New energy ship battery drying box
By designing a new energy ship battery drying box, the air-permeable mesh plate and movable frame drive mechanism are used to realize the automatic replacement of desiccant, which solves the cumbersome problem of traditional desiccant replacement and extends the service life of the battery box.
Patent Information
- Application Number
- CN202422995440.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-05
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-12-05
AI Technical Summary
When traditional new energy ships use desiccants in the battery compartment for drying protection, the desiccant replacement process is cumbersome and complicated, which can easily wear out the battery box accessories and reduce the service life.
A new energy ship battery drying box is designed. The air-permeable mesh plate and movable frame are combined with a driving mechanism to realize the vibration discharge and flattening of the desiccant. The desiccant is automatically replaced through the feeding and discharging pipes, simplifying the desiccant replacement process.
The automatic replacement of desiccant is realized, which reduces manual operation, avoids wear of battery box accessories and extends the service life of the battery box.
Smart Images

Figure CN223448782U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of new energy ship battery protection, and particularly discloses a new energy ship battery drying box. BACKGROUND
[0002] The new energy ship is a ship that relies on a lithium battery system to provide stable power support to promote the operation of the ship and the normal use of the ship equipment. The new energy ship has obvious advantages in short-distance transportation and tourism on rivers and lakes, and has the characteristics of reducing greenhouse gas and pollutant emissions and helping to realize the green transformation of the shipping industry.
[0003] The safe and stable operation of the battery as the core component of the new energy ship is particularly important for the new energy ship. Since the new energy ship mainly operates on rivers and lakes, the environment is relatively humid, and the humid environment will accelerate the aging process of the battery material, resulting in reduced battery capacity and shortened service life. In addition, water entering the battery interior may cause short circuits between battery components, thereby causing safety accidents such as fire or explosion. Therefore, it is essential to dry and protect the battery.
[0004] At present, the drying and protection of the battery usually involves equipping the battery cabin with a drying agent. However, due to the high air humidity in the operating environment of the new energy ship, the drying agent needs to be frequently replaced. At present, the replacement of the drying agent needs to disassemble the battery cabin or open the hatch of the battery cabin, which is complicated and complex, and is likely to exacerbate the wear and tear of the battery box accessories, thereby reducing the service life of the battery box. Therefore, the present application provides a new energy ship battery drying box to solve the above problems. CONTENT OF THE UTILITY MODEL
[0005] The utility model aims at solving the problem that the traditional new energy ship uses a drying agent in the battery box to dry and protect the battery, resulting in a complicated and complex drying agent replacement process.
[0006] In order to achieve the above purpose, the basic scheme of the utility model provides a new energy ship battery drying box, which comprises:
[0007] a box body capable of accommodating a new energy ship battery cabin and a hatch provided on the top of the box body;
[0008] a gas-permeable mesh plate provided in the box body, wherein a filling cavity capable of accommodating a drying agent is formed between the gas-permeable mesh plate and the inner wall of the box body, and a baffle is provided on the top of the filling cavity;
[0009] a replacement cavity provided at the bottom of the box body and in communication with the bottom surface of the filling cavity;
[0010] a feeding pipeline in communication with the filling cavity and a discharging pipeline in communication with the replacement cavity;
[0011] A movable frame is slidably connected between the filling cavity and the replacement cavity, and a driving mechanism drives vertical movement of the movable frame.
[0012] The principle and effects of the basic scheme are that:
[0013] Compared with the prior art, the utility model discloses a dry agent is stored in the filling cavity, and the dry agent plays a drying role on the environment in the box body by using the air-permeable mesh plate. When the dry agent is replaced, the driving mechanism drives the movable frame to reciprocate vertically, so that the dry agent in the filling cavity is vibrated, and then the dry agent is discharged from the replacement cavity and the discharge pipeline or the dry agent is laid in the filling cavity, thereby solving the problem that the traditional new energy ship adopts the dry agent arranged in the battery cabin to dry and protect the battery, and the dry agent replacement process is complicated.
[0014] Further, the bottom of the filling cavity is provided with a partition plate, a plurality of guide holes communicating with the replacement cavity are formed in the partition plate, and the bottom of the movable frame is slidably connected with the guide holes. Through the setting mode, the dry agent in the filling cavity is conveniently communicated into the replacement cavity from the guide hole.
[0015] Further, when the dry agent is discharged from the filling cavity, the bottom of the movable frame reciprocates above and below the guide hole, and when the dry agent is filled in the filling cavity, the bottom of the movable frame is always below the guide hole. When the dry agent is discharged, the filling cavity and the replacement cavity are communicated, and the dry agent is discharged from the replacement cavity and the discharge pipeline, and when the dry agent is filled, the filling cavity and the replacement cavity are cut off, and the dry agent is laid in the filling cavity.
[0016] Further, the movable frame comprises:
[0017] A connecting plate arranged in the filling cavity;
[0018] A guide column arranged on the connecting plate and slidably connected with the guide hole;
[0019] The driving mechanism comprises a vibration motor and a connecting shaft driven by the vibration motor, and the connecting shaft extends into the filling cavity and is connected with the connecting plate.
[0020] So that the connecting plate and the guide column are vibrated by the vibration motor, and the dry agent in the filling cavity is vibrated, so as to discharge the dry agent or lay the dry agent in the filling cavity.
[0021] Further, a plurality of guide rods are arranged on the connecting plate, a plurality of guide sleeves are arranged at the bottom of the baffle, and the top of the guide rod is slidably connected in each guide sleeve. The cooperation between the guide sleeve and the guide rod plays a limiting and guiding role in the vertical movement of the movable frame.
[0022] Further, the top of the guide rod and the inner bottom surface of the guide sleeve are both provided with springs. The springs can protect during vertical movement of the movable frame.
[0023] Further, the bottom surface of the replacement cavity is provided with a guide slope, and the lowest part of the guide slope is communicated with the discharge pipeline. This facilitates discharge of the desiccant from the discharge pipeline. BRIEF DESCRIPTION OF DRAWINGS
[0024] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative effort.
[0025] Figure 1 A schematic diagram of a new energy ship battery drying box according to an embodiment of the present application is shown;
[0026] Figure 2 A partial structure schematic diagram of a new energy ship battery drying box according to an embodiment of the present application is shown;
[0027] Figure 3 A replacement cavity schematic diagram of a new energy ship battery drying box according to an embodiment of the present application is shown. DETAILED DESCRIPTION
[0028] In order to further illustrate the technical means and effects adopted by the present application to achieve the predetermined technical purposes, the specific embodiments, structures, features and effects according to the present application will be described in detail below with reference to the drawings and preferred embodiments.
[0029] The reference signs in the drawings of the specification include: a box body 1, a mounting leg 2, a blocking frame 3, a baffle 4, a breathable mesh plate 5, a feeding pipeline 6, a connecting shaft 7, a discharge pipeline 8, a connecting plate 9, a partition plate 10, a guide column 11, a guide rod 12, a guide sleeve 13, and a replacement cavity 14.
[0030] A new energy ship battery drying box, an embodiment of which is shown in Figure 1 As shown: including a box body 1, a box cover provided on the top of the box body 1, a blocking frame 3 provided in the box body 1, and a breathable mesh plate 5 mounted on the blocking frame 3, the bottom of the box body 1 is provided with a plurality of mounting legs 2, the inner wall of the breathable mesh plate 5 is surrounded to form a mounting cavity capable of mounting a new energy ship battery compartment, the box cover in the embodiment is provided with a joint for connecting the batteries to each other and connecting the batteries to external electrical equipment, and a ventilation opening for cooling the batteries during operation is formed on the box cover.
[0031] As Figure 2 andFigure 3 As shown in the figure, the air-permeable net plate 5 and the inner wall of the box 1 form a filling cavity for placing the desiccant, the top of the filling cavity is provided with a baffle 4, the bottom of the filling cavity is provided with a partition plate 10, and the bottom of the box 1 is provided with a replacement cavity 14 below the partition plate 10. As shown in the figure, Figure 1 As shown in the figure, one or more feeding pipes 6 communicating with the filling cavity are arranged on the side wall of the box 1, and a discharging pipe 8 communicating with the replacement cavity 14 is arranged at the bottom of the box 1, and material pumps are arranged on the feeding pipe 6 and the discharging pipe 8.
[0032] As shown in the figure, Figure 2 and Figure 3 As shown in the figure, a plurality of guide holes communicating with the replacement cavity 14 are opened on the partition plate 10, and a movable frame is vertically and slidingly connected in the filling cavity, the movable frame includes a connecting plate 9 arranged in the filling cavity, guide columns 11 arranged at the bottom of the connecting plate 9 and slidingly connected with the guide holes, and guide rods 12 arranged at the top of the connecting plate 9, and correspondingly, guide sleeves 13 corresponding in position to the guide rods 12 are arranged at the bottom of the baffle 4, the top of the guide rods 12 is slidingly connected in each guide sleeve 13, and springs are arranged between the top of the guide rods 12 and the inner bottom surface of the guide sleeves 13. As shown in the figure, Figure 3 As shown in the figure, the bottom of the guide column 11 extends into the replacement cavity 14 through the guide hole, and the bottom surface of the replacement cavity 14 is provided with a guide slope, and the discharging pipe 8 communicates with the lowest part of the guide slope.
[0033] In this embodiment, a driving mechanism is used to drive the movable frame to move, the driving mechanism includes a vibration motor mounted on the outer wall of the box 1 or in the cabin of the new energy ship and a connecting shaft 7 arranged on the side wall of the box 1 and driven by the vibration motor, the connecting shaft 7 extends into the filling cavity and is connected with the connecting plate 9.
[0034] When the desiccant in the filling cavity is weakened in drying performance after long-term use, the material pump on the discharging pipe 8 is opened, and the vibration motor is started, the vibration motor drives the movable frame to move vertically, the bottom of the guide column 11 reciprocates along the upper part of the guide hole and the lower part of the guide hole, thereby intermittently connecting the filling cavity and the replacement cavity 14, and the desiccant is discharged from the replacement cavity 14 and the discharging pipe 8; after the desiccant in the filling cavity is discharged, the vibration amplitude of the vibration motor is replaced, the material pump on the feeding pipe 6 is opened, the vibration motor drives the movable frame to move vertically, the bottom of the guide column 11 is always below the guide hole, the filling cavity is disconnected with the replacement cavity 14, and the desiccant is laid flat in the filling cavity under the action of vibration, thereby completing the replacement of the desiccant.
[0035] The utility model discloses utilize the dry agent of filling cavity storage, and utilize the dry agent of gas permeable net board 5 to make the dry effect to the environment in box 1, and when replacing dry agent, utilize drive mechanism to drive movable frame to carry out the reciprocating motion of vertical, make the dry agent in filling cavity produce the effect of vibration, and then facilitate dry agent to discharge from replacement cavity 14 and discharge pipeline 8 or dry agent spreads to filling cavity, thereby solve the traditional new energy ship and adopt the dry agent in battery cabin configuration dry protection to battery, cause dry agent replacement process complicated problem.
[0036] The above is only the preferred embodiment of the utility model, and does not limit the utility model in any form, although the utility model has disclosed the above with the preferred embodiment, however, is not used to limit the utility model, any person skilled in the art, in the range of the utility model technical scheme, can make a little more change or modification as equivalent embodiment of equivalent change with the above disclosed technical content, but as long as not departing from the utility model technical scheme content, according to the technical essence of the utility model, any brief introduction modification, equivalent change and modification of the above embodiment, still belongs to the range of the utility model technical scheme.
Claims
1. A new energy ship battery drying box, characterized in that: include: A box body capable of accommodating the installation of a new energy ship battery compartment and a box cover provided on the top of the box body; A breathable mesh plate is provided in the box body, wherein a filling cavity for accommodating a desiccant is formed between the breathable mesh plate and the inner wall of the box body, and a baffle is provided on the top of the filling cavity; a replacement chamber provided at the bottom of the box body and communicating with the bottom surface of the filling chamber; a feed pipe communicating with the filling chamber and a discharge pipe communicating with the replacement chamber; A movable frame is slidably connected between the filling chamber and the replacement chamber, and a driving mechanism drives the movable frame to move vertically.
2. A new energy ship battery drying box according to claim 1, characterized in that: A partition is provided at the bottom of the filling cavity. A plurality of guide holes communicating with the replacement cavity are opened on the partition. The bottom of the movable frame is slidably connected to the guide holes.
3. A new energy ship battery drying box according to claim 2, characterized in that: When the desiccant is discharged from the filling cavity, the bottom of the movable frame slides back and forth above and below the guide hole; when the desiccant is filled in the filling cavity, the bottom of the movable frame is always below the guide hole.
4. A new energy ship battery drying box according to claim 2 or 3, characterized in that: The movable frame comprises: a connecting plate disposed in the filling cavity; A guide post provided on the connecting plate and slidably connected to the guide hole; The driving mechanism includes a vibration motor and a connecting shaft driven by the vibration motor. The connecting shaft extends into the filling cavity and is connected to the connecting plate.
5. A new energy ship battery drying box according to claim 4, characterized in that: The connecting plate is further provided with a plurality of guide rods, the bottom of the baffle is provided with a plurality of guide sleeves, and the tops of the guide rods are respectively slidably connected in the respective guide sleeves.
6. A new energy ship battery drying box according to claim 5, characterized in that: A spring is provided between the top of the guide rod and the inner bottom surface of the guide sleeve.
7. A new energy ship battery drying box according to claim 1, characterized in that: The bottom surface of the replacement cavity is provided with a guide slope, and the lowest point of the guide slope is communicated with the discharge pipe.