container
By incorporating insulated and dry cargo walls within the container, and adding internal partitions and insulation layers, the problem of the container's single function is solved, achieving compatibility between refrigerated and dry cargo transportation and enhancing the container's applicability.
Patent Information
- Application Number
- CN202311310631.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-10
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2043-10-10
AI Technical Summary
Existing containers have limited functionality and cannot be used for both refrigerated and dry cargo transportation, thus restricting their application.
A container was designed, comprising an insulated wall section and a dry cargo wall section. The internal space is divided into an insulated cavity and a dry cargo cavity by a partition wall. An insulation layer is installed in the insulated wall section and the partition wall to achieve the insulation function of the insulated cavity, and the dry cargo cavity is used for dry cargo transportation.
It enables containers to simultaneously perform refrigerated and dry cargo transportation functions, making them suitable for various application scenarios and enhancing their flexibility and applicability.
Smart Images

Figure CN117262495B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of containers, and more specifically to containers. Background Technology
[0002] Existing containers are either refrigerated containers with refrigeration capabilities or dry cargo containers used for transporting dry goods. Containers have limited functions and a narrow range of applications.
[0003] Therefore, this application provides a container to at least partially solve the above-mentioned problems. Summary of the Invention
[0004] The summary section introduces a series of simplified concepts, which will be further explained in detail in the detailed embodiments section. This summary section is not intended to limit the key features and essential technical features of the claimed technical solutions, nor is it intended to determine the scope of protection of the claimed technical solutions.
[0005] To at least partially solve the above-mentioned technical problems, this application provides a container, the container comprising:
[0006] The enclosure includes:
[0007] Base frame;
[0008] The outer wall body is connected to the base frame to form the internal space. The outer wall body includes an insulated wall section and a dry goods wall section, which are arranged sequentially along the length of the box. One end of the insulated wall section is connected to one end of the dry goods wall section, and the dry goods wall section has a dry goods opening.
[0009] The partition wall is located within the internal space and is sealed to the inner surface of the box body at the junction of the insulated wall section and the dry goods wall section to divide the internal space into an insulated cavity and a dry goods cavity, which are connected to the dry goods opening.
[0010] Dry goods box door, which is pivotally connected to the box body for opening or closing the dry goods opening;
[0011] Both the insulated wall body and the partition wall are equipped with an insulation layer.
[0012] According to the container of this application, both the insulated wall and the partition wall are provided with an insulation layer so that the insulated cavity can have the function of an insulated container, the dry cargo cavity can be used as a regular container for transporting dry cargo, and the container can be used in a variety of application scenarios.
[0013] Optionally, the position of the partition wall along the length of the box is adjustable.
[0014] Optionally, one of the outer wall and the partition wall is provided with an elongated hole whose long axis is parallel to the length direction of the box, and the partition wall is connected to the box through the elongated hole.
[0015] Optionally, the insulated wall section has an insulated inner panel, the base frame has a dry goods metal floor and an insulated metal floor, and the box also includes a partition. The partition is a non-metallic component, including a box partition. The box partition is constructed as a circumferentially closed ring structure. The partition wall is located within the area enclosed by the box partition. Along the length of the box, one end of the box partition is connected to the insulated inner panel and the insulated metal floor, and the other end of the box partition is connected to the dry goods wall section and the dry goods metal floor.
[0016] Optionally, the partition wall includes an insulation board and a dry goods board, and the partition also includes a partition component. The partition component is constructed as a circumferentially closed annular structure. Along the length of the box, one end of the partition component is connected to the insulation board, and the other end of the partition component is connected to the dry goods board.
[0017] Optionally, the partition includes a sealing portion that abuts against the enclosure partition.
[0018] Optionally, the partition includes a snap-fit portion, which includes two first walls and a second wall, with a gap between the two first walls and a second wall located between the two first walls and between the two ends of the first walls, to form a first mounting groove and a second mounting groove facing each other.
[0019] Optionally, the dry goods wall section has a dry goods top wall, which has a top plate, a dry goods reinforcing longitudinal beam, and a dry goods top side beam. The length direction of the dry goods reinforcing longitudinal beam is parallel to the length direction of the dry goods top side beam. The dry goods reinforcing longitudinal beam is located between the two dry goods top side beams and is located below the top plate and connected to the top plate.
[0020] Optionally, the container includes a dry goods pivot shaft with its axial direction parallel to the length direction of the container, and the dry goods container door is pivotally connected to the container via the dry goods pivot shaft.
[0021] Optionally, the dry goods side wall of the dry goods section has a dry goods opening, and the dry goods door includes:
[0022] The upper compartment door is pivotally connected to the dry goods top side beam of the compartment.
[0023] The lower box door is pivotally connected to the bottom side beam of the base frame.
[0024] Optionally, the partition wall is provided with a partition connection port;
[0025] The container also includes a partition door, which is pivotally connected to the partition wall to open or close the partition connection.
[0026] Optionally, the outer wall body also includes an equipment wall section connected to the end of the insulation wall section away from the dry goods wall section to form an equipment cavity.
[0027] Optionally, the equipment wall section includes a reinforcing longitudinal beam and a top side beam. The length direction of the reinforcing longitudinal beam is parallel to the length direction of the top side beam. There is a gap between the reinforcing longitudinal beam and the base frame, and there is a gap between the reinforcing longitudinal beam and the top side beam. The top and sides of the equipment wall section are provided with reinforcing longitudinal beams.
[0028] Optionally, the container may also include refrigeration equipment, which is mounted on the top of the equipment wall.
[0029] Optionally, the insulated wall section has a partition wall connected to the equipment wall section, the partition wall having a partition opening, and the container also includes a partition door connected to the partition wall to open or close the partition opening.
[0030] Optionally, the container also includes a partition frame, which includes side columns and a top beam. The top beam is connected to the top of the side columns, and the bottom of the side columns is connected to the bottom beam of the base frame, thus forming a circumferentially closed ring structure with the bottom beam of the base frame. The partition wall is located in the area enclosed by the partition frame and the bottom beam, and the insulated wall section and the dry goods wall section are connected by the partition frame.
[0031] Optionally, the insulated sidewalls of the insulated wall section have insulated openings, and the container also includes an insulated door that is pivotally connected to the container body to open or close the insulated openings.
[0032] Optionally, the insulated sidewall of the insulated wall section has an insulated window, and the container also includes an insulated window connected to the container body to open or close the insulated window, the lower edge of the insulated window sloping outward from top to bottom. Attached Figure Description
[0033] To make the advantages of this application more readily apparent, the application briefly described above will be described in more detail with reference to the specific embodiments shown in the accompanying drawings. It is to be understood that these drawings depict only typical embodiments of this application and should not be considered as limiting its scope of protection. The application is described and explained with additional features and details through the drawings.
[0034] Figure 1 This is a top view of a container according to a preferred embodiment of the present application, wherein both the upper and lower doors are closed for dry cargo.
[0035] Figure 2 for Figure 1 The main schematic diagram of the container shows that both the upper and lower doors have their dry cargo openings closed.
[0036] Figure 3 for Figure 1 A side view of a container, showing that both the upper and lower doors are closed for dry cargo.
[0037] Figure 4 for Figure 1 Another side view of the container, in which both the upper and lower doors have their dry cargo openings closed;
[0038] Figure 5 for Figure 1 A cross-sectional view of the container, showing that both the upper and lower doors are closed for dry cargo.
[0039] Figure 6 for Figure 2 A BB sectional view of the container, in which both the upper and lower doors are closed for dry cargo openings;
[0040] Figure 7 for Figure 5 A cross-sectional view of the container, showing that both the upper and lower doors are closed for dry cargo.
[0041] Figure 8 for Figure 5 The DD sectional view of the container shows that both the upper and lower doors are closed for dry cargo.
[0042] Figure 9 for Figure 5 A DD cross-sectional view of the container, showing that both the upper and lower doors have openings for dry cargo.
[0043] Figure 10 for Figure 5 A DD cross-sectional view of a container, showing that the upper container door opens to allow dry cargo to pass through, while the lower container door closes to allow dry cargo to pass through.
[0044] Figure 11 for Figure 5 A magnified view of part E of the container;
[0045] Figure 12 for Figure 5 A magnified view of part F of the container;
[0046] Figure 13 for Figure 6 A magnified view of part G of the container;
[0047] Figure 14 for Figure 6 A partially enlarged schematic diagram of point H of the container; and
[0048] Figure 15 for Figure 7A magnified view of part I of the container.
[0049] Explanation of reference numerals in the attached figures
[0050] 100: Outer wall body 110: Bottom frame
[0051] 111: Metal Flooring 112: Dry Goods Metal Flooring
[0052] 113: Insulated metal floor 114: Bottom beam
[0053] 115: Bottom side beam; 116: Bottom end beam
[0054] 120: Insulated wall section; 121: Insulated top wall section
[0055] 122: Insulated side wall; 123: Partition wall
[0056] 124: Insulation opening; 125: Insulation window
[0057] 126: Partition opening 127: Insulated inner panel
[0058] 128: Insulated outer panel 129: Bottom edge
[0059] 130: Dry Goods Wall Section 131: Dry Goods Top Wall
[0060] 132: Dry goods sidewall 133: End wall
[0061] 134: Opening for dry goods; 135: Top flat panel
[0062] 136: Dry-material reinforced longitudinal beam; 137: Dry-material top and side beam.
[0063] 140: Equipment wall section; 141: Equipment top wall
[0064] 142: Equipment side wall; 143: Equipment reinforcing longitudinal beam
[0065] 144: Top side beam of equipment 145: Observation window
[0066] 146: Window bracket 147: Window reinforcement
[0067] 148: First reinforcing wall; 149: Second reinforcing wall
[0068] 150: Internal space; 151: Insulated cavity
[0069] 152: Dry Goods Chamber 153: Equipment Chamber
[0070] 160: Refrigeration equipment 161: First refrigeration equipment
[0071] 162: Second refrigeration equipment; 170: Partition wall
[0072] 171: Long hole; 172: Insulation board
[0073] 173: Dry Goods Board 174: First Divider Connecting Port
[0074] 175: Second dividing connection port; 176: Connector
[0075] 177: Connecting wall; 178: Mounting wall
[0076] 180: Partition component; 181: Box-type partition component
[0077] 182: Partition / Divider component; 183: Main body
[0078] 184: Sealing part; 185: Snap-fit part
[0079] 186: First Wall 187: Second Wall
[0080] 188: First mounting slot; 189: Second mounting slot
[0081] 190: Insulation layer; 191: Bottom partition section
[0082] 192: Dry Goods Pivot Shaft 193: First Dividing Door
[0083] 194: Second partition door; 195: Partition door
[0084] 196: Insulated door 197: Insulated window
[0085] 198: Observation window; 199: Equipment enclosure door
[0086] 200: Divider frame; 201: Frame side column
[0087] 202: Top crossbeam; 203: Install side columns.
[0088] 204: Installation notch 210: Dry goods container door
[0089] 211: Upper compartment door 212: Lower compartment door
[0090] 213: Drive unit; 214: Locking bar assembly
[0091] 215: Seals; 216: Ventilation valves
[0092] 220: Insulation layer for partitioning 221: Insulation layer for cold storage
[0093] 222: Insulation body 223: Insulation bending section
[0094] 224: Dried Goods Main Body 225: Dried Goods Bending Section Detailed Implementation
[0095] In the following description, numerous specific details are set forth to provide a more thorough understanding of this application. However, it will be apparent to those skilled in the art that embodiments of this application may be practiced without one or more of these details. In other instances, certain technical features well-known in the art have not been described to avoid confusion with embodiments of this application.
[0096] The preferred embodiments of this application will now be described with reference to the accompanying drawings. It should be noted that the terms "upper," "lower," and similar expressions used herein are for illustrative purposes only and are not intended to be limiting.
[0097] In this document, ordinal numbers such as “first” and “second” used in this application are merely identifiers and do not have any other meaning, such as a specific order.
[0098] To fully understand the embodiments of this application, a detailed structure will be presented in the following description. Obviously, the implementation of the embodiments of this application is not limited to the specific details familiar to those skilled in the art. Preferred embodiments of this application are described in detail below; however, other embodiments may be available in addition to these detailed descriptions.
[0099] This application provides a container. The container has an insulated cavity 151 and a dry cargo cavity 152. In this way, the container can simultaneously possess the performance of a refrigerated container and a dry cargo container.
[0100] Please refer to Figures 1 to 15 The container includes a container body. The container body includes an outer wall 100 and a base frame 110. The outer wall 100 includes a top wall, side walls, and end walls 133. The top wall, side walls, and end walls 133 are configured as a cuboid structure with an open bottom. The lower end of the outer wall 100 is connected to the base frame 110 to form a generally cuboid structure. The cuboid structure has an internal space 150. Along the length of the container body, the base frame 110 extends from one end of the container body to the other.
[0101] like Figure 1 , Figure 2 , Figure 5 and Figure 6As shown, the outer wall 100 includes an insulated wall section 120 and a dry goods wall section 130. The insulated wall section 120 includes a partition wall 123, an insulated side wall 122, and an insulated top wall 121. Along the length of the box, the partition wall 123 is located at the end of the insulated wall section 120 furthest from the dry goods wall section 130. The plane of the partition wall 123 is perpendicular to the length of the box. The insulated side wall 122 is located on the side of the insulated wall section 120. The plane of the insulated side wall 122 is perpendicular to the width of the box. The insulated top wall 121 is located at the top of the insulated wall section 120. The plane of the insulated top wall 121 is perpendicular to the height of the box.
[0102] The dry goods wall section 130 includes a aforementioned end wall 133 (dry goods end wall), a dry goods side wall 132, and a dry goods top wall 131. Along the length of the container, the dry goods end wall is located at the end of the dry goods wall section 130 furthest from the insulated wall section 120. The dry goods side wall 132 is located on the side of the dry goods wall section 130. The plane containing the dry goods side wall 132 is perpendicular to the width direction of the container. The dry goods top wall 131 is located at the top of the dry goods wall section 130. The plane containing the dry goods top wall 131 is perpendicular to the height direction of the container.
[0103] The aforementioned top wall includes an insulated top wall 121 and a dry goods top wall 131. The aforementioned side walls include an insulated side wall 122 and a dry goods side wall 132. The insulated wall portion 120 and the dry goods wall portion 130 are arranged sequentially along the length of the box. Along the length of the box, the end of the dry goods wall portion 130 near the partition wall 123 is connected to the end of the insulated wall portion 120 near the dry goods end wall. Figure 2 , Figure 5 , Figure 6 , Figure 9 and Figure 10 As shown, the dry goods wall section 130 has a dry goods opening 134. The dry goods opening 134 is separated from the heat-insulating wall section 120.
[0104] Please refer to Figure 5 , Figure 6 , Figures 8 to 13The container also includes a partition wall 170. The partition wall 170 is located within the interior space 150. The partition wall 170 is sealed to the inner surface of the container and connects to the junction of the dry cargo wall portion 130 and the insulated wall portion 120 to divide the interior space 150 into an insulated cavity 151 (an example of a first cavity) and a dry cargo cavity 152 (an example of a second cavity). The insulated cavity 151 and the dry cargo cavity 152 cannot communicate or leak at the partition wall 170. The dry cargo cavity 152 communicates with a dry cargo opening 134. Thus, the dry cargo cavity 152 can be accessed and exited via the dry cargo opening 134. The inner surface of the container includes the upper surface of the base frame 110, the lower surface of the top wall, and the inner surfaces of the side walls near the interior space 150. The thickness direction of the partition wall 170 is parallel to the length direction of the container.
[0105] like Figure 2 , Figure 5 , Figure 6 , Figure 9 and Figure 10 As shown, the container also includes a dry cargo door 210. The dry cargo door 210 is pivotally connected to the container body for opening or closing the dry cargo opening 134. Thus, the dry cargo opening 134 can be opened or closed as needed.
[0106] Both the insulated wall section 120 and the partition wall 170 are equipped with an insulation layer 190. The insulation layer 190 can be made of rock wool, insulating cotton, or foam material. The base frame 110 is also equipped with an insulation layer 190. The dry cargo wall section 130 may not have an insulation layer 190. In this way, the insulated cavity 151 can be used as a refrigerated container.
[0107] In this embodiment, both the insulated wall section 120 and the partition wall 170 are provided with an insulation layer 190 so that the insulated cavity 151 can have the function of an insulated container, and the dry cargo cavity 152 can be used as a regular container for transporting dry cargo. The container can be used in a variety of application scenarios.
[0108] Preferably, please refer to Figure 5 and Figure 6 The position of the partition wall 170 along the length of the box is adjustable. Therefore, the position of the partition wall 170 can be adjusted as needed, thereby adjusting the volume of the heat preservation cavity 151 and the volume of the dry goods cavity 152.
[0109] like Figures 11 to 13As shown, the partition wall 170 is provided with an elongated hole 171. The long axis of the elongated hole 171 is parallel to the length direction of the container. The container has mounting holes corresponding to the positions of the elongated hole 171. The mounting holes have internal threads. The container also includes fasteners (e.g., bolts). The fasteners pass through the elongated hole 171 and are threaded into the mounting holes. In this way, the partition wall 170 is connected to the container through the elongated hole 171. Thus, the partition wall 170 can be moved by loosening the fasteners, making the adjustment of the partition wall 170 convenient.
[0110] It is understood that, in embodiments not shown, the partition wall may have mounting holes. The housing has elongated holes.
[0111] More preferably, the maximum size of the elongated hole 171 along the length of the box body ranges from 100mm to 300mm.
[0112] Please refer to Figures 11 to 13 The insulated wall section 120 has an inner insulated panel 127 and an outer insulated panel 128. The insulation layer 190 includes a refrigerated insulation layer 221. Both the inner insulated panel 127 and the outer insulated panel 128 are metal parts. There is a gap between the inner insulated panel 127 and the outer insulated panel 128. The inner insulated panel 127 is located on the side of the outer insulated panel 128 closer to the insulation cavity 151. The refrigerated insulation layer 221 is located between the inner insulated panel 127 and the outer insulated panel 128.
[0113] Please refer to Figures 1 to 6 as well as Figures 11 to 13 The base frame 110 includes bottom side beams 115, bottom end beams 116, and bottom crossbeams 114. The bottom side beams 115 and bottom end beams 116 are connected end-to-end to form a generally rectangular frame structure. Along the length of the box body, the bottom crossbeams 114 are located between the two bottom end beams 116. The ends of the bottom crossbeams 114 are connected to the bottom side beams 115.
[0114] The base frame 110 also includes a metal floor 111. The metal floor 111 can be an aluminum base plate. The metal floor 111 is laid on top of the frame structure of the base frame 110 to support goods. The metal floor 111 includes a dry goods metal floor 112 and an insulated metal floor 113. The dry goods metal floor 112 and the insulated metal floor 113 are spaced apart along the length of the container.
[0115] The base frame 110 is provided with an insulation layer 190 on the portion below the insulated wall section 120 and on the portion below the dry goods wall section 130.
[0116] Please refer to Figure 5 , Figure 6 , Figures 11 to 13The enclosure also includes a partition 180. The partition 180 is a non-metallic component. For example, the partition 180 is made of PVC (polyvinyl chloride). The partition 180 includes a enclosure partition 181. The enclosure partition 181 is connected to the enclosure. The enclosure partition 181 is constructed as a circumferentially closed annular structure. A partition wall 170 is located within the area enclosed by the enclosure partition 181. Along the length of the enclosure, one end of the enclosure partition 181 is connected to the inner insulated panel 127, and the other end is connected to the dry goods wall portion 130. Along the length of the enclosure, one end of the enclosure partition 181 is connected to the insulated metal floor 113, and the other end is connected to the dry goods metal floor 112. This reduces heat transfer between the insulated wall section 120 and the dry goods wall section 130, as well as between the insulated metal floor 113 and the dry goods metal floor 112.
[0117] Push tower 11 to Figure 13 As shown, the partition wall 170 includes an insulation board 172 and a dry goods board 173. The insulation board 172 and the dry goods board 173 can be made of steel. Along the length of the enclosure, the insulation board 172 is located on the side of the dry goods board 173 closest to the insulation cavity 151. A gap exists between the insulation board 172 and the dry goods board 173 along the length of the enclosure. The insulation layer 190 includes a partition insulation layer 220. The partition insulation layer 220 is located within the gap between the insulation board 172 and the dry goods board 173.
[0118] The partition 180 also includes a dividing partition 182. The dividing partition 182 is connected to the partition wall 170 to form a partition wall assembly. The dividing partition 182 is constructed as a circumferentially closed annular structure. The insulating layer 220 is located within the area enclosed by the dividing partition 182. Along the length of the enclosure, one end of the dividing partition 182 is connected to the insulation board 172, and the other end is connected to the dry goods board 173. This reduces heat transfer between the insulation board 172 and the dry goods board 173.
[0119] More preferably, the partition 180 includes a body 183. The body 183 is a circumferentially closed annular structure. The partition 182 also includes a sealing portion 184. The body 183 of the partition 182 is connected to the insulation board 172 and the dry goods board 173. A portion of the body 183 of the partition 182 extends and protrudes toward the cabinet partition 181 (i.e., away from the partition insulation layer 220) to form the sealing portion 184. The free end of the sealing portion 184 abuts against the cabinet partition 181. Thus, the gap between the partition wall 170 and the cabinet can be sealed, preventing heat flow between the insulation cavity 151 and the dry goods cavity 152.
[0120] Please continue to refer to this. Figures 11 to 13The main body 183 includes a snap-fit portion 185. The sides, top, and bottom of the partition 182 all include snap-fit portions 185, so that the snap-fit portions 185 of the partition 182 are circumferentially closed annular structures. The sides and top of the main body 183 of the enclosure partition 181 include snap-fit portions 185.
[0121] The snap-fit portion 185 includes two first walls 186 and a second wall 187. There are two first walls 186, with a gap between them. The second wall 187 is located between the two first walls 186. Along the length of the housing, there is a gap between one end of the second wall 187 and one end of the first wall 186, and a gap between the other ends of the second wall 187 and the first wall 186. The first walls 186 and the second wall 187 are connected. Thus, the second wall 187 and the two first walls 186 form a first mounting groove 188 and a second mounting groove 189. Along the length of the housing, the opening of the first mounting groove 188 faces one end of the housing, and the opening of the second mounting groove 189 faces the other end of the housing. Thus, the first mounting groove 188 and the second mounting groove 189 are opposite to each other.
[0122] More preferably, the snap-fit portion 185 has a roughly "I"-shaped structure. Therefore, the structure of the snap-fit portion 185 is simple.
[0123] Please continue to refer to this. Figures 11 to 13 The insulation board 172 is a sheet metal part. The insulation board 172 includes an insulation body 222. The plane containing the insulation body 222 is perpendicular to the length direction of the box. Along the length direction of the box, the edge of the insulation body 222 bends and extends near the dry goods board 173 to form an insulation bend 223. The insulation bend 223 is located between the insulation layer 220 and the box partition 181. The partition 182 is located between the insulation layer 220 and the box partition 181. The insulation bend 223 extends into the first mounting groove 188 of the partition 182.
[0124] The dry goods board 173 is a sheet metal part. The dry goods board 173 includes a dry goods body 224. The plane containing the dry goods body 224 is perpendicular to the length direction of the box. Along the length direction of the box, the edge of the dry goods body 224 bends and extends near the insulation board 172 to form a dry goods bending portion 225. The dry goods bending portion 225 is located between the insulation layer 220 and the box partition 181. The dry goods bending portion 225 extends into the second mounting groove 189 of the partition 182.
[0125] Please continue to refer to this. Figures 11 to 13 A portion of the inner insulation panel 127 extends into the first mounting groove 188 of the enclosure partition 181. A portion of one of the frame side columns 201 and the top crossbeam 202, which are fixedly (e.g., welded) to the dry goods wall section 130, extends into the second mounting groove 189 of the partition partition 182.
[0126] like Figure 12 As shown, the body 183 of the enclosure partition 181 also includes a bottom partition 191. The bottom partition 191 is made of PE (polyethylene). The bottom partition 191 is located at the bottom end of the enclosure partition 181. The bottom partition 191 is connected to the base frame 110. Along the length of the enclosure, the bottom partition 191 is located between the dry goods metal floor 112 and the insulated metal floor 113 to reduce heat transfer between the dry goods metal floor 112 and the insulated metal floor 113.
[0127] Preferably, a bottom crossbeam 114 is provided below the bottom partition portion 191. Thus, the bottom crossbeam 114 supports the bottom partition portion 191.
[0128] like Figures 11 to 13 As shown, the partition wall 170 also includes a connector 176. The connector 176 is a sheet metal part. The connector 176 includes a connecting wall 177 and a mounting wall 178. The plane of the connecting wall 177 is perpendicular to the length direction of the box body. The connecting wall 177 is attached and fixedly connected to the dry goods body 224. Along the length direction of the box body, a portion of the connecting wall 177 extends and protrudes towards the dry goods cavity 152 to form the mounting wall 178. Thus, the mounting wall 178 is located on the side of the dry goods plate 173 facing the dry goods cavity 152. The plane of the mounting wall 178 is parallel to the length direction of the box body. Thus, the plane of the mounting wall 178 is perpendicular to the plane of the connecting wall 177. The mounting wall 178 is provided with the aforementioned elongated hole 171. The frame side columns 201 and top crossbeam 202 described later can be provided with the aforementioned mounting holes. Therefore, the structure of the partition wall 170 is simple.
[0129] Please refer to Figure 1 , Figure 2 , Figure 5 , Figure 6 ,as well as Figures 11 to 13 The enclosure also includes a partition frame 200. The partition frame 200 is located between the insulated wall section 120 and the dry goods wall section 130. The insulated wall section 120 and the dry goods wall section 130 are connected by the partition frame 200.
[0130] Specifically, the top of the enclosure has a top side beam. The top side beam is located on the side of the enclosure. The length direction of the top side beam is parallel to the length direction of the enclosure. The partition frame 200 includes frame side columns 201 and a top crossbeam 202. There are two frame side columns 201. The length direction of the frame side columns 201 is parallel to the height direction of the enclosure. The two frame side columns 201 are located on two sides of the enclosure, respectively. The bottom end of the frame side columns 201 is connected to the bottom side beam 115. The top end of the frame side columns 201 is connected to the top side beam. Along the length direction of the enclosure, the position of part of the bottom crossbeam 114 is approximately the same as the position of the frame side columns 201.
[0131] The top crossbeam 202 is located at the top of the box-shaped structure. The length of the top crossbeam 202 is parallel to the width of the box-shaped structure. The top crossbeam 202 is situated between two top side beams. The ends of the top crossbeam 202 are connected to the top side beams. Thus, the bottom crossbeams 114 located at the side columns 201 of the frame separating the frame 200 and the base frame 110 form a roughly rectangular frame structure. This frame structure is a circumferentially closed ring structure. The partition wall 170 is located within the area enclosed by this frame structure. Therefore, the box-shaped structure has high strength.
[0132] Preferably, such as Figure 11 As shown, the top crossbeam 202 includes a first crossbeam section and a second crossbeam section. Both the first and second crossbeam sections are sheet metal parts. The first crossbeam section includes two first crossbeam walls and a second crossbeam wall. The plane containing the first crossbeam wall is perpendicular to the height direction of the housing. The plane containing the second crossbeam wall is perpendicular to the length direction of the housing. The two first crossbeam walls are spaced apart along the height direction of the housing. One end of the second crossbeam wall is connected to one end of one of the first crossbeam walls. The other end of the second crossbeam wall is connected to one end of the other first crossbeam wall. Along the length direction of the housing, the two first crossbeam walls are located on the same side of the second crossbeam wall. The end of the lower first crossbeam wall, away from the second crossbeam wall, extends into the snap-fit portion 185 of the housing partition 181. The insulation outer panel 128 at the top of the housing overlaps with the upper surface of the second crossbeam wall. The top plate 135 (described later) overlaps with the upper surface of the second crossbeam wall. Therefore, the first crossbeam section has high strength.
[0133] More preferably, the first crossbeam is constructed as a C-shaped structure with an opening along the length of the box body away from the dry goods cavity 152.
[0134] Please continue to refer to this. Figure 11 The second crossbeam includes two third crossbeam walls and a fourth crossbeam wall. The plane containing the third crossbeam walls is perpendicular to the length direction of the box body. The plane containing the fourth crossbeam wall is perpendicular to the height direction of the box body. The two third crossbeam walls are spaced apart along the length direction of the box body. One end of the fourth crossbeam wall is connected to one end of one of the third crossbeam walls. The other end of the fourth crossbeam wall is connected to one end of the other third crossbeam wall. Along the height direction of the box body, the two third crossbeam walls are located on the same side of the fourth crossbeam wall. The ends of the two third crossbeam walls furthest from the fourth crossbeam wall are connected to the first crossbeam wall located above. Therefore, the top crossbeam 202 has high strength.
[0135] More preferably, the second crossbeam is constructed as a C-shaped structure with the opening facing upwards.
[0136] Please refer to Figure 1 and Figure 11The dry goods top wall 131 includes a top plate 135, dry goods reinforcing longitudinal beams 136, and dry goods top side beams 137. The dry goods top side beams 137 are a portion of the aforementioned top side beams. The length direction of the dry goods reinforcing longitudinal beams 136 is parallel to the length direction of the dry goods top side beams 137. The dry goods reinforcing longitudinal beams 136 are located between two dry goods top side beams 137. The dry goods reinforcing longitudinal beams 136 are located below the top plate 135 and connected to the top plate 135. One end of the dry goods reinforcing longitudinal beams 136 is connected to the top crossbeam 202, and the other end is connected to a top beam. Therefore, the dry goods top wall 131 has high strength.
[0137] Furthermore, along the height direction of the container, the thickness of the dry goods top wall 131 is less than the thickness of the insulated top wall 121. The upper surface of the dry goods top wall 131 and the upper surface of the insulated top wall 121 are approximately flush. This allows for an increase in the height of the dry goods cavity 152.
[0138] More preferably, the cross-section of the dry goods reinforcing longitudinal beam 136 (which is perpendicular to the length direction of the dry goods reinforcing longitudinal beam 136) is C-shaped. The opening of this C-shaped structure faces upward. As a result, the dry goods reinforcing longitudinal beam 136 has high strength.
[0139] like Figure 2 , Figure 5 , Figure 6 ,as well as Figures 8 to 10 As shown, the container includes a dry goods pivot shaft 192 whose axial direction is parallel to the length direction of the container. The dry goods door 210 is pivotally connected to the container via the dry goods pivot shaft 192. Thus, the dry goods door 210 can be flipped up or down to open the dry goods opening 134.
[0140] Preferably, the dry goods sidewall 132 has a dry goods opening 134. The dry goods compartment door 210 includes an upper compartment door 211 and a lower compartment door 212. The upper compartment door 211 is pivotally connected to the dry goods top side beam 137 of the compartment via a dry goods pivot 192. The lower compartment door 212 is pivotally connected to the bottom side beam 115 of the base frame 110 via another dry goods pivot 192. This facilitates the rotation of the dry goods compartment door 210.
[0141] Furthermore, such as Figure 9 As shown, the lower cargo door 212 can be rotated to the open position. When the lower cargo door 212 is in the open position, it is tilted horizontally. At this time, along the height direction of the container, the free end of the lower cargo door 212 is located below the dry cargo pivot 192 connected to the lower cargo door 212. Along the height direction of the container, the free end of the lower cargo door 212 is located below the bottom side beam 115 for connection to the container-carrying platform (e.g., the ground). This facilitates vehicle access to the dry cargo compartment 152 via the lower cargo door 212.
[0142] Preferably, such as Figure 2 ,as well as Figure 5 and Figure 6 As shown, the container also includes a locking rod assembly 214. The container body also includes mounting side posts 203 located on the side of the container body. The length direction of the mounting side posts 203 is parallel to the height direction of the container body. The top end of the mounting side posts 203 is connected to the dry cargo top side beam 137. The bottom end of the mounting side posts 203 is connected to the bottom side beam 115. The mounting side posts 203 and the frame side posts 201 are spaced apart. Thus, the mounting side posts 203, the frame side posts 201, the dry cargo top side beam 137, and the bottom side beam 115 form a dry cargo opening 134.
[0143] The structure of the locking lever assembly 214 is largely the same as that of existing locking lever assemblies, and will not be described in detail here. Please refer to [reference needed]. Figure 13 Along the width of the container, the outer surfaces of the frame side pillars 201 and the mounting side pillars 203, both facing away from the center of the container, are recessed towards the center of the container to form mounting notches 204. The locking seat of the locking rod assembly 214 is located within the mounting notch 204 and is fixedly connected to the frame side pillars 201 and 203. Both the upper door 211 and the lower door 212 are equipped with locking rods from the locking rod assembly 214 to lock and close the dry cargo opening 134. This ensures that the locking rod assembly 214 does not protrude from the outer contour of the container, facilitating container transportation.
[0144] When both the upper door 211 and the lower door 212 are closed (dry goods opening 134), the handle of the locking bar on the upper door 211, located along the width of the container, is on the outer side of the lower door 212, away from the center of the container. Therefore, the lower door 212 can only be opened after the upper door 211 has been opened.
[0145] More preferably, a buffer block is provided on the outer surface of the free end of the lower compartment door 212, so that when the lower compartment door 212 is rotated to the open position, the buffer block abuts against the aforementioned platform. The buffer block can be a high-energy buffer block of the prior art. This reduces the impact on the lower compartment door 212.
[0146] like Figure 9 , Figure 10 and Figure 13 As shown, the container also includes a drive unit 213. The length of the drive unit 213 is variable. For example, the drive unit 213 can be an electric push rod, an electric gas spring, or a cylinder. One end of the drive unit 213 is pivotally connected to the upper door 211. The other end of one drive unit 213 is pivotally connected to the frame side column 201. The other end of the other drive unit 213 is pivotally connected to the mounting side column 203. In this way, the upper door 211 can be driven to rotate by the drive unit 213, facilitating the rotation of the upper door 211.
[0147] When the lower door 212 is closed and the upper door 211 is open, the dry goods chamber 152 can be used as an operating room or a vending machine.
[0148] Preferably, such as Figure 5 , Figure 6 ,as well as Figures 8 to 10 As shown, the partition wall 170 is provided with a partition connection opening. The container also includes a partition door. The partition door is pivotally connected to the partition wall 170 to open or close the partition connection opening. Thus, movement between the insulated cavity 151 and the dry cargo cavity 152 can be achieved via the partition connection opening.
[0149] Furthermore, the partition connection includes a first partition connection 174 and a second partition connection 175. The size of the first partition connection 174 is larger than the size of the second partition connection 175. Correspondingly, the partition door includes a first partition door 193 for opening or closing the first partition connection 174, and a second partition door 194 for opening or closing the second partition connection 175. Thus, the partition connection can be moved between the insulation cavity 151 and the dry goods cavity 152 as needed.
[0150] Please refer to Figure 2 , Figure 5 and Figure 6 The insulated sidewall 122 of the insulated wall section 120 has an insulated opening 124. The container also includes an insulated door 196. The insulated door 196 is pivotally connected to the insulated sidewall 122 to open or close the insulated opening 124. Thus, the insulated cavity 151 can be accessed and exited through the insulated opening 124.
[0151] The insulated sidewall 122 of the insulated wall section 120 has an insulated window 125. The container also includes an insulated window 197. The insulated window 197 is connected to the insulated sidewall 122 to open or close the insulated window 125. Thus, the insulated window 125 can be opened as needed to allow ventilation between the insulated cavity 151 and the outside.
[0152] like Figure 14 As shown, the lower edge 129 of the insulation window 125 slopes outward from top to bottom. That is, along the width direction of the enclosure, the upper end of the lower edge 129 of the insulation window 125 is closer to the center of the enclosure than its lower end. This reduces the amount of rainwater entering the insulation cavity 151 through the lower edge 129 of the insulation window 125.
[0153] like Figure 1 , Figure 2 ,as well as Figures 5 to 7As shown, along the length of the container, the partition wall 123 is located at the end of the insulated wall section 120 away from the dry goods wall section 130. The outer wall 100 also includes an equipment wall section 140. The equipment wall section 140 includes the aforementioned end wall 133 (equipment end wall), equipment side wall 142, and equipment top wall 141. The equipment end wall is located at one end of the equipment wall section 140 along the length of the container. The equipment side wall 142 is located on the side of the equipment wall section 140. The plane containing the equipment side wall 142 is perpendicular to the width direction of the container. The equipment top wall 141 is located at the top of the dry goods wall section 130. The plane containing the equipment top wall 141 is perpendicular to the height direction of the container.
[0154] The aforementioned top wall includes an insulated top wall 121, a dry goods top wall 131, and an equipment top wall 141. The aforementioned side walls include an insulated side wall 122, a dry goods side wall 132, and an equipment side wall 142. Along the length of the housing, the equipment wall portion 140, the insulated wall portion 120, and the dry goods wall portion 130 are arranged sequentially. Along the length of the housing, the end of the equipment wall portion 140 away from the equipment end wall is connected to the partition wall 123 to form the equipment cavity 153.
[0155] like Figures 1 to 6 As shown, the equipment end wall has an equipment opening. The container also includes an equipment door 199 and a refrigeration unit 160. The equipment door 199 is pivotally connected to the equipment end wall to open or close the equipment opening. The refrigeration unit 160 can be housed within the equipment cavity 153. This facilitates operation of the refrigeration unit 160 and provides protection for it.
[0156] The equipment wall portion 140 is provided with the aforementioned locking rod assembly 214 for locking and closing the equipment cabinet door 199 of the equipment opening.
[0157] like Figure 1 , Figure 2 , Figure 5 and Figure 6 As shown, the equipment wall section 140 includes a reinforcing longitudinal beam 143 and a top side beam 144. The top side beam 144 is part of the top side beam. The length direction of the reinforcing longitudinal beam 143 is parallel to the length direction of the top side beam 144. There is a gap between the reinforcing longitudinal beam 143 and the base frame 110. There is also a gap between the reinforcing longitudinal beam 143 and the top side beam. Both the equipment side wall 142 and the equipment top wall 141 are provided with reinforcing longitudinal beams 143. Thus, the top and sides of the equipment wall section 140 are provided with reinforcing longitudinal beams 143. As a result, the equipment wall section 140 has high strength.
[0158] More preferably, the reinforcing longitudinal beam 143 of the equipment has a C-shaped structure. Therefore, the reinforcing longitudinal beam 143 of the equipment has high strength.
[0159] like Figure 5and Figure 6 As shown, the refrigeration equipment 160 includes a first refrigeration unit 161 and a second refrigeration unit 162. The first refrigeration unit 161 is suspended from the equipment reinforcing longitudinal beam 143 located at the top of the equipment wall portion 140. There is a gap between the first refrigeration unit 161 and the base frame 110. The second refrigeration unit 162 is placed on the base frame 110. Along the width direction of the enclosure, there is a gap between the first refrigeration unit 161 and the second refrigeration unit 162. This facilitates the installation of the refrigeration equipment 160.
[0160] Please continue to refer to this. Figure 5 and Figure 6 Along the length of the housing, the portion of the partition wall 123 facing the equipment cavity 153 can be recessed toward the partition wall 170 to form a stepped structure, thereby increasing the installation space of the first refrigeration equipment 161.
[0161] like Figure 5 and Figure 7 As shown, partition wall 123 has a partition opening 126. The container also includes a partition door 195. Partition door 195 is connected to partition wall 123 to open or close partition opening 126. Thus, movement is possible between equipment cavity 153 and insulation cavity 151 via partition opening 126.
[0162] Further, please refer to Figure 3 , Figure 4 and Figure 15 The equipment door 199 has an observation window 145. The container also includes an observation window 198. The observation window 198 is pivotally connected to the equipment door 199 to open or close the observation window 145. Thus, the observation window 145 can be opened as needed to observe the refrigeration equipment 160 inside the equipment cavity 153.
[0163] More preferably, such as Figure 15 As shown, the enclosure door includes a door body, a window bracket 146, and a window reinforcement 147. The window bracket 146 is a circumferentially closed annular structure to form an observation window 145. The door body has a mounting opening. The window bracket 146 passes through the mounting opening and extends to the side of the door body near the equipment cavity 153. The observation window 198 is pivotally connected to the door body. The window reinforcement 147 is located on the side of the door body near the equipment cavity 153 and is connected to the door body. The window reinforcement 147 is connected to the window bracket 146. Thus, the connection between the door body and the window bracket 146 is secure.
[0164] like Figure 15As shown, the window reinforcement 147 includes two first reinforcing walls 148 and a second reinforcing wall 149. The plane containing the first reinforcing wall 148 is perpendicular to the height direction of the housing. The plane containing the second reinforcing wall 149 is parallel to the height direction of the housing. The two first reinforcing walls 148 are spaced apart along the height direction of the housing. The two ends of the second reinforcing wall 149 are respectively connected to the two first reinforcing walls 148. The two first reinforcing walls 148 are located on the same side of the second reinforcing wall 149.
[0165] The second reinforcing wall 149 is attached to and connected to the door body. The first reinforcing wall 148 located below is connected to the window bracket 146. Thus, the structure of the window reinforcement 147 is simple.
[0166] More preferably, the window reinforcement 147 is constructed in a C-shape.
[0167] Preferably, the container also includes a seal 215. A seal 215 is provided between the equipment door 199 and the equipment end wall to seal the gap between them. A seal 215 is also provided between the door body and the observation window 198 to seal the gap between them. A seal 215 is also provided between the insulated window 197 and the insulated side wall 122 to seal the gap between them. A seal 215 is also provided between the insulated door 196 and the insulated side wall 122 to seal the gap between them. A seal 215 is also provided between the partition door 195 and the partition wall 123 to seal the gap between them. A seal 215 is also provided between the partition door and the partition wall 170 to seal the gap between them. A sealing element 215 is also provided between the upper door 211 and the dry goods side wall 132 to seal the gap between them. A sealing element 215 is also provided between the lower door 212 and the dry goods side wall 132 to seal the gap between them. A sealing element 215 is also provided between the upper door 211 and the lower door 212 to seal the gap between them.
[0168] Preferably, such as Figure 3 As shown, the equipment enclosure door 199 is equipped with a ventilation valve 216. When needed, the ventilation valve 216 can be opened to connect the equipment cavity 153 to the outside of the enclosure, thereby providing ventilation.
[0169] like Figure 5 and Figure 6As shown, preferably, the portion of the base frame 110 below the insulated wall section 120 and the portion below the dry cargo wall section 130 are provided with an insulation layer 190. Other configurations of the portions of the base frame 110 below the insulated wall section 120 and the portion below the dry cargo wall section 130 are substantially the same as the structure of the base frame 110 of the prior art refrigerated container, and will not be described further here.
[0170] This application has been described through the above embodiments. However, it should be understood that the above embodiments are for illustrative purposes only and are not intended to limit this application to the scope of the described embodiments. Furthermore, those skilled in the art will understand that this application is not limited to the above embodiments, and many more variations and modifications can be made based on the teachings of this application, all of which fall within the scope of protection claimed in this application. The scope of protection of this application is defined by the appended claims and their equivalents.
[0171] Unless otherwise defined, the technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art. The terminology used herein is for descriptive purposes only and is not intended to limit the scope of this application. Terms such as “component” as used herein may refer to a single part or a combination of multiple parts. Terms such as “installation” or “installation” as used herein may refer to a component being directly attached to another component or a component being attached to another component via an intermediary. A feature described in one embodiment herein may be applied, alone or in combination with other features, to another embodiment, unless that feature is not applicable in that other embodiment or is otherwise stated.
Claims
1. A container, characterized in that, The container includes: The enclosure includes: Base frame; An outer wall body, connected to the base frame to form an internal space, includes an insulated wall section and a dry goods wall section, which are arranged sequentially along the length of the box. One end of the insulated wall section is connected to one end of the dry goods wall section, and the dry goods wall section has a dry goods opening. A partition wall is located within the internal space. The partition wall is sealed to the inner surface of the box body at the connection between the insulated wall section and the dry goods wall section to divide the internal space into an insulated cavity and a dry goods cavity, wherein the dry goods cavity and the dry goods opening are in communication. A dry goods container door, which is pivotally connected to the container body for opening or closing the dry goods opening; Both the insulated wall body and the partition wall are provided with an insulation layer; The insulated wall section has an insulated inner panel, the base frame has a dry goods metal floor and an insulated metal floor, and the box also includes a partition. The partition is a non-metallic component and includes a box partition. The box partition is constructed as a circumferentially closed ring structure. The partition wall is located within the area enclosed by the box partition. Along the length of the box, one end of the box partition is connected to the insulated inner panel and the insulated metal floor, and the other end of the box partition is connected to the dry goods wall section and the dry goods metal floor. The partition wall includes an insulation board and a dry goods board. The partition also includes a partitioning component. The partitioning component is constructed as a circumferentially closed ring structure. Along the length of the box, one end of the partitioning component is connected to the insulation board, and the other end of the partitioning component is connected to the dry goods board. The partition includes a sealing part, which abuts against the enclosure partition. The partition includes a snap-fit portion, which includes two first walls and a second wall. There is a gap between the two first walls, and the second wall is located between the two first walls and between the two ends of the first walls to form a first mounting groove and a second mounting groove that are opposite to each other. The insulation board includes an insulation body. Along the length of the box, the edge of the insulation body is bent and extended close to the dry goods board to form an insulation bend. The insulation bend extends into the first mounting groove. The dry goods board includes a dry goods body. Along the length of the box, the edge of the dry goods body is bent and extended near the insulation board to form a dry goods bending section. The dry goods bending section extends into the second mounting groove.
2. The container according to claim 1, characterized in that, The position of the partition wall along the length of the box is adjustable.
3. The container according to claim 2, characterized in that, One of the outer wall and the partition wall is provided with an elongated hole whose long axis is parallel to the length direction of the box body, and the partition wall is connected to the box body through the elongated hole.
4. The container according to claim 1, characterized in that, The dry goods wall section has a dry goods top wall, which has a top plate, a dry goods reinforcing longitudinal beam, and a dry goods top side beam. The length direction of the dry goods reinforcing longitudinal beam is parallel to the length direction of the dry goods top side beam. The dry goods reinforcing longitudinal beam is located between the two dry goods top side beams and is located below the top plate and connected to the top plate.
5. The container according to claim 1, characterized in that, The container includes a dry goods pivot shaft with its axial direction parallel to the length direction of the container, and the dry goods container door is pivotally connected to the container via the dry goods pivot shaft.
6. The container according to claim 5, characterized in that, The dry goods side wall of the dry goods wall section has a dry goods opening, and the dry goods box door includes: The upper box door is pivotally connected to the dry goods top side beam of the box body; The lower compartment door is pivotally connected to the bottom side beam of the base frame.
7. The container according to claim 1, characterized in that, The partition wall is provided with a partition connection port; The container also includes a partition door, which is pivotally connected to the partition wall to open or close the partition connection.
8. The container according to claim 1, characterized in that, The outer wall also includes an equipment wall section, which is connected to the end of the insulation wall section away from the dry goods wall section to form an equipment cavity.
9. The container according to claim 8, characterized in that, The equipment wall section includes a reinforcing longitudinal beam and a top side beam. The length direction of the reinforcing longitudinal beam is parallel to the length direction of the top side beam. There is a gap between the reinforcing longitudinal beam and the base frame, and there is a gap between the reinforcing longitudinal beam and the top side beam. The reinforcing longitudinal beam is provided on both the top and the side of the equipment wall section.
10. The container according to claim 8, characterized in that, The container also includes refrigeration equipment, which is mounted on the top of the wall of the equipment.
11. The container according to claim 8, characterized in that, The insulated wall section has a partition wall connected to the equipment wall section, the partition wall having a partition opening, and the container further includes a partition door connected to the partition wall to open or close the partition opening.
12. The container according to claim 1, characterized in that, The enclosure also includes a partition frame, which includes side columns and a top beam. The top beam is connected to the top of the side columns, and the bottom of the side columns is connected to the bottom beam of the base frame, thus forming a circumferentially closed ring structure with the bottom beam of the base frame. The partition wall is located in the area enclosed by the partition frame and the bottom beam, and the insulated wall section and the dry goods wall section are connected through the partition frame.
13. The container according to claim 1, characterized in that, The insulated sidewall of the insulated wall section has an insulated opening, and the container also includes an insulated door, which is pivotally connected to the container body to open or close the insulated opening.
14. The container according to claim 1, characterized in that, The insulated sidewall of the insulated wall section has an insulated window, and the container also includes an insulated window connected to the container body to open or close the insulated window, the lower edge of the insulated window sloping outward from top to bottom.
Citation Information
Patent Citations
Heat-insulation transport equipment
CN108082762A
Refrigerated container
CN211033775U