Packaging box for sphygmomanometer
By designing a blood pressure monitor packaging box with a transparent lid and a sloping support surface, the problem of buyers not being able to see the blood pressure monitor inside was solved. This achieved the effects of visual display and reduced production costs, improving the purchasing experience. At the same time, it enhanced the buyer's purchasing experience while maintaining the product's resaleability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGSU YUYUE MEDICAL EQUIP&SUPPLY CO LTD
- Filing Date
- 2025-05-27
- Publication Date
- 2026-05-05
AI Technical Summary
The existing blood pressure monitor packaging does not allow buyers to see the blood pressure monitor inside when purchasing, which affects the purchasing experience, and removing the seal will prevent it from being resold.
Design a packaging box for a blood pressure monitor, comprising a box body, an inner liner, and a transparent lid. The inner liner has a separate display cavity for the main unit and cuff, and the transparent lid allows viewing of the main unit and cuff of the blood pressure monitor. The support surface of the inner liner is inclined to support the bottom wall of the main unit.
This improved the visual presentation of the blood pressure monitor, prevented the removal of seals, ensured the product could be resold, enhanced the buyer's purchasing experience, and reduced production and assembly costs.
Smart Images

Figure CN224198218U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the technical field of blood pressure monitor packaging, specifically relating to a packaging box for a blood pressure monitor. Background Technology
[0002] A blood pressure monitor is a medical device used to measure blood pressure. It primarily monitors the pressure exerted by blood against the walls of blood vessels during heart contractions and relaxations. It typically includes a main unit and a cuff. To facilitate transportation, blood pressure monitors are usually placed in a box before leaving the factory. This makes the individual monitors appear more organized, facilitating transport and protecting them from dust, thus ensuring product quality.
[0003] Existing blood pressure monitor packaging typically comes in two forms: a flip-top box, which opens by flipping the lid for easy removal of the monitor, and a drawer-style box, where the inner box opens by pulling out for the same purpose. Both types require sealing the box after the monitor is placed inside. However, with these two types of packaging, buyers cannot see the monitor inside the box. Opening the box requires removing the seal, which is typically glued on, making it non-reusable. Allowing buyers to view the monitor might prevent the product from being sold, while preventing them from seeing it negatively impacts the buying experience. Therefore, improving the visual presentation of the packaging has become a pressing technical problem. Utility Model Content
[0004] This application provides a packaging box for a blood pressure monitor to improve the display effect of the blood pressure monitor.
[0005] The technical solution adopted in this application is as follows:
[0006] A packaging box for a blood pressure monitor, comprising:
[0007] A box body, the box body having an internal cavity with an opening;
[0008] The inner liner is disposed inside the receiving cavity, and the inner liner has a first display cavity for receiving the main unit and a second display cavity for receiving the cuff. The second display cavity is located on the side or end of the first display cavity. A support surface is provided in the first display cavity. The support surface is inclined and used to support the bottom wall of the main unit.
[0009] A box lid, which is disposed on the box body and can cover the opening, and the box lid is transparent.
[0010] By adopting the above technical solution, the transparent lid allows buyers to view the main unit of the blood pressure monitor in the first display chamber and the cuff in the second display chamber, thus improving the visual display effect of the blood pressure monitor on the packaging box. This avoids the situation where buyers need to remove the seal and open the lid to view the blood pressure monitor when purchasing, thereby improving the buyer's purchasing experience without affecting the resale of the blood pressure monitor.
[0011] Meanwhile, since the top surface of the blood pressure monitor's main unit is usually the operation and display surface, it is typically tilted to facilitate user operation and viewing of the display content. Buyers often judge a blood pressure monitor's suitability by observing its operation and display surfaces. In this application, the inner liner includes a first display cavity for housing the main unit. This cavity contains a support surface that is tilted and supports the bottom wall of the main unit. Placing the main unit in the first display cavity ensures that its top surface is parallel to the lid, allowing the buyer to directly observe the operation and display surfaces without any blind spots. This further enhances the packaging's display effect on the blood pressure monitor's main unit, thereby improving the buyer's purchasing experience.
[0012] In addition, since the inner liner has a first display cavity for accommodating the main unit and a second display cavity for accommodating the cuff, the main unit and cuff of the blood pressure monitor are placed independently in the inner liner to isolate the main unit and cuff, thereby avoiding the situation where the main unit and cuff are mixed and affect the display effect of the blood pressure monitor, and thus ensuring the display effect of the blood pressure monitor on the packaging box.
[0013] Optionally, the first display cavity has a first bottom wall, which is inclined so that the first bottom wall constitutes the support surface.
[0014] By adopting the above technical solution, since the first bottom wall of the first display cavity forms a support surface, the production cost of the inner liner is reduced, thereby reducing the production cost of the packaging box. On the other hand, the number of parts required to be assembled when assembling the packaging box is reduced, thereby improving the assembly efficiency of the packaging box. Furthermore, the first bottom wall is directly used to support the bottom wall of the blood pressure monitor, thereby ensuring the stability of the support for the main unit.
[0015] Optionally, the liner is provided with a support rib located at the bottom of the first display cavity, and the bottom of the support rib is flush with the bottom of the liner.
[0016] By adopting the above technical solution, since the support rib is located at the bottom of the first display cavity and the bottom of the support rib is flush with the bottom of the inner liner, after the inner liner is installed into the receiving cavity, the bottom of the support rib and the bottom of the inner liner can both abut against the bottom wall of the receiving cavity. This allows the support rib to support the bottom wall of the first display cavity, thereby improving the support effect of the bottom wall of the first display cavity on the host, and increasing the stability of the host placed in the first display cavity. At the same time, it can further ensure that the operation and display surface of the host can remain parallel to the lid, thereby further ensuring the display effect of the host.
[0017] Optionally, the first display cavity has a first bottom wall, at least a portion of which protrudes toward the bottom of the receiving cavity to form the support rib.
[0018] By adopting the above technical solution, since the support ribs are formed by protruding from at least a portion of the first bottom wall toward the bottom of the accommodating cavity, the production difficulty of the support ribs is reduced, thereby increasing the yield of the inner liner and reducing the production cost of the inner liner. On the other hand, the structural strength of the inner liner is increased, thereby improving the shock resistance of the inner liner. Furthermore, the support ribs also form an extra cavity, which can be used to place other components, instructions, etc., thereby improving the utilization rate of the internal space of the packaging box.
[0019] Optionally, one end of the first display cavity along its length has a first end wall, and the other end along its length has a second end wall. Both the first end wall and the second end wall are inclined so that the distance between the first end wall and the second end wall gradually increases from bottom to top.
[0020] By adopting the above technical solution, since both the first end wall and the second end wall are inclined and the distance between the first end wall and the second end wall gradually increases from bottom to top, the opening area of the first display cavity is increased on the one hand, so as to facilitate the placement of the main unit in the first display cavity and improve the packaging efficiency of the blood pressure monitor. On the other hand, it facilitates the demolding of the inner liner, thereby improving the production efficiency of the inner liner and increasing the yield of the inner liner.
[0021] Optionally, the first end wall is provided with a first positioning part, the first positioning part having a first contact position that can abut against one end of the main unit in the length direction, and the second end wall is provided with a second positioning part, the second positioning part having a second contact position that can abut against the other end of the main unit in the length direction.
[0022] By adopting the above technical solution, since the first end wall is provided with a first positioning part and the second end wall is provided with a second positioning part, after the main unit is placed in the first display cavity, the two ends of the main unit in the length direction can respectively abut against the first positioning part and the second positioning part. The first positioning part and the second positioning part are used to fill the gap between the end of the main unit and the first end wall and the second end wall, so as to realize the positioning and limiting of the main unit, thereby increasing the stability of the main unit. At the same time, it avoids the main unit from shaking relative to the first display cavity, which would cause noise and scratches to the main unit, thus ensuring the product quality of the blood pressure monitor.
[0023] Optionally, the first positioning part extends vertically from the end face away from the first end wall and forms a first contact position, and the top of the first positioning part is flush with the top of the inner lining.
[0024] And / or, the second positioning part extends vertically from the end face opposite to the second end wall and forms the second contact position, and the top of the second positioning part is spaced apart from the top of the liner.
[0025] By adopting the above technical solution, since the end face of the first positioning part away from the first end wall extends vertically and forms the first contact position, the contact area between the first positioning part and the host is increased, thereby improving the positioning and limiting effect of the first positioning part on the host, and thus further increasing the stability of the host; at the same time, since the top of the first positioning part is flush with the top of the inner lining, the contact position between the first contact position and the host is located at the end of the host and close to the host operation and display surface, thereby further improving the positioning and limiting effect on the host.
[0026] Since the end face of the second positioning part extends vertically away from the second end wall and forms the second contact position, the contact area between the second positioning part and the main unit is increased, thereby improving the positioning and limiting effect of the second positioning part on the main unit, and further increasing the stability of the main unit. At the same time, since the top of the second positioning part is spaced apart from the top of the inner liner, the second positioning part can avoid the top of the first display cavity, so as to facilitate the placement of the main unit in the first display cavity, thereby improving the packaging efficiency of the blood pressure monitor.
[0027] Optionally, the second display cavity has a second bottom wall, a first side wall, and a second side wall. The first side wall and the second side wall are located on both sides of the second bottom wall, and an arc-shaped transition surface is provided between the second bottom wall and the first side wall and the second side wall.
[0028] By adopting the above technical solution, since the cuff of a blood pressure monitor is usually rolled up, and in this application, an arc-shaped transition surface is provided between the first side wall, the second side wall, and the second bottom wall, so that after the cuff is placed in the second display cavity, the bottom two sides of the cuff can contact the arc-shaped transition surface, thereby increasing the contact area between the cuff and the second display cavity, thereby increasing the stability of the cuff, and also increasing the structural strength of the cavity wall of the second display cavity, so as to improve the support and limiting effect of the second display cavity on the cuff.
[0029] Optionally, the liner is provided with a first clearance opening, which is located on both sides of the first display cavity and communicates with the first display cavity;
[0030] And / or, the liner is provided with a second clearance opening, which is located at both ends of the second display cavity and is connected to the second display cavity.
[0031] By adopting the above technical solution, since the first clearance openings are located on both sides of the first display cavity and are connected to the first display cavity, when removing the main unit from the first display cavity, fingers can be inserted into the two first clearance openings, and then the main unit can be gripped with the fingers to remove the main unit from the first display cavity, thereby achieving the effect of facilitating the removal of the main unit from the first display cavity; at the same time, the setting of the first clearance openings can also reduce the amount of material required when producing the liner, thereby reducing the production cost of the liner; in addition, while ensuring the stability of the main unit in the first display cavity, it can also reduce the contact area between the main unit and the cavity wall of the first display cavity, thereby reducing the force required to remove the main unit from the first display cavity, thus also achieving the effect of facilitating the removal of the main unit from the first display cavity.
[0032] Since the second clearance openings are located on both sides of the second display cavity and communicate with the first display cavity, when removing the cuff from the second display cavity, fingers can be inserted into the two second clearance openings and then used to grip the cuff to remove it from the second display cavity, thus facilitating the removal of the cuff from the second display cavity. At the same time, the design of the second clearance openings can also reduce the amount of material required when producing the lining, thereby reducing the production cost of the lining. In addition, while ensuring the stability of the cuff in the second display cavity, it can also reduce the contact area between the cuff and the cavity wall of the second display cavity, thereby reducing the force required to remove the cuff from the second display cavity, thus also facilitating the removal of the cuff from the second display cavity.
[0033] Optionally, the support surface is provided with a flexible pull strip, which extends along the inner contour of the first display cavity and extends to the outside of the first display cavity.
[0034] By adopting the above technical solution, since the flexible pull strap extends along the internal contour of the first display cavity and extends to the outside of the first display cavity, after the main unit is placed in the first display cavity, the flexible pull strap has a portion exposed outside the first display cavity. Therefore, when the main unit is removed from the first display cavity, an upward pulling force can be applied to the portion of the flexible pull strap located outside the first display cavity, so that the main unit gradually detaches from the first display cavity under the upward pulling force of the flexible pull strap, thereby further reducing the difficulty of removing the main unit from the first display cavity, and thus achieving the effect of facilitating the removal of the main unit from the first display cavity. At the same time, the setting of the flexible pull strap can also reduce the noise generated by the friction between the external contour of the main unit and the cavity wall of the first display cavity to a certain extent.
[0035] Optionally, the lid has a flange on its periphery, which can extend between the box body and the liner. The lid also has an operating hole for the user's hand to enter and / or a pull tab for the user to hold.
[0036] By adopting the above technical solution, since the flange can extend between the box body and the inner lining, the box body and the inner lining can squeeze the flange to fix the box lid, thereby reducing the difficulty of fixing the box lid; and since the side of the box lid is provided with an operating hole and / or a pull tab for the user to insert their hand, when opening the box lid, the user can insert their finger into the operating hole and apply an upward pulling force to the box lid, or hold the pull tab with their finger and apply an upward pulling force to the pull tab, thereby reducing the difficulty of opening the box lid and improving the efficiency of taking out the blood pressure monitor.
[0037] Optionally, the box lid has a display area and a graphic area. The display area is disposed opposite to the first display cavity and at least part of the second display cavity, and the graphic area is disposed away from the first display cavity. The graphic area is provided with identification text and / or pictures.
[0038] By adopting the above technical solution, since the graphic area is equipped with labeled text or pictures, manufacturer information, blood pressure monitor information, precautions, and other text or pictures can be placed in the graphic area, so that the purchaser can clearly understand the product and improve the purchaser's shopping experience; at the same time, since the graphic area is set to avoid the first display cavity, the text or pictures set in the graphic area can avoid the host, thereby ensuring the display effect of the host.
[0039] Optionally, the box body has an outer wall and an inner wall located inside the outer wall, with cushioning cotton provided between the outer wall and the inner wall.
[0040] By adopting the above technical solution, the cushioning cotton between the outer and inner walls of the box can improve the shock absorption effect of the packaging box, thereby improving the cushioning and shock absorption effect of the packaging box on the blood pressure monitor. This enhances the protection effect of the packaging box on the blood pressure monitor, preventing the blood pressure monitor from malfunctioning due to vibration during transportation, and thus ensuring the product quality of the blood pressure monitor.
[0041] Due to the adoption of the above technical solution, the beneficial effects achieved by this application are as follows:
[0042] 1. The packaging box in this application includes a box body, an inner liner, and a box lid. The box body has an internal cavity with an opening. The inner liner is located inside the cavity and has a first display cavity for housing the main unit and a second display cavity for housing the cuff. The second display cavity is located on the side or end of the first display cavity. A support surface is provided in the first display cavity. The support surface is inclined and used to support the bottom wall of the main unit. The box lid is located on the box body and can cover the opening. The box lid is transparent, so that the buyer can view the main unit of the blood pressure monitor in the first display cavity and the cuff of the blood pressure monitor in the second display cavity through the box lid. This improves the visual display effect of the blood pressure monitor in the packaging box, thereby avoiding the situation where the buyer needs to remove the seal and open the box lid to view the blood pressure monitor when purchasing. This improves the buyer's purchasing experience without affecting the resale of the blood pressure monitor product.
[0043] 2. The first display cavity in this application has a first bottom wall, which is inclined so that the first bottom wall forms a support surface. This reduces the production cost of the inner liner, thereby reducing the production cost of the packaging box. It also reduces the number of parts required to assemble the packaging box, thereby improving the assembly efficiency of the packaging box. Furthermore, it enables the direct use of the first bottom wall to support the bottom wall of the blood pressure monitor, thereby ensuring the stability of the main unit.
[0044] 3. The liner in this application is provided with a support rib located at the bottom of the first display cavity. The bottom of the support rib is flush with the bottom of the liner. After the liner is installed into the receiving cavity, the bottom of the support rib and the bottom of the liner can both abut against the bottom wall of the receiving cavity. The support rib can support the bottom wall of the first display cavity, thereby improving the support effect of the bottom wall of the first display cavity on the host. This increases the stability of the host placed in the first display cavity and further ensures that the operation and display surface of the host can remain parallel to the lid, thereby further ensuring the display effect of the host. Attached Figure Description
[0045] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings:
[0046] Figure 1 This is an exploded view of the packaging box described in one embodiment of this application;
[0047] Figure 2 This is a structural schematic diagram of the lining from one perspective in one embodiment of this application;
[0048] Figure 3 This is a schematic diagram of the lining from a second perspective in one embodiment of this application;
[0049] Figure 4 This is a schematic diagram of the lining from a third perspective in one embodiment of this application;
[0050] Figure 5 This is a schematic diagram of the lining from a fourth perspective in one embodiment of this application;
[0051] Figure 6 This is a cross-sectional view of the liner described in one embodiment of this application;
[0052] Figure 7 This is a schematic diagram of another perspective of the cross-sectional view of the lining described in one embodiment of this application;
[0053] Figure 8 This is a cross-sectional view of the lining described in one embodiment of this application from another perspective;
[0054] Figure 9 This is a schematic diagram of the lining structure described in another embodiment of this application, mainly showing the flexible tension strap;
[0055] Figure 10 This is a cross-sectional view of the lining described in another embodiment of this application, mainly showing the connection relationship between the flexible strap and the lining;
[0056] Figure 11 This is a cross-sectional view of the liner described in another embodiment of this application, mainly showing the state of the box lid being placed on the flexible pull strap after the box body is closed;
[0057] Figure 12 This is a cross-sectional view of the box body according to one embodiment of this application, mainly showing the cushioning cotton;
[0058] Figure 13 This is a plan view of the box lid after it has been unfolded according to one embodiment of this application;
[0059] Figure 14 This is a plan view of the box body after it has been unfolded according to one embodiment of this application.
[0060] Figure label:
[0061] 1. Box body; 11. Receiving cavity; 12. Outer wall; 13. Inner wall; 121. Cushioning cotton; 2. Lining; 21. First display cavity; 211. Support surface; 212. Support rib; 213. First end wall; 214. First positioning part; 215. Second end wall; 216. Second positioning part; 217. First clearance opening; 218. Flexible pull strap; 22. Second display cavity; 221. Second bottom wall; 222. First side wall; 223. Second side wall; 224. Arc-shaped transition surface; 225. Second clearance opening; 3. Box lid; 31. Flanged edge; 32. Operating hole; 33. Pull tab. Detailed Implementation
[0062] To more clearly illustrate the overall concept of this application, a detailed explanation is provided below with reference to the accompanying drawings.
[0063] Many specific details are set forth in the following description in order to provide a full understanding of this application. However, this application may also be implemented in other ways different from those described herein. Therefore, the scope of protection of this application is not limited to the specific embodiments disclosed below.
[0064] Furthermore, it should be understood in the description of this application that the terms "top", "bottom", "inner", "outer", "axial", "radial", "circumferential", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application 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, and therefore should not be construed as a limitation of this application.
[0065] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "linking," 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 communication connection; 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. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.
[0066] In this application, unless otherwise expressly specified and limited, the "above" or "below" of the second feature can mean that the first and second features are in direct contact, or that the first and second features are in indirect contact through an intermediate medium. In the description of this specification, references to terms such as "implementation," "example," "a particular embodiment," "example," or "specific example," etc., indicate that the specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described can be combined in any suitable manner in one or more embodiments or examples.
[0067] Reference Figures 1 to 14 A packaging box for a blood pressure monitor is disclosed, comprising a box body 1, an inner liner 2, and a box lid 3. The box body 1 has an internal receiving cavity 11 with an opening. The inner liner 2 is disposed inside the receiving cavity 11 and has a first display cavity 21 for accommodating the main unit and a second display cavity 22 for accommodating the cuff. The second display cavity 22 is located on the side or end of the first display cavity 21. A support surface 211 is provided in the first display cavity 21. The support surface 211 is inclined and used to support the bottom wall of the main unit. The box lid 3 is disposed on the box body 1 and can cover the opening. The box lid 3 is transparent.
[0068] Because the box lid 3 is transparent, buyers can view the main unit of the blood pressure monitor in the first display chamber 21 and the cuff of the blood pressure monitor in the second display chamber 22 through the box lid 3. This improves the visual display effect of the blood pressure monitor on the packaging box, thereby avoiding the situation where buyers need to remove the seal and open the box lid 3 if they want to view the blood pressure monitor when purchasing. This improves the buyer's purchasing experience without affecting the resale of the blood pressure monitor product.
[0069] Meanwhile, since the top surface of the blood pressure monitor's main unit is usually the operation and display surface, it is typically tilted to facilitate user operation and viewing of the display content. Buyers often judge a blood pressure monitor's suitability by observing its operation and display surfaces. In this application, the inner liner 2 includes a first display cavity 21 for housing the main unit. A support surface 211 is provided within the first display cavity 21, tilted to support the bottom wall of the main unit. Placing the main unit in the first display cavity 21 ensures that the top surface of the main unit is parallel to the box cover 3, allowing buyers to directly observe the operation and display surfaces of the main unit without any blind spots through the box cover 3. This further enhances the visual display effect of the blood pressure monitor's main unit on the packaging, thereby improving the buyer's purchasing experience.
[0070] In addition, since the inner liner 2 has a first display cavity 21 for accommodating the main unit and a second display cavity 22 for accommodating the cuff, the main unit and cuff of the blood pressure monitor are placed independently in the inner liner 2 to isolate the main unit and cuff, thereby avoiding the situation where the main unit and cuff are mixed and affect the visual display effect of the blood pressure monitor, thus ensuring the visual display effect of the blood pressure monitor on the packaging box.
[0071] This application does not specifically limit the positional relationship between the first display cavity 21 and the second display cavity 22. Preferably, refer to Figures 1 to 4 The second display cavity 22 is located on the side of the first display cavity 21 to reduce the length of the packaging box, thereby facilitating the display of the packaging box.
[0072] In other embodiments, the second display cavity 22 may also be located at the end of the first display cavity 21 to reduce the width of the packaging box.
[0073] This application does not specify the formation method of the support surface 211; preferably, refer to Figures 4 to 7 The first display cavity 21 has a first bottom wall, which is inclined so that the first bottom wall forms a support surface 211. This reduces the production cost of the inner liner 2, thereby reducing the production cost of the packaging box. It also reduces the number of parts required to assemble the packaging box, thereby improving the assembly efficiency of the packaging box. Furthermore, it enables the direct use of the first bottom wall to support the bottom wall of the blood pressure monitor, thereby ensuring the stability of the main unit.
[0074] In other embodiments, a support block is provided in the first display cavity 21, and the top end face of the support block is inclined so that the top end face of the support block forms a support surface 211.
[0075] This application does not specifically limit the tilt angle of the support surface 211. Preferably, the tilt angle of the support surface 211 is equal to the tilt angle of the operation and display surface on the top of the host. Then, after the host is placed in the first display cavity 21, the operation and display surface of the host can be completely parallel to the cover 3 to ensure the visual display effect of the host.
[0076] In other embodiments, the tilt angle of the support surface 211 may be greater than or less than the tilt angle of the operation and display surface, and the angle difference between the two is within a small range, for example, between -3° and 3°.
[0077] In a preferred embodiment, the inner liner 2 is provided with a support rib 212 located at the bottom of the first display cavity 21. The bottom of the support rib 212 is flush with the bottom of the inner liner 2. After the inner liner 2 is installed into the receiving cavity 11, the bottom of the support rib 212 and the bottom of the inner liner 2 can both abut against the bottom wall of the receiving cavity 11. The support rib 212 can support the bottom wall of the first display cavity 21, thereby improving the support effect of the bottom wall of the first display cavity 21 on the host, thus increasing the stability of the host placed in the first display cavity 21. At the same time, it can further ensure that the operation and display surface of the host can remain parallel to the cover 3, thereby further ensuring the visual display effect of the host.
[0078] This application does not specify the formation method of the support reinforcement position 212. Preferably, refer to Figures 5 to 11 The first display cavity 21 has a first bottom wall, at least a portion of which protrudes toward the bottom of the receiving cavity 11 to form a support rib 212. This reduces the production difficulty of the support rib 212, thereby increasing the yield of the inner liner 2 and reducing its production cost. It also increases the structural strength of the inner liner 2, thereby improving its shock resistance. Furthermore, it creates an extra cavity at the support rib 212, allowing other components, instructions, etc., to be placed there, thus improving the utilization of the internal space of the packaging box.
[0079] Preferably, the first display cavity 21 has a deeper end and a shallower end opposite to the deeper end, and the support rib 212 is arranged close to the deeper end so that the structural strength of the deeper end can be increased by the support rib 212, thereby improving the support stability of the host.
[0080] In other embodiments, the bottom of the liner 2 is provided with a support block or support rib, which is located at the bottom of the first display cavity 21, so that the support block or support rib forms a support rib position 212.
[0081] In a preferred embodiment, refer to Figure 3 , Figure 4 , Figure 6 , Figure 7 and Figure 8 The first display cavity 21 has a first end wall 213 at one end along its length and a second end wall 215 at the other end along its length. Both the first end wall 213 and the second end wall 215 are inclined so that the distance between the first end wall 213 and the second end wall 215 gradually increases from bottom to top.
[0082] It is understandable that the first end wall 213 is inclined in the direction away from the second end wall 215 from bottom to top, and the second end wall 215 is inclined in the direction away from the first end wall 213 from bottom to top.
[0083] Since both the first end wall 213 and the second end wall 215 are inclined, and the distance between the first end wall 213 and the second end wall 215 gradually increases from bottom to top, the opening area of the first display cavity 21 is increased on the one hand, so as to facilitate the placement of the main unit in the first display cavity 21 and improve the packaging efficiency of the blood pressure monitor. On the other hand, it facilitates the demolding of the inner liner 2, thereby improving the production efficiency of the inner liner 2 and increasing the yield of the inner liner 2.
[0084] Furthermore, refer to Figure 3 , Figure 4 , Figure 6 , Figure 7 and Figure 8 The first end wall 213 is provided with a first positioning part 214, which has a first contact position that can abut against one end of the main unit in the length direction. The second end wall 215 is provided with a second positioning part 216, which has a second contact position that can abut against the other end of the main unit in the length direction.
[0085] Since the first end wall 213 is provided with a first positioning part 214 and the second end wall 215 is provided with a second positioning part 216, after the main unit is placed in the first display cavity 21, the two ends of the main unit in the length direction can respectively abut against the first positioning part 214 and the second positioning part 216. The first positioning part 214 and the second positioning part 216 are used to fill the gap between the end of the main unit and the first end wall 213 and the second end wall 215, so as to realize the positioning and limiting of the main unit, thereby increasing the stability of the main unit. At the same time, it avoids the main unit from shaking relative to the first display cavity 21, which would cause noise and scratches to the main unit, thus ensuring the product quality of the blood pressure monitor.
[0086] This application does not specifically limit the formation of the first positioning part 214 and the second positioning part 216. Preferably, the first positioning part 214 is formed by at least a portion of the first end wall 213 protruding toward the direction of the second end wall 215, and the second positioning part 216 is formed by at least a portion of the second end wall 215 protruding toward the direction of the first end wall 213, so as to reduce the production cost of the inner liner 2 and improve the production efficiency of the inner liner 2.
[0087] In other implementation examples, the first positioning part 214 may also be a block structure attached to the first end wall 213, and the second positioning part 216 may also be a block structure attached to the second end wall 215.
[0088] This application does not specifically limit the shape of the first contact position. Preferably, the first positioning part 214 extends vertically away from the end face of the first end wall 213 and forms the first contact position. The top of the first positioning part 214 is flush with the top of the inner liner 2.
[0089] Understandably, the first contact point is a plane.
[0090] Since the first positioning part 214 extends vertically away from the end face of the first end wall 213 and forms the first contact position, the contact area between the first positioning part 214 and the host is increased, thereby improving the positioning and limiting effect of the first positioning part 214 on the host, and further increasing the stability of the host. At the same time, since the top of the first positioning part 214 is flush with the top of the inner liner 2, the contact position between the first contact position and the host is located at the end of the host and close to the host operation and display surface, thereby further improving the positioning and limiting effect of the host.
[0091] In other implementation examples, the first contact point can also be other shapes such as an arc surface or a sphere.
[0092] This application does not specifically limit the shape of the second contact position. Preferably, the second positioning part 216 extends vertically away from the end face of the second end wall 215 and forms the second contact position. The top of the second positioning part 216 is spaced apart from the top of the inner liner 2.
[0093] Understandably, the second contact point is planar.
[0094] Since the second positioning part 216 extends vertically away from the end face of the second end wall 215 and forms a second contact position, the contact area between the second positioning part 216 and the main unit is increased, thereby improving the positioning and limiting effect of the second positioning part 216 on the main unit, and further increasing the stability of the main unit. At the same time, since the top of the second positioning part 216 is spaced apart from the top of the inner liner 2, the second positioning part 216 can avoid the top of the first display cavity 21, so as to facilitate the placement of the main unit in the first display cavity 21, thereby improving the packaging efficiency of the blood pressure monitor.
[0095] In other embodiments, the second contact point can also be other shapes such as an arc surface or a sphere.
[0096] Preferably, the first display cavity 21 has a deeper end and a shallower end opposite to the deeper end. The end wall located at the deeper end forms the first end wall 213, and the end wall located at the shallower end forms the second end wall 215. This allows the second positioning part 216 to be located at the shallower end of the second display cavity 22, thereby facilitating the placement of the main unit in the first display cavity 21.
[0097] Preferably, the two opposite sidewalls of the first display cavity 21 are also inclined to further increase the cavity area of the first display cavity 21, so as to further facilitate the placement of the host in the first display cavity 21.
[0098] This application does not specifically limit the shape of the second display cavity 22; preferably, refer to... Figure 8 The second display cavity 22 has a second bottom wall 221, a first side wall 222 and a second side wall 223. The first side wall 222 and the second side wall 223 are located on both sides of the second bottom wall 221, and an arc-shaped transition surface 224 is provided between the second bottom wall 221 and the first side wall 222 and the second side wall 223.
[0099] Understandably, the bottom shape of the second display cavity 22 is adapted to the shape of the rolled-up sleeve.
[0100] Since the cuff of a blood pressure monitor is usually rolled up, this application provides an arc-shaped transition surface 224 between the first sidewall 222 and the second sidewall 223 and the second bottom wall 221. After the cuff is placed in the second display cavity 22, the bottom sides of the cuff can contact the arc-shaped transition surface 224, thereby increasing the contact area between the cuff and the second display cavity 22, thus increasing the stability of the cuff. At the same time, it can also increase the structural strength of the cavity wall of the second display cavity 22, thereby improving the support and limiting effect of the second display cavity 22 on the cuff.
[0101] In other embodiments, the design of the arc transition surface 224 can be omitted so that the bottom of the second display cavity 22 has a right angle.
[0102] To facilitate the removal of the main unit from the first display cavity 21, any of the following embodiments can be adopted:
[0103] Implementation Method 1, in this implementation method, refer to Figures 2 to 4 The inner liner 2 is provided with a first clearance opening 217. The first clearance opening 217 is located on both sides of the first display cavity 21 and communicates with the first display cavity 21. When the main unit is taken out of the first display cavity 21, fingers can be inserted into the two first clearance openings 217 and then the main unit can be gripped with the fingers to remove the main unit from the first display cavity 21, thereby achieving the effect of making it easier to remove the main unit from the first display cavity 21.
[0104] Meanwhile, the setting of the first clearance opening 217 can also reduce the amount of material required when producing the inner liner 2, thereby reducing the production cost of the inner liner 2; in addition, it can also reduce the contact area between the main unit and the cavity wall of the first display cavity 21 while ensuring the stability of the main unit in the first display cavity 21, thereby reducing the force required to remove the main unit from the first display cavity 21, and thus achieving the same effect of making it easier to remove the main unit from the first display cavity 21.
[0105] Preferably, the first clearance opening 217 is located in the middle of the length direction of the first display cavity 21. On the one hand, it increases the aesthetics of the inner liner 2. On the other hand, when the main unit is taken out of the first display cavity 21, it can also make the main unit as balanced as possible in the length direction, so as to further facilitate the removal of the main unit.
[0106] Implementation Method Two: In this implementation method, refer to... Figures 9 to 11 The support surface 211 is provided with a flexible pull strap 218, which extends along the internal contour of the first display cavity 21 and extends to the outside of the first display cavity 21. After the main unit is placed in the first display cavity 21, the flexible pull strap 218 has a portion exposed outside the first display cavity 21. Thus, when the main unit is removed from the first display cavity 21, an upward pulling force can be applied to the portion of the flexible pull strap 218 outside the first display cavity 21, so that the main unit gradually detaches from the first display cavity 21 under the upward pulling force of the flexible pull strap 218, thereby further reducing the difficulty of removing the main unit from the first display cavity 21 and achieving the effect of facilitating the removal of the main unit from the first display cavity 21. At the same time, the setting of the flexible pull strap 218 can also reduce the noise generated by the friction between the outer contour of the main unit and the cavity wall of the first display cavity 21 to a certain extent.
[0107] Preferably, the flexible pull strap 218 is arranged along the length direction of the first display cavity 21, and the flexible pull strap 218 extends from the shallow end of the first display cavity 21 to the outside of the first display cavity 21, so as to further facilitate the removal of the main unit from the first display cavity 21.
[0108] It should be noted that in this embodiment, the design of the second positioning part 216 can be omitted, so that the flexible pull belt 218 can be used to squeeze, position and limit the main unit.
[0109] This application does not specify the method of fixing the flexible pull strap 218. Preferably, the support rib position 212 is provided with a through hole for the flexible pull strap 218 to pass through. One end of the flexible pull strap 218 extends out of the first display cavity 21 through the through hole, and the end of the flexible pull strap 218 passing through the through hole is provided with a blocking rib. The blocking rib can cooperate with the support rib position 212 to stop and fix the flexible pull strap 218.
[0110] In other embodiments, the flexible pull strip 218 can also be fixedly connected to the cavity wall or support rib 212 of the first display cavity 21 by adhesive bonding or heat pressing.
[0111] This application does not specifically limit the material used to manufacture the flexible pull strip 218. Preferably, the flexible pull strip 218 is made of synthetic fibers to reduce the production cost of the flexible pull strip 218. In other embodiments, the flexible pull strip 218 can also be made of natural fibers, synthetic fibers, rubber, or other materials.
[0112] Of course, in other embodiments, a combination of the above-described embodiments one and two can be used to facilitate the removal of the host from the first display cavity 21.
[0113] In a preferred embodiment, refer to Figures 2 to 4 The inner lining 2 is provided with a second clearance opening 225. The second clearance opening 225 is located at both ends of the second display cavity 22 and is connected to the second display cavity 22. When the cuff is removed from the second display cavity 22, fingers can be inserted into the two second clearance openings 225 and then the cuff can be gripped with the fingers to remove the cuff from the second display cavity 22, thereby achieving the effect of making it easy to remove the cuff from the second display cavity 22.
[0114] Meanwhile, the second clearance opening 225 can reduce the amount of material required when producing the inner liner 2, thereby reducing the production cost of the inner liner 2. In addition, while ensuring the stability of the cuff in the second display cavity 22, it can also reduce the contact area between the cuff and the cavity wall of the second display cavity 22, thereby reducing the force required to remove the cuff from the second display cavity 22, thus achieving the same effect of making it easier to remove the cuff from the second display cavity 22.
[0115] Preferably, the second clearance opening 225 is located in the middle of the width direction of the second display cavity 22. On the one hand, it improves the appearance quality of the lining 2, and on the other hand, it can ensure that the cuff is subjected to balanced force when it is taken out, so as to facilitate the removal of the cuff from the second display cavity 22.
[0116] This application does not specify the material for the inner liner 2. Preferably, the inner liner 2 is made of PP blister material to reduce the production cost of the packaging box while giving the inner liner 2 a certain structural strength. In other embodiments, the inner liner 2 may also be made of materials such as foam.
[0117] This application does not specifically limit the material used to make the lid 3. Preferably, the lid 3 is made of PET blister material to reduce the production cost of the packaging box, while also giving the lid 3 a certain degree of rigidity to ensure the protective effect of the lid 3 on the blood pressure monitor. In other embodiments, the lid 3 can also be made of PVC material, as long as the lid 3 can be transparent and have a certain degree of rigidity.
[0118] This application does not specify the connection method between the lid 3 and the body 1. Preferably, refer to... Figure 1 and Figure 13 The lid 3 has a flange 31 on its periphery. The flange 31 can extend between the box body 1 and the inner liner 2. The lid 3 can be fixed by the mutual compression of the flange 31 by the box body 1 and the inner liner 2, thereby reducing the difficulty of fixing the lid 3.
[0119] It is understood that in this embodiment, the lid 3 is a sheet structure with a set thickness, and the flange 31 is formed by cutting and folding the sheet structure.
[0120] To facilitate the removal of the lid 3 from the box body 1, it can be implemented using any of the following embodiments:
[0121] Example 1, in this example, refers to Figure 1 The side of the lid 3 is provided with an operation hole 32 for the user to insert his / her hand. When removing the lid 3 from the body 1, the user can insert his / her finger into the operation hole 32 and apply an upward pulling force to the lid 3 to separate the lid 3 from the body 1, thereby reducing the difficulty of opening the lid 3 and improving the efficiency of taking out the blood pressure monitor.
[0122] This application does not impose a specific limit on the number of operating holes 32. Preferably, only one operating hole 32 is provided to reduce the manufacturing difficulty of the lid 3. In other embodiments, multiple operating holes 32 may be provided along the circumference of the lid 3.
[0123] Example 2, in this example, refer to Figure 13 The lid 3 has a pull tab 33 on its side for the user to hold. When removing the lid 3 from the body 1, the user can use their fingers to hold the pull tab 33 and apply an upward pull force to separate the lid 3 from the body 1, thereby reducing the difficulty of opening the lid 3 and improving the efficiency of taking out the blood pressure monitor.
[0124] This application does not specify the number of pull tabs 33. Preferably, multiple pull tabs 33 are provided along the circumference of the lid 3 so that the user can remove the lid 3 from multiple directions. In other embodiments, only one pull tab 33 may be provided.
[0125] It should be noted that in the above-mentioned scheme of setting the flexible pull strap 218, the operation hole 32 and the pull tab 33 can also be omitted. Furthermore, the length of the flexible pull strap 218 outside the first display cavity 21 is greater than three times the length of the flange 31. This allows the flange 31 to be used to insert the portion of the flexible pull strap 218 outside the first display cavity 21 between the inner liner 2 and the box body 1 when the box cover 3 is installed onto the box body 1. Simultaneously, after the flange 31 is fully inserted between the box body 1 and the inner liner 2, the flexible pull strap 218 still has a position outside the box body 1. The flexible pull strap 218 can be pulled to remove the lid 3 from the box body 1. This allows the flange 31 to move outward under the action of the flexible pull strap 218, eventually separating the flange 31 from the box body 1 and the inner liner 2. Then, the lid 3 can be removed from the box body 1 by holding the flange 31. By continuing to pull the flexible pull strap 218, the main unit can also be removed from the first display cavity 21, increasing the flexibility of the flexible pull strap 218.
[0126] In other embodiments, the lid 3 is a thin film structure, and the lid 3 can also be attached to the box body 1 by hot pressing or adhesive bonding.
[0127] In a preferred embodiment, the lid 3 has a display area and a graphic area. The display area is disposed opposite to the first display cavity 21 and at least part of the second display cavity 22, and the graphic area is disposed away from the first display cavity 21. The graphic area is provided with identification text and / or pictures.
[0128] Understandably, the graphic area can be used to paste text stickers and / or pictures, or the graphic area can be used to print text and / or pictures.
[0129] Because the graphic area contains labeled text or pictures, manufacturer information, blood pressure monitor information, precautions, and other text or pictures can be placed in the graphic area, so that buyers can clearly understand the product and improve their purchasing experience. At the same time, because the graphic area and the first display cavity 21 are designed to avoid each other, the text or pictures placed in the graphic area can avoid the host, thus ensuring the visual display effect of the host.
[0130] In a preferred embodiment, refer to Figure 12 The box body 1 has an outer wall 12 and an inner wall 13 located inside the outer wall 12. A cushioning cotton 121 is provided between the outer wall 12 and the inner wall 13, which can improve the shock absorption effect of the packaging box, thereby improving the cushioning and shock absorption effect of the packaging box on the blood pressure monitor, thus improving the protection effect of the packaging box on the blood pressure monitor, avoiding the situation where the blood pressure monitor is prone to failure due to vibration during transportation, and thus ensuring the product quality of the blood pressure monitor.
[0131] This application does not specify the material for manufacturing box 1; preferably, refer to... Figure 14 The box body 1 is made of cardboard through cutting, folding, and assembly to reduce the production cost of the packaging box. In other embodiments, the box body 1 can also be made of materials with a certain degree of rigidity, such as foam or plastic.
[0132] For any parts not mentioned in this application, existing technologies may be used or referenced.
[0133] The various embodiments in this specification are described in a progressive manner. The same or similar parts between the various embodiments can be referred to each other. Each embodiment focuses on describing the differences from other embodiments.
[0134] The above description is merely an embodiment of this application and is not intended to limit the scope 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 the claims of this application.
Claims
1. A packaging box for a blood pressure monitor, characterized in that, include: The box body (1) has an internal cavity (11) with an opening; The inner liner (2) is disposed inside the receiving cavity (11), and the inner liner (2) has a first display cavity (21) for accommodating the main unit and a second display cavity (22) for accommodating the sleeve. The second display cavity (22) is located on the side or end of the first display cavity (21). A support surface (211) is provided in the first display cavity (21). The support surface (211) is inclined and used to support the bottom wall of the main unit. A lid (3) is provided on the box body (1) and can cover the opening. The lid (3) is transparent.
2. The packaging box for a blood pressure monitor according to claim 1, characterized in that, The first display cavity (21) has a first bottom wall, which is inclined so that the first bottom wall forms the support surface (211).
3. The packaging box for a blood pressure monitor according to claim 1, characterized in that, The inner lining (2) is provided with a support rib (212) located at the bottom of the first display cavity (21), and the bottom of the support rib (212) is flush with the bottom of the inner lining (2).
4. A packaging box for a blood pressure monitor according to claim 3, characterized in that, The first display cavity (21) has a first bottom wall, at least a portion of which is provided to protrude toward the bottom of the receiving cavity (11) to form the support rib (212).
5. A packaging box for a blood pressure monitor according to any one of claims 1-4, characterized in that, The first display cavity (21) has a first end wall (213) at one end along its length and a second end wall (215) at the other end along its length. Both the first end wall (213) and the second end wall (215) are inclined so that the distance between the first end wall (213) and the second end wall (215) gradually increases from bottom to top.
6. A packaging box for a blood pressure monitor according to claim 5, characterized in that, The first end wall (213) is provided with a first positioning part (214), which has a first contact position that can abut against one end of the main unit in the length direction. The second end wall (215) is provided with a second positioning part (216), which has a second contact position that can abut against the other end of the main unit in the length direction.
7. A packaging box for a blood pressure monitor according to claim 6, characterized in that, The first positioning part (214) extends vertically away from the end face of the first end wall (213) and forms a first contact position. The top of the first positioning part (214) is flush with the top of the inner liner (2). And / or, the second positioning part (216) extends vertically away from the end face of the second end wall (215) and forms the second contact position, and the top of the second positioning part (216) is spaced apart from the top of the liner (2).
8. A packaging box for a blood pressure monitor according to any one of claims 1-4, characterized in that, The second display cavity (22) has a second bottom wall (221), a first side wall (222) and a second side wall (223). The first side wall (222) and the second side wall (223) are located on both sides of the second bottom wall (221), and an arc-shaped transition surface (224) is provided between the second bottom wall (221) and the first side wall (222) and the second side wall (223).
9. A packaging box for a blood pressure monitor according to any one of claims 1-4, characterized in that, The liner (2) is provided with a first clearance opening (217), which is located on both sides of the first display cavity (21) and communicates with the first display cavity (21); And / or, the liner (2) is provided with a second clearance opening (225), the second clearance opening (225) is located at both ends of the second display cavity (22) and is connected to the second display cavity (22).
10. A packaging box for a blood pressure monitor according to any one of claims 1-4, characterized in that, The support surface (211) is provided with a flexible pull strip (218), which extends along the inner contour of the first display cavity (21) and extends to the outside of the first display cavity (21).
11. A packaging box for a blood pressure monitor according to any one of claims 1-4, characterized in that, The box cover (3) has a flange (31) on its periphery, which can extend between the box body (1) and the inner liner (2). The side of the box cover (3) is provided with an operation hole (32) for the user's hand to enter and / or a pull tab (33) for the user to hold.
12. A packaging box for a blood pressure monitor according to any one of claims 1-4, characterized in that, The lid (3) has a display area and a graphic area. The display area is disposed opposite to the first display cavity (21) and at least part of the second display cavity (22). The graphic area is disposed away from the first display cavity (21). The graphic area is provided with identification text and / or pictures.
13. A packaging box for a blood pressure monitor according to any one of claims 1-4, characterized in that, The box body (1) has an outer wall (12) and an inner wall (13) located inside the outer wall (12), and a cushioning cotton (121) is provided between the outer wall (12) and the inner wall (13).