Battery piece conveying device and battery piece production line

By using a blower mechanism to adjust the position and air outlet direction of the air knife during the battery cell delivery process, the problem of uneven battery cells in the flower basket is solved, ensuring the neat arrangement of the battery cells in the insertion mechanism, and improving processing quality and transportation efficiency.

CN223303546UActive Publication Date: 2025-09-05WUXI LEAD INTELLIGENT EQUIP CO LTD
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Patent Information

Application Number
CN202422259030.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-13
Publication Date
2025-09-05
Estimated Expiration
2034-09-13

AI Technical Summary

Technical Problem

There is a position deviation of the battery cells on the conveyor belt, which leads to irregularities after entering the flower basket, affecting the quality of subsequent processing.

Method used

A blower mechanism is adopted, including a wind knife and an adjustment component. By adjusting the position and air outlet direction of the wind knife, the battery cell enters the insertion mechanism neatly.

Benefits of technology

The battery cells are neatly arranged in the inserting mechanism, thus avoiding processing quality problems caused by position deviation and improving transportation efficiency and processing quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a battery piece conveying device and a battery piece production line. The battery piece conveying device comprises a piece inserting mechanism and a piece conveying mechanism, the conveying mechanism is arranged at the upstream of the sheet inserting mechanism, and the conveying mechanism is used for conveying the battery sheets to the sheet inserting mechanism; and the blowing mechanism is erected at one end, close to the insertion mechanism, of the conveying mechanism, the blowing mechanism comprises at least one blowing assembly, and the blowing assembly is used for blowing the battery pieces when the battery pieces are inserted into the insertion mechanism. According to the technical scheme provided by the invention, the battery pieces can enter the piece inserting mechanism in order, and the situation that the machining quality is affected due to the fact that the battery pieces are uneven in the piece inserting mechanism in the subsequent machining process of the battery pieces is never avoided.
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Description

Technical Field

[0001] The present application belongs to the technical field of photovoltaic module production, and in particular relates to a cell transport device and a cell production line. Background Art

[0002] At present, when loading and unloading the battery cells for texturing, they are continuously divided into pieces and put into the flower basket. The conveyor belt transports them at a constant speed until the flower basket is changed.

[0003] In the prior art, during loading, due to positional deviations of the battery cells on the conveyor belt, the battery cells in the basket may be uneven after entering the basket. Utility Model Content

[0004] The purpose of the embodiments of the present application is to provide a battery cell transportation device and a battery cell production line.

[0005] According to a first aspect of an embodiment of the present application, a battery cell transport device is provided, comprising:

[0006] Insert mechanism;

[0007] A conveying mechanism, the conveying mechanism being arranged upstream of the inserting mechanism and being used to convey the battery cells to the inserting mechanism;

[0008] The blower mechanism is arranged at one end of the conveying mechanism close to the inserting mechanism. The blower mechanism includes at least one blowing component, and the blowing component is used to blow air to the battery cell when the battery cell is inserted into the inserting mechanism.

[0009] Optionally, the blowing mechanism includes a mounting bracket and two blowing assemblies, the mounting bracket is mounted on the conveying mechanism, and the two blowing assemblies are spaced apart along the Y direction of the mounting bracket.

[0010] Optionally, the blowing assembly includes:

[0011] an air knife, the air knife being configured to blow air toward the inserting mechanism;

[0012] An adjusting component, the wind knife is connected to the adjusting component, and the adjusting component is used to adjust the position of the wind knife.

[0013] Optionally, the adjustment assembly includes a first connecting member and a second connecting member, the wind knife is connected to the first connecting member, and the first connecting member and the second connecting member are rotatably connected around an axis in the Z direction.

[0014] Optionally, the wind knife is rotatably connected to the first connecting member around an axis in the Y direction.

[0015] Optionally, the adjustment assembly further includes a third connecting member, the third connecting member is slidably connected to the second connecting member, and the second connecting member can move along the Z direction relative to the third connecting member.

[0016] Optionally, the third connecting member is slidably connected to the mounting bracket, and the third connecting member can move along the X direction relative to the mounting bracket.

[0017] Optionally, the wind knife is provided with a first blowing port and a second blowing port at one end facing the inserting mechanism, the first blowing port is located above the second blowing port in the Z direction, and the wind knife blows air toward the inserting mechanism through the first blowing port and the second blowing port.

[0018] Optionally, the inserting mechanism includes a lifting assembly, a flower basket, a control assembly and a photoelectric assembly, the photoelectric assembly is arranged on the flower basket, the flower basket is arranged on the driving end of the lifting assembly, the lifting assembly is communicatively connected to the control assembly, and the photoelectric assembly is communicatively connected to the control assembly.

[0019] According to a second aspect of an embodiment of the present application, a battery cell production line is provided, comprising the above-mentioned battery cell transport device.

[0020] One technical effect of the embodiment of the present application is that the battery cells can be neatly inserted into the inserting mechanism through the blowing assembly on the blower mechanism, thus avoiding the battery cells being unevenly arranged in the inserting mechanism during subsequent processing and affecting the processing quality.

[0021] Other features and advantages of the present application will become apparent from the following detailed description of exemplary embodiments of the present application with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] The accompanying drawings, which are incorporated in and constitute a part of the specification, illustrate embodiments of the application and, together with the description, serve to explain the principles of the application.

[0023] Figure 1 Schematic diagram of the structure of the battery cell transport device in the embodiment of the present application;

[0024] Figure 2 Schematic diagram of the structure of the hair dryer mechanism in the embodiment of the present application;

[0025] Figure 3 for Figure 2 A local enlarged view of point A in FIG;

[0026] Figure 4 Schematic diagram of the structure of the hair dryer mechanism in the embodiment of the present application;

[0027] Figure 5for Figure 4 A local enlarged view of point B in FIG;

[0028] Figure 6 This is an exploded schematic diagram of the air knife in the embodiment of the present application;

[0029] Figure 7 This is a schematic structural diagram of the main body of the air knife in an embodiment of the present application.

[0030] Explanation of reference numerals: inserting mechanism 1; flower basket 11; lifting assembly 12; conveying mechanism 2; blowing mechanism 3; blowing assembly 31; adjusting assembly 311; first connecting member 3111; first connecting piece 3111a; second connecting piece 3111b; second through hole 3111c; third through hole 3111d; second connecting member 3112; first through hole 3112a; third connecting member 3113; third connecting piece 3113a; fourth connecting piece 31 13b; first slot 3113c; second slot 3113d; wind knife 312; first channel 3121; second channel 3122; third channel 3123; first sub-channel 3123a; second sub-channel 3123b; first air outlet 3124; second air outlet 3125; first sub-air outlet 3125a; second sub-air outlet 3125b; main body 312a; cover 312b; mounting bracket 32; mounting beam 321. DETAILED DESCRIPTION

[0031] Various exemplary embodiments of the present application will now be described in detail with reference to the accompanying drawings. It should be noted that unless otherwise specifically stated, the relative arrangements of components and steps, numerical expressions and numerical values ​​set forth in these embodiments do not limit the scope of the present application.

[0032] The following description of at least one exemplary embodiment is merely illustrative in nature and is in no way intended to limit the present disclosure, its application, or uses.

[0033] Technologies, methods, and equipment known to ordinary technicians in the relevant art may not be discussed in detail, but where appropriate, the technologies, methods, and equipment should be considered part of the specification.

[0034] In all examples shown and discussed herein, any specific values ​​should be interpreted as merely exemplary and not limiting. Therefore, other examples of the exemplary embodiments may have different values.

[0035] It should be noted that like reference numerals and letters refer to like items in the following figures, and therefore, once an item is defined in one figure, it need not be further discussed in subsequent figures.

[0036] First, the X direction, Y direction and Z direction mentioned in the embodiment of the present application can be referred to in the attached drawings. Figure 1 、 Figure 2 and Figure 7 The marked directions. Among them, the X direction, Y direction and Z direction intersect each other.

[0037] According to the first aspect of the embodiment of the present application, a battery cell transport device is provided, including an insertion mechanism 1, a conveying mechanism 2 and a blowing mechanism 3; the conveying mechanism 2 is arranged upstream of the insertion mechanism 1, and the conveying mechanism 2 is used to convey the battery cells to the insertion mechanism 1; the blowing mechanism 3 is mounted on one end of the conveying mechanism 2 close to the insertion mechanism 1, and the blowing mechanism 3 includes at least one blowing component 31, and the blowing component 31 is used to blow air to the battery cells when the battery cells are inserted into the insertion mechanism 1.

[0038] like Figure 1 As shown, the battery cell transport device includes a cell inserting mechanism 1 , a conveying mechanism 2 and a blower mechanism 3 .

[0039] The conveying mechanism 2 is arranged upstream of the blowing mechanism 3 , and is used to convey the battery cells to the inserting mechanism 1 .

[0040] Further explanation: the blowing mechanism 3 is mounted on one end of the conveying mechanism 2 close to the inserting mechanism 1, and the blowing mechanism 3 includes at least one blowing component 31, and the blowing port of the blowing component 31 is facing the inserting mechanism 1. The blowing component 31 can blow air on the battery cells inserted into the inserting mechanism 1, can blow the battery cells into the inserting mechanism 1, and can make the battery cells enter the inserting mechanism 1 neatly.

[0041] Therefore, the battery cell transport device provided in this application can make the battery cells enter the inserting mechanism 1 neatly through the blowing assembly 31 on the blowing mechanism 3, and never avoid the battery cells being affected by the unevenness of the battery cells in the inserting mechanism 1 during subsequent processing.

[0042] In an optional embodiment, the blowing mechanism 3 includes a mounting bracket 32 ​​and two blowing components 31 , the mounting bracket 32 ​​is mounted on the conveying mechanism 2 , and the two blowing components 31 are spaced apart along the Y direction of the mounting bracket 32 ​​.

[0043] like Figure 2 and Figure 4As shown, the blowing mechanism 3 includes a mounting bracket 32 ​​and two blowing components 31; wherein, the mounting bracket 32 ​​is mounted on one end of the conveying mechanism 2 close to the inserting mechanism 1, and the two blowing components 31 are arranged on the mounting bracket 32 ​​at intervals along the Y direction, that is, the two blowing components 31 are located above the conveying mechanism 2 in the Z direction; the two blowing components 31 blow air to the two ends of the same side of the battery cell respectively, so that the two ends of the same side of the battery cell can be subjected to more uniform force, so that the battery cell can be blown neatly into the inserting mechanism 1.

[0044] In an optional embodiment, the blowing assembly 31 includes a wind knife 312 and an adjustment assembly 311; the wind knife 312 is configured to blow air into the insert mechanism 1; the wind knife 312 is connected to the adjustment assembly 311, and the adjustment assembly 311 is used to adjust the position of the wind knife 312.

[0045] To further illustrate, the blowing assembly 31 includes an air knife 312 and an adjustment assembly 311. The air knife 312 is configured to blow air toward the battery cells to blow the battery cells into the inserting mechanism 1. The air knife 312 is connected to the adjustment assembly 311, which can adjust the position of the air knife 312 in multiple directions to enable the blowing assembly 31 to adapt to battery cells of various sizes, thereby ensuring that the blowing assembly 31 can stably and reliably blow the battery cells into the inserting mechanism 1, thereby reducing the risk of battery cell breakage and improving transportation efficiency.

[0046] In an optional embodiment, the adjustment component 311 includes a first connecting member 3111 and a second connecting member 3112, the wind knife 312 is connected to the first connecting member 3111, and the first connecting member 3111 and the second connecting member 3112 are rotatably connected around an axis in the Z direction.

[0047] like Figure 3 and Figure 5 As shown, the adjustment component 311 includes a first connecting member 3111 and a second connecting member 3112. The first connecting member 3111 is rotatably connected to the second connecting member 3112, and the first connecting member 3111 can rotate relative to the second connecting member 3112 around the axis in the Z direction. The wind knife 312 is connected to the first connecting member 3111; therefore, by rotating the first connecting member 3111, the angle between the plane where the wind knife 312's air outlet direction is located and the plane where the XZ direction is located can be adjusted; in simpler terms, the position of the wind knife 312 in the Y direction can be adjusted, so that the air outlet direction of the wind knife 312 can be adjusted as needed, thereby ensuring that the blowing component 31 can stably and reliably blow the battery cells into the inserting mechanism 1.

[0048] Further description, the first connecting member 3111 includes a first connecting piece 3111a and a second connecting piece 3111b, the first connecting piece 3111a and the second connecting piece 3111b are connected at an angle, the first connecting piece 3111a is connected to the wind knife 312, the second connecting piece 3111b is rotatably connected to the second connecting member 3112, a first through hole 3112a is provided on the second connecting member 3112, a second through hole 3111c is provided on the second connecting piece 3111b, a pin shaft is passed through the first through hole 3112a and the second through hole 3111c, the direction of the axis of the pin shaft is the same as the Z direction, and the second connecting piece 3111b and the second connecting member 3112 can be rotatably connected through the pin shaft.

[0049] In an optional embodiment, the wind knife 312 is rotatably connected to the first connecting member 3111 around an axis in the Y direction.

[0050] like Figure 3 and Figure 5 As shown, the wind knife 312 is rotatably connected to the first connecting member 3111 around the axis in the Y direction, that is, the wind knife 312 can rotate around the axis in the Y direction relative to the first connecting member 3111, so as to adjust the angle between the plane where the air outlet direction of the wind knife 312 is located and the XY plane, that is, the pitch angle of the wind knife 312 can be adjusted to control the air outlet direction of the wind knife 312, thereby ensuring that the blowing assembly 31 can stably and reliably blow the battery cells into the inserting mechanism 1.

[0051] Further explanation: the first connecting member 3111 includes a first connecting piece 3111a and a second connecting piece 3111b, and the first connecting piece 3111a and the second connecting piece 3111b are connected at an angle. A third through hole 3111d is provided on the first connecting piece 3111a, and the direction of the axis of the third through hole 3111d is the same as the Y direction. A mounting member is provided on the wind knife 312, and the mounting member is rotatably connected to the third through hole 3111d, so that the wind knife 312 can rotate relative to the axis of the Y direction.

[0052] Preferably, the third through hole 3111d is arc-shaped to facilitate fine-tuning.

[0053] In an optional embodiment, the adjustment assembly 311 further includes a third connecting member 3113 , wherein the third connecting member 3113 is slidably connected to the second connecting member 3112 , and the second connecting member 3112 can move along the Z direction relative to the third connecting member 3113 .

[0054] like Figure 3 and Figure 5As shown, the adjustment assembly 311 further includes a third connecting member 3113, and the second connecting member 3112 is slidably connected to the third connecting member 3113. The second connecting member 3112 can move in the Z direction relative to the third connecting member 3113. Therefore, the position of the wind knife 312 in the Z direction can be adjusted as needed to ensure that the wind blown by the wind knife 312 can reach the battery cells, thereby ensuring that the blowing assembly 31 can stably and reliably blow the battery cells into the inserting mechanism 1.

[0055] In a specific embodiment, a first sliding member is provided on the second connecting member 3112, and a first slot 3113c is opened on the third connecting member 3113. The length direction of the first slot 3113c is the same as the Z direction. The first sliding member is slidingly connected to the first slot 3113c. The first sliding member can slide along the Z direction in the first slot 3113c, so that the second connecting member 3112 can move along the Z direction relative to the third connecting member 3113 to adjust the position of the wind knife 312 in the Z direction.

[0056] In another specific embodiment, a first slot 3113c is provided on the second connecting member 3112, and the length direction of the first slot 3113c is the same as the Z direction. A first sliding member is provided on the third connecting member 3113, and the first sliding member is slidably connected to the first slot 3113c, so that the second connecting member 3112 can move relative to the third connecting member 3113 along the Z direction to adjust the position of the wind knife 312 in the Z direction.

[0057] In an optional embodiment, the third connecting member 3113 is slidably connected to the mounting bracket 32 ​​, and the third connecting member 3113 can move along the X direction relative to the mounting bracket 32 ​​.

[0058] like Figure 3 and Figure 5 As shown, the third connecting member 3113 is slidably connected to the mounting bracket 32, and the third connecting member 3113 can move relative to the mounting bracket 32 ​​along the X direction, so that the distance between the wind knife 312 and the inserting mechanism 1 can be adjusted in the X direction.

[0059] Further explanation, the mounting bracket 32 ​​includes a mounting beam 321. In the Z direction, the mounting beam 321 is located above the conveying mechanism 2. The length direction of the mounting beam 321 is the same as the Y direction. The third connecting member 3113 is slidingly connected to the mounting beam 321. The third connecting member 3113 is located on the side of the mounting beam 321 facing the conveying mechanism 2, which can reduce the space occupied by the hair drying mechanism 3.

[0060] In a specific embodiment, a second sliding member is provided on the mounting beam 321; the third connecting member 3113 includes a third connecting piece 3113a and a fourth connecting piece 3113b, the third connecting piece 3113a and the fourth connecting piece 3113b are connected at an angle, the first slot 3113c is opened on the third connecting piece 3113a, and the fourth connecting piece 3113b is opened on the second slot 3113d, the length direction of the second slot 3113d is the same as the X direction, the second sliding member is slidably connected to the second slot 3113d, so that the third connecting member 3113 can move along the X direction relative to the mounting beam 321 to adjust the distance between the wind knife 312 and the inserting mechanism 1.

[0061] In another specific embodiment, a second slot 3113d is provided on the mounting beam 321, and the length direction of the second slot 3113d is the same as the X direction. A second sliding member is provided on the third connecting member 3113, and the second sliding member is slidably connected to the second slot 3113d, so that the third connecting member 3113 can move along the X direction relative to the mounting beam 321 to adjust the distance between the wind knife 312 and the insert mechanism 1.

[0062] In an optional embodiment, the wind knife 312 is provided with a first blowing port 3124 and a second blowing port 3125 on the end face facing the insert mechanism 1, and the first blowing port 3124 is located above the second blowing port 3125 in the Z direction, and the wind knife 312 blows air toward the insert mechanism 1 through the first blowing port 3124 and the second blowing port 3125.

[0063] It is further explained that in the Z direction, the first blowing port 3124 is located above the second blowing port 3125. The wind blown by the second blowing port 3125 can cause the battery cell to be slightly lifted in the Z direction to reduce the friction or static electricity generated between the bottom of the battery cell and the adjacent battery cell. The wind blown by the first blowing port 3124 can blow the battery cell into the insertion mechanism 1. Through the joint action of the first blowing port 3124 and the second blowing port 3125, the battery cell can be inserted into the insertion mechanism 1 smoothly and neatly.

[0064] In an optional embodiment, the wind knife 312 is provided with a first channel 3121, a second channel 3122 and a third channel 3123, the first channel 3121 is used to connect to the air duct, the second channel 3122 is connected to the first channel 3121, and the third channel 3123 is connected to the first channel 3121; the first blowing port 3124 is connected to the second channel 3122, and the second blowing port 3125 is connected to the third channel 3123.

[0065] like Figure 6 and Figure 7As shown, the interior of the wind knife 312 is provided with a first channel 3121, a second channel 3122 and a third channel 3123; the end surface of the wind knife 312 facing the inserting mechanism 1 is provided with a first blowing port 3124 and a second blowing port 3125, wherein the first blowing port 3124 and the second blowing port 3125 are air outlets.

[0066] The first channel 3121 is used to be connected to the air duct, and the air duct is connected to the air pump, so that gas is transported into the first channel 3121 through the air pump; more specifically, an air inlet is opened on the wind knife 312, and the air inlet is connected to the first channel 3121, and the air duct is connected to the first channel 3121 at the air inlet.

[0067] To further illustrate, the second channel 3122 is connected to the first channel 3121, and the first blowing port 3124 is opened at the end of the wind knife 312 facing the inserting mechanism 1. The first blowing port 3124 is connected to the second channel 3122. The air flow entering the first channel 3121 will be blown out from the first blowing port 3124 through the second channel 3122, so that air can be blown toward the battery cell; the third channel 3123 is connected to the first channel 3121, and the second blowing port 3125 is opened at the end of the wind knife 312 facing the inserting mechanism 1. The second blowing port 3125 is connected to the third channel 3123. The air flow entering the first channel 3121 will be blown out from the second blowing port 3125 through the third channel 3123, so that air can be blown toward the battery cell.

[0068] In a preferred embodiment, the air knife 312 includes a main body 312a and a cover plate 312b. A first channel 3121 is defined within the main body 312a, a second channel 3122 is defined at a side end of the main body 312a, and a third channel 3123 is defined at a side end of the main body 312a. The cover plate 312b is disposed on the main body 312a to seal the second channel 3122 and the third channel 3123. This structure of the air knife 312 facilitates machining of the second channel 3122 and the third channel 3123.

[0069] In a preferred embodiment, the depth of the second channel 3122 in the Y direction gradually decreases from the first channel 3121 to the first blowing port 3124; and / or

[0070] The depth of the third channel 3123 in the Y direction gradually decreases from the first channel 3121 to the second blowing port 3125 .

[0071] In a specific embodiment, the depth of the second channel 3122 in the Y direction gradually decreases from the first channel 3121 to the first blowing port 3124 .

[0072] In another specific embodiment, the depth of the third channel 3123 in the Y direction gradually decreases from the first channel 3121 to the second blowing port 3125 .

[0073] In another specific embodiment, the depth of the second channel 3122 in the Y direction gradually decreases from the first channel 3121 to the first blowing port 3124; the depth of the third channel 3123 in the Y direction gradually decreases from the first channel 3121 to the second blowing port 3125. This embodiment is used as an example for description.

[0074] Specifically, if Figure 7 As shown, the extension direction of the second channel 3122 is the X direction, and the depth direction of the second channel 3122 is the Y direction. The depth of the second channel 3122 in the Y direction gradually decreases from the first channel 3121 to the first blowing port 3124. The air flow is blown out from the first channel 3121, the second channel 3122, and the first blowing port 3124. When passing through the second channel 3122, its air pressure will gradually increase, thereby increasing the blowing intensity at the first blowing port 3124.

[0075] like Figure 7 As shown, the extension direction of the third channel 3123 is the X direction, and the depth direction of the third channel 3123 is the Y direction. The depth of the third channel 3123 in the Y direction gradually decreases from the first channel 3121 to the second blowing port 3125. The air flow is blown out from the first channel 3121 and the third channel 3123 until it is blown out from the second blowing port 3125. When passing through the third channel 3123, its air pressure will gradually increase, thereby increasing the blowing intensity at the second blowing port 3125.

[0076] In an optional embodiment, the length of the first blowing port 3124 in the Z direction is greater than the length of the second blowing port 3125 in the Z direction.

[0077] like Figure 7 As shown, the length direction of the first blowing outlet 3124 is the same as the Z direction, and the length direction of the second blowing outlet 3125 is the same as the Z direction; the width direction of the first blowing outlet 3124 is the same as the Y direction, and the width direction of the second blowing outlet 3125 is the same as the Y direction.

[0078] Since the first blowing port 3124 is used to blow the battery cells into the inserting mechanism 1, the length of the first blowing port 3124 is set to be greater than the length of the second blowing port 3125, so that the first blowing port 3124 can blow the battery cells into the inserting mechanism 1, and the second blowing port 3125 can lift the battery cells slightly in the Z direction.

[0079] In a preferred embodiment, the first blowing port 3124 is elongated, and the second blowing port 3125 is square or rectangular.

[0080] In an optional embodiment, the third channel 3123 includes a first sub-channel 3123a and a second sub-channel 3123b, and a partition is formed between the first sub-channel 3123a and the second sub-channel 3123b; the second blowing outlet 3125 includes a first sub-blowing outlet 3125a and a second sub-blowing outlet 3125b, and the first sub-blowing outlet 3125a is connected to the first sub-channel 3123a, and the second sub-blowing outlet 3125b is connected to the second sub-channel 3123b.

[0081] like Figure 7 As shown, the third channel 3123 includes a first sub-channel 3123a and a second sub-channel 3123b, with a partition formed between the first sub-channel 3123a and the second sub-channel 3123b. The first sub-channel 3123a and the second sub-channel 3123b are adjacent to each other in the Z direction. The second blowing port 3125 includes a first sub-blowing port 3125a and a second sub-blowing port 3125b. The first sub-blowing port 3125a is connected to the first sub-channel 3123a, and the second sub-blowing port 3125b is connected to the second sub-channel 3123b. In this embodiment, two second blowing ports 3125 are provided to ensure that the length of a single blowing port in the Z direction is not increased. It also increases the blowing strength of the second blowing ports 3125, thereby slightly lifting the battery cell in the Z direction.

[0082] In an optional embodiment, the inserting mechanism 1 includes a lifting component 12, a flower basket 11, a control component and a photoelectric component. The photoelectric component is arranged on the flower basket 11, and the flower basket 11 is arranged on the driving end of the lifting component 12. The lifting component 12 is communicatively connected to the control component, and the photoelectric component is communicatively connected to the control component.

[0083] Further explanation: the inserting mechanism 1 includes a lifting assembly 12, a flower basket 11, a control assembly, and a photoelectric assembly. The flower basket 11 is mounted on the driving end of the lifting assembly 12. The lifting assembly 12 is capable of driving the flower basket 11 to move in the Z direction. The flower basket 11 is used to carry the cells, and the cells on the conveying mechanism 2 are transferred to the flower basket 11. The photoelectric assembly is mounted on the flower basket 11 and is used to detect the position of the cells. The photoelectric assembly is in communication with the control assembly, and the lifting assembly 12 is in communication with the control assembly. Therefore, when a cell enters the flower basket 11 but does not contact the rear stop of the flower basket 11, the photoelectric assembly detects the cell position and transmits a detection signal to the control assembly. The control assembly controls the operation of the lifting assembly 12, which in turn drives the flower basket 11 to move in the Z direction. During this movement, the silicon wafers are blown into the bottom teeth of the flower basket 11 by the blowing mechanism 3, ensuring that all silicon wafers in the flower basket 11 are neatly arranged and enter the bottom teeth of the flower basket 11, and also improving transportation efficiency.

[0084] According to a second aspect of an embodiment of the present application, a battery cell production line is provided, comprising the above-mentioned battery cell transport device.

[0085] Although some specific embodiments of the present application have been described in detail by way of examples, it should be understood by those skilled in the art that the above examples are for illustration only and are not intended to limit the scope of the present application. It should be understood by those skilled in the art that the above embodiments may be modified without departing from the scope and spirit of the present application. The scope of the present application is defined by the appended claims.

Claims

1. A battery cell transport device, characterized in that: include: Insert mechanism (1); A conveying mechanism (2), the conveying mechanism (2) being arranged upstream of the inserting mechanism (1), and the conveying mechanism (2) being used to convey the battery cells to the inserting mechanism (1); A blower mechanism (3) is mounted on one end of the conveying mechanism (2) close to the inserting mechanism (1), and the blower mechanism (3) comprises at least one blower assembly (31). The blower assembly (31) is used to blow air on the battery cell when the battery cell is inserted into the inserting mechanism (1).

2. The battery cell transport device according to claim 1, characterized in that: The blower mechanism (3) comprises a mounting bracket (32) and two blower assemblies (31); the mounting bracket (32) is mounted on the conveying mechanism (2); and the two blower assemblies (31) are spaced apart along the Y direction of the mounting bracket (32).

3. The battery cell transport device according to claim 2, characterized in that: The blowing assembly (31) comprises: an air knife (312), the air knife (312) being configured to blow air into the inserting mechanism (1); An adjusting component (311), the wind knife (312) is connected to the adjusting component (311), and the adjusting component (311) is used to adjust the position of the wind knife (312).

4. The battery cell transport device according to claim 3, characterized in that: The adjustment component (311) includes a first connecting member (3111) and a second connecting member (3112), the wind knife (312) is connected to the first connecting member (3111), and the first connecting member (3111) and the second connecting member (3112) are rotatably connected around an axis in the Z direction.

5. The battery cell transport device according to claim 4, characterized in that: The wind knife (312) is rotatably connected to the first connecting member (3111) around an axis in the Y direction.

6. The battery cell transport device according to claim 4, characterized in that: The adjustment assembly (311) further includes a third connecting member (3113), wherein the third connecting member (3113) is slidably connected to the second connecting member (3112), and the second connecting member (3112) is capable of moving along the Z direction relative to the third connecting member (3113).

7. The battery cell transport device according to claim 6, characterized in that: The third connecting member (3113) is slidably connected to the mounting bracket (32), and the third connecting member (3113) is capable of moving along the X direction relative to the mounting bracket (32).

8. The battery cell transport device according to claim 3, characterized in that: The wind knife (312) is provided with a first blowing port (3124) and a second blowing port (3125) at one end facing the inserting mechanism (1); the first blowing port (3124) is located above the second blowing port (3125) in the Z direction; the wind knife (312) blows air toward the inserting mechanism (1) through the first blowing port (3124) and the second blowing port (3125).

9. The battery cell transport device according to claim 8, characterized in that: The inserting mechanism (1) comprises a lifting assembly (12), a flower basket (11), a control assembly and a photoelectric assembly, wherein the photoelectric assembly is arranged on the flower basket (11), the flower basket (11) is arranged on the driving end of the lifting assembly (12), the lifting assembly (12) is communicatively connected to the control assembly, and the photoelectric assembly is communicatively connected to the control assembly.

10. A battery cell production line, characterized in that: It comprises the battery cell transport device as described in any one of claims 1-9.