Packaging structure of movable equipment
By combining detachable panel components and limit components with corrugated cardboard support structures, the problems of large space occupation and safety hazards of existing packaging structures are solved, and convenient transportation and environmentally friendly packaging are achieved.
Patent Information
- Application Number
- CN202422776817.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-13
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-11-13
AI Technical Summary
In the packaging structure of existing movable equipment, the bottom wooden board cannot be disassembled, which takes up a lot of space and is inconvenient to transport. At the same time, the top cushioning foam uses a large amount and is prone to cracking, posing a safety hazard.
The detachable enclosure components and limit components are combined with the corrugated cardboard support structure to form a detachable bottom fixation and environmentally friendly top buffer. The detachability of the corrugated cardboard and the environmental friendliness of the buffer material are utilized to improve transportation efficiency and safety.
The detachable connection of the bottom structure is realized, which saves space and facilitates transportation. The environmentally friendly materials reduce the occupied space, avoid machine scratches and personal injuries, and improve the safety and environmental protection of the packaging.
Smart Images

Figure CN223421207U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to packing technical field especially, it is a kind of packing structure of mobile equipment. BACKGROUND
[0002] Medical equipment includes anesthesia machine, breathing machine and the mobile equipment that can be flexibly moved, to anesthesia machine as an example, its packing is mainly completed by limiting the activity of bottom roller to combine top limiting, to complete the basic packing of overall fuselage.
[0003] The bottom structure of existing packing is usually fixedly connected in the mode of wooden board nailing, three wooden boards enclose a rectangular opening, the wooden board of the opening side is detachable, facilitates machine in and out;Three sides of the bottom structure are not detachable, are directly nailed and fixed on the bottom plate, are not convenient for transportation, occupy larger space, when packing, machine bottom plate needs to be aligned position, prevent scratching machine, and wooden board vertically fixed on the bottom plate is easy to scratch staff, and special attention is needed when packing.Top fixed structure is generally in the form of foam or foam pasting paper board to carry out buffering fixation, the dosage of buffering foam is related to machine top structure, the more complex machine top, the more complex buffering foam structure, the greater the dosage, and foam is pasted into shape by base sheet, and the adhesive position is easy to crack after stress and other problems.
[0004] In view of the above factors, it is necessary to provide a packing structure with detachable bottom fixing structure, environmentally friendly and effective top limiting structure and easy packing. UTILITY MODEL CONTENTS
[0005] The utility model solves the technical problem that: in order to solve the problem that the bottom wooden board of the packing structure in the prior art is not detachable, occupies larger space and is not convenient for transportation, now provide a packing structure of mobile equipment.
[0006] In order to solve the above technical problem, the utility model adopts the following technical scheme: a packing structure of mobile equipment, including top structure and bottom structure, and the two are enclosed to form a containing space for containing products between them;
[0007] The bottom structure includes fixed bottom plate, surrounding plate assembly and limiting assembly;The surrounding plate assembly is detachably arranged on the fixed bottom plate;The limiting assembly is located on the fixed bottom plate and is used for limiting the surrounding plate assembly;
[0008] The surrounding plate assembly includes two first surrounding plates extending along the X-axis direction and oppositely arranged and two second surrounding plates extending along the Y-axis direction and oppositely arranged, and two first surrounding plates clamp the second surrounding plate to limit the second surrounding plate in the Y-axis direction;
[0009] The limiting assembly forms a limiting groove, which is used to limit the first enclosure plate in the X-axis and Y-axis directions and to limit the second enclosure plate in the X-axis direction.
[0010] Furthermore, the limiting assembly includes a limiting strip fixed on a fixed base plate and several limiting blocks corresponding to the limiting strip, a first limiting groove for limiting the first enclosure in the Y-axis direction is formed between the limiting strip and the corresponding limiting blocks, a first protrusion is formed in the middle of the first enclosure protruding along the Y-axis direction, and second protrusions are formed at both end portions protruding along the Y-axis direction, a second limiting groove is formed between the several limiting blocks for the first protrusion to be clamped in to limit the first enclosure in the X-axis direction, the second protrusion and the limiting strip clamp the second enclosure to limit it in the X-axis direction.
[0011] Furthermore, the limiting groove is formed by inward depression of the upper surface of the fixed base plate.
[0012] Furthermore, the top structure includes a support portion extending along the Y-axis direction and engaging portions inserted at both ends of the support portion, and each engaging portion extends along the X-axis direction.
[0013] Furthermore, the support portion and the insertion portion are both roll-formed from corrugated cardboard, and the insertion portion is formed into a "凵"-shaped structure with two insertion bodies, and the support portion is provided with an insertion groove for the insertion body to be inserted.
[0014] Furthermore, an inserting interface is provided on the inserting body, and an extension body that is plugged into and matched with the inserting interface is left at the tail of the roll-formed support portion to limit the inserting portion in the X-axis direction.
[0015] Furthermore, the bottom structure also includes two buffer structures located in the accommodating space and in a "凵"-shaped structure, and the two buffer structures are respectively fitted with the two second enclosures.
[0016] Furthermore, the limiting assembly also includes a strapping belt, and the first enclosure is provided with a plurality of slots for the strapping belt to pass through.
[0017] Furthermore, a buffer body is provided on each side of the two second enclosure panels that are close to each other.
[0018] Furthermore, the two buffer structures are respectively a first buffer part and a second buffer part, and the first buffer part and the second buffer part both include a frame body and a support body supported at the bottom of the frame body, and the thickness of the frame body of the first buffer part is smaller than the thickness of the frame body of the second buffer part.
[0019] The beneficial effects of the present invention: the present invention utilizes a limiting component to detachably connect the fixed bottom plate and the enclosure component, which is convenient for packaging assembly and disassembly, and can be stacked after disassembly, saving space and facilitating transportation. In addition, the enclosure component is assembled after the product is pushed onto the fixed bottom plate, which will not scratch the machine and is not easy to scratch the staff. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0021] Figure 1 It is a three-dimensional schematic diagram of the utility model;
[0022] Figure 2 It is an exploded view of the bottom structure of the present utility model;
[0023] Figure 3 This is a structural diagram of the fixed base plate in the utility model;
[0024] Figure 4 It is a structural diagram of the first enclosure in the utility model;
[0025] Figure 5 It is a structural diagram of the second enclosure in the present utility model;
[0026] Figure 6 It is a three-dimensional schematic diagram of the support portion of the present invention from a first perspective;
[0027] Figure 7 It is a three-dimensional schematic diagram of the second viewing angle of the support portion of the present invention;
[0028] Figure 8 It is an expanded view of the support portion of the present utility model;
[0029] Figure 9 This is a schematic structural diagram of the plug-in portion of the utility model;
[0030] In the picture:
[0031] 1. Bottom structure; 101. Fixed bottom plate; 102. First enclosure; 1021. First protrusion; 1021a. Guide slope; 1022. Second protrusion; 1023. Slot; 103. Second enclosure; 1031. Buffer; 104. Limiting strip; 105. Limiting block; 106. First limiting groove; 107. Second limiting groove; 108. Buffer structure; 108a. First buffer; 108b. Second buffer; 1081. Mounting body; 1082. Support body; 109. Strapping tape;
[0032] 2. Top structure; 201. Support part; 2011. Connecting slot; 2012. Extension body; 2013. Avoidance area; 2014. Buckle; 202. Insertion part; 2021. Connecting body; 2022. Insertion interface. DETAILED DESCRIPTION
[0033] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams that illustrate the basic structure of the present invention only in a schematic manner. Therefore, they only show components relevant to the present invention, and directions and references (e.g., up, down, left, right, etc.) may be used solely to facilitate the description of features in the drawings. The following detailed description is therefore not to be taken in a limiting sense, and the scope of the claimed subject matter is defined solely by the appended claims and their equivalents.
[0034] like Figure 1 and Figure 2 As shown, a packaging structure for a mobile device includes a bottom structure 1 and a top structure 2, which enclose a space for accommodating a product. The bottom structure 1 is placed under the product, and the top structure 2 is placed on the top of the product. The mobile device can be an anesthesia machine, ultrasound equipment, ventilator, mobile trolley, or other medical equipment, which is not limited in this application.
[0035] The bottom structure 1 includes a fixed base plate 101, a panel assembly and a limiting assembly. The panel assembly can be detachably arranged on the fixed base plate 101; the limiting assembly is located on the fixed base plate 101 and is used to limit the panel assembly; the fixed base plate 101 and the panel assembly are both made of plywood, which has high strength and is easy to process.
[0036] The enclosure assembly includes two first enclosures 102 extending along the X-axis direction and arranged opposite to each other, and two second enclosures 103 extending along the Y-axis direction and arranged opposite to each other, which are enclosed as a whole to form a square structure, and the two first enclosures 102 clamp the second enclosure 103 to limit the second enclosure 103 in the Y-axis direction.
[0037] The limiting assembly forms a limiting groove, which is used to limit the first enclosure plate 102 in the X-axis and Y-axis directions, and to limit the second enclosure plate 103 in the X-axis direction.
[0038] During packaging, the product is first pushed onto the fixed base plate 101, and then the two first panels 102 and the two second panels 103 are sequentially restrained on the fixed base plate 101 through the limiting assembly. At this time, the panel assembly is fixed in position and the product is restrained in the chamber formed by it and the fixed base plate 101. In this solution, the fixed base plate 101 and the panel assembly are detachably connected and can be disassembled into flat plates, saving transportation space. After disassembly, the structure of each part is simple and easy to manufacture. Moreover, the panel assembly is assembled after the product is pushed onto the fixed base plate 101, which will not scratch the machine or the staff.
[0039] In some examples, the limiting assembly includes a limiting bar 104 fixed on a fixed base plate 101 and a plurality of limiting blocks 105 corresponding to the limiting bar 104. The number of limiting bars 104 corresponds to the number of first enclosure panels 102, which is two. Each limiting bar 104 extends along the X-axis direction, and the plurality of limiting blocks 105 are spaced apart along the X-axis direction. A first limiting groove 106 for limiting the first enclosure panel 102 in the Y-axis direction is formed between the limiting bar 104 and the corresponding limiting blocks 105. After the first enclosure panel 102 is inserted into the first limiting groove 106, the displacement of the first enclosure panel 102 in the Y-axis direction can be limited.
[0040] The first enclosure 102 has a first protrusion 1021 protruding from the middle along the Y-axis direction, and a second protrusion 1022 protruding from both ends along the Y-axis direction. The first protrusion 1021 and the second protrusion 1022 are respectively located on both sides of the first enclosure 102, that is, the first protrusion 1021 and the second protrusion 1022 are respectively formed by the first enclosure 102 protruding in the positive and negative directions of the Y-axis and the opposite direction of the Y-axis.
[0041] A second limiting groove 107 is formed between the limiting blocks 105 corresponding to the same limiting strip 104 for the first protrusion 1021 to be inserted into to limit the first enclosure 102 in the X-axis direction. The number of limiting blocks 105 can be, but is not limited to, two, three, or four, and the number corresponds to the number of the first protrusions 1021. In this embodiment, the number of the first protrusions 1021 on each first enclosure 102 is one, and correspondingly, the number of limiting blocks 105 is two, and the two limiting blocks 105 is formed between a second limiting groove 107 for the first protrusion 1021 to be inserted into, and the first protrusion 1021 is provided with guiding inclined surfaces 1021a at the bottom of both sides along the X-axis direction. The two guiding inclined surfaces 1021a are close to each other from top to bottom. When the first enclosure 102 is inserted from top to bottom into the first limiting groove 106, the first protrusion 1021 is inserted into the second limiting groove 107. The guiding inclined surfaces 1021a can provide guidance for the insertion process of the first protrusion 1021. Figure 4 shown.
[0042] The second protrusion 1022 and the limiting bar 104 clamp the second enclosure 103 to limit it in the X-axis direction. A third limiting groove is formed between the second protrusion 1022 and the end of the limiting bar 104. After the second enclosure 103 is inserted into the third limiting groove, the displacement of the second enclosure 103 in the X-axis direction can be limited. The height of the second protrusion 1022 is not less than 2 / 3 of the height of the second enclosure 103 to ensure the fixing effect of the second enclosure 103.
[0043] During assembly, first insert the two first enclosures 102 from top to bottom into the first limiting groove 106, and at the same time insert the first protrusion 1021 into the second limiting groove 107, and the limiting bar 104 and the limiting block 105 jointly limit the displacement of the first enclosure 102 on the X-axis and Y-axis; then insert the two second enclosures 103 from top to bottom between the second protrusion 1022 and the end of the limiting bar 104, and the limiting bar 104 and the second protrusion 1022 jointly limit the displacement of the second enclosure 103 on the X-axis and Y-axis. At this time, the position of the enclosure assembly is fixed.
[0044] In some examples, the limiting groove is formed by the upper surface of the fixed base plate 101 being recessed inward, and the enclosure assembly is snapped into the limiting groove for positioning.
[0045] In some examples, the top structure 2 includes a support portion 201 extending along the Y-axis direction and an insertion portion 202 inserted at both ends of the support portion 201, and each insertion portion 202 extends along the X-axis direction. The support portion 201 is used to support the package in the Y-axis direction, and the insertion portion 202 is used to support the package in the X-axis direction. Combined with the top surface of the package, the top structure 2 is fixed in the X-axis, Y-axis and Z-axis directions to support the upper half of the entire package.
[0046] In some examples, the support portion 201 and the interlocking portion 202 are both roll-formed from corrugated cardboard, which is environmentally friendly and has good compressive strength. The cardboard and die-cutting processes are mature, resulting in a simple structure and easy molding. The support portion 201 is formed into a "口"-shaped closed structure, with a snap 2014 provided at the seal to secure it in place. The support portion 201 is also provided with an escape area 2013 based on the product's appearance. Furthermore, the support portion 201 has reinforcing ribs within its cavity to enhance its structural strength, with the ribs supporting the two diagonal corners. The interlocking portion 202 is formed into a "凵"-shaped structure with two plug-in bodies 2021. The support portion 201 is provided with an insertion slot 2011 for the plug-in bodies 2021 to be inserted into. Insertion of the plug-in bodies 2021 into the insertion slot 2011 limits the displacement of the interlocking portion 202 in the Y-axis direction.
[0047] In some examples, the plug body 2021 is provided with a plug hole 2022, and the tail of the roll-folding support part 201 is provided with an extension body 2012 which is plugged into the plug hole 2022 to limit the plug-in part 202 in the X-axis direction.
[0048] In some examples, the bottom structure 1 further comprises two buffer structures 108 which are located in the accommodating space and have a “N” shape, and are respectively attached to the two second surrounding plates 103. During installation, the two buffer structures 108 are respectively placed from top to bottom against the two second surrounding plates 103, and the product wheels are directly in contact with the buffer structures 108, thereby limiting the displacement and rotation of the wheels in the bottom plate. The buffer structures are made of EPE, have good buffering effect, and can protect the surface of the product.
[0049] In some examples, the limiting assembly further comprises a packing belt 109, and the first surrounding plate 102 is provided with a plurality of clamping grooves 1023 for the packing belt 109 to pass through. The positions of the clamping grooves 1023 correspond to the positions of the buffer parts, so as to ensure that the packing belt 109 is above the product bottom plate and has better limiting effect. The depth of the clamping grooves 1023 is lower than the height of the product bottom plate, so that the packing belt 109 is not easy to be displaced and has better fixing effect. Preferably, the fixed bottom plate 101 is provided with a plurality of notches corresponding to the number of the clamping grooves 1023. The number of the clamping grooves 1023 can be, but is not limited to, two, three or four. The first end and the tail end of the packing belt 109 are connected and tightened by the buckles 2014 after the packing belt 109 passes through the notches on the fixed bottom plate 101 and the clamping grooves 1023 on the first surrounding plate 102, so as to bind the product and the fixed bottom plate 101 together and limit the displacement of the first surrounding plate 102 and the second surrounding plate 103 in the Z-axis direction, thereby completing the packaging of the entire bottom structure 1.
[0050] In some examples, the second surrounding plate 103 is provided with a buffer body 1031 on the side close to the other second surrounding plate 103. The buffer body 1031 is formed by extending downward from the top of the second surrounding plate 103, and the height of the buffer body 1031 is equal to the height of the second surrounding plate 103 minus the height of the limiting strip 104. This avoids interference between the buffer body 1031 and the limiting strip 104 during splicing. The buffer body 1031 separates the second surrounding plate 103 from the product, so as to ensure that the product is not in direct contact with the second surrounding plate 103 and to avoid scratching the surface of the product. The buffer body 1031 is made of EPE with a density of 20 kg / m 3 The buffer body 1031 is in direct contact with the front of the product bottom plate and the wheels, and has better buffering and fixing effect. The fixing method of the buffer body 1031 and the second surrounding plate 103 can be, but is not limited to, gluing.
[0051] In some examples, the two buffering structures are respectively the first buffering part 108a and the second buffering part 108b, both of which include the erecting body 1081 and the supporting body 1082 supported at the bottom of the erecting body 1081, that is, both of which are in the "U" shaped structure, the erecting body 1081 of the first buffering part 108a is mainly used for preventing the packing belt 109 from contacting the product and the product wheel from contacting other structures, the erecting body 1081 of the second buffering part 108b also needs to place the accessories thereon and support the accessories together with the product bottom disc, therefore, the thickness of the erecting body 1081 of the first buffering part 108a is smaller than that of the erecting body 1081 of the second buffering part 108b, and the thickness of the supporting body 1082 of the first buffering part 108a and the second buffering part 108b is substantially equal to the width of the limiting strip 104, which is erected above the limiting strip 104.
[0052] Working principle:
[0053] When packaging, first, the product is pushed onto the fixed bottom plate 101, then the two first surrounding plates 102 are inserted into the first limiting slot 106 from top to bottom, at the same time, the first protruding part 1021 is inserted into the second limiting slot 107 under the guidance of the guide inclined surface, the limiting strip 104 and the limiting block 105 jointly limit the displacement of the first surrounding plate 102 on the X axis and the Y axis; then the two second surrounding plates 103 are inserted between the second protruding part 1022 and the end of the limiting strip 104 from top to bottom, the limiting strip 104 and the second protruding part 1022 jointly limit the displacement of the second surrounding plate 103 on the X axis and the Y axis, then the first buffering part 108 and the second buffering part 109 are respectively placed against the two second surrounding plates 103 from top to bottom, the outer side of the product wheel directly contacts the buffering part, limiting the displacement and rotation of the wheel in the bottom structure 1, then the packing belt 109 for fixing is passed through the clamping groove 1023 at the bottom of the fixed bottom plate 101, connected and tightened by the buckle 2014 at the upper part of the buffering structure, the product and the fixed bottom plate 101 are bound together, limiting the displacement of the first surrounding plate 102 and the second surrounding plate 103 in the Z axis direction, completing the packaging of the bottom structure 1, finally, the top structure 2 is placed to complete the overall packaging.
[0054] Based on the above ideal embodiments of the present application, through the above description, relevant staff can make various changes and modifications without deviating from the technical idea of the present application. The technical scope of the present application is not limited to the content in the specification, and must be determined according to the scope of claims.
Claims
1. A packaging structure for a mobile device, characterized in that: It includes a bottom structure and a top structure, and an accommodation space for accommodating a product is formed by enclosing between the two; The bottom structure includes a fixed bottom plate, a surrounding plate assembly and a limiting assembly; the surrounding plate assembly is detachably arranged on the fixed bottom plate; the limiting assembly is located on the fixed bottom plate and is used for limiting the surrounding plate assembly; The surrounding plate assembly includes two first surrounding plates extending along the X-axis direction and arranged oppositely and two second surrounding plates extending along the Y-axis direction and arranged oppositely, and the two first surrounding plates clamp the second surrounding plates to limit the second surrounding plates in the Y-axis direction; The limiting assembly forms a limiting groove, and the limiting groove is used for limiting the first surrounding plates in the X-axis and Y-axis directions and limiting the second surrounding plates in the X-axis direction.
2. The packaging structure of a movable device according to claim 1, characterized in that: The limiting assembly includes a limiting strip fixed on the fixed bottom plate and a plurality of limiting blocks corresponding to the limiting strip. A first limiting groove for limiting the first surrounding plates in the Y-axis direction is formed between the limiting strip and the corresponding limiting blocks. A first protruding part protrudes along the Y-axis direction in the middle of the first surrounding plates, and second protruding parts protrude along the Y-axis direction at both ends. A second limiting groove for the first protruding part to be inserted into to limit the first surrounding plates in the X-axis direction is formed between the plurality of limiting blocks. The second protruding parts and the limiting strip clamp the second surrounding plates to limit them in the X-axis direction.
3. The packaging structure of a movable device according to claim 1, characterized in that: The limiting groove is formed by the inward depression of the upper surface of the fixed bottom plate.
4. The packaging structure of a movable device according to claim 1, characterized in that: The top structure includes a support part extending along the Y-axis direction and insertion parts inserted at both ends of the support part, and each insertion part extends along the X-axis direction.
5. The packaging structure of a movable device according to claim 4, characterized in that: Both the support part and the insertion parts are formed by rolling and folding corrugated cardboard, and the insertion part is formed into a "U" - shaped structure with two insertion bodies, and the support part is provided with insertion slots for the insertion bodies to be inserted into.
6. The packaging structure of a movable device according to claim 5, characterized in that: An insertion opening is formed on the insertion body, and an extension body for inserting and mating with the insertion opening is left at the tail of the support part formed by rolling and folding to limit the insertion part in the X-axis direction.
7. The packaging structure of a movable device according to claim 1, characterized in that: The bottom structure further includes two buffer structures in a "U" - shaped structure located in the accommodation space, and the two buffer structures are respectively in contact with the two second surrounding plates.
8. The packaging structure of a movable device according to claim 1, characterized in that: The limiting assembly further includes a packing belt, and a plurality of card slots for the packing belt to pass through are formed on the first surrounding plates.
9. The packaging structure of a movable device according to claim 1, characterized in that: Buffer bodies are arranged on one side where the two second surrounding plates are close to each other.
10. The packaging structure of a movable device according to claim 7, characterized in that: The two buffer structures are respectively a first buffer part and a second buffer part. Both the first buffer part and the second buffer part include a架设体 (erecting body) and a support body supported at the bottom of the erecting body, and the thickness of the erecting body of the first buffer part is less than the thickness of the erecting body of the second buffer part.