along the dummy lines, the arc curve of the solid lines guides the tearing path, preventing stress concentration at the ends of the dummy lines and thus avoiding accidental tearing. The spacing between the dummy lines is limited to a certain range to ensure that the opening area can be torn stably without causing the packaging layer structure to loosen due to excessive spacing.

[0034] Specifically, the outer packaging layer 3 forms a closed space through the top surface 3A, top surface 3B, and four sides 3D. The tissue dispenser 31 on the top surface 3A is used for regular tissue dispensing. When hanging in a non-planar position, the user tears open the slit 32 on the bottom surface 3B or side surface 3D, forming a slit that penetrates the packaging layer. The hook 5 of the hanging device can pass through this slit to fix the packaging, allowing it to be hung upside down or sideways on a wall, furniture, or other surface. The parallel layout of the slit lines 33 ensures that the opening edges are neat, preventing the packaging layer from losing its support strength due to uneven tearing.

[0035] This solution uses the arc connection and spacing control of the solid tangent lines to make the shape of the dummy opening more regular, while limiting the tear range and preventing the packaging layer from losing its wrapping function due to accidental tearing. By directly setting the dummy opening on the packaging body, this solution, together with the auxiliary components of this invention, can adapt to various hanging directions; for example, the bottom opening supports inverted hanging, and the side opening supports lateral fixation. Furthermore, the preset position of the dummy opening can be flexibly adjusted according to the usage scenario, avoiding the limitation on the pulling direction caused by traditional bottom-mounted tissue dispensers.

[0036] Through the above technical solution, this application enables the soft tissue box packaging to be stably suspended on a vertical or inverted mounting surface, reducing table space occupation while maintaining the integrity of the packaging structure. Users can choose different locations for the slit openings according to actual needs, achieving multi-directional suspension and improving the convenience of tissue retrieval. The controllable tear characteristics of the slit openings prevent accidental damage to the packaging layer, ensuring the normal tissue retrieval function when suspended.

[0037] This application further proposes to provide a reinforcement at the edge of the dummy cut opening, the reinforcement being used to prevent the dummy cut line from tearing the packaging layer and causing the crack to spread.

[0038] Among them, the reinforcement refers to the material layer or structural component with a certain tensile strength added to the edge of the dummy opening. Specifically, it can be achieved by using a hot-pressed composite plastic film, a coated resin layer, or a sewn fiber strip, thereby limiting the expansion of cracks by increasing the mechanical strength of the edge area.

[0039] Specifically, when the dummy opening is torn, the reinforcement can withstand part of the tearing stress through its tensile strength, thereby preventing the dummy line from extending excessively into non-preset areas during the tearing process. When the packaging layer is subjected to external forces, the reinforcement can effectively disperse the stress at the crack tip, limiting the crack to a predetermined range between the two dummy lines, ensuring that the opening shape is regular and the rest of the packaging layer remains intact.

[0040] Compared to existing technologies, current tissue packaging relies solely on the strength of the packaging material itself to resist tearing. After the initial tear, the puncture line is prone to continue tearing along the weakest point, leading to an excessively large opening or damage to the packaging layer. This application, however, by incorporating reinforcing elements at the edge of the puncture opening, can actively constrain the crack propagation path, preventing accidental tearing caused by localized stress concentration.

[0041] Through the above technical solution, this application can ensure that the slit opening maintains the preset shape during use, prevent the packaging layer from losing its wrapping effect on the tissue due to tearing and diffusion, avoid the tissue from scattering or becoming contaminated, and extend the reuse cycle of the packaging.

[0042] like Figure 3-4 As shown, this application further proposes a hanging hook 5 that is compatible with the soft tissue box packaging, including a base 52, an adhesive layer 51 and a hook body 53. The base 52 is fixed to the mounting surface 50 through the adhesive layer 51, and the hook body has a snap-fit ​​part 55 at the end, which can realize three usage modes: horizontal fixing, wall hanging and vertical hanging.

[0043] The base 52 refers to the support structure that carries the hook body. It can be made of rigid plastic or metal sheet, with a smooth surface to accommodate different mounting surfaces. The adhesive layer is the intermediate medium used to fix the base to the mounting surface. It can be made of pressure-sensitive adhesive or double-sided tape, forming a detachable connection through physical adsorption or chemical bonding. The hook body 53 is the curved structure used to suspend the soft tissue box packaging. It can be manufactured using injection molding, with an inwardly bent hook-shaped end to prevent slippage. The three usage modes refer to adjusting the relative position of the base and the hook body to allow the hook body to be suspended horizontally, vertically, or vertically, adapting to installation scenarios such as desktops / tabletops, walls, or under desktops.

[0044] This application further proposes a hanging device for the soft tissue box packaging, wherein the width 33d of the hook body is 10-40mm, and the ratio of the width 33d of the hook body to the width 32d of the base is 0.5-1.0.

[0045] The width of the hook body refers to the lateral dimension of the hook used to support the soft tissue box packaging. This can be achieved through injection molding or metal stamping. A width range of 10-40mm can accommodate different packaging sizes, avoiding instability due to an overly narrow hook or wasted space due to an overly wide hook. The base width ratio refers to the lateral dimension ratio between the hook body and the base. This can be achieved by adjusting mold parameters or structural design. A ratio range of 0.5-1.0 can balance the stress distribution between the base and the hook, preventing the base from detaching or the hook from deforming due to an imbalance.

[0046] Specifically, the width of the hook body is limited to a certain range, such as 10-40mm, to accommodate both the size of soft tissue paper packaging and the load-bearing requirements of different installation scenarios. The width ratio between the hook body and the base is, for example, 0.5-1.0. This can be achieved by adjusting the connection structure between the base and the hook, such as using a one-piece molding or separate assembly method, to ensure a sufficiently large contact area between the base and the mounting surface, while allowing the hook body to stably support the packaging. In horizontal, wall-mounted, or vertical hanging modes, this ratio prevents the device from falling off due to a shift in the center of gravity, while also adapting to the size limitations of different mounting surfaces.

[0047] Compared to existing technologies, traditional hanging hooks are too small to stably secure soft tissue paper packaging, and the hook-to-base ratio is not optimized, making them prone to detachment due to uneven stress. This solution addresses the stability issues caused by size mismatch in traditional devices by limiting the hook width and its ratio to the base, while also expanding the applicability of the hanging device.

[0048] Through the above technical solution, this application can improve the compatibility between the hanging device and the soft tissue packaging, ensure stability in different installation scenarios, avoid the packaging from slipping or the hanging from failing due to the hook size being too large or too small, and at the same time simplify the production process and reduce material waste caused by size mismatch.

[0049] In one optional embodiment of this application, the hook body and base adopt a detachable connection structure. The hook body can rotate around an axis by an angle α satisfying 0°≤α≤90°, achieving stepless adjustment from the parallel direction to the vertical direction relative to the base. The detachable connection structure refers to the hook body and base being fixed through a separable mechanical connection, specifically using a snap-fit, plug-in, or magnetic adsorption structure. This structure allows users to flexibly replace or adjust the hook body according to their needs. The stepless adjustment of the rotation angle α around the axis (0°≤α≤90°) means that the hook body can be continuously adjusted within a certain angle range around a fixed axis. This can be achieved using a rotating shaft with a damping structure or a gear limiting mechanism. This design allows the hook body to adapt to the directional requirements of different installation surfaces, such as any angle from a horizontal tabletop to a vertical wall.

[0050] Specifically, the detachable connection between the hook body and the base allows users to choose the installation method according to the actual scenario. For example, a vertical angle can be used when hanging it under a cabinet in the kitchen, while an angled angle can be adjusted when attaching it to the side of a bedside table in the bedroom. Through the stepless adjustment function of the rotating shaft, the hook body can rotate freely within the range from parallel to perpendicular to the base, thereby adapting to the spatial constraints of different installation surfaces, such as narrow gaps or inclined countertops.

[0051] Compared to existing technologies, traditional hanging devices typically use hooks with fixed angles or limited preset positions, making them unable to flexibly adapt to various installation environments. For example, when the mounting surface is inclined, a fixed-angle hook may cause the tissue box to tilt or slip. This solution, however, uses a stepless adjustment function, allowing the hook body to precisely match the angle of the mounting surface, avoiding suspension instability caused by angle deviations. Furthermore, the detachable structure simplifies maintenance and replacement procedures.

[0052] Through the above technical solution, this application solves the problem of limited applicability of traditional hanging devices due to fixed angles, enabling tissue packaging to be stably suspended on horizontal, vertical or inclined installation surfaces, while reducing the risk of packaging shaking or falling off due to mismatched angles, and improving user convenience in different usage environments.

[0053] This application further proposes that the adhesive layer is a removable backing adhesive with a peel strength of 0.5-2 N / cm² and can be re-attached ≥3 times.

[0054] Removable adhesive refers to an adhesive material that can be repeatedly applied and removed without leaving residue. It can be achieved using acrylic pressure-sensitive adhesives or silicone-based adhesives, and its tackiness is adjustable with interfacial separation properties. Peel strength refers to the maximum vertical separation force per unit area between the adhesive layer and the mounting surface. This can be achieved by adjusting the adhesive layer thickness or adding tackifying resins. This parameter range balances fixation reliability and ease of removal. Re-application count refers to the number of times the adhesive layer can be completely peeled off and re-approved before failure. This can be achieved by optimizing the substrate surface treatment process or adding elastomer components. This indicator ensures that the suspension device can adapt to temporary installation needs.

[0055] Specifically, the removable adhesive, with its preset peel strength range, ensures the base remains stably fixed on vertical mounting surfaces, while allowing users to manually remove the base and change its installation position. When the position of the suspension device needs to be adjusted, the adhesive layer can be completely peeled off from the mounting surface, preventing residual adhesive from staining walls or tabletops. By controlling the number of re-applications, the adhesive layer maintains effective adhesion after multiple installations, meeting the needs of repeated use in temporary suspension scenarios.

[0056] Compared to existing technologies, traditional suspension devices use permanent adhesives or mechanical fixation, which cannot achieve traceless removal and position adjustment. This solution, through the interface characteristics of removable adhesive, not only solves the problem of insufficient fixation strength leading to suspension instability, but also overcomes the defect of residual adhesive stains ruining the cleanliness of the installation surface.

[0057] Through the above technical solution, this application enables the suspension device to adapt to the temporary installation needs of different scenarios, such as achieving traceless fixation on the headboard of a bedroom or the wall of a kitchen, while also allowing users to adjust the suspension position according to their usage habits. The adhesive layer can still maintain effective adhesion after multiple removals, avoiding the waste of resources caused by frequent replacement of adhesive layers and improving the environmental adaptability of the device.

[0058] This application further proposes a hanging hook for the soft tissue box packaging. The inner surface of the hook body is provided with anti-slip texture, and the texture depth h is 0.3-0.8mm. The anti-slip texture refers to the concave-convex structure on the inner surface of the hook body that contacts the soft tissue box packaging. Specifically, it can be implemented using horizontal stripes, diamond grids, or dot matrix protrusions to increase the friction coefficient of the contact surface. The texture depth h is the height difference between the concave or convex portions of the texture, which can be achieved through molding or laser engraving. The depth is controlled between 0.3-0.8mm to ensure a balance between anti-slip effect and structural strength. Specifically, when the hook body passes through the perforated opening on the bottom surface of the soft tissue box packaging, the anti-slip texture on the inner surface contacts and rubs against the edge of the opening. When the texture depth is controlled above 0.3mm, it can effectively resist the tendency of the packaging to slip due to gravity; a depth not exceeding 0.8mm avoids excessive compression and damage to the packaging material due to excessively deep texture. This structure allows the packaging to maintain a stable position when suspended, preventing accidental detachment due to external forces or gravity.

[0059] like Figure 5 As shown, this application further proposes a scenario in which the soft tissue box 1 is used in conjunction with the hanging device 5. The hanging device 5 is attached to the downward mounting surface 50 through the adhesive layer 51. The bottom surface 3B of the soft tissue box 1 is provided with at least one set of slit openings 32. In use, the slit openings 32 on the bottom surface are torn open, and the hook body 53 of the hanging device is passed through the soft tissue box through the slit openings 32. The soft tissue box 1 is then hung upside down on the hanging device 5.

[0060] Inverted hanging refers to suspending the tissue box with its top surface facing downwards. This is achieved through the combination of a hook and a partially cut opening, allowing gravity to cause the tissues to hang naturally for easy removal. Specifically, when the hanging device is attached to a downward-facing mounting surface such as the bottom of a cabinet or the underside of a shelf, the user first tears open the partially cut opening on the bottom of the tissue box to create a channel. Then, the hook is passed through this channel and hooked onto the edge of the box. Because the hook forms a rigid connection with the base, the box remains inverted under gravity, with the tissue dispenser on the top facing downwards, allowing the tissues to hang down to the desired position. This method is particularly suitable for scenarios with limited vertical space, such as under kitchen cabinets or under a desk.

[0061] Compared to existing technologies, traditional hanging packaging requires a fixed hanging structure at the top and only supports a single hanging direction. This solution, however, achieves multi-angle hanging capability through a perforated bottom opening and adjustable hooks. Existing technologies restrict the direction of tissue dispensing by designing the bottom tissue dispenser; this solution aligns the tissue dispensing direction with gravity by suspending the packaging upside down, improving the smoothness of tissue dispensing.

[0062] Through the above technical solution, this application solves the problem of traditional desktop tissue packaging occupying planar space, and achieves stable hanging in a narrow vertical space. In the inverted hanging state, the tissues hang naturally due to gravity, avoiding displacement of the packaging or stacking and jamming of tissues when pulled out. At the same time, the design of the perforated opening on the bottom surface makes the hook insertion process controllable and prevents accidental tearing of the packaging layer.

[0063] like Figure 6-8 As shown, another scenario illustrates the use of the soft tissue box 1 in conjunction with the hanging device 5. The hanging device 5 is attached to a vertical or inclined mounting surface 50 via an adhesive layer 51. Figure 6 As shown, the bottom surface 3B of the soft tissue box 1 has a set of perforated openings 32. In use, the perforated openings 32 are torn open, and the hook body 53 of the hanging device passes through the soft tissue box through the perforated openings 32. The extraction port of the soft tissue box is approximately parallel to the mounting surface. Figure 7 , 8 As shown, the side 3D of the soft tissue box 1 is provided with a set of dummy openings 32. When in use, tear open the dummy openings 32 on the side 3D, and pass the hook body 53 of the hanging device through the soft tissue box through the dummy openings 32. The draw opening of the soft tissue box is facing up or down.

[0064] When attaching the hanging device to a wall or sloping headboard surface, the user first tears open the bottom of the tissue box to create a channel, then passes the hook through the channel and hooks it onto the edge of the box. This method is particularly suitable for scenarios with limited vertical space, such as kitchen walls or vertical or sloping headboard surfaces.

[0065] Compared with existing technologies, traditional hanging packaging requires a fixed hanging structure at the top and only supports a single hanging direction. In contrast, this solution achieves multi-angle hanging capability of the packaging body by using a slit opening on the bottom surface in conjunction with an adjustable hook.

[0066] Through the above technical solution, this application solves the problem of traditional desktop tissue packaging occupying planar space and achieves stable hanging in a narrow vertical space.

[0067] like Figure 9 As shown, this application further proposes a scenario in which the soft tissue box 1 is used in conjunction with the hanging device 5. The hanging device 5 is attached to the upward mounting surface 50 through the adhesive layer 51. The bottom surface 3B of the soft tissue box 1 is provided with at least one set of perforated openings 32. When in use, the perforated openings 32 on the bottom surface are torn open, and the hook body 53 of the hanging device is passed through the soft tissue box through the perforated openings 32. This can prevent the soft tissue box from being moved randomly on the mounting surface and keep the mounting surface clean.

[0068] The hook body's end locking section is a support structure used to bear the weight of the packaging. It can be implemented using an arc-shaped or L-shaped metal sheet, whose surface anti-slip texture increases friction with the packaging. Specifically, after the suspension device is adhered to a horizontally facing mounting surface, the perforated opening at the bottom of the packaging is torn open to form a channel. The hook body passes through this channel and locks into place with the packaging. Because the hook body forms a vertical support structure with the mounting surface, the packaging's own weight causes it to adhere tightly to the hook body, thus limiting horizontal displacement. The removable adhesive layer allows the device to be repeatedly repositioned between different mounting surfaces, while the size design of the perforated opening ensures a stable contact area between the hook body and the packaging.

[0069] Compared to existing technologies, traditional tissue boxes can only be placed flat on a table and cannot be fixed in position, making them prone to sliding due to external forces. This solution, through the cooperation of a suspension device and the bottom opening of the packaging, creates a vertical constraint on the horizontal mounting surface, avoiding the occupation of planar space and eliminating displacement problems caused by external forces. At the same time, the tear control characteristics of the perforated opening prevent the risk of damage to the packaging due to excessive expansion of the opening.

[0070] Through the above technical solution, this application effectively solves the problem of traditional tissue box packaging easily sliding and shifting on horizontal surfaces. By cooperating with the suspension device and the physical limiting mechanism of the bottom opening of the packaging, the packaging is stably fixed in the designated position, reducing clutter on the countertop caused by packaging movement. This solution is particularly suitable for flat surfaces such as kitchen countertops and windowsills that need to be kept clean, ensuring normal access to tissues while maintaining an orderly installation surface.

[0071] The above description is merely an embodiment of this application and is not intended to limit the scope of protection of this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the scope of protection of this application.

Claims

1. A soft tissue packaging structure comprising a stack of tissue paper and an outer packaging layer wrapped therearound; wherein, The outer packaging layer is a three-dimensional closed structure, which is formed by the bottom surface, the top surface and the four sides connected by the edges. The top surface is provided with a paper-pulling outlet with a pre-set dotted tangent line. The characteristic is that at least one set of dotted openings are provided on the bottom or side surface of the soft tissue packaging bag body. The dotted opening includes two dotted tangent lines. The two dotted tangent lines extend along the length direction of the surface and are parallel to each other. The length of the two dotted tangent lines is 15-60mm and is 1 / 10-5 / 10 of the length of the surface where the dotted tangent lines are located.

2. A soft-pak package according to claim 1, characterized in that: The virtual cut opening also includes two real tangent lines, which connect the two ends of the two virtual tangent lines respectively. The two real tangent lines can be circular arcs, and the distance between the two virtual tangent lines of the virtual cut opening is 2-5mm.

3. A soft-pak package according to claim 1, wherein: The edge of the dummy cut opening is provided with a reinforcing member, which is used to prevent the dummy cut line from tearing the packaging layer and causing the crack to spread.

4. A hanging hook for use with the soft tissue box packaging body as described in claim 1, characterized in that: It includes a base, an adhesive layer, and a hook body. The base is fixed to the mounting surface through the adhesive layer, and the hook body has a snap-fit ​​part at its end. This hanging hook can realize three usage modes: horizontal fixing, wall hanging, and vertical hanging.

5. A soft tissue packet kit hanging hook according to claim 4, characterised in that: The width of the hook body is 10-40mm, and the ratio of the width of the hook body to the width of the base is 0.5-1.

0.

6. The soft tissue package kit hanging hook of claim 4, wherein: The hook body and the base adopt a detachable connection structure. The angle α of the hook body around the axis satisfies 0°≤α≤90°, realizing stepless adjustment from the parallel direction to the vertical direction with respect to the base.

7. The fitted hanging package of soft tissue packaging according to claim 4, wherein: The adhesive layer is a removable backing adhesive with a peel strength of 0.5-2 N / cm² and can be re-attached ≥3 times.

8. The fitted hanging package of soft tissue packaging according to claim 4, wherein: The inner surface of the hook body is provided with anti-slip texture, and the texture depth h is 0.3-0.8mm.

Citation Information

Patent Citations

  • Wall-mounted bottom paper extraction package

    CN203903140U