Paperweight with incense inserting function
By combining the design of the inclined slot and the pressing component, and using magnets and magnetic suction components or interference fit, the problem of high processing difficulty and easy clogging of the blind hole of the paperweight is solved, realizing the stable fixation of the incense body and convenient maintenance, and improving the practicality and aesthetics of the product.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-06
- Publication Date
- 2026-04-07
AI Technical Summary
The existing paperweights with blind holes for inserting incense sticks are difficult to manufacture and prone to clogging.
It adopts a combination design of inclined slots and detachable pressing parts, and uses magnets and magnetic components or interference fit to fix the fragrance body, avoiding reliance on blind hole depth and friction, and integrates open slots and dust collection channels.
This achieves stable fixation of the fragrance, avoids the problems of difficult blind hole processing and easy clogging, improves the convenience and applicability of use, and enhances the artistic appeal and safety of the product.
Smart Images

Figure CN224089944U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of stationery, specifically to a paperweight with an incense holder function. Background Technology
[0002] Paperweights, also known as bookweights, rulers, or paper cutters, are used to hold paper flat and prevent it from moving when writing or painting. People also use incense to enhance the atmosphere or calm the mind during artistic creation. Traditionally, incense burners were placed separately, but this is inconvenient when the table is small.
[0003] Therefore, Chinese Patent Publication No. CN203244245U disclosed a technical solution entitled "A Multifunctional Incense Holder," which includes a blind hole on the incense holder body for inserting incense. The incense holder is kept upright or at an angle by the interaction between the tail of the incense holder and the inner wall of the blind hole. Since the tail of the incense holder is generally quite thin, the diameter of the blind hole is also relatively small. Furthermore, regarding the depth of the blind hole, if it is too shallow, the incense holder is prone to tipping over; if it is too deep, the processing difficulty is too high. Also, if incense ash or foreign objects enter the blind hole, it is not easy to cause blockage, thus affecting the use of the incense holder. Utility Model Content
[0004] The purpose of this invention is to provide a paperweight with an incense holder function, which can effectively solve the problem of existing paperweights having blind holes for inserting incense holders, where blind holes are difficult to process and are prone to clogging.
[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:
[0006] A paperweight with incense holder function includes:
[0007] Paperweight body;
[0008] The pressure groove is located at one end of the top surface of the paperweight body;
[0009] A slot, which communicates with a pressure groove, extends at an angle from the top surface of the paperweight body to the bottom surface of the pressure groove; and,
[0010] The pressing component is detachably installed within the pressing groove;
[0011] The slot is tilted at an angle such that the fragrance body is tilted upwards when inserted, and the pressing member holds the tail of the fragrance body to maintain its tilted posture.
[0012] In the aforementioned paperweight with incense holder function, the bottom of the pressing groove and one of the pressing components are provided with a magnet, and the other is provided with a magnetic suction component that cooperates with the magnet to generate an attractive force.
[0013] In the above-mentioned paperweight with incense holder function, a blind hole is opened at the bottom of the paperweight body. The blind hole is located directly below the pressure groove. A magnet is installed in the blind hole. The opening end of the blind hole is provided with a sealing member of the same material as the paperweight body, so that the magnet is completely hidden inside the paperweight body.
[0014] In the aforementioned paperweight with incense holder function, the pressing component is interference-fitted with the pressing groove.
[0015] In the aforementioned paperweight with incense holder function, the torque generated by the weight of the pressing component is greater than the restoring torque generated when the incense stick is tilted up.
[0016] In the aforementioned paperweight with incense holder function, the top surface of the paperweight body has a concave structure, forming an ash collection groove to receive the ashes from the burning incense.
[0017] In the aforementioned paperweight with incense holder function, the top surface of the paperweight body has an arc-shaped concave structure, and the inlet of the pressing groove is located at the lowest point of the arc-shaped concave structure.
[0018] In the above-mentioned paperweight with incense holder function, the pressing groove is a spherical groove, and the pressing component is a spherical structure.
[0019] In the aforementioned paperweight with incense holder function, protective elements are inlaid on both sides of the top surface of the paperweight body along the length direction.
[0020] In the aforementioned paperweight with incense holder function, the upper part of the pressing component is provided with a decorative element.
[0021] Compared with the prior art, the advantages of this utility model are:
[0022] The inclined slot allows the incense stick to naturally tilt upwards, and a retainer holds the tail of the incense stick in place. This eliminates the need for the depth or friction of blind holes, solving the problems of difficult and easily clogged blind holes in current paperweights. The inclined slot causes the incense stick to tilt upwards upon insertion, a design that changes the traditional vertical or simple angled insertion method. Combined with the retainer holding the tail of the incense stick in a tilted position, this structurally achieves a unique and stable way of fixing the incense stick, making it more sophisticated than traditional incense stick structures. Addressing the drawbacks of blind holes in existing paperweights or incense sticks, such as the difficulty in machining blind holes, the difficulty in controlling their depth, and the tendency to clog, this paperweight completely eliminates blind hole structures through the combination of slots and retainers, fundamentally avoiding these problems and providing a more reliable solution for fixing incense sticks.
[0023] The slot extends at an angle from the top of the paperweight body to the bottom of the pressure groove, causing the incense stick to naturally tilt upwards after insertion. Compared to traditional blind holes, which require precise control of depth and diameter to prevent tipping and involve complex manufacturing processes, the tilted slot only requires control of the tilt angle, making manufacturing simpler and more forgiving. The slot has an open structure, allowing incense ash or foreign objects to fall off naturally without relying on the friction of the blind hole's inner wall, completely solving the problem of blind holes easily clogging in existing technologies. The slot's tilt angle adapts to different sizes of incense sticks, eliminating the need to design blind hole parameters for specific incense sticks, thus broadening its applicability.
[0024] The paperweight with the above structure replaces the closed blind hole with an open slot and a pressing component, which reduces the processing difficulty and avoids clogging. Through the torque balance and detachable design of the pressing component, dynamic stability and convenient maintenance are achieved. The incense holder is directly integrated into the paperweight body, eliminating the need for an additional incense burner, which better meets the actual needs of stationery.
[0025] Furthermore, the bottom of the pressure groove and one of the pressing components are equipped with magnets, while the other is equipped with a magnetic suction component that cooperates with the magnets to generate attraction. The magnetic suction design eliminates the need for complex snap-fits or interference fits; the components automatically adhere simply by being brought close together, simplifying user operation and making it particularly suitable for scenarios requiring frequent disassembly and cleaning. The magnetic force provides continuous and uniform holding force, preventing displacement of the pressing component due to external forces, making it more reliable than pure gravity holding. The magnetic suction is a non-mechanical contact fixation method, preventing component wear due to friction during long-term use and extending product lifespan.
[0026] Furthermore, a blind hole is provided at the bottom of the paperweight body, located directly below the pressing groove. A magnet is placed within this blind hole, and its opening is sealed with a plug of the same material as the paperweight body, completely concealing the magnet within the paperweight body. Placing the magnet within the blind hole at the bottom of the paperweight body, and using a plug of the same material, effectively protects the magnet from external environmental corrosion, extending its lifespan. Simultaneously, this design makes the paperweight more aesthetically pleasing and simple, eliminating any obtrusive exposed magnet, maintaining the overall integrity and harmony of the paperweight, and conforming to the refined and beautiful characteristics of stationery, thus enhancing the product's artistic appeal. The blind hole's location directly below the pressing groove makes the magnetic force between the magnet and the magnetic attractor on the paperweight more concentrated and stable. Compared to designs with exposed or randomly positioned magnets, this layout reduces magnetic dispersion, ensuring the pressing element is more firmly attached to the groove, thus providing more stable pressure on the incense burner. Even with slight shaking or external interference, it effectively prevents the pressing element from falling off, guaranteeing the incense burner's secure hold. The concealed magnet design avoids direct contact with the magnet during daily use, reducing the risk of accidental injury from magnets attracting metal objects and improving product safety. Furthermore, this design allows the paperweight to rest stably on various tabletop materials without interference from the magnet's interaction with the surface, broadening its applicability.
[0027] Furthermore, the pressing component and the pressing groove are interference-fitted. This interference fit ensures a tight connection between the pressing component and the pressing groove, guaranteeing the pressing component's stable placement within the groove without the need for additional auxiliary devices. During the burning of the incense, even under external interference or vibrations generated by the incense's own combustion, the pressing component is unlikely to shift or fall off, thus reliably holding the tail of the incense stick, maintaining its upright posture, and ensuring the smooth progress of the burning process.
[0028] Furthermore, the torque generated by the weight of the pressing component is greater than the restoring torque generated when the incense stick tilts upwards. When the torque generated by the weight of the pressing component is greater than the restoring torque generated when the incense stick tilts upwards, it ensures that the incense stick maintains a stable tilted posture throughout the entire burning process. Even if the incense stick tends to return to its original position during combustion due to changes in its own structure, airflow, or other factors, the pressing component, with its sufficiently large torque, can effectively suppress this tendency, preventing the incense stick from tipping over and ensuring continuous and stable burning. This avoids safety hazards and inconvenience caused by the incense stick falling over. Users do not need to adjust the position of the pressing component or take other complex measures to ensure the stability of the incense stick; simply inserting the incense stick into the slot allows the pressing component to automatically stabilize the incense stick based on its own weight and torque relationship. Moreover, during use, there is no need for frequent checks and re-fixing of the incense stick, reducing the difficulty of operation and maintenance and providing users with a more convenient experience.
[0029] Furthermore, the top surface of the paperweight has a concave structure, forming an ash collection groove 14 to collect the ash from the burning incense. The design of the ash collection groove 14 allows the ash produced by the burning incense to fall directly into the concave area on the top surface of the paperweight, eliminating the need for frequent cleaning of the table or placing an additional ash collection container nearby. During use, users can focus on writing, drawing, or enjoying the aromatherapy atmosphere without worrying about ash scattering and affecting the environment or operation, greatly improving the convenience and smoothness of use.
[0030] Furthermore, the top surface of the paperweight body has a concave arc-shaped structure, and the entrance to the pressing groove is located at the lowest point of this structure. The top surface of the concave arc-shaped structure guides the incense ash to naturally slide down to the lowest point where the pressing groove entrance is located. Compared to ordinary concave structures, its special arc design makes the incense ash more easily concentrated under gravity, preventing it from scattering and accumulating on the paperweight surface, thus improving ash collection efficiency, reducing the difficulty and frequency of cleaning, and keeping the tabletop and paperweight clean. The pressing groove entrance is located at the lowest point of the concave arc-shaped structure; when the incense stick is inserted into the slot and held by the pressing component, this structure allows the incense stick to be in a relatively lower center of gravity position.
[0031] Furthermore, the pressing groove is a spherical groove, and the pressing component is a spherical structure. The fit between the spherical pressing component and the spherical groove reduces installation difficulty. When placing the pressing component, precise alignment is not required; simply place the sphere into the spherical groove, and it will automatically find the appropriate position and stabilize itself due to its own weight and the guiding effect of the spherical surface. During use, if the angle or position of the fragrance needs to be adjusted, the pressing component can easily rotate to adapt to the changes, making operation simple and convenient.
[0032] Furthermore, protective elements 15 are inlaid along the length of both sides of the top surface of the paperweight. During daily use, the paperweight inevitably collides and rubs against other items. The protective elements 15 on both sides of the top surface can buffer these external forces, reducing bumps and wear on the edges of the paperweight, effectively protecting its integrity and extending its service life. This protective function is particularly important for paperweights made of precious materials or with complex manufacturing processes.
[0033] Furthermore, the upper part of the paperweight is provided with a decorative element. The decorative element directly enhances the aesthetics of the paperweight, becoming a highlight of its overall appearance. Whether it uses exquisite engravings, inlaid gemstones, or a uniquely designed shape, the decorative element adds an artistic touch to the paperweight, breaking the monotony of traditional paperweights and making it more visually appealing, turning it into an exquisite desktop ornament and enhancing the user's visual enjoyment. Attached Figure Description
[0034] Figure 1 This is a top view of a paperweight with an incense holder function according to the present invention;
[0035] Figure 2 This is a cross-sectional view from the main perspective of a paperweight with incense holder function according to this utility model.
[0036] Figure 3 This is a left view of a paperweight with an incense holder function according to the present invention;
[0037] Figure 4 for Figure 2 A schematic diagram of the structure after the fragrance is inserted;
[0038] Figure 5 This is a cross-sectional view of another structure of a paperweight with incense holder function according to this utility model.
[0039] The attached figures are labeled as follows:
[0040] Paperweight body 10, magnet 11, blind hole 12, sealing component 13, dust collection trough 14, protective component 15, pressing groove 20, slot 30, pressing component 40, magnetic suction component 41, fragrance body 50. Detailed Implementation
[0041] A paperweight with incense holder function includes:
[0042] Paperweight body 10;
[0043] The pressure groove 20 is formed at one end of the top surface of the paperweight body 10;
[0044] Slot 30 communicates with pressure groove 20, and slot 30 extends inclinedly from the top surface of paperweight body 10 to the bottom surface of pressure groove 20; and,
[0045] The pressing component 40 is detachably installed within the pressing groove 20;
[0046] The slot 30 is tilted at an angle such that the fragrance body 50 is tilted upwards when inserted, and the pressing member 40 presses down on the tail of the fragrance body 50 to maintain its tilted posture.
[0047] The inclined slot 30 allows the incense stick 50 to naturally tilt upwards, and the pressing component 40 holds the tail of the incense stick 50 in place. This eliminates the need for the depth or friction of blind holes, solving the problems of difficult and easily clogged blind holes in current paperweights. The inclined slot 30 causes the incense stick 50 to tilt upwards when inserted, changing the traditional method of vertical or simple angled insertion of incense sticks. Combined with the pressing component 40 holding the tail of the incense stick 50 in a tilted position, this structure achieves a unique and stable fixation method for the incense stick 50, which is more ingenious than traditional incense stick structures. Addressing the drawbacks of blind holes in existing paperweights or incense sticks, such as difficult processing, uncontrollable depth, and easy clogging affecting usability, this paperweight completely eliminates the blind hole structure through the combination of the slot 30 and the pressing component 40, fundamentally avoiding these problems and providing a more reliable solution for fixing the incense stick 50.
[0048] The slot 30 extends at an angle from the top of the paperweight body 10 to the bottom of the pressure groove 20, causing the incense stick 50 to naturally tilt upwards after insertion. Compared to traditional blind holes, which require precise control of depth and diameter to prevent tipping and involve complex manufacturing processes, the inclined slot 30 only requires control of the tilt angle, making manufacturing simpler and more forgiving. The slot 30 has an open structure, allowing incense ash or foreign objects to fall off naturally without relying on the friction of the inner wall of the blind hole, completely solving the problem of easy clogging of blind holes in existing technologies. The tilt angle of the slot 30 is adaptable to different sizes of incense sticks 50, eliminating the need to design blind hole parameters for specific incense sticks 50, thus broadening its applicability.
[0049] The paperweight with the above structure replaces the closed blind hole with an open slot 30 and a pressing component 40, which reduces the processing difficulty and avoids clogging. Through the torque balance and detachable design of the pressing component 40, dynamic stability and convenient maintenance are achieved. The incense burner 50 is directly integrated into the paperweight body 10, eliminating the need for an additional incense burner and better meeting the actual needs of stationery.
[0050] The embodiments of the present invention are described in detail below, examples of which are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, and should not be construed as limiting the present invention.
[0051] In the description of this utility model, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", and "outer" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0052] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this utility model, "a plurality of" means at least two, such as two, three, etc., unless otherwise explicitly specified.
[0053] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection, an electrical connection, or a connection that allows communication between them; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise explicitly limited. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0054] See Figures 1 to 3 This invention relates to an embodiment of a paperweight with incense holder function. The paperweight with incense holder function includes a paperweight body 10, which is a cuboid. The paperweight body 10 can be made of metal, plastic, or wood. In order to better match the mood when writing, the paperweight body 10 is generally made of wood.
[0055] A pressure groove 20 is formed at one end of the top surface of the paperweight body 10. The structure of the pressure groove 20 is not limited; it can be a square groove or an arc-shaped groove. A paperweight with incense holder function also includes a pressing component 40, which is detachably installed in the pressure groove 20. Generally, the lower part of the pressing component 40 is designed to fit the pressure groove 20, and the upper part of the pressing component 40 can be a handle or other shape that is convenient for users to hold.
[0056] A slot 30 is also provided on the top surface of the paperweight body 10. The slot 30 extends from the top surface of the paperweight body 10 to the bottom surface of the pressing groove 20 at an angle. That is, in the vertical plane, the slot 30 is set at an angle, so that when the tail of the incense stick 50 is inserted into the slot 30, the incense stick 50 is in an angled and raised state. The slot 30 communicates with the pressing groove 20, so that the pressing member 40 can press down on the tail of the incense stick 50 to maintain the raised posture of the incense stick 50.
[0057] Addressing the drawbacks of existing paperweights or incense holders with blind holes for incense insertion, such as the difficulty in processing blind holes, the challenge in controlling their depth, and the tendency to become clogged and affect usability, this paperweight completely eliminates the blind hole structure through a combination design of slot 30 and pressing component 40. This fundamentally avoids these problems and provides a more reliable solution for securing the incense stick 50. The function of securing the incense stick 50 is integrated into the paperweight body 10, allowing users to hold down the paper while writing or drawing, and simultaneously create an atmosphere with aromatherapy. This clever fusion of two functions meets multiple user needs without taking up too much desktop space, greatly enhancing the product's practicality.
[0058] The detachable connection between the pressing component 40 and the pressing groove 20 includes, but is not limited to, the following structures:
[0059] The first structure is: one of the bottom of the pressure groove 20 and the pressing component 40 is provided with a magnet 11, and the other is provided with a magnetic suction component 41 that cooperates with the magnet 11 to generate attraction.
[0060] Generally, a magnet 11 is set at the bottom of the pressure groove 20. The pressing component 40 can be made of magnetic material. Alternatively, a magnet 11 with opposite magnetic poles to the magnet 11 at the bottom of the pressing component 40 can be set at the bottom of the pressing component 40, so that the pressing component 40 can be stably positioned in the pressure groove 20 by using magnetic force.
[0061] Furthermore, since the paperweight body 10 is made of wood, if the magnet 11 were directly fixed to the bottom of the pressing groove 20, the magnet 11 would feel disconnected from the paperweight body 10. Therefore, a blind hole 12 is provided at the bottom of the paperweight body 10, located directly below the pressing groove 20. The magnet 11 is placed inside the blind hole 12, and a sealing element 13 of the same material as the paperweight body 10 is provided at the opening end of the blind hole 12, so that the magnet 11 is completely hidden inside the paperweight body 10, and the magnetic force of the magnet 11 attracts the magnetic attraction element 41 on the pressing element 40. When making the blind hole 12, it is necessary to control the distance between the magnet 11 and the bottom surface of the pressing groove 20 to prevent insufficient magnetic force generated by the magnet 11 and the magnetic attraction element 41 on the pressing element 40. Placing the magnet 11 in the blind hole 12 at the bottom of the paperweight body 10 and using a sealing element 13 of the same material as the paperweight body 10 can effectively protect the magnet 11 from external environmental corrosion and extend the service life of the magnet 11. Meanwhile, this design makes the paperweight's appearance simpler and more aesthetically pleasing, without the obtrusive exposed magnet 11, maintaining the overall integrity and harmony of the paperweight, which aligns with the pursuit of exquisite beauty in stationery and enhances the product's artistic appeal. The blind hole 12 is located directly below the pressing groove 20, making the magnetic force between the magnet 11 and the magnetic attraction element 41 on the paperweight 40 more concentrated and stable. Compared to designs where the magnet 11 is exposed or randomly positioned, this layout reduces the dispersion of magnetic force, ensuring that the pressing element 40 can be more firmly adsorbed within the pressing groove 20, thus more stably holding the incense burner 50. Even when the paperweight is slightly shaken or subjected to external interference, it effectively prevents the pressing element 40 from falling off, ensuring the incense burner 50 remains securely fixed. The concealed magnet 11 design avoids direct contact with the magnet 11 during daily use, reducing the risk of accidental injury caused by the magnet 11 attracting metal objects and improving product safety. In addition, this design allows the paperweight to be placed stably on tabletops of different materials, and its use will not be affected by the interaction between the magnet 11 and the tabletop, thus expanding the applicable scenarios for the paperweight.
[0062] The second structure is an interference fit between the pressing component 40 and the pressing groove 20. This means the bottom of the pressing component 40 and the cross-sectional shape of the pressing groove 20 are identical, such as both being square or circular. This interference fit ensures a tight connection between the pressing component 40 and the pressing groove 20, guaranteeing the pressing component 40's stable placement within the groove 20 without the need for additional auxiliary devices. During the burning of the incense stick 50, even under external interference or vibrations generated by the burning of the incense stick 50 itself, the pressing component 40 is unlikely to shift or fall off, thus reliably holding the tail of the incense stick 50, maintaining its upright posture, and ensuring smooth burning. In paperweight production, this reduces manufacturing difficulty and costs, increases production efficiency, and facilitates large-scale production and market promotion. For consumers, the simple structure means higher product stability and easier maintenance. Because the pressing component 40 and the pressing groove 20 are tightly fitted, the connection between them is unlikely to loosen during long-term repeated use. Compared to other connection methods, interference fit can better withstand frequent installation and disassembly operations, reduce component wear, extend the life of the paperweight, and provide users with a longer and more stable user experience.
[0063] The third structure is, for example Figure 5 As shown, the first and second structures are combined, employing both a magnetic attraction structure and an interference fit, providing a double safety measure and further enhancing the stability of the connection between the pressing component 40 and the paperweight body 10.
[0064] The fourth structure involves a pressure component 40 whose weight generates a torque greater than the restoring torque of the incense stick 50 when it tilts upwards. This means the pressure component 40 has sufficient weight to hold the tail of the incense stick 50 firmly in place on the pressure groove 20, maintaining its tilted posture. This greater weight ensures the incense stick 50 maintains a stable tilted posture throughout the burning process. Even if the incense stick 50 tends to tilt downwards due to structural changes or airflow during combustion, the pressure component 40's sufficient torque effectively suppresses this tendency, preventing it from tipping over and ensuring stable burning. This avoids safety hazards and inconvenience caused by the incense stick 50 tilting. Users do not need to adjust the position of the pressure component 40 or take other complex measures to ensure the stability of the incense stick 50; simply inserting the incense stick 50 into the slot 30 allows the pressure component 40 to automatically stabilize it using its own weight and torque. Moreover, during use, there is no need to frequently check and re-fix the fragrance 50, which reduces the difficulty of operation and maintenance and provides users with a more convenient user experience.
[0065] Based on the above embodiments, the top surface of the paperweight body 10 has a concave structure, forming an ash collection groove 14 to receive the ashes from the burning incense 50. The design of the ash collection groove 14 allows the ashes from the burning incense 50 to fall directly into the concave area on the top surface of the paperweight, eliminating the need for frequent cleaning of the desktop or the placement of additional ash collection containers. During use, users can focus on writing, drawing, or enjoying the aromatherapy atmosphere without worrying about ash scattering and affecting the environment or operation, greatly improving convenience and ease of use. Preventing ash from falling directly onto the desktop prevents burns and stains, which is especially important for desktops made of wood, leather, etc., effectively extending the desktop's lifespan and reducing cleaning and repair costs caused by ash. In addition to the original functions of pressing paper and securing the incense 50, the paperweight now includes an ash collection function, further enriching the product's functionality. This integrated design makes the paperweight a more complete stationery item, reducing the hassle of users preparing multiple items to meet different needs and improving the product's practicality and cost-effectiveness.
[0066] Furthermore, the top surface of the paperweight body 10 has a concave arc shape, and the entrance to the pressure groove 20 is located at the lowest point of the concave arc shape. The top surface of the concave arc shape guides the incense ash to naturally slide down to the lowest point where the entrance to the pressure groove 20 is located. Compared with ordinary concave structures, its special arc design makes the incense ash more easily concentrated under the action of gravity, and less likely to disperse and accumulate on the surface of the paperweight, thereby improving the ash collection efficiency, reducing the difficulty and frequency of cleaning the incense ash, and keeping the desktop and paperweight clean. From the perspective of user experience, the concave arc shape is more in line with ergonomic principles, giving people a smooth and natural visual and tactile experience. During operation, users will find it easier to place and replace the incense stick 50. From an aesthetic point of view, the arc design adds a unique artistic beauty to the paperweight compared to a flat or ordinary concave surface, making it more visually appealing and in line with the pursuit of aesthetics and quality in stationery.
[0067] Furthermore, the pressure groove 20 is a spherical groove, and the pressing component 40 is a spherical structure. The spherical groove matches the spherical pressing component 40, allowing the pressing component 40 to rotate freely and fit within the pressure groove 20. When the incense burner 50 shakes or shifts due to uneven combustion or external airflow, the spherical pressing component 40 can flexibly adjust its position, always maintaining close contact with the tail of the incense burner 50 and applying force evenly, thus stabilizing and holding the incense burner 50 from all directions and preventing it from tilting or falling over. Compared to other shapes of pressure groove 20 and pressing component 40 combinations, the fixing effect is superior. The fit between the spherical pressing component 40 and the spherical groove reduces installation difficulty. When placing the pressing component 40, precise alignment is not required; simply place the sphere into the spherical groove, and it will automatically find a suitable position and stabilize itself due to its own weight and the guiding effect of the spherical surface. During use, if the angle or position of the incense burner 50 needs to be adjusted, the pressing component 40 can easily rotate to adapt to changes, making operation simple and convenient. The spherical groove and spherical structure give the paperweight a unique appearance, distinguishing it from traditional square or simple geometric shapes of the pressure groove 20 and pressing element 40. This rounded, flowing design element enhances the product's artistic and modern feel, improving its overall aesthetics and making it not only a practical stationery item but also a refined work of art, satisfying users' pursuit of beauty and personalization.
[0068] Based on the above embodiments, protective elements 15 are inlaid on both sides of the top surface of the paperweight body 10 along its length. During daily use, the paperweight inevitably collides and rubs against other items. The protective elements 15 on both sides of the top surface can buffer these external forces, reducing bumps and wear on the edges of the paperweight, effectively protecting its integrity and extending its service life. This protective function is particularly important for paperweights made of precious materials or with complex manufacturing processes. When the paperweight is used to hold down paper or fix the incense burner 50, the protective elements 15 can prevent the sharp edges of the paperweight from scratching the paper or the incense burner 50. When writing or drawing, the paper may be damaged due to friction from the edges of the paperweight, and scratches on the surface of the incense burner 50 may affect its burning effect and aesthetics. The presence of the protective elements 15 effectively avoids these problems, ensuring the integrity of the items during use. The design of inlaid protective elements 15 also increases the product's sense of layering and refinement to a certain extent. Protective parts 15 made of different materials, such as wooden paperweights paired with metal protective parts 15, or jade paperweights paired with leather protective parts 15, can enhance the overall texture of the paperweight through the contrast and combination of materials, making it more ornamental and collectible, and meeting consumers' demand for high-quality stationery.
[0069] like Figure 5As shown, the upper part of the paperweight 40 is equipped with a decorative piece, which directly enhances the aesthetics of the paperweight 40 and becomes a highlight of its overall appearance. Whether using exquisite engravings, inlaid gemstones, or uniquely designed shapes, the decorative piece adds an artistic touch to the paperweight, breaking the monotony of traditional paperweights and making it more visually appealing, turning it into an exquisite desktop ornament and enhancing the user's visual enjoyment. Different decorative pieces can satisfy the personalized aesthetics of different users. Users can choose paperweights with different decorative styles according to their preferences, usage scenarios, or moods, such as minimalist modern style, retro style, ethnic style, etc., making the paperweight not only a practical tool, but also an item that showcases personal taste and personality, increasing the product's attractiveness and user recognition. The decorative piece can incorporate various cultural elements, such as traditional auspicious patterns, historical stories, poems, and calligraphy. These elements endow the paperweight with a profound cultural heritage, allowing users to experience cultural edification during use, making the paperweight not only a functional product, but also carrying the function of cultural inheritance and dissemination, thus enhancing the product's added value.
[0070] like Figure 4 As shown, during use, the tail of the incense stick 50 is placed into the slot 30, and then the pressing element 40 is placed into the pressing groove 20. The pressing element 40 is used to press down the tail of the incense stick 50, keeping the incense stick 50 in a raised position. The incense stick 50 can be a type of incense that needs to be burned, or it can be an incense stick that releases its fragrance naturally without burning. After use, simply remove the pressing element 40 to remove the remaining incense stick 50, and the pressing groove 20 and slot 30 can be cleaned easily. Through the unique design of the paperweight body 10, pressing groove 20, slot 30, and pressing element 40, the drawbacks of traditional incense holders, such as easy clogging of blind holes and difficult processing, are eliminated, effectively solving the problems existing in incense holders and providing a new and reliable way to fix the incense stick 50. This paperweight retains the traditional paper-pressing function while adding a new function to hold the incense stick 50, meeting users' needs for an aromatherapy atmosphere during calligraphy and painting creation, and enhancing the product's practicality. Through magnetic fixing, interference fit, and weight torque, the fixing effect of the pressing component 40 on the incense stick 50 is enhanced, ensuring the incense stick 50 remains stable during burning, reducing the risk of tipping over, and improving reliability. The curved concave structure of the ash collection tray 14 facilitates the collection of incense ash, keeping the desktop clean; at the same time, the curved structure also enhances the stability of the incense stick 50, improving ease of use and comfort. The combination of the spherical groove and spherical structure, along with the protective component 15 and decorative components, not only makes the paperweight more artistic but also meets the personalized aesthetic needs of different users, increasing the product's appeal and cultural connotation.
[0071] The above description is only a specific embodiment of the present utility model, but the technical features of the present utility model are not limited thereto. Any changes or modifications made by those skilled in the art within the scope of the present utility model are covered by the patent scope of the present utility model.
Claims
1. A paperweight with incense holder function, characterized in that, include: Paperweight body; The pressure groove is located at one end of the top surface of the paperweight body; A slot, which communicates with a pressure groove, extends at an angle from the top surface of the paperweight body to the bottom surface of the pressure groove; and The pressing component is detachably installed within the pressing groove; The slot is tilted at an angle such that the fragrance body is tilted upwards when inserted, and the pressing member holds the tail of the fragrance body to maintain its tilted posture.
2. A paperweight with incense holder function as described in claim 1, characterized in that, The bottom of the pressing groove and one of the pressing components are provided with a magnet, and the other is provided with a magnetic suction component that cooperates with the magnet to generate an attractive force.
3. A paperweight with incense holder function as described in claim 2, characterized in that, The bottom of the paperweight body has a blind hole for placement, which is located directly below the pressure groove. A magnet is installed in the blind hole, and the opening end of the blind hole is provided with a sealing element of the same material as the paperweight body, so that the magnet is completely hidden inside the paperweight body.
4. A paperweight with incense holder function as described in any one of claims 1 to 3, characterized in that, The pressing component is interference-fitted with the pressing groove.
5. A paperweight with incense holder function as described in claim 1, characterized in that, The torque generated by the weight of the pressing component is greater than the restoring torque generated when the fragrance body is lifted.
6. A paperweight with incense holder function as described in claim 1, characterized in that, The top surface of the paperweight has a concave structure, forming an ash collection groove to receive the ashes from the burning incense.
7. A paperweight with incense holder function as described in claim 6, characterized in that, The top surface of the paperweight body has an arc-shaped concave structure, and the inlet of the pressure groove is located at the lowest point of the arc-shaped concave structure.
8. A paperweight with incense holder function as described in claim 7, characterized in that, The pressure groove is a spherical groove, and the pressing component is a spherical structure.
9. A paperweight with incense holder function as described in claim 1, characterized in that, Protective elements are inlaid on both sides of the top surface of the paperweight along its length.
10. A paperweight with incense holder function as described in claim 1, characterized in that, The upper part of the pressing component is provided with a decorative element.
Citation Information
Patent Citations
Multifunctional device for incense inserting
CN203244245U