Flower basket fixing device
By designing a flower basket fixing device, the main body and the movable part are used to fix the flower basket support plate to form an integral structure, which solves the problem of flower basket shaking during the battery fabrication process and improves the stability and safety of battery cell processing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- XUANCHENG HUASHENG PHOTOVOLTAIC TECH CO LTD
- Filing Date
- 2025-05-28
- Publication Date
- 2026-05-05
AI Technical Summary
During the battery texturing process, the flower basket is prone to shaking due to the gas generated in the reaction solution, which can cause it to change position, affect the smooth progress of subsequent processing steps, and increase the risk of battery cells falling off and being damaged.
A flower basket fixing device is provided, comprising a main body and a movable part. The supporting plate of the flower basket is fixed by the cooperation of the receiving groove and the movable part, forming an integral structure, enhancing stability and resisting the force of the reactive gas.
It effectively prevents the flower basket from drifting, improves the stability of the cell processing steps, reduces the risk of cells falling and being damaged, and ensures the smooth progress of the processing.
Smart Images

Figure CN224205626U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of solar cell manufacturing technology, and in particular to a flower basket fixing device. Background Technology
[0002] Texturing is a process used in the photovoltaic industry to process solar cells. The core of this process lies in treating the surface of the cell to create a textured surface with a specific morphology. This textured structure increases the surface area of the cell, thereby improving its ability to absorb sunlight, ultimately enhancing the photoelectric conversion efficiency of the solar cell and optimizing its electrical performance parameters.
[0003] In existing battery texturing processes, the battery cells need to be installed in a basket, which is then placed in a reaction solution for processing. However, the reaction of the battery cells in the solution generates a large amount of gas. Under the influence of this gas, the basket may shake, resulting in a floating basket phenomenon. This causes the basket to change position after the reaction, affecting the smooth progress of subsequent battery cell processing steps. Utility Model Content
[0004] This application provides a flower basket fixing device to prevent the flower basket from floating and to ensure the smooth progress of subsequent processing steps of the battery cells.
[0005] This application provides a flower basket fixing device, including a main body and a movable part;
[0006] The main body is provided with a receiving groove, which is used to accommodate at least part of the flower basket, and the side wall of the receiving groove is used to abut against the first surface of the support plate of the flower basket;
[0007] The movable part is movably disposed within the receiving groove, and the movable part is at least used to abut against the second surface of the support plate to fix the support plate through the movable part and the side wall.
[0008] As an optional implementation, the sidewall extends along a first direction;
[0009] The movable part is spaced apart from the side wall, and the movable part can be slidably disposed in the receiving groove along the first direction.
[0010] As an optional implementation, a guide rail is provided in the receiving groove, the guide rail extends along the first direction, and the movable part is movably disposed on the guide rail.
[0011] As an optional implementation, the number of the movable parts is multiple, and the multiple movable parts include a first movable part and a second movable part;
[0012] The first movable part and the second movable part can move closer to or further away from each other along the first direction.
[0013] As an optional implementation, the main body is provided with a driving member, which is rotatable about the first direction;
[0014] The driving component includes a first threaded portion and a second threaded portion arranged coaxially, wherein the thread direction of the first threaded portion and the thread direction of the second threaded portion are opposite.
[0015] The first threaded portion is threadedly connected to the first movable portion, and the second threaded portion is threadedly connected to the second movable portion.
[0016] As an optional implementation, the guide rail divides the receiving groove to form a first receiving portion and a second receiving portion;
[0017] The first receiving portion is at least used to receive the first support plate; the first receiving portion has a first sidewall, and the first sidewall and the surface of the movable portion facing the first sidewall both abut against the first support plate;
[0018] The second receiving portion is at least used to accommodate the second support plate; the second receiving portion has a second sidewall, and the second sidewall and the surface of the movable portion facing the second sidewall both abut against the second support plate.
[0019] As an optional implementation, the first surface of the movable part is inclined, and in the direction away from the bottom surface of the receiving groove, the first surface of the movable part gradually approaches the first sidewall;
[0020] And / or, the second surface of the movable part is inclined, and in a direction away from the bottom surface of the receiving groove, the second surface of the movable part gradually approaches the second sidewall.
[0021] As an optional implementation, the guide rail is provided with a connected sliding groove and a fixed groove, both of which extend along the first direction;
[0022] The movable part is disposed in the sliding groove, and the movable part is provided with a protrusion. The protrusion is movably disposed in the fixed groove along the first direction. The protrusion and the fixed groove are at least used to restrict the movable part from disengaging from the sliding groove.
[0023] As an optional implementation, the sidewall is provided with an abutment member;
[0024] The abutment can move in a direction close to or away from the movable part, and the sidewall abuts against the first surface of the support plate through the abutment.
[0025] As an optional implementation, the side wall is provided with a mounting groove, and an elastic element is provided in the mounting groove;
[0026] The first end of the elastic element abuts against the bottom surface of the mounting groove, and the second end of the elastic element can extend or retract in a direction close to or away from the movable part. The second end of the elastic element is connected to the abutting member.
[0027] The flower basket fixing device provided in this application includes a main body and a movable part. The main body is provided with a receiving groove, which is used to accommodate at least part of the flower basket. The side wall of the receiving groove is used to abut against the first surface of the support plate of the flower basket. The movable part is movably disposed in the receiving groove, and the movable part is used to abut against the second surface of the support plate to fix the support plate through the movable part and the side wall. During the texturing process of the battery cell, the support plates of at least two flower baskets can be fixed in the receiving groove to achieve a stable connection between the flower baskets, thereby forming an integral structure. Compared with a single flower basket, this integral flower basket has a larger volume and mass, which can effectively resist the force of the reactive gas, avoid the phenomenon of basket floating, and has higher stability, which helps to ensure the smooth progress of subsequent processing steps of the battery cell. Attached Figure Description
[0028] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.
[0029] Figure 1 This is a schematic diagram of the structure of the flower basket fixing device provided in the embodiments of this application;
[0030] Figure 2 for Figure 1 Schematic diagram of the connection structure of the flower basket fixing device;
[0031] Figure 3 for Figure 1 Schematic diagram of the connection structure between the moving part, the driving component and the guide rail;
[0032] Figure 4 for Figure 2 Schematic diagram of the connection structure between the moving part, the connecting part and the main body;
[0033] Figure 5 for Figure 4 Enlarged view of part A in the middle.
[0034] Explanation of reference numerals in the attached figures:
[0035] 100-Main Body;
[0036] 110 - Receiving groove; 111 - First receiving part; 1111 - First sidewall; 112 - Second receiving part; 1121 - Second sidewall;
[0037] 120 - Mounting slot; 121 - Elastic element; 122 - Extension slot;
[0038] 200 - Moving part; 201 - First surface; 202 - Second surface; 204 - Sliding part; 2041 - Threaded hole;
[0039] 210 - First Activities Department;
[0040] 220 - Second Activities Department;
[0041] 300-guide rail;
[0042] 310 - Sliding groove;
[0043] 320 - Fixed slot;
[0044] 400-Driver;
[0045] 410 - First threaded section;
[0046] 420 - Second threaded section;
[0047] 430 - Operations Section;
[0048] 500 - Attachment;
[0049] 510 - Anti-slip parts.
[0050] The accompanying drawings illustrate specific embodiments of this application, which will be described in more detail below. These drawings and descriptions are not intended to limit the scope of the concept in any way, but rather to illustrate the concept of this application to those skilled in the art through reference to particular embodiments. Detailed Implementation
[0051] To make the objectives, technical solutions, and advantages of this application clearer, the technical solutions of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0052] The terms "first," "second," "third," "fourth," etc. (if present) in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a particular order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of this application described herein can be implemented, for example, in orders other than those illustrated or described herein.
[0053] As the background technology indicates, cell texturing is a process used in the photovoltaic industry to process solar cells. The core of this process lies in treating the surface of the cell to create a textured surface with a specific morphology. This textured structure increases the surface area of the cell, thereby improving its ability to absorb sunlight, ultimately enhancing the photoelectric conversion efficiency of the solar cell and optimizing its electrical performance parameters.
[0054] In existing battery texturing processes, the battery cells are typically mounted in a basket, which is then placed in a reaction solution for processing. The basket is a specially designed tool for loading and securing the battery cells for processing during the texturing process.
[0055] Flower baskets typically include positioning rods and support plates at both ends of the positioning rods. The positioning rods are used to support and fix the battery cells, while the support plates form the frame of the flower basket, providing support for the entire flower basket and the battery cells placed on it.
[0056] However, when the solar cells undergo a chemical reaction in the reaction solution, a large amount of gas is generated. This gas accumulates continuously during the reaction and exerts a force on the solar cell basket. Due to the uneven distribution and continuous generation of gas, the basket may sway under the influence of this gas, resulting in a "floating basket" phenomenon. This floating basket phenomenon causes the basket's position to change after the reaction, making it difficult for the originally programmed mechanical equipment to accurately locate the target when grasping the solar cells at a fixed position, thus increasing the risk of the solar cells falling and being damaged. This not only affects production efficiency but may also lead to material waste and increased costs.
[0057] Therefore, this application provides a flower basket fixing device, including a main body and a movable part; the main body is provided with a receiving groove, which is used to accommodate at least part of the flower basket, and the side wall of the receiving groove is used to abut against the first surface of the support plate of the flower basket; the movable part is movably disposed in the receiving groove, and the movable part is used to abut against the second surface of the support plate, so as to fix the support plate through the movable part and the side wall. In the process of fabricating solar cells, the support plates of at least two flower baskets can be fixed in the receiving groove to achieve a stable connection between the flower baskets, thereby forming an integral structure. Compared with a single flower basket, this integral flower basket has a larger volume and mass, which can effectively resist the force of the reactive gas, avoid the phenomenon of basket floating, and has higher stability, which helps to ensure the smooth progress of subsequent processing steps of the solar cells.
[0058] The technical solution of this application will be described in detail below with reference to the accompanying drawings and specific embodiments. The following specific embodiments can be combined with each other, and the same or similar concepts or processes may not be described again in some embodiments.
[0059] Combination Figure 1 and Figure 2As shown, this application embodiment provides a flower basket fixing device, including a main body 100 and a movable part 200; the main body 100 is provided with a receiving groove 110, the receiving groove 110 is used to receive at least part of the flower basket, and the side wall of the receiving groove 110 is used to abut against the first surface of the support plate of the flower basket; the movable part 200 is movably disposed in the receiving groove 110, and the movable part 200 is used to abut against the second surface of the support plate, so as to fix the support plate by the movable part 200 and the side wall.
[0060] The main body 100 can provide a basic structural frame for supporting and accommodating the flower basket. By providing a receiving groove 110 on the main body 100, the flower basket can be effectively fixed in a specific position, which helps to improve the stability of the flower basket.
[0061] Understandably, the side wall of the receiving groove 110 and the movable part 200 are arranged opposite to each other, and the support plate of the flower basket is located between the side wall of the receiving groove 110 and the movable part 200. The side wall of the receiving groove 110 and the movable part 200 abut against the support plate from the opposite side of the support plate, which can restrict the position of the support plate.
[0062] In practice, the support plates at one end of multiple flower baskets can be placed within the receiving groove 110 of the main body 100. Through the fixing action of the side walls of the receiving groove 110 and the movable part 200 on the support plates, multiple flower baskets can be fixed together with the main body 100, thus forming a single unit. The flower basket unit composed of multiple flower baskets has a large volume and mass, which can effectively resist the force of the reacting gases and prevent baskets from floating.
[0063] Multiple basket fixing devices can also be used to form more baskets into a whole, making the basket have a larger volume and mass, which further improves the positional stability of the basket during the battery texturing process, prevents the basket from floating, and ensures that the battery cells remain in the same position after texturing, improves the accuracy of grasping, and reduces the risk of battery cells falling and being damaged.
[0064] In some embodiments, the sidewall extends along a first direction; the movable part 200 is spaced apart from the sidewall, and the movable part 200 is slidably disposed in the receiving groove 110 along the first direction.
[0065] It should be noted that the first direction is... Figure 1 The X-direction is consistent. The receiving groove 110 extends along the first direction.
[0066] Understandably, the movable part 200 is spaced apart from the side wall so that the gap between the movable part 200 and the side wall can be used to place the support plate of the flower basket, so that the movable part 200 and the side wall respectively abut against and fix the support plate from the opposite side of the support plate.
[0067] The 200 movable parts can slide along the first direction within the receiving groove 110, allowing the flower basket fixing device to be adjusted according to the specific size and shape of the flower basket, so as to accurately position and fix the flower basket, ensuring the optimal position and fixed state of the flower basket within the receiving groove 110.
[0068] In practice, the support plates at one end of multiple flower baskets can be arranged side by side in the receiving groove 110 along the first direction, and the support plates can be fixed by the movable part 200 and the side wall of the receiving groove 110, so that multiple flower baskets can be neatly arranged along the first direction and fixed to the main body 100.
[0069] In some embodiments, a guide rail 300 is provided in the receiving groove 110, the guide rail 300 extends along a first direction, and the movable part 200 is movably disposed on the guide rail 300.
[0070] The guide rail 300 can provide a fixed path or track, allowing the movable part 200 to move along a predetermined route, reducing unnecessary offsets and errors, improving the operational accuracy and stability of the device, and enhancing the adaptability of the device, enabling it to better fix flower baskets of different sizes and shapes.
[0071] The guide rail 300 and the receiving groove 110 extend in the same direction, which ensures that the movable part 200 can move within the receiving groove 110 along the extending direction of the receiving groove 110. When the support plate of the flower basket is set in the receiving groove 110, the movable part 200 can move along the guide rail 300 to a position corresponding to the support plate of the flower basket, so as to achieve a tight contact with the support plate.
[0072] In some embodiments, the number of active parts 200 is multiple, and the multiple active parts 200 include a first active part 210 and a second active part 220; the first active part 210 and the second active part 220 may move closer to or further away from each other along a first direction.
[0073] By increasing the number of movable parts by 200, the device can apply fixing force at multiple points, thereby fixing multiple flower baskets set in the receiving groove 110 respectively, improving the fixing effect of the flower baskets, and thus improving the overall stability of the flower baskets.
[0074] The first movable part 210 and the second movable part 220 can move closer or further away along the first direction. The position of the movable part 200 can be flexibly adjusted in combination with the size of the flower basket and the actual placement position of the flower basket in the receiving groove 110, so as to ensure that the best fixing force and stability can be provided under different conditions.
[0075] Combination Figure 2 and Figure 3As shown in some embodiments, the main body 100 is provided with a driving member 400, which can rotate about a first direction; the driving member 400 includes a first threaded portion 410 and a second threaded portion 420 coaxially arranged, the thread direction of the first threaded portion 410 and the thread direction of the second threaded portion 420 are opposite; the first threaded portion 410 is threadedly connected to the first movable portion 210, and the second threaded portion 420 is threadedly connected to the second movable portion 220.
[0076] Understandably, the drive component 400 is a threaded rod, and the axis of the threaded rod is parallel to the first direction. The first movable part 210 can move within the length range of the first threaded part 410; the second movable part 220 can move within the length range of the second threaded part 420.
[0077] The drive member 400 is rotatably connected to the main body 100. One end of the drive member 400 extends to the outside of the main body 100 and is connected to the operating part 430. The user can control the drive member 400 to rotate around the first direction by turning the operating part 430, thereby controlling the movement of the first movable part 210 and the second movable part 220.
[0078] The first threaded part 410 is threadedly connected to the first movable part 210, and the second threaded part 420 is threadedly connected to the second movable part 220. This connection method ensures that the rotation of the drive part 400 can be directly transmitted to the movable part 200 and converted into the linear movement of the movable part 200, thereby improving the accuracy and reliability of the adjustment.
[0079] The first threaded part 410 and the second threaded part 420 can simultaneously drive the first movable part 210 and the second movable part 220 to move, which simplifies the structural design, improves the ability to adjust synchronously, and makes it more convenient for operators to operate without having to adjust each movable part 200 separately.
[0080] In some embodiments, the movable part 200 may be provided with a sliding part 204, which is adapted to the sliding groove 310. The sliding part 204 may be provided with a threaded hole 2041, which is connected to the driving member 400 so that the sliding part 204 can slide along the sliding groove 310 under the action of the driving member 400.
[0081] In a specific implementation, the drive member 400 can be rotated in the forward direction to drive the first movable part 210 and the second movable part 220 to move away from each other along the first direction, so as to reserve a sufficient length of space between the first movable part 210 and the second movable part 220, so as to place the support plate of the flower basket into the receiving groove 110.
[0082] After the support plate of the flower basket is placed in the receiving groove 110, the drive member 400 is rotated in the opposite direction, so that the first movable part 210 and the second movable part 220 move closer to each other in the first direction until the first movable part 210 and the second movable part 220 move to the position of the support plate and abut against the second surface of the support plate. Combined with the abutting action of the side wall of the receiving groove 110 against the first surface of the support plate, the flower basket can be firmly fixed to the main body 100.
[0083] Of course, the drive member 400 can also be rotated in the opposite direction to drive the first movable part 210 and the second movable part 220 to move closer to each other in the first direction. Then, a space for placing a flower basket can be formed between the first movable part 210 and the end of the receiving groove 110 near the first movable part 210, and between the second movable part 220 and the end of the receiving groove 110 near the second movable part 220.
[0084] After the support plate of the flower basket is placed in the receiving groove 110, the forward rotation drive 400 causes the first movable part 210 and the second movable part 220 to move away from each other along the first direction. The first movable part 210 and the second movable part 220 can move to the position of the corresponding support plate and abut against the second surface of the support plate.
[0085] Combination Figure 2 As shown, in some embodiments, the guide rail 300 divides the receiving groove 110 to form a first receiving portion 111 and a second receiving portion 112; the first receiving portion 111 is at least used to receive a first support plate; the first receiving portion 111 has a first side wall 1111, and the surfaces of the first side wall 1111 and the movable portion 200 facing the first side wall 1111 abut against the first support plate; the second receiving portion 112 is at least used to receive a second support plate; the second receiving portion 112 has a second side wall 1121, and the surfaces of the second side wall 1121 and the movable portion 200 facing the second side wall 1121 abut against the second support plate.
[0086] Wherein, the first receiving portion 111 and the second receiving portion 112 are along Figure 1 The first receiving portion 111 and the second receiving portion 112 are arranged in parallel along the Y direction.
[0087] The first receiving portion 111 and the second receiving portion 112 can be used to receive the support plates of different flower baskets, that is, the first receiving portion 111 can accommodate the first support plate of one flower basket, and the second receiving portion 112 can accommodate the second support plate of another flower basket. With this arrangement, a flower basket fixing device can be used to fix at least two flower baskets together, allowing the two flower baskets to move along... Figure 1 The Y-axis distribution in the middle.
[0088] Specifically, the user can place at least one flower basket's first support plate along... Figure 1The X-shaped arrangement is set within the first receiving portion 111, and at the same time, the second support plate of at least one flower basket can be arranged along... Figure 1 The X-shaped arrangement is located within the second receiving section 112. This allows the flower basket to be placed... Figure 1 The arrangement of the baskets in the X and Y directions is flexible. Users can determine the number of baskets in the whole basket system based on the specific dimensions of the reaction solution tank.
[0089] The first sidewall 1111 of the first receiving part 111 and the movable part 200 can fix the first support plate, and the second sidewall 1121 of the second receiving part 112 and the movable part 200 can fix the second support plate. The sidewall and movable part 200 of each part work together to provide a double fixing force, ensuring the stability of the support plate during the processing and effectively preventing the occurrence of the floating basket phenomenon.
[0090] Combination Figure 2 and Figure 4 As shown, in some embodiments, the first surface 201 of the movable part 200 is inclined, and in a direction away from the bottom surface of the receiving groove 110, the first surface 201 of the movable part 200 gradually approaches the first sidewall 1111.
[0091] In the direction away from the bottom surface of the receiving groove 110, the distance between the first surface 201 of the movable part 200 and the first sidewall 1111 gradually decreases. This arrangement allows the movable part 200 to gradually increase the contact pressure on the first support plate from bottom to top, helping to provide stronger support during the fixing process, restricting the first support plate from moving away from the bottom surface of the receiving groove 110, and improving the stability and fixing effect of the first support plate.
[0092] In some embodiments, the second surface 202 of the movable part 200 is inclined, and in a direction away from the bottom surface of the receiving groove 110, the second surface 202 of the movable part 200 gradually approaches the second sidewall 1121.
[0093] Understandably, the distance between the second surface 202 of the movable part 200 and the second sidewall 1121 gradually decreases in the direction away from the bottom surface of the receiving groove 110. This arrangement allows the movable part 200 to gradually increase the contact pressure on the second support plate from bottom to top, helping to provide stronger support during the fixing process, restricting the movement of the second support plate away from the bottom surface of the receiving groove 110, and improving the stability and fixing effect of the second support plate.
[0094] For example, a first abutting block may be provided on the side of the sliding part 204 facing the first sidewall 1111, and a second abutting block may be provided on the side of the sliding part 204 facing the second sidewall 1121. Both the first abutting block and the second abutting block may be wedge-shaped. The side of the first abutting block opposite to the sliding part 204 constitutes the first surface 201 of the movable part 200, and the side of the second abutting block opposite to the sliding part 204 constitutes the second surface 202 of the movable part 200.
[0095] Combination Figure 2 and Figure 3 As shown, in some embodiments, the guide rail 300 is provided with a connected sliding groove 310 and a fixed groove 320, both of which extend along a first direction; the movable part 200 is disposed in the sliding groove 310, and the movable part 200 is provided with a protrusion, which is movably disposed in the fixed groove 320 along the first direction. The protrusion and the fixed groove 320 are at least used to restrict the movable part 200 from disengaging from the sliding groove 310.
[0096] The fixed groove 320 is located at the bottom of the sliding groove 310 and communicates with the sliding groove 310. Correspondingly, the protrusion can be located at the bottom of the movable part 200. When the movable part 200 slides along the sliding groove 310, the protrusion also slides within the fixed groove 320.
[0097] For example, the protrusion can be a T-shaped or dovetail-shaped protrusion. The width of the end of the protrusion near the movable part 200 is smaller than the width of the end of the protrusion away from the movable part 200.
[0098] By providing a sliding groove 310 in the guide rail 300, the device allows the movable part 200 to move freely when needed. By providing a fixing groove 320 in the guide rail 300 that communicates with the sliding groove 310, and by having the protrusion cooperate with the fixing groove 320, the device can effectively prevent the movable part 200 from disengaging from the sliding groove 310, ensuring its safety and stability during operation.
[0099] Combination Figure 2 As shown, in some embodiments, the sidewall is provided with an abutment 500; the abutment 500 is movable in a direction close to or away from the movable part 200, and the sidewall abuts against the first surface of the support plate through the abutment 500.
[0100] Understandably, the abutment member 500 can apply a certain amount of pressure to the support plate, which can enhance the fixing force and stability between the side wall and the support plate.
[0101] For example, the abutment 500 can be a long strip of pressure plate. The length direction of the pressure plate is parallel to the first direction, so that the pressure plate and the support plate have a larger contact area, which can provide greater contact pressure to the support plate and improve the stability of the support plate.
[0102] An anti-slip element 510 can be provided on the surface of the abutment 500 that contacts the support plate. The anti-slip element 510 can increase the frictional resistance between the abutment 500 and the support plate, effectively restrict the movement of the support plate relative to the abutment 500, and improve the fixing effect.
[0103] Combination Figure 4 As shown, in some embodiments, a mounting groove 120 is provided on the side wall, and an elastic member 121 is provided in the mounting groove 120; the first end of the elastic member 121 abuts against the bottom surface of the mounting groove 120, and the second end of the elastic member 121 can extend or retract in the direction of approaching or moving away from the movable part 200, and the second end of the elastic member 121 is connected to the abutting member 500.
[0104] In its natural state, at least a portion of the abutment 500 extends out of the mounting groove 120 and into the receiving groove 110.
[0105] When the support plate is placed in the receiving groove 110, the support plate will press against the abutment 500, causing the abutment 500 to move closer to the elastic member 121. The elastic member 121 will contract when compressed, storing a rebound force inside. Under the action of the rebound force, it has a tendency to drive the abutment 500 to move towards the support plate, so that the abutment 500 can press against the support plate, achieving a tight abutment with the support plate.
[0106] Combination Figure 5 As shown, in some embodiments, the mounting groove 120 may extend into the end walls of the body 100 at both ends in the first direction. The body 100 may also be provided with an extension groove 122 communicating with the mounting groove 120 in the end walls at both ends in the first direction, and the extension groove 122 extends into the guide rail 300.
[0107] The elastic element 121 can be disposed within the extension groove 122. The first end of the elastic element 121 is connected to the inner wall of the extension groove 122 away from the mounting groove 120, and the second end of the elastic element 121 is connected to the abutment 500.
[0108] In practice, the support plate is placed in the receiving groove 110, and the support plate will press against the abutment 500, causing the abutment 500 to move away from the elastic member 121. The elastic member 121 will extend under the pulling force and store rebound force inside. Under the action of the rebound force, it has the tendency to drive the abutment 500 to move towards the support plate, so that the abutment 500 can press against the support plate and achieve a tight abutment with the support plate.
[0109] For example, the elastic element 121 can be a structure with restorative properties, such as a spring, elastic sleeve, or spring sheet. By providing the elastic element 121, its elastic characteristics can be utilized to provide a continuous fixing force, thereby fixing the support plates of at least two baskets within the receiving groove, achieving a stable connection between the baskets, and thus forming a stable overall structure. The integrated baskets can resist the force of the reactive gases, preventing basket drift and ensuring the smooth progress of subsequent battery cell processing steps.
[0110] Finally, it should be noted that those skilled in the art, upon considering the specification and practicing the application disclosed herein, will readily conceive of other embodiments of the present application. The embodiments of this application are intended to cover any variations, uses, or adaptations of the embodiments of this application that follow the general principles of the embodiments of this application and include common knowledge or customary technical means in the art not disclosed in the embodiments of this application. The specification and embodiments are to be considered exemplary only, and the true scope and spirit of the embodiments of this application are indicated by the following claims.
[0111] It should be understood that the embodiments of this application are not limited to the precise structures described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from their scope. The scope of the embodiments of this application is limited only by the appended claims.
Claims
1. A flower basket fixing device, characterized in that, It includes the main body (100) and the activity department (200); The main body (100) is provided with a receiving groove (110), the receiving groove (110) is used to accommodate at least part of the flower basket, and the side wall of the receiving groove (110) is used to abut against the first surface of the support plate of the flower basket; The movable part (200) is movably disposed within the receiving groove (110), and the movable part (200) is at least used to abut against the second surface of the support plate to fix the support plate through the movable part (200) and the side wall.
2. The flower basket fixing device according to claim 1, characterized in that, The sidewall extends along a first direction; The movable part (200) is spaced apart from the side wall, and the movable part (200) can be slidably disposed in the receiving groove (110) along the first direction.
3. The flower basket fixing device according to claim 2, characterized in that, A guide rail (300) is provided in the receiving groove (110), the guide rail (300) extends along the first direction, and the movable part (200) is movably disposed on the guide rail (300).
4. The flower basket fixing device according to claim 3, characterized in that, The number of the movable parts (200) is multiple, and the multiple movable parts (200) include a first movable part (210) and a second movable part (220); The first movable part (210) and the second movable part (220) can move closer to or further away from each other along the first direction.
5. The flower basket fixing device according to claim 4, characterized in that, The main body (100) is provided with a driving member (400), which can rotate around the first direction; The drive unit (400) includes a first threaded portion (410) and a second threaded portion (420) arranged coaxially, wherein the thread direction of the first threaded portion (410) and the thread direction of the second threaded portion (420) are opposite. The first threaded portion (410) is threadedly connected to the first movable portion (210), and the second threaded portion (420) is threadedly connected to the second movable portion (220).
6. The flower basket fixing device according to claim 3, characterized in that, The guide rail (300) divides the receiving groove (110) to form a first receiving portion (111) and a second receiving portion (112); The first receiving portion (111) is at least used to receive the first support plate; the first receiving portion (111) has a first side wall (1111), and the surfaces of the first side wall (1111) and the movable portion (200) facing the first side wall (1111) are both in contact with the first support plate; The second receiving portion (112) is at least used to receive the second support plate; the second receiving portion (112) has a second sidewall (1121), and the surfaces of the second sidewall (1121) and the movable portion (200) facing the second sidewall (1121) abut against the second support plate.
7. The flower basket fixing device according to claim 6, characterized in that, The first surface (201) of the movable part (200) is inclined and gradually approaches the first sidewall (1111) in a direction away from the bottom surface of the receiving groove (110). And / or, the second surface (202) of the movable part (200) is inclined, and in a direction away from the bottom surface of the receiving groove (110), the second surface (202) of the movable part (200) gradually approaches the second sidewall (1121).
8. The flower basket fixing device according to claim 3, characterized in that, The guide rail (300) is provided with a connected sliding groove (310) and a fixed groove (320), both of which extend along the first direction; The movable part (200) is disposed in the sliding groove (310), and the movable part (200) is provided with a protrusion. The protrusion is movably disposed in the fixed groove (320) along the first direction. The protrusion and the fixed groove (320) are at least used to restrict the movable part (200) from disengaging from the sliding groove (310).
9. The flower basket fixing device according to any one of claims 1-8, characterized in that, The side wall is provided with an abutment (500); The abutment (500) is movable in a direction close to or away from the movable part (200), and the sidewall abuts against the first surface of the support plate through the abutment (500).
10. The flower basket fixing device according to claim 9, characterized in that, The side wall is provided with a mounting groove (120), and an elastic element (121) is provided in the mounting groove (120); The first end of the elastic member (121) abuts against the bottom surface of the mounting groove (120), the second end of the elastic member (121) can extend or retract in the direction of approaching or moving away from the movable part (200), and the second end of the elastic member (121) is connected to the abutting member (500).