Container

By installing insulation layers and removable door barriers inside the container, combined with a heating system, the problem of solidification and crystallization of liquid materials during winter transportation was solved, resulting in cost reduction and improved transportation efficiency.

CN223836297UActive Publication Date: 2026-01-27CHINA RAILWAY SPECIAL CARGO LOGISTICS CO LTD +2
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Patent Information

Application Number
CN202520412457.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2026-01-27
Estimated Expiration
2035-03-10

AI Technical Summary

Technical Problem

When transporting liquids in winter, the liquids are prone to solidification and crystallization. Existing technologies require laying heating pads in advance to prevent solidification, which is time-consuming, labor-intensive, and costly.

Method used

A container was designed with an insulation layer inside, and equipped with removable door stops and a heating system. The insulation layer reduces heat loss, extends the solidification and crystallization time of liquid materials, avoids the need to lay heating pads during short-distance transportation, and simplifies the liquid material heating operation using the heating system.

Benefits of technology

It effectively prevents liquid materials from solidifying and crystallizing, reduces transportation costs, simplifies heating operations, and improves transportation efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a container. The container comprises a container body, a container door and a door stop. A heat preservation layer is arranged in the wall body of the box body, a box opening is formed in the first end, and a connecting assembly is arranged on the side portion of the box body. The box door is pivotally connected to the box body so as to open or close the box opening; the door shield is detachably connected to the connecting assembly and located in the box body so as to be used for blocking the liquid bag. Therefore, the heat preservation layer is arranged in the wall body of the box body, the temperature in the box body can be kept as far as possible, and heat loss of the liquid material can be reduced when a liquid bag filled with the liquid material is transported by the container; therefore, when a liquid bag filled with a liquid material is transported in winter, the time required for solidification and crystallization of the liquid material can be prolonged, solidification and crystallization of some liquid materials transported in a short distance are avoided, a heating pad does not need to be laid during short-distance transportation, and the cost is reduced; when a liquid bag filled with a liquid material is transported, the door shield can be connected to the connecting assembly, so that the liquid bag and the box door are separated, and the liquid bag is prevented from extruding the box door.
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Description

Technical Field

[0001] This utility model relates to the field of containers, and more specifically to containers. Background Technology

[0002] In modern logistics and industrial production, the demand for transporting liquid cargo (liquid materials) is becoming increasingly diversified and complex. Unlike traditional transportation methods such as drums and tank trucks, transporting liquid materials via liquid bags and containers combines the flexibility of liquid bag packaging with the efficiency of container transport, and has thus gained widespread application.

[0003] Currently, standard dry cargo containers are commonly used to transport liquid bags. However, some liquids tend to solidify and crystallize during winter transport. Therefore, when loading the liquid bags into the container, heating pads or other auxiliary materials need to be laid inside beforehand so that steam can be introduced upon arrival at the destination to heat the liquid bags, melting any crystallized liquid before unloading. Laying heating pads for heating the liquid bags is time-consuming, labor-intensive, and costly. Utility Model Content

[0004] The utility model description section introduces a series of simplified concepts, which will be further described in detail in the detailed embodiments section. This utility model description section is not intended to limit the key features and essential technical features of the claimed technical solution, nor is it intended to determine the scope of protection of the claimed technical solution.

[0005] To at least partially solve the above-mentioned technical problems, this utility model provides a container for transporting liquid bags, the container comprising:

[0006] The box has an internal insulation layer on its walls. The box has a first end and a second end that are opposite to each other along its length. The first end has a box opening. The side of the box has a connecting component. Along the length of the box, the connecting component is closer to the second end.

[0007] The cabinet door is pivotally connected to the cabinet body to open or close the cabinet opening;

[0008] A door stop, detachably connected to the connecting assembly and located inside the housing, is used to block the liquid bag.

[0009] According to this utility model, the container has an insulation layer inside the container wall, which can retain the temperature inside the container as much as possible. When transporting liquid bags containing liquid, it can reduce the heat loss of the liquid. Thus, when transporting liquid bags containing liquid in winter, it can extend the time required for the liquid to solidify and crystallize, thereby avoiding solidification and crystallization of some liquids transported over short distances. Heating pads are not required for short-distance transport, reducing costs. When transporting liquid bags containing liquid, the door stop can be connected to the connecting component to separate the liquid bag and the container door, preventing the liquid bag from squeezing the container door and causing the door position to change, thereby reducing the possibility of the seal leaving the container and reducing the sealing performance of the container.

[0010] Optionally, the connecting assembly includes a reinforcing part and a connecting part, one end of the reinforcing part is connected to the connecting part, the side part includes a side wall, the side wall includes an inner wall panel, the connecting part overlaps with the inner wall panel, and the door stop is detachably connected to the connecting part.

[0011] The enclosure has corner posts, and the other end of the reinforcing part is connected to the corner posts, and / or

[0012] The reinforcing part is embedded in the side wall of the enclosure.

[0013] Optionally, the connecting portion is recessed along the width direction of the housing to form a groove away from the center of the housing.

[0014] The connecting assembly includes a door stop seat, which is connected to a recess, and the door stop is detachably connected to the door stop seat.

[0015] Optionally, along the width direction of the housing, the door stop does not protrude to the inner surface of the groove on the side near the center of the housing.

[0016] Optionally, the plane of the connecting part is parallel to the inner wall surface of the side wall, and the connecting part has a mounting hole through which the door stop can be detachably connected to the connecting part.

[0017] Optionally, the top of the enclosure is provided with a storage section for removably connecting to the door stop.

[0018] Optionally, the storage section extends into the wall body, and the storage section has a clearance cavity separated from the insulation layer, and a storage hole communicating with the clearance cavity. The door stop extends into the clearance cavity after passing through the storage hole.

[0019] Optionally, the enclosure also includes a floor, the walls include a base frame, the floor is laid on the base frame, the floor has a channel, the base frame is provided with an external pipe, one end of the external pipe is connected to the channel, and the other end of the external pipe is connected to the outside of the enclosure.

[0020] Optionally, the external connecting pipe includes a first pipe and a second pipe, and the floor includes a first floor and a second floor, with the channel of the first floor connected to the first pipe, the channel of the second floor connected to the second pipe, and the channel of the first floor connected to the channel of the second floor.

[0021] Optionally, the floor also includes a connecting pipe. Along the length of the box, the first floor and the second floor are both located on the same side of the connecting pipe. One end of the first floor and one end of the second floor are both connected to the connecting pipe. The other end of the first floor is connected to the first pipe, and the other end of the second floor is connected to the second pipe.

[0022] Optionally, the base frame is also provided with a first air guide pipe and a second air guide pipe. The first air guide pipe connects the first pipe and the first floor, and the second air guide pipe connects the second pipe and the second floor. The first air guide pipe and the second air guide pipe are arranged sequentially along the width direction of the box. Attached Figure Description

[0023] To make the advantages of this invention more readily apparent, the invention briefly described above will be described in more detail with reference to the specific embodiments shown in the accompanying drawings. It should be understood that these drawings depict only typical embodiments of the invention and should not be construed as limiting its scope of protection. The invention is described and explained with additional features and details through the drawings.

[0024] Figure 1 This is a front view schematic diagram of a container according to the first preferred embodiment of the present invention;

[0025] Figure 2 for Figure 1 A cross-sectional view of the container;

[0026] Figure 3 for Figure 1 A cross-sectional view of the container at section AA;

[0027] Figure 4 for Figure 1 A cross-sectional view of the container at the BB section;

[0028] Figure 5 for Figure 2 A magnified view of part C of the container;

[0029] Figure 6 for Figure 2 A magnified view of part D of the container;

[0030] Figure 7 for Figure 3 A magnified view of part E of the container;

[0031] Figure 8 for Figure 4 A magnified view of part F of the container;

[0032] Figure 9 for Figure 2 A partially enlarged schematic diagram of the container storage area;

[0033] Figure 10 for Figure 9 A cross-sectional view of the GG section of the container;

[0034] Figure 11 for Figure 9 A cross-sectional view of the storage section of the container at point HH;

[0035] Figure 12 for Figure 1 A side view of the container where the first pipe, first air duct, first vertical pipe, first floor and connecting pipe are connected together;

[0036] Figure 13 for Figure 1 A top view diagram showing the connection between the container floor, external pipe, first air duct, second air duct, and vertical pipe.

[0037] Figure 14 for Figure 13 A side view of the container floor, external pipe, first air duct, second air duct, and vertical pipe connected together.

[0038] Figure 15 This is a partial schematic diagram at the door of a sectional view of the main view of a container according to a second preferred embodiment of the present invention; and

[0039] Figure 16 for Figure 15 A top view, a cross-sectional view, and a partial schematic diagram at the corner post of the container door.

[0040] Explanation of reference numerals in the attached figures

[0041] 100: Enclosure 101: Side Wall

[0042] 102: Top wall 103: End wall

[0043] 104: Base frame; 105: Insulation layer

[0044] 106: Box mouth 107: Corner post

[0045] 108: Inner wall panel; 109: Storage section

[0046] 110: Connecting component; 111: Reinforcing part

[0047] 112: Connecting part; 113: Groove

[0048] 114: door stop seat 116: inner surface

[0049] 120: Door stop 130: Box door

[0050] 131: Threshold 140: Floor

[0051] 141: First floor 142: Second floor

[0052] 143: Channel 144: Connecting pipe

[0053] 145: First side floor 146: Second side floor

[0054] 150: External pipe 151: First pipe

[0055] 152: Second tube; 153: First air delivery tube

[0056] 154: Second air duct 155: Vertical tube

[0057] 160: Storage hole 161: Main body

[0058] 162: Panel 163: Protruding Arm

[0059] 164: First sealing plate 165: Second sealing plate

[0060] 166: Clearance cavity 167: Mounting slot

[0061] 208: Inner wall panel; 212: Connecting part

[0062] 215: Mounting hole; 220: Door stop. Detailed Implementation

[0063] In the following description, numerous specific details are set forth in order to provide a more thorough understanding of the present invention. However, it will be apparent to those skilled in the art that embodiments of the present invention 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 in order to avoid confusion with embodiments of the present invention.

[0064] The preferred embodiments of this utility model 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.

[0065] In this document, ordinal numbers such as “first” and “second” used in this invention are merely identifiers and do not include any other meaning, such as a specific order.

[0066] To fully understand the embodiments of this utility model, a detailed structure will be presented in the following description. Obviously, the implementation of the embodiments of this utility model is not limited to the specific details familiar to those skilled in the art. Preferred embodiments of this utility model are described in detail below; however, in addition to these detailed descriptions, this utility model may also include other embodiments.

[0067] First Implementation Method

[0068] This embodiment provides a container. The container can be a refrigerated container. The container is used to transport liquid bags. A door stop 120 can be installed at the container door 130. The door stop 120 is used to block the liquid bag, thereby separating the liquid bag from the container door 130 and preventing the liquid bag from squeezing the container door 130.

[0069] Please refer to Figures 1 to 14 The container includes a container body 100. The container body 100 includes walls. Along the length of the container body 100, the container body 100 has opposite first and second ends. The walls include a base frame 104, end walls 103, a top wall 102, and side walls 101. The base frame 104, end walls 103, top wall 102, and side walls 101 are constructed in a generally cuboid structure. The first end of the container body 100 has a container opening 106. The end wall 103 is located at the second end of the container body 100.

[0070] The box body 100 has a side wall 101 and a corner post 107 on its side. The corner post 107 is located at the end of the side wall 101 along the length direction of the box body 100. A connecting assembly 110 is provided on the side. Along the length direction of the box body 100, the connecting assembly 110 is further away from the second end relative to the first end. Along the length direction of the box body 100, when the box door 130 is closed (opening 106), the connecting assembly 110 is located on the inner side of the box door 130 near the center of the box body 100. The connecting assembly 110 is located in the box body 100 near the opening 106.

[0071] like Figures 1 to 4 As shown, the container also includes a door 130. The door 130 is pivotally connected to the container body 100 to open or close the opening 106. The door 130 is provided with a seal. When the door 130 closes the opening 106, the seal abuts against the container body 100 to seal the gap between the door 130 and the container body 100.

[0072] Please refer to the following: Figures 2 to 8The base frame 104, end walls 103, top wall 102, side walls 101, and door 130 are all equipped with insulation layers 105. The base frame 104, end walls 103, top wall 102, side walls 101, and door 130 are each manufactured independently. During manufacturing, foaming material is injected to form the insulation layer 105 within the components. The independently manufactured base frame 104, end walls 103, top wall 102, side walls 101, and door 130 can then be assembled into a container.

[0073] The insulation layer 105 helps retain the temperature inside the container 100 as much as possible, reducing heat loss from the liquid when transporting liquid bags containing liquid materials in containers. This extends the time for the liquid to solidify and crystallize during winter transport, thus shortening the heating cycle and duration required to melt the solidified liquid in the liquid bags during winter.

[0074] Please refer to Figure 2 , Figure 4 and Figure 8 The container also includes a door stop 120. The door stop 120 is detachably connected to the connecting assembly 110. Thus, along the width direction of the container body 100, one end of the door stop 120 is connected to a side wall 101. The other end of the door stop 120 is connected to another side wall 101. At this time, the door stop 120 is located inside the container body 100 to block the liquid bag. Thus, when transporting a liquid bag containing liquid, the door stop 120 can be connected to the connecting assembly 110 to separate the liquid bag from the container door 130, preventing the liquid bag from compressing the container door 130 and causing a change in the position of the container door 130, thereby reducing the possibility of the seal leaving the container body 100 and reducing the sealing performance of the container body 100.

[0075] When the liquid bag is not needed, the door stop 120 can be removed from the connecting assembly 110 so that the container can be used as a refrigerated container.

[0076] In this embodiment, an insulation layer 105 is provided inside the wall of the container 100 to retain the temperature inside the container 100 as much as possible. When transporting liquid bags containing liquid materials in a container, the heat loss of the liquid material can be reduced. Thus, when transporting liquid bags containing liquid materials in winter, the time required for the liquid material to solidify and crystallize can be extended, thus avoiding solidification and crystallization of some liquid materials transported over short distances. Heating pads are not required for short-distance transport, reducing costs. When transporting liquid bags containing liquid materials, the door stop 120 can be connected to the connecting assembly 110 to separate the liquid bag from the container door 130, preventing the liquid bag from squeezing the container door 130 and causing the position of the container door 130 to change. This reduces the possibility of the seal leaving the container 100 and reducing the sealing performance of the container 100.

[0077] Optionally, such as Figure 8As shown, the connecting assembly 110 includes a reinforcing part 111 and a connecting part 112. The reinforcing part 111 has a plate-like structure. The plane containing the reinforcing part 111 is perpendicular to the vertical direction. Along the width direction of the housing 100, one end of the reinforcing part 111 is connected to the connecting part 112. The side wall 101 includes an inner wall panel 108. Along the width direction of the housing 100, the inner wall panel 108 is located on the side of the insulation layer 105 of the side wall 101 near the interior space of the housing 100. Along the width direction of the housing 100, the reinforcing part 111 is located on the side of the connecting part 112 away from the center of the housing 100. The connecting part 112 overlaps the inner side surface of the inner wall panel 108 (the surface of the inner wall panel 108 facing the center of the housing 100 along the width direction of the housing 100). The door stop 120 is detachably connected to the connecting part 112 via the door stop seat 114 described later.

[0078] Please continue to refer to this. Figure 8 The other end of the reinforcing part 111, away from the connecting part 112, is connected to the corner post 107. Thus, the reinforcing part 111 increases the strength of the side wall 101, thereby increasing the inflation performance of the housing 100 when used to transport liquid bags. Furthermore, the force exerted by the liquid bag on the door stop 120 can be transmitted to the corner post 107.

[0079] Optionally, the reinforcing part 111 is embedded in the side wall 101 of the housing 100. Thus, along the width direction of the housing 100, the insulation layer 105 is located on the side of the connecting part 112 away from the center of the housing 100. The insulation layer 105 covers the reinforcing part 111. The insulation layer 105 fills the side wall 101 as much as possible. This increases the insulation performance at the reinforcing part 111.

[0080] For further information, please continue to refer to [link / reference]. Figure 8 Along the width direction of the housing 100, a portion of the connecting part 112 is recessed away from the center of the housing 100 to form a groove 113. Thus, the connecting part 112 includes a bottom plate, a side plate, and a top plate. The bottom plate, side plate, and top plate are all plate-like structures. The planes containing the bottom plate and top plate are perpendicular to the width direction of the housing 100. The plane containing the side plate is perpendicular to the length direction of the housing 100. Along the width direction of the housing 100, the bottom plate connects to one end of the side plate to form the groove 113. Along the width direction of the housing 100, the top plate connects to the end of the side plate away from the bottom plate. The top plate overlaps the inner surface of the inner wall panel 108.

[0081] The connecting assembly 110 includes a door stop 114. The door stop 114 is fixedly connected to the bottom of the groove 113 (groove bottom plate portion) by fasteners such as rivets. The door stop 114 has a mounting hole and a clearance cavity communicating with the mounting hole. A portion of the door stop 120 can pass through the mounting hole and then into the clearance cavity, so that the door stop 120 is detachably connected to the door stop 114 through the mounting hole. This increases the strength of the connection portion 112.

[0082] Optionally, the bottom plate of the groove can be welded to the reinforcing part 111. This facilitates the installation of the connecting assembly 110.

[0083] like Figure 8 As shown, along the width direction of the container body 100, the door stop 114 does not protrude to the side of the inner surface 116 of the groove 113 (that is, the surface of the groove top plate facing the interior space of the container body 100) near the center of the container body 100. Therefore, when the container is transporting other goods, it avoids collisions between the goods and the door stop 114.

[0084] Alternatively, please refer to Figure 2 A storage section 109 is provided at the top of the inner wall panel 108. The storage section 109 is used to detachably connect the door stop 120. When the door stop 120 is removed from the connecting assembly 110, the door stop 120 can be connected to the storage section 109. For example, the storage section 109 may be provided with a storage hole 160 for detachably connecting the door stop 120. This prevents the door stop 120 from being lost. In addition, the door stop 120 connected to the storage section 109 is located at the top of the internal space of the housing 100, so it does not affect the loading and unloading of goods.

[0085] Optionally, such as Figures 9 to 11 As shown, the storage section 109 includes a body 161, a first sealing plate 164, and a second sealing plate 165. The body 161 includes a panel 162 and a protruding arm 163. The panel 162 is attached to the inner side of the inner wall panel 108. The panel 162 is detachably connected to the inner wall panel 108 by fasteners. One side of the panel 162 extends outward from the inner wall panel 108 to form the protruding arm 163. There are two protruding arms 163. The two protruding arms 163 are spaced apart vertically to form a U-shaped structure with the panel 162. The opening of this U-shaped structure faces outward along the width direction of the housing 100.

[0086] The end of the protruding arm 163 away from the panel 162 is connected to the first sealing plate 164. Along the width direction of the housing 100, the first sealing plate 164 and the panel 162 are spaced apart. The first sealing plate 164 seals the opening of the U-shaped structure.

[0087] like Figure 9 and Figure 11As shown, along the length of the housing 100, a second sealing plate 165 is located on one side of the protruding arm 163 and connected to the protruding arm 163, the first sealing plate 164, and the panel 162. Along the length of the housing 100, another second sealing plate 165 is located on the other side of the protruding arm 163 and connected to the protruding arm 163, the first sealing plate 164, and the panel 162. The protruding arm 163, the first sealing plate 164, and the second sealing plate 165 extend into the side wall.

[0088] Thus, the first sealing plate 164, the second sealing plate 165, the protruding arm 163, and the panel 162 constitute a clearance cavity 166. The clearance cavity 166 is separated from the insulation layer 105. The clearance cavity 166 is connected to the storage hole 160. The door stop 120 extends into the clearance cavity 166 after passing through the storage hole 160, to connect to the storage part 109. As a result, the storage part 109 has high strength.

[0089] Furthermore, such as Figure 10 As shown, the protruding arm 163 has a mounting groove 167. The openings of the mounting grooves 167 of the two protruding arms 163 face each other. A first sealing plate 164 extends into the mounting grooves 167 of the two protruding arms 163 to connect the protruding arms 163. This increases the sealing and connection strength at the connection between the first sealing plate 164 and the protruding arm 163.

[0090] Optionally, the door stop 120 can be a rod-shaped structure. When the door stop 120 is connected to the connecting assembly 110, the length direction of the door stop 120 is parallel to the width direction of the housing 100. As a result, the door stop 120 is small in size and easy to install and remove.

[0091] Alternatively, please refer to Figures 2 to 7 ,as well as Figures 12 to 14 The housing 100 also includes a floor 140. The floor 140 is laid on the base frame 104. Thus, the base frame 104 supports the floor 140. The floor 140 is a hollow metal structure. Thus, the floor 140 has a channel 143.

[0092] like Figure 5 , Figures 12 to 14 As shown, the base frame 104 is equipped with an external connecting pipe 150. One end of the external connecting pipe 150 is connected to the floor 140, thereby connecting to the passage 143. The other end of the external connecting pipe 150 is connected to the outside of the housing 100. Thus, the end of the external connecting pipe 150 located outside the housing 100 can be connected to a heat source. The heat source can then supply a heating fluid (e.g., hot air or hot liquid) through the external connecting pipe 150, thereby heating the floor 140 and subsequently heating the liquid bag placed on the floor 140. No heating pads or other auxiliary materials for heating the liquid bag are required. Heating the liquid bag is simple and convenient, and the loading and unloading of the liquid bag is quick.

[0093] like Figures 12 to 14As shown, the external connecting pipe 150 includes a first pipe 151 and a second pipe 152. The floor 140 includes a first floor 141 and a second floor 142. Both the first floor 141 and the second floor 142 are approximately cuboid structures. The length directions of the first floor 141 and the second floor 142 are parallel to the length direction of the housing 100. The first floor 141 and the second floor 142 are joined together along the width direction of the housing 100. Thus, along the width direction of the housing 100, the channels 143 of the first floor 141 and the second floor 142 are sequentially spaced apart. The channels 143 of the first floor 141 connect to the first pipe 151. The channels 143 of the second floor 142 connect to the second pipe 152. The channels 143 of the first floor 141 connect to the channels 143 of the second floor 142.

[0094] Heating fluid can be introduced into the channel 143 of the floor 140 through one of the first pipe 151 and the second pipe 152. The heating fluid flows between the first floor 141 and the second floor 142 and then flows out from the second pipe 152. In this way, the floor 140 can be heated more effectively by heating the floor 140 through the flowing heat source.

[0095] like Figure 6 , Figure 12 and Figure 13 As shown, the floor 140 also includes a connecting pipe 144. Along the length of the housing 100, the first floor 141 and the second floor 142 are both located on the same side of the connecting pipe 144. Along the length of the housing 100, one end of the first floor 141 and one end of the second floor 142 are connected to the connecting pipe 144, thus connecting them. The other end of the first floor 141 is connected to a first pipe 151, and the other end of the second floor 142 is connected to a second pipe 152. Therefore, the length of the fluid path within the floor 140 can be maximized, thereby enabling more efficient heating of the floor 140.

[0096] Optionally, such as Figure 13 As shown, all the first floorboards 141 constitute the first side floor 145. All the second floorboards 142 constitute the second side floor 146. The first side floorboards 145 and the second side floorboards 146 are arranged sequentially along the width direction of the housing 100. The base frame 104 is also provided with a first air guide pipe 153, a second air guide pipe 154, and a vertical pipe 155. The length direction of the vertical pipe 155 is parallel to the vertical direction. The length directions of the first pipe 151 and the second pipe 152 are both parallel to the length direction of the housing 100. The length directions of the first air guide pipe 153 and the second air guide pipe 154 are both parallel to the width direction of the housing 100.

[0097] Along the width of the housing 100, a first air guide pipe 153 and a second air guide pipe 154 are sequentially arranged. The first pipe 151, the second pipe 152, and the vertical pipe 155 are all located below the floor 140. The first air guide pipe 153 is located directly below the first side floor 145. The second air guide pipe 154 is located directly below the second side floor 146. There are multiple vertical pipes 155. Each vertical pipe 155 corresponds one-to-one with one of the multiple channels 143 of the floor 140.

[0098] Each channel 143 is connected to the upper end of a corresponding vertical pipe 155. The vertical pipes include first vertical pipes and second vertical pipes. There are multiple first vertical pipes and multiple second vertical pipes. The lower ends of the multiple first vertical pipes are connected to a first air guide pipe 153, which connects to a first pipe 151, thereby connecting the first pipe 151 and the first floor 141. The lower ends of the multiple second vertical pipes are connected to a second air guide pipe 154, which connects to a second pipe 152, thereby connecting the second pipe 152 and the second floor 142. Along the width direction of the housing 100, the first pipe 151 and the second pipe 152 are located approximately at the center of the housing 100.

[0099] like Figures 12 to 14 As indicated by the arrow, the heat source is supplied with fluid through the first pipe 151. The fluid flows sequentially through the first pipe 151, the first air guide pipe 153, the first vertical pipe, the channel 143 of the first floor 141, the connecting pipe 144, the channel 143 of the second floor 142, the second vertical pipe, and the second air guide pipe 154 before being returned to the heat source through the second pipe 152.

[0100] It should be noted that in this article, "channel connecting pipe" refers to the internal pipe of the channel connecting pipe. For example, "channel 143 connecting to connecting pipe 144" refers to the internal pipe of channel 143 connecting to connecting pipe 144. "Fluid flow pipe" refers to the internal pipe of the fluid flow pipe. For example, "fluid flow through connecting pipe 144" refers to the internal pipe of fluid flow through connecting pipe 144.

[0101] like Figure 6 As shown, the base frame 104 has a threshold 131 at one end of the door 130. A connecting pipe 144 overlaps the threshold 131. The upper surface of the connecting pipe 144 is flush with the upper surface of the threshold 131. Thus, the connection between the floor 140 and the base frame 104 is secure.

[0102] Optionally, both the sidewall 101 and the endwall 103 are provided with reinforcing structures. For example, a vertically extending column is provided. The top of the column is connected to the top wall, and the bottom of the column is connected to the base frame. This increases the strength of the sidewall 101 and the endwall 103, reducing the possibility of deformation of the sidewall 101 and the endwall 103 due to compression from the liquid bag.

[0103] Second Implementation Method

[0104] Please refer to Figure 15 and Figure 16 The connecting part 212 has a plate-like structure. The plane of the connecting part 212 is parallel to the plane of the inner wall panel 208. The connecting part 212 has a mounting hole 215. The door stop 220 is detachably connected to the connecting part 212 through the mounting hole 215. Thus, the structure of the connecting assembly is simple.

[0105] Optionally, the reinforcing part includes a vertical plate and a horizontal plate. The horizontal plate is a plate-like structure whose plane is perpendicular to the vertical direction. The vertical plate is a plate-like structure whose plane is parallel to the vertical direction. The vertical plate is attached to the connecting part 212. The vertical plate has a vertical plate hole corresponding to the mounting hole 215. The door stop 220 passes through the mounting hole 215 and then through the vertical plate hole. This further increases the strength of the reinforcing part. In addition, it further increases the connection strength between the door stop 220 and the housing.

[0106] In an embodiment not shown, the connecting part and the reinforcing part are constructed as a single piece. Both the connecting part and the reinforcing part are sheet metal parts. Therefore, the structure of the connecting assembly is simple.

[0107] The other settings of the second embodiment are largely the same as those of the first embodiment, and will not be described in detail here.

[0108] This utility model 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 the utility model to the described embodiments. Furthermore, those skilled in the art will understand that this utility model is not limited to the above embodiments, and many more variations and modifications can be made based on the teachings of this utility model, all of which fall within the scope of protection claimed by this utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

[0109] 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 the invention. 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 one component being directly attached to another component or one 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 is used to transport liquid bags, and the container includes: The box has an insulation layer inside its wall. The box has a first end and a second end that are opposite to each other along its length. The first end has a box opening. A connecting component is provided on the side of the box. Along the length of the box, the connecting component is closer to the second end. A door, which is pivotally connected to the box body, to open or close the box opening; A door stop, detachably connected to the connecting assembly and located within the housing, is used to block the liquid bag.

2. The container according to claim 1, characterized in that, The connecting assembly includes a reinforcing portion and a connecting portion, one end of the reinforcing portion being connected to the connecting portion, the side portion including a side wall, the side wall including an inner wall panel, the connecting portion overlapping the inner wall panel, and the door stop being detachably connected to the connecting portion. The housing has corner posts, the other end of the reinforcing part is connected to the corner posts, and / or the reinforcing part is embedded in the side wall of the housing.

3. The container according to claim 2, characterized in that, The connecting portion is recessed along the width direction of the box body away from the center of the box body to form a groove. The connecting assembly includes a door stop seat connected to the recess, and the door stop is detachably connected to the door stop seat.

4. The container according to claim 3, characterized in that, Along the width direction of the box body, the door stop does not protrude to the side of the inner surface of the groove near the center of the box body.

5. The container according to claim 2, characterized in that, The plane containing the connecting part is parallel to the inner wall surface of the side wall. The connecting part has a mounting hole, and the door stop is detachably connected to the connecting part through the mounting hole.

6. The container according to claim 1, characterized in that, The top of the box is provided with a storage section, which is used to detachably connect to the door stop.

7. The container according to claim 6, characterized in that, The storage section extends into the wall body, and the storage section has a clearance cavity separated from the insulation layer, and a storage hole communicating with the clearance cavity. The door stop extends into the clearance cavity after passing through the storage hole.

8. The container according to any one of claims 1 to 5, characterized in that, The enclosure also includes a floor, the wall includes a base frame, the floor is laid on the base frame, the floor has a channel, the base frame is provided with an external pipe, one end of the external pipe is connected to the channel, and the other end of the external pipe is connected to the outside of the enclosure.

9. The container according to claim 8, characterized in that, The external connecting pipe includes a first pipe and a second pipe, and the floor includes a first floor and a second floor. The channel of the first floor is connected to the first pipe, the channel of the second floor is connected to the second pipe, and the channel of the first floor is connected to the channel of the second floor.

10. The container according to claim 9, characterized in that, The floor also includes a connecting pipe. Along the length of the box, the first floor and the second floor are both located on the same side of the connecting pipe. One end of the first floor and one end of the second floor are both connected to the connecting pipe. The other end of the first floor is connected to the first pipe, and the other end of the second floor is connected to the second pipe.

11. The container according to claim 9, characterized in that, The base frame is also provided with a first air guide pipe and a second air guide pipe. The first air guide pipe connects the first pipe and the first floor, and the second air guide pipe connects the second pipe and the second floor. The first air guide pipe and the second air guide pipe are arranged sequentially along the width direction of the box body.