Modification liquid sponge head welding equipment
By designing a sponge head welding equipment with a turntable mechanism, a heating mechanism, and an assembly mechanism, the problems of low assembly efficiency and unstable quality of correction fluid sponge heads were solved, achieving automated welding and efficient production.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-01
- Publication Date
- 2026-04-03
AI Technical Summary
The existing correction fluid sponge heads have low assembly efficiency and unstable product quality, and mainly rely on manual assembly.
Design a sponge head welding device that includes a turntable mechanism, a heating mechanism, and an assembly mechanism. The turntable mechanism drives the product to rotate to the heating mechanism for heating. The end is heated by a high-pressure pack and a heating rod. Then, the sponge head is welded to the end of the product by a clamping assembly. Combined with an automatic feeding and unloading mechanism, the efficiency is improved.
This technology enables automatic welding of the sponge head to the product, improving assembly efficiency and ensuring product quality stability.
Smart Images

Figure CN224075036U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of correction fluid production and assembly technology, specifically, to a correction fluid sponge head welding device. Background Technology
[0002] Correction fluid is a common stationery item in daily life and school. Common types of correction fluid include bottle-type correction fluid with a brush and pen-type spring-loaded correction fluid. Among them, bottle-type correction fluid with a brush is applied to the area that needs correction by using the sponge tip attached to the bottle cap. This type of correction fluid can cover a large area of mistakes in one go, so it is one of the mainstream correction fluid products on the market.
[0003] In the production process of bottled correction fluid with brush, the sponge head needs to be glued to the end of the stick on the bottle cap. The existing assembly method usually uses manual assembly, which results in low assembly efficiency and cannot ensure the stability of product quality. Utility Model Content
[0004] To address the shortcomings of existing technologies, a modification fluid sponge head welding device is provided.
[0005] To achieve the above objectives, this utility model provides a modification fluid sponge head welding device, including a machine base, a turntable mechanism, a heating mechanism, and an assembly mechanism; the turntable mechanism, heating mechanism, and assembly mechanism are all installed on the machine base, and the turntable mechanism has multiple mounting positions spaced apart along the circumference; the heating mechanism and assembly mechanism are arranged sequentially along the rotation direction of the turntable mechanism; the heating mechanism has a heating end, which is located above the turntable mechanism and on the moving path of the mounting position; the assembly mechanism includes a frame, a material holding component, a fixing component, and a clamping component; the frame is installed on the machine base, and the material holding component, fixing component, and clamping component are disposed on the frame; the fixing component has a fixing end, which is horizontally telescopically disposed on one side of the turntable mechanism, and the clamping component is movably disposed above the turntable mechanism.
[0006] According to one embodiment of the present invention, the heating mechanism includes a high-voltage transformer, a fixing member, a positive heating rod and a negative heating rod. One end of the fixing member is connected to the machine base. The positive heating rod and the negative heating rod are spaced apart on the fixing member. One end of the positive heating rod and one end of the negative heating rod are electrically connected to the high-voltage transformer respectively. The other ends of the positive heating rod and the other ends of the negative heating rod are combined to form a heating end.
[0007] According to one embodiment of the present invention, a rotating mechanism is also included. The rotating mechanism includes a first bracket, a first driving cylinder, a first motor, and a rotating wheel. The first bracket is installed on the machine base and is located on the side of the heating mechanism away from the assembly mechanism. The first driving cylinder is installed on the first bracket, and the motor is connected to the driving end of the first driving cylinder. The first driving cylinder drives the first motor to move closer to or away from the turntable mechanism in the horizontal direction. The rotating wheel is connected to the driving end of the first motor, and the first motor drives the rotating wheel to rotate in the horizontal direction.
[0008] According to one embodiment of the present invention, the fixing component includes a second driving cylinder and a fixing head. One end of the second driving cylinder is mounted on the frame, the fixing head is connected to the driving end of the second driving cylinder, and the fixing end is formed at the end of the fixing head.
[0009] According to one embodiment of the present invention, the clamping assembly includes a first driving assembly, a second driving assembly, and a gripper. The first driving assembly is connected to the frame, the second driving assembly is connected to the driving end of the first driving assembly, and the gripper is connected to the driving end of the second driving assembly.
[0010] According to one embodiment of the present invention, the turntable mechanism includes a third drive assembly, a first turntable, and a second turntable. The third drive assembly is mounted on the surface of the machine base. The first turntable and the second turntable are coaxially connected to the drive end of the third drive assembly. The first turntable has a plurality of first receiving positions along its circumference, and the second turntable has a plurality of second receiving positions along its circumference. Each first receiving position corresponds to a second receiving position, and the first receiving position and the second receiving position cooperate to form an installation position.
[0011] According to one embodiment of the present invention, the turntable mechanism further includes a baffle plate, which is spaced around one side of the first turntable and has a gap between it and the first turntable.
[0012] According to one embodiment of the present invention, it further includes a first feeding mechanism, which includes a first vibrating plate and a first feeding trough. The first vibrating plate is disposed on one side of the machine base, one end of the first feeding trough is connected to the discharge port of the first vibrating plate, and the other end is mounted on the turntable mechanism. The first feeding trough is located on the side of the heating mechanism away from the assembly mechanism.
[0013] According to one embodiment of the present invention, it further includes a second feeding mechanism, which includes a second vibrating plate and a second feeding trough. The second vibrating plate is disposed on one side of the machine base, and one end of the second feeding trough is connected to the discharge port of the second vibrating plate, and the other end is connected to the material holding component.
[0014] According to one embodiment of the present invention, it further includes a feeding mechanism, which includes a second bracket, a stop block and a feeding trough. The second bracket is mounted on the machine base and is located on the side of the assembly mechanism away from the heating mechanism. One end of the stop block is connected to the bracket, and the other end of the stop block is positioned on the moving path of the installation position. The feeding trough is inclinedly mounted on one side of the second bracket, and the opening of the feeding trough corresponds to the stop block.
[0015] The beneficial effects of this utility model are as follows: A turntable mechanism sequentially rotates the product to be welded to the sponge head to the heating mechanism and the assembly mechanism. When the product moves to the heating mechanism, the heating end of the heating mechanism heats the end of the product. After heating, the product moves to the assembly mechanism, where the fixing component of the assembly mechanism abuts against the product, stabilizing it. Then, the clamping component picks up the sponge head from the material container and presses it onto the end of the product, causing the sponge head to adhere to the product, thus completing the automatic welding of the sponge head. Furthermore, by setting up a first feeding mechanism and a second feeding structure, automatic feeding of the product to be welded and the sponge head is achieved, and by setting up a discharging component, automatic unloading of the product after sponge head welding is achieved. This greatly improves the efficiency of welding correction pen sponge heads. Attached Figure Description
[0016] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings:
[0017] Figure 1 This is a perspective view of the modified liquid sponge head welding equipment in the embodiment;
[0018] Figure 2 This is another perspective view of the modified liquid sponge head welding device in the embodiment;
[0019] Figure 3 This is an enlarged view of part A in the embodiment;
[0020] Figure 4 This is a schematic diagram of the assembly mechanism in the embodiment;
[0021] Figure 5 This is an exploded view of the turntable mechanism in the embodiment;
[0022] Figure 6 This is a schematic diagram illustrating the first and second feeding mechanisms in the embodiment.
[0023] Explanation of reference numerals in the attached figures
[0024] 1. Machine base; 2. Turntable mechanism; 20. Mounting position; 21. Third drive assembly; 211. Gear motor; 212. Divider; 22. First turntable; 220. First receiving position; 23. Second turntable; 230. Second receiving position; 24. Baffle plate; 3. Heating mechanism; 30. Heating end; 31. Fixing component; 32. Positive heating rod; 33. Negative heating rod; 34. Fiber optic sensor; 4. Assembly mechanism; 41. Frame; 42. Material holding component; 43. Fixing assembly; 430. Fixing end; 431. Second drive cylinder; 432. Fixing head; 44. Clamping assembly; 441 1. First drive assembly; 4411. Third drive cylinder; 442. Second drive assembly; 4421. Connecting plate; 4422. Fourth drive cylinder; 4423. Slide rail; 4424. Slider; 443. Gripper; 5. Rotating mechanism; 51. First bracket; 52. First drive cylinder; 53. First motor; 54. Rotating wheel; 6. First feeding mechanism; 61. First vibratory feeder; 62. First feeding trough; 7. Second feeding mechanism; 71. Second vibratory feeder; 72. Second feeding trough; 8. Unloading mechanism; 81. Second bracket; 82. Stop block; 83. Unloading trough; 100. Product. Detailed Implementation
[0025] The following drawings will disclose several embodiments of this utility model. For clarity, many practical details will be described in the following description. However, it should be understood that these practical details should not be used to limit this utility model. That is, in some embodiments of this utility model, these practical details are not essential. In addition, for the sake of simplicity, some conventional structures and components will be shown in the drawings in a simple schematic manner.
[0026] Furthermore, in this utility model, the use of terms such as "first" and "second" is for descriptive purposes only and does not specifically refer to any order or sequence, nor is it intended to limit the utility model. They are merely used to distinguish components or operations described with the same technical terms and should not be construed as indicating or implying their relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the technical solutions of various embodiments can be combined with each other, but only if they are feasible for those skilled in the art. If a combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
[0027] Please refer to Figures 1-4 , Figure 1 To modify the 3D diagram of the liquid sponge head welding equipment, Figure 2 To modify another perspective view of the liquid sponge head welding equipment, Figure 3 This is an enlarged view of part A. Figure 4 This is a schematic diagram of the assembly mechanism. This embodiment provides a modification liquid sponge head welding device, which includes a machine base 1, a turntable mechanism 2, a heating mechanism 3, and an assembly mechanism 4. The turntable mechanism 2, heating mechanism 3, and assembly mechanism 4 are all mounted on the surface of the machine base 1, and are arranged sequentially along the rotation direction of the turntable mechanism 2. The turntable mechanism 2 has multiple mounting positions 20 along its circumference, each mounting position 20 for placing a product 100. The turntable mechanism 2 drives the product 100 placed in the mounting position 20 to rotate, causing the product 100 placed in the mounting position 20 to rotate sequentially to the heating mechanism 3 and the assembly mechanism 4. The heating mechanism 3 is used to heat the end of the product 100. The heating mechanism 3 has a heating end 30, which is located above the turntable mechanism 2 and on the moving path of the mounting position 20. The assembly mechanism 4 includes a frame 41, a material holding component 42, a fixing component 43, and a clamping component 44. The frame 41 is mounted on the machine base 1. The material holding component 42, the fixing component 43, and the clamping component 44 are all mounted on the frame 41. The frame 41 is used to provide support for the material holding component 42, the fixing component 43, and the clamping component 44.
[0028] The material container 42 is used to hold the sponge head, and the fixing component 43 is used to fix the product 100 located in the mounting position 20. The fixing component 43 has a fixing end 430, which is horizontally telescopically disposed on one side of the turntable mechanism 2. The clamping component 44 is used to clamp the sponge head in the material container 42 and place the sponge head at the end of the product 100 in the mounting position 20, so that the sponge head is connected to the product 100.
[0029] Specifically, in practical applications, the product 100 to be processed is placed sequentially in the mounting position 20 of the turntable mechanism 2. When the turntable mechanism 2 rotates, it drives the product 100 in the mounting position 20 to rotate. When the product 100 rotates to the heating mechanism 3, the turntable mechanism 2 stops rotating, and the heating end 30 of the heating mechanism 3 heats the end of the product 100. After heating is completed, the turntable mechanism 2 rotates, driving the product 100 to the assembly mechanism 4. When the product 100 moves to the assembly mechanism 4, the turntable mechanism 2 stops rotating, and the fixing end 430 of the fixing component 43 approaches the turntable mechanism 2 in the horizontal direction, and the fixing end 430 abuts against the product 100 in the mounting position 20, so that the product 100 in the mounting position 20 remains stable. At the same time, the clamping end of the clamping component 44 clamps the sponge head placed in the material container 42 and presses the sponge head onto the end of the product 100. Since the end of product 100 has been heated by heating mechanism 3, when the sponge head is pressed onto the end of product 100, the high temperature of the end of product 100 will melt the sponge head in contact with it, so that the sponge head is attached to the end of product 100. As the temperature decreases, the sponge head and the end of product 100 are bonded together, thereby achieving the welding between the sponge head and product 100.
[0030] Please refer to Figure 3 Furthermore, the heating mechanism 3 includes a high-voltage transformer (not shown in the figure), a fixing member 31, a positive heating rod 32 and a negative heating rod 33. One end of the fixing member 31 is connected to the machine base 1. The positive heating rod 32 and the negative heating rod 33 are spaced apart on the fixing member 31, and one end of the positive heating rod 32 and the negative heating rod 33 are respectively connected to the high-voltage transformer. The positive heating rod 32 and the negative heating rod 33 are combined to form the heating end 30.
[0031] In use, the high-voltage coil provides high-voltage electricity to the positive heating rod 32 and the negative heating rod 33, causing an electric arc to be generated at the ends of the two heating rods. When the electric arc comes into contact with the end of the product 100, the end of the product 100 is instantly burned by the high temperature, thereby completing the heating of the end of the product 100. It should be noted that the high-voltage coil, also known as the ignition coil, is used to generate high voltage and is existing technology, therefore it will not be described in detail here.
[0032] Furthermore, the heating mechanism 3 also includes a fiber optic sensor 34, which is mounted on the fixing member 31 with its sensing end facing the heating end 30 of the heating mechanism 3. The fiber optic sensor 34 is used to sense whether there is a product 100 at the heating end 30. When the fiber optic sensor 34 detects that there is a product 100 at the heating end 30, it sends a signal to the heating mechanism 3, causing the heating mechanism 3 to heat the end of the product 100.
[0033] Please refer to Figure 1 and Figure 3 To ensure even heating of the end of product 100, the modified liquid sponge head welding device also includes a rotating mechanism 5. The rotating mechanism 5 includes a first support 51, a first drive cylinder 52, a first motor 53, and a rotating wheel 54. The first support 51 is mounted on the surface of the machine base 1 and is located at the point where the heating mechanism 3 is furthest from the assembly mechanism 4. The first drive cylinder 52 is mounted on the first support 51, and the first motor 53 is connected to the drive end of the first drive cylinder 52. The first drive cylinder 52 drives the first motor 53 to move horizontally closer to or away from the turntable mechanism 2. The rotating wheel 54 is connected to the drive end of the first motor 53, and the first motor 53 drives the rotating wheel 54 to rotate horizontally.
[0034] When the turntable mechanism 2 moves the product 100 to the heating mechanism 3, the turntable mechanism 2 stops rotating. Then, the drive end of the first drive cylinder 52 drives the first motor 53 and the rotating wheel 54 to approach the turntable mechanism 2, causing the edge of the rotating wheel 54 to abut against the product 100. The first motor 53 drives the rotating wheel 54 to rotate, and the rotating wheel 54 drives the product 100 located in the mounting position 20 to rotate. At the same time, the heating end 30 of the heating mechanism 3 heats the end of the product 100. The rotating mechanism 5 drives the product 100 to rotate during heating, so that the end of the product 100 is heated evenly.
[0035] Please refer to Figure 4 The fixing component 43 includes a second drive cylinder 431 and a fixing head 432. The second drive cylinder 431 is mounted on the frame 41, and the fixing member 31 is connected to the drive end of the second drive cylinder 431. The second drive cylinder 431 is used to drive the fixing head 432 to move closer to or away from the turntable mechanism 2 in the horizontal direction.
[0036] In use, when the turntable mechanism 2 moves the product 100 to the assembly mechanism 4, the turntable mechanism 2 stops rotating. Then, the second drive cylinder 431 drives the fixing head 432 to approach the turntable mechanism 2 horizontally, causing the end of the fixing head 432 to abut against the product 100 located in the mounting position 20, thus fixing the product 100 in the mounting position 20 so that the clamping assembly 44 can press the sponge head onto the end of the product 100. When the clamping assembly 44 has finished pressing the sponge onto the end of the product 100, the second drive cylinder 431 drives the fixing head 432 to move horizontally away from the turntable mechanism 2, causing the fixing head 432 to disengage from the product 100 in the mounting position 20. Preferably, the end of the fixing head 432 is coated with silicone to avoid damaging the product 100.
[0037] Please continue to refer to this. Figure 4The clamping assembly 44 includes a first drive assembly 441, a second drive assembly 442, and a gripper 443. The first drive assembly 441 is connected to the frame 41, the second drive assembly 442 is connected to the drive end of the first drive assembly 441, and the gripper 443 is connected to the drive end of the second drive assembly 442. The first drive assembly 441 drives the second drive assembly 442 and the gripper 443 to move vertically, and the second drive assembly 442 drives the gripper 443 to move horizontally.
[0038] When the clamping assembly 44 is in operation, the second drive assembly 442 drives the gripper 443 to approach the material container 42 horizontally. Then, the first drive assembly 441 drives the second drive assembly 442 and the gripper 443 to approach the material container 42 vertically. The gripper 443 then clamps the sponge head in the material container 42. After clamping, the second drive assembly 442 drives the gripper 443 to approach the turntable mechanism 2 horizontally. Then, the first drive assembly 441 drives the second drive assembly 442 and the gripper 443 to move vertically, so that the gripper 443 presses the sponge head onto the end of the product 100. After the gripper 443 presses the sponge head onto the end of the product 100, the gripper 443 opens. Then, the first drive assembly 441 drives the second drive assembly 442 and the gripper 443 to move horizontally away from the turntable mechanism 2, so that the gripper 443 returns to its original position.
[0039] Furthermore, the first drive assembly 441 includes a third drive cylinder 4411, and the second drive assembly 442 includes a connecting plate 4421, a fourth drive cylinder 4422, a slide rail 4423, and a slider 4424. One side of the connecting plate 4421 is connected to the drive end of the third drive cylinder 4411, and the slide rail 4423 is connected to the other side of the connecting plate 4421. The fourth drive cylinder 4422 is mounted on the connecting plate 4421, and the slider 4424 is connected to the drive end of the fourth drive cylinder 4422, and the slider 4424 is slidably connected to the slide rail 4423. The fourth drive cylinder 4422 drives the slider 4424 to move along the slide rail 4423, and the gripper 443 is connected to the slider 4424, moving along with the slider 4424.
[0040] Please refer to Figure 5 , Figure 5This is an exploded view of the turntable mechanism. The turntable mechanism 2 includes a third drive assembly 21, a first turntable 22, and a second turntable 23. The third drive assembly 21 is mounted on the surface of the machine base 1. The first turntable 22 and the second turntable 23 are coaxially connected to the drive end of the third drive assembly 21, and the first turntable 22 and the second turntable 23 are spaced apart. The third drive assembly 21 is used to drive the first turntable 22 and the second turntable 23 to rotate synchronously. The first turntable 22 has a plurality of first receiving positions 220 along its circumference, and the second turntable 23 has a plurality of second receiving positions 230 along its circumference. Each first receiving position 220 corresponds to a second receiving position 230, and the corresponding first receiving positions 220 and second receiving positions 230 cooperate to form a mounting position 20. When product 100 is placed on turntable mechanism 2, the bottle cap of product 100 is placed on the first turntable 22 and located in the first receiving position 220, while the small stick of product 100 is engaged in the second receiving position 230. When turntable mechanism 2 rotates, the first turntable 22 and the second turntable 23 drive product 100 to rotate synchronously.
[0041] The third drive assembly 21 includes a geared motor 211 and a divider 212. The geared motor 211 and the divider 212 are connected by a belt drive. The first turntable 22 and the second turntable 23 are coaxially arranged at the drive end of the divider 212. The geared motor 211 provides driving force to the divider 212, which converts the continuous motion of the geared motor 211 into intermittent motion and drives the first turntable 22 and the second turntable 23 to rotate.
[0042] Please refer to Figure 2 Furthermore, the turntable mechanism 2 also includes a baffle plate 24, which is mounted on the machine base 1 and surrounds one side of the first turntable 22. A gap exists between the baffle plate 24 and the first turntable 22 to avoid interference. The baffle plate 24 is used to shield the product 100, preventing it from falling off during the rotation of the turntable mechanism 2.
[0043] Please refer to Figure 6 , Figure 6 This diagram illustrates the first and second feeding mechanisms. Additionally, the modification fluid sponge head welding device also includes a first feeding mechanism 6. The first feeding mechanism 6 includes a first vibratory plate 61 and a first feeding trough 62. The first vibratory plate 61 is located on one side of the machine base 1. One end of the first feeding trough 62 is connected to the outlet of the first vibratory plate 61, and the other end of the first feeding trough 62 extends into the turntable mechanism 2. The first feeding trough 62 is located on the side of the heating mechanism 3 away from the assembly mechanism 4.
[0044] The unwelded sponge head product 100 is placed in the first vibrating plate 61, and the unwelded sponge head product 100 is orderly conveyed to the first feeding trough 62 by the first vibrating plate 61. Then, multiple unwelded sponge head products 100 are moved sequentially along the first feeding trough 62 to the mounting position 20 of the turntable mechanism 2, thereby realizing the automatic feeding of the unwelded sponge head product 100.
[0045] The modified liquid sponge head welding device also includes a second feeding mechanism 7. The second feeding mechanism 7 includes a second vibrating plate 71 and a second feeding trough 72. The second vibrating plate 71 is disposed on one side of the machine base 1, one end of the second feeding trough 72 is connected to the discharge port of the second vibrating plate 71, and the other end of the second feeding trough 72 is connected to the material holding component 42.
[0046] The sponge head is placed on the second vibrating plate 71, and the sponge head is transferred in an orderly manner to the second feeding trough 72 through the second vibrating plate 71. Then the sponge head moves sequentially along the second feeding trough 72 to the holding container 42 to realize the automatic feeding of the sponge head.
[0047] Please refer to Figure 2 The modified liquid sponge head welding device also includes a feeding mechanism 8, which includes a second support 81, a stop block 82, and a feeding trough 83. The second support 81 is mounted on the machine base 1 and is located on the side of the assembly mechanism 4 away from the heating structure 3. One end of the stop block 82 is connected to the second support 81, and the other end of the stop block 82 extends into the turntable mechanism 2, and the stop block 82 is positioned between the first turntable 22 and the second turntable 23. The feeding trough 83 is inclinedly connected to one side of the second support 81, and the opening of the feeding trough 83 corresponds to the stop block 82.
[0048] After product 100 and sponge head are assembled by assembly mechanism 4, rotating mechanism 5 drives product 100 to continue rotating. When product 100 rotates to unloading mechanism 8, stop block 82 is placed on the moving path of product 100, preventing product 100 from continuing to move with turntable mechanism 2. Guided by stop block 82, product 100 falls into unloading trough 83 along stop block 82, thus completing automatic unloading.
[0049] In summary, the product 100 to be welded to the sponge head is sequentially rotated to the heating mechanism 3 and the assembly mechanism 4 via the turntable mechanism 2. When the product 100 moves to the heating mechanism 3, the heating end 30 of the heating mechanism 3 heats the end of the product 100. After heating, the product 100 moves to the assembly mechanism 4, where the fixing component 43 of the assembly mechanism 4 abuts against the product 100, stabilizing it. Then, the clamping component 44 clamps the sponge head in the material container 42 and presses it onto the end of the product 100, causing the sponge head to adhere to the product 100, thus completing the automatic welding of the sponge head. Furthermore, by setting up the first feeding mechanism 6 and the second feeding structure, automatic feeding of the product 100 to be welded and the sponge head is achieved, and by setting up the unloading component, automatic unloading of the product 100 after sponge head welding is achieved. This greatly improves the efficiency of welding correction pen sponge heads.
[0050] The above description is merely an embodiment of this utility model and is not intended to limit the scope of this utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principle of this utility model should be included within the scope of the claims of this utility model.
Claims
1. A modified fluid sea sponge tip welding apparatus, characterized by, Including machine table (1), carousel mechanism (2), heating mechanism (3) and assembly mechanism (4);The carousel mechanism (2), the heating mechanism (3) and the assembly mechanism (4) are all installed on the machine table (1), the carousel mechanism (2) is spaced apart along the circumference and is provided with a plurality of installation sites (20);The heating mechanism (3) and the assembly mechanism (4) are sequentially arranged along the rotation direction of the carousel mechanism (2);The heating mechanism (3) has a heating end (30), the heating end (30) is located above the carousel mechanism (2), and the heating end (30) is located on the moving path of the installation site (20);The assembly mechanism (4) includes a rack (41), a material containing part (42), a fixing assembly (43) and a clamping assembly (44), the rack (41) is installed on the machine table (1), the material containing part (42), the fixing assembly (43) and the clamping assembly (44) are arranged on the rack (41), the fixing assembly (43) has a fixed end (430), the fixed end (430) is arranged on one side of the carousel mechanism (2) in a telescopic manner along the horizontal direction, and the clamping assembly (44) is movably arranged above the carousel mechanism (2).
2. The modified fluid-filled sponge tip welding apparatus of claim 1, wherein, The heating mechanism (3) includes a high-voltage package, a fixing part (31), a positive electrode heating rod (32) and a negative electrode heating rod (33), one end of the fixing part (31) is connected to the machine table (1), the positive electrode heating rod (32) and the negative electrode heating rod (33) are arranged at intervals on the fixing part (31), and one end of the positive electrode heating rod (32) and one end of the negative electrode heating rod (33) are respectively electrically connected to the high-voltage package, the other end of the positive electrode heating rod (32) and the other end of the negative electrode heating rod (33) are combined to form the heating end (30).
3. The modified fluid filled sponge tip welding apparatus of claim 1, wherein, It also includes a rotating mechanism (5), the rotating mechanism (5) includes a first support (51), a first drive cylinder (52), a first motor (53) and a rotating wheel (54), the first support (51) is installed on the machine table (1), and the support (51) is located on one side of the heating mechanism (3) away from the assembly mechanism (4), the first drive cylinder (52) is installed on the first support (51), the first motor (53) is connected to the driving end of the first drive cylinder (52), the first drive cylinder (52) drives the first motor (53) to move along the horizontal direction close to or away from the carousel mechanism (2), and the rotating wheel (54) is connected to the driving end of the first motor (53), and the first motor (53) drives the rotating wheel (54) to rotate along the horizontal direction.
4. The modified fluid filled sponge tip welding apparatus of claim 1, wherein, The fixing assembly (43) includes a second drive cylinder (431) and a fixing head (432), one end of the second drive cylinder (431) is installed on the rack (41), the fixing head (432) is connected to the driving end of the second drive cylinder (431), and the fixed end (430) is formed at the end of the fixing head (432).
5. The modified fluid filled sponge tip welding apparatus of claim 1, wherein, The clamping assembly (44) comprises a first driving assembly (441), a second driving assembly (442) and a clamping jaw (443), the first driving assembly (441) is connected to the rack (41), the second driving assembly (442) is connected to the driving end of the first driving assembly (441), and the clamping jaw (443) is connected to the driving end of the second driving assembly (442).
6. The modified fluid filled sponge tip welding apparatus of claim 1, wherein, The rotating disc mechanism (2) comprises a third driving assembly (21), a first rotating disc (22) and a second rotating disc (23), the third driving assembly (21) is installed on the surface of the machine table (1), the first rotating disc (22) and the second rotating disc (23) are coaxially connected to the driving end of the third driving assembly (21), a plurality of first receiving positions (220) are formed on the circumference of the first rotating disc (22), a plurality of second receiving positions (230) are formed on the circumference of the second rotating disc (23), each first receiving position (220) corresponds to a second receiving position (230), and a first receiving position (220) and a second receiving position (230) cooperate to form the mounting position (20).
7. The modified fluidized bed head welding apparatus of claim 6, wherein, The rotating disc mechanism (2) further comprises a shielding plate (24), the shielding plate (24) is peripherally arranged on one side of the first rotating disc (22), and a gap is formed between the shielding plate (24) and the first rotating disc (22).
8. The modified fluid filled sponge tip welding apparatus of claim 1, wherein, The first feeding mechanism (6) comprises a first vibrating disc (61) and a first feeding groove (62), the first vibrating disc (61) is arranged on one side of the machine table (1), one end of the first feeding groove (62) is connected with the discharge port of the first vibrating disc (61), the other end of the first feeding groove (62) is arranged on the rotating disc mechanism (2), and the first feeding groove (62) is located on the side of the heating mechanism (3) away from the assembling mechanism (4).
9. The modified fluid filled sponge tip welding apparatus of claim 1, wherein, The second feeding mechanism (7) comprises a second vibrating disc (71) and a second feeding groove (72), the second vibrating disc (71) is arranged on one side of the machine table (1), one end of the second feeding groove (72) is connected with the discharge port of the second vibrating disc (71), and the other end of the second feeding groove (72) is connected with the containing member (42).
10. The modified fluid filled sponge tip welding apparatus of claim 1, wherein, The discharging mechanism (8) comprises a second support (81), a stop block (82) and a discharging groove (83), the second support (81) is arranged on the machine table (1), the second support (81) is located on the side of the assembling mechanism (4) away from the heating mechanism (3), one end of the stop block (82) is connected with the second support (81), the other end of the stop block (82) is arranged on the moving path of the mounting position (20), and the discharging groove (83) is arranged on one side of the second support (81) in an inclined manner, and the groove of the discharging groove (83) corresponds to the stop block (82).