A method for manufacturing an adjustable flexible light strip

The automated winding equipment solves the problem of manual loading and unloading in the manufacturing of LED flexible light strips, realizes an efficient and stable light strip winding process, and ensures length consistency and guide stability.

CN116573464BActive Publication Date: 2025-09-12YANGZHOU HUACAI OPTO ELECTRONICS
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Patent Information

Application Number
CN202310573989.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-22
Publication Date
2025-09-12
Estimated Expiration
2043-05-22

AI Technical Summary

Technical Problem

In the existing manufacturing process of LED flexible light strips, manual loading and unloading is required during winding, resulting in low efficiency and increased labor intensity.

Method used

An automated winding device, including components such as a base plate, guide rollers, hydraulic cylinders and motors, is used to automatically load and unload the winding roller. The guide rollers and pressure sensors are used to maintain a constant guiding force for the light strip, and the winding length is accurately measured in combination with photoelectric sensors.

Benefits of technology

The automation of the light strip winding process is realized, which improves efficiency, reduces labor intensity, and ensures the consistency of length and guide stability of each roll of light strip.

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Abstract

The present invention discloses a method for manufacturing an adjustable flexible light strip, which relates to the technical field of flexible light strips and includes the following steps: S1, wiring: fixing the circuit board and the wires on the light strip housing with hot melt adhesive or glue, and connecting the power cord and the controller line; S2, installing LED lamp beads: installing the LED lamp beads on the circuit board according to the design requirements, which can be completed by manual welding or an automated placement machine; S3, sealing: injecting glue or silicone between the LED lamp beads and the circuit board to make them tightly bonded to prevent leakage or damage to the light strip during use; S4, testing: using an automatic testing instrument to detect whether the brightness, color temperature, power and other parameters of the light strip meet the requirements, and repairing or eliminating unqualified products. This method for manufacturing an adjustable flexible light strip can automatically complete the loading and unloading of the winding roller when the light strip is wound, eliminating the need for manual loading and unloading, saving time and improving work efficiency.
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Description

Technical Field

[0001] The present invention relates to the technical field of flexible light strips, and in particular to a method for manufacturing an adjustable flexible light strip. Background Art

[0002] LED flexible light strips, also known as flexible neon tubes, are the latest and most popular LED breakthrough products. They are designed to make up for the shortcomings of glass neon tubes and optical fibers, thereby completely replacing them.

[0003] When manufacturing LED flexible light strips, they need to go through wiring, installation of LED lamp beads, sealing, testing and packaging. During packaging, the manufactured light strips need to be rolled up. However, when rolling up, every time the light strip on a winding roller is full, it needs to be manually removed, and then the next winding roller is taken and fixed on the winding motor, which is very troublesome. Therefore, it is necessary to develop a light strip winding device that can automatically load and unload the winding roller. Summary of the Invention

[0004] In view of the shortcomings of the existing technology, the present invention provides a method for manufacturing an adjustable flexible light strip, which solves the problem that traditional light strip winding equipment requires manual loading and unloading of the winding roller during winding.

[0005] To achieve the above objectives, the present invention is implemented through the following technical solutions: A method for manufacturing an adjustable flexible light strip, comprising the following steps:

[0006] S1. Wiring: Fix the circuit board and wires to the light strip housing with hot melt glue or glue, and connect the power cord and controller wire;

[0007] S2. Install LED lamp beads: According to the design requirements, install LED lamp beads on the circuit board, which can be completed by manual welding or automatic placement machine;

[0008] S3, Sealing glue: Inject glue or silicone between the LED lamp beads and the circuit board to make them tightly bonded to prevent leakage or damage during use of the light strip;

[0009] S4. Testing: Use automatic testing instruments to check whether the brightness, color temperature, power and other parameters of the light strip meet the requirements, and repair or eliminate unqualified products;

[0010] S5. Packaging: Wind the qualified light strips and then pack them after winding.

[0011] As a further solution of the present invention: in the step S5, the device for winding the light strip includes a substrate, a movable groove is provided on the front portion of one side of the substrate, and the front portion of the substrate is located at a position on one side of the movable groove and is rotatably provided with two first guide rollers, the front portion of the substrate is located at a position on one side of the first guide roller and is rotatably provided with two second guide rollers, and a lifting hydraulic cylinder is installed on the upper portion of one side of the substrate, the output shaft of the lifting hydraulic cylinder is located at an internal position of the movable groove and is connected to a winding member, a connecting seat is provided at the front edge of one side of the substrate, and a feeding member is provided on the front side of the connecting seat;

[0012] As a further solution of the present invention: the winding member includes a movable block connected to the output shaft of the lifting hydraulic cylinder, a winding motor is installed on the back of the movable block, and the output shaft of the winding motor is connected to the winding shaft;

[0013] As a further solution of the present invention: the feeding part includes a storage shell arranged on the front side of the connecting seat, and the front and rear sides of the lower part of the storage shell are provided with a pushing groove connected to the interior thereof, the inner lower part of the pushing groove is connected with the inner lower side of the storage shell, and a loading hydraulic cylinder is installed on one side of the storage shell, the output shaft of the loading hydraulic cylinder is connected to an L-shaped plate, and the lower end back of the L-shaped plate is connected to a push cylinder, and the push cylinder is located at the position of the central axis of the push groove.

[0014] As a further solution of the present invention: the internal length and width of the storage shell are respectively equal to the length and diameter of the winding roller used to wind the light strip, the length of the push cylinder is greater than the external length of the storage shell, and the inner diameter and outer diameter of the storage shell are both equal to the inner diameter and outer diameter of the winding roller, and the push groove is equal to the outer diameter of the push cylinder, so that the push cylinder can just pass through the push groove.

[0015] As a further solution of the present invention: when the output shaft of the lifting hydraulic cylinder is retracted, the winding shaft is exactly located at the center axis position of the pushing groove, and the winding roller for winding the light strip can be just put on the outside of the winding shaft.

[0016] As a further solution of the present invention: grooves are provided on both sides of the reel, elastic arc pieces are provided inside the grooves, and the arc surfaces of the elastic arc pieces protrude outwards.

[0017] As a further solution of the present invention: a pushing hydraulic cylinder is installed on the back of the movable block at one side of the winding motor, and the output shaft of the pushing hydraulic cylinder is connected to the limiting plate. An annular push plate is provided at one end of the limiting plate, and the annular push plate is slidably sleeved on the outside of one end of the winding shaft.

[0018] As a further solution of the present invention: the positions of the two first guide rollers and the positions of the two second guide rollers are respectively located on two identical axes, and the light strip can pass through the two first guide rollers and the two second guide rollers.

[0019] As a further solution of the present invention: a guide member is provided at the front of the substrate between the first guide roller and the second guide roller, and the guide member includes a limit seat provided at the front of the substrate, a guide hydraulic cylinder is installed on the upper part of the limit seat, and the output shaft of the guide hydraulic cylinder is connected to a fixed plate, and a T-shaped shaft is slidably installed through the upper front part of the fixed plate, and a first spring is sleeved on the outer side of the upper end of the T-shaped shaft, and the two ends of the first spring are respectively connected to the upper part of the fixed plate and the inner side of the upper end of the T-shaped shaft, and the lower end of the T-shaped shaft is connected to a concave seat, and a guide roller is rotatably provided on the inner side of the concave seat, and a pressure sensor is provided at the middle position of the lower part of the fixed plate, and a second spring corresponding to the position of the pressure sensor is provided on the upper part of the concave seat, and the upper end of the second spring contacts the lower part of the pressure sensor, and there is no pressure between the two.

[0020] As a further solution of the present invention: the front side of the concave seat is connected to a limiting shaft, one end of the limiting shaft is connected to one end of the guide roller, and the other end of the limiting shaft is connected to a counting board, and a photoelectric sensor is provided on the upper front side of the concave seat, and the counting board will block the photoelectric sensor once every rotation.

[0021] As a further solution of the present invention: a support is provided on the upper front part of the substrate at a position on one side of the first guide roller, a cutting hydraulic cylinder is installed on the upper part of the support, the output shaft of the cutting hydraulic cylinder is connected to the cutter, and a support plate is provided on the front side of the substrate at a position below the cutter, and a cutting groove is provided on the upper part of the support plate.

[0022] The present invention provides a method for manufacturing an adjustable flexible light strip, which has the following advantages compared with the prior art:

[0023] Beneficial effects:

[0024] 1. This method for manufacturing an adjustable flexible light strip can automatically complete the loading and unloading of the winding roller when the light strip is wound, without the need for manual loading and unloading, which not only saves time and improves work efficiency, but also reduces manual work intensity.

[0025] 2. The adjustable flexible light strip manufacturing method can automatically cut the light strip after the light strip is rolled up, and the length of the rolled light strip can be accurately measured during cutting, so that the length of each roll of light strip after packaging is the same.

[0026] 3. In the manufacturing method of the adjustable flexible light strip, during the winding process of the light strip, the guide roller guides the light strip, and under the detection of the pressure sensor, the guiding force of the light strip can be kept constant, preventing the light strip from being too tight or too loose during the winding and conveying. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 It is a structural schematic diagram of the present invention;

[0028] Figure 2 It is a structural schematic diagram of the feeding member of the present invention;

[0029] Figure 3 It is a structural schematic diagram of the winding member of the present invention;

[0030] Figure 4 It is a structural schematic diagram of the guide member of the present invention;

[0031] Figure 5 For the present invention Figure 1 A partial enlarged schematic diagram of the structure at point A in the middle;

[0032] Figure 6 This is a flowchart of the light strip manufacturing process of the present invention.

[0033] Figure: 1, base plate; 101, support; 102, cutting hydraulic cylinder; 103, cutter; 104, support plate; 105, cutting groove; 2, movable groove; 3, first guide roller; 4, second guide roller; 5, lifting hydraulic cylinder; 6, winding member; 61, movable block; 62, winding motor; 63, winding shaft; 64, groove; 65, elastic arc piece; 66, push-out hydraulic cylinder; 67, limit plate; 68, annular push plate; 7, connection Seat; 8. Feeding piece; 81. Storage shell; 82. Pushing groove; 83. Loading hydraulic cylinder; 84. L-shaped plate; 85. Push cylinder; 9. Guide piece; 91. Limit seat; 92. Guide hydraulic cylinder; 93. Fixed plate; 94. T-shaped shaft; 95. First spring; 96. Concave seat; 97. Guide roller; 98. Pressure sensor; 99. Second spring; 910. Limit shaft; 911. Counting plate; 912. Photoelectric sensor. DETAILED DESCRIPTION

[0034] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0035] See also Figure 1-6 , the present invention provides four technical solutions:

[0036] Example 1

[0037] See also Figure 6 In an embodiment of the present invention, a method for manufacturing an adjustable flexible light strip includes the following steps:

[0038] S1. Wiring: Fix the circuit board and wires to the light strip housing with hot melt glue or glue, and connect the power cord and controller wire;

[0039] S2. Install LED lamp beads: According to the design requirements, install LED lamp beads on the circuit board, which can be completed by manual welding or automatic placement machine;

[0040] S3, Sealing glue: Inject glue or silicone between the LED lamp beads and the circuit board to make them tightly bonded to prevent leakage or damage during use of the light strip;

[0041] S4. Testing: Use automatic testing instruments to check whether the brightness, color temperature, power and other parameters of the light strip meet the requirements, and repair or eliminate unqualified products;

[0042] S5. Packaging: Wind the qualified light strips and then pack them after winding.

[0043] The second embodiment differs from the first embodiment in that:

[0044] See also Figure 1 In the embodiment of the present invention, in step S5, the device for winding the light strip includes a substrate 1, a movable groove 2 is provided on the front part of one side of the substrate 1, and the front part of the substrate 1 is located at a position on one side of the movable groove 2 and is rotatably provided with two first guide rollers 3, the front part of the substrate 1 is located at a position on one side of the first guide roller 3 and is rotatably provided with two second guide rollers 4, and a lifting hydraulic cylinder 5 is installed on the upper part of one side of the substrate 1, the output shaft of the lifting hydraulic cylinder 5 is located at an inner position of the movable groove 2 and is connected to a winding member 6, a connecting seat 7 is provided at the front edge of one side of the substrate 1, and a feeding member 8 is provided on the front side of the connecting seat 7;

[0045] See also Figure 3 In the embodiment of the present invention, the winding member 6 includes a movable block 61 connected to the output shaft of the lifting hydraulic cylinder 5, a winding motor 62 is installed on the back of the movable block 61, and the output shaft of the winding motor 62 is connected to the winding shaft 63;

[0046] See also Figure 2 In the embodiment of the present invention, the feeding member 8 includes a storage shell 81 arranged on the front side of the connecting seat 7, and the front and rear sides of the lower part of the storage shell 81 are provided with a pushing groove 82 connected to the interior thereof. The inner lower part of the pushing groove 82 is connected with the inner lower side of the storage shell 81, and a feeding hydraulic cylinder 83 is installed on one side of the storage shell 81. The output shaft of the feeding hydraulic cylinder 83 is connected to an L-shaped plate 84, and the lower end back of the L-shaped plate 84 is connected to a pushing cylinder 85, and the pushing cylinder 85 is located at the position of the central axis of the pushing groove 82.

[0047] See also Figure 2In the embodiment of the present invention, the internal length and width of the storage shell 81 are respectively equal to the length and diameter of the winding roller used to wind the light strip, the length of the push cylinder 85 is greater than the external length of the storage shell 81, and the inner diameter and outer diameter of the storage shell 81 are both equal to the inner diameter and outer diameter of the winding roller, and the pushing groove 82 is equal to the outer diameter of the push cylinder 85, so that the push cylinder 85 can just pass through the pushing groove 82, so that it can push the winding roller to the winding shaft 63.

[0048] See also Figure 1 and Figure 3 In the embodiment of the present invention, when the output shaft of the lifting hydraulic cylinder 5 is retracted, the winding shaft 63 is exactly located at the center axis position of the pushing groove 82, and the winding roller for winding the light strip can be just put on the outside of the winding shaft 63.

[0049] See also Figure 3 In the embodiment of the present invention, grooves 64 are provided on both sides of the winding shaft 63, and elastic arc pieces 65 are provided inside the grooves 64. The arc surface of the elastic arc piece 65 protrudes outward. When the winding roller is pushed onto the winding shaft 63, under the elasticity of the elastic arc piece 65, the arc surface of the elastic arc piece 65 will press against the winding roller, thereby fixing the winding roller on the winding shaft 63. When the winding shaft 63 rotates, it will drive the winding roller to rotate, thereby winding the light strip.

[0050] See also Figure 3 In the embodiment of the present invention, a pushing hydraulic cylinder 66 is installed on the back of the movable block 61 at one side of the winding motor 62. The output shaft of the pushing hydraulic cylinder 66 is connected to the limiting plate 67. One end of the limiting plate 67 is provided with an annular push plate 68. The annular push plate 68 is slidably sleeved on the outside of one end of the winding shaft 63. The pushing hydraulic cylinder 66 drives the limiting plate 67 to move, and the limiting plate 67 drives the annular push plate 68 to slide on the winding shaft 63. The annular push plate 68 will push the winding roller on the winding shaft 63 down to complete the unloading work.

[0051] See also Figure 1 In the embodiment of the present invention, the positions of the two first guide rollers 3 and the positions of the two second guide rollers 4 are respectively located on two identical axes, and the light strip can pass between the two first guide rollers 3 and the two second guide rollers 4. The first guide rollers 3 and the second guide rollers 4 play a guiding role for the light strip.

[0052] The third embodiment differs from the first and second embodiments in that:

[0053] See also Figure 4In the embodiment of the present invention, a guide member 9 is provided at the front of the base plate 1 between the first guide roller 3 and the second guide roller 4. The guide member 9 includes a limit seat 91 provided at the front of the base plate 1. A guide hydraulic cylinder 92 is installed on the upper part of the limit seat 91. The output shaft of the guide hydraulic cylinder 92 is connected to a fixed plate 93. A T-shaped shaft 94 is slidably installed on the upper front side of the fixed plate 93. A first spring 95 is sleeved on the outer end of the upper end of the T-shaped shaft 94. The two ends of the first spring 95 are respectively connected to the upper part of the fixed plate 93 and the inner side of the upper end of the T-shaped shaft 94. The lower end of the T-shaped shaft 94 is connected to a concave seat 96. A guide roller 97 is rotatably provided on the inner side of the concave seat 96. A pressure sensor 98 is provided at the middle position of the lower part of the fixed plate 93. A second spring 99 corresponding to the position of the pressure sensor 98 is provided on the upper part of the concave seat 96. The upper end of the second spring 99 is in contact with the lower part of the pressure sensor 98, and there is no pressure between the two. When the light strip is wound and conveyed, the guide hydraulic cylinder 92 drives the fixed plate 93 to move downward, and then drives the guide roller 97 to move downward. The guide roller 97 pushes the light strip downward to guide the light strip, and under the elasticity of the first spring 95, as the guide roller 97 is pressed down, the T-shaped shaft 94 will also drive the guide roller 97 to move slightly upward, and the second spring 99 will generate pressure on the pressure sensor 98. By setting the preset value of the pressure that the pressure sensor 98 is subjected to in the controller, the preset pressure value is the guiding force of the light strip. When the force generated by the guide roller 97 on the light strip is greater than or less than the preset value, the guide hydraulic cylinder 92 drives the guide roller 97 to move, adjusts the guiding position of the guide roller 97, and thus keeps the guiding force of the light strip constant.

[0054] The fourth embodiment differs from the first, second and third embodiments in that:

[0055] See also Figure 4 In the embodiment of the present invention, the front side of the concave seat 96 is connected to a limiting shaft 910, one end of the limiting shaft 910 is connected to one end of the guide roller 97, and the other end of the limiting shaft 910 is connected to a counting plate 911. A photoelectric sensor 912 is provided on the upper front side of the concave seat 96. Every time the counting plate 911 rotates one circle, it blocks the photoelectric sensor 912 once. During transportation, the light strip drives the guide roller 97 to rotate, and the guide roller 97 drives the limiting shaft 910 to rotate, and the limiting shaft 910 drives the counting plate 911 to rotate. Every time the counting plate 911 rotates one circle, it blocks the photoelectric sensor 912 once. When the light strip is wound up, the photoelectric sensor 912 records the total number of revolutions of the light strip, calculates the circumference of the guide roller 97, and then multiplies the circumference by the number of revolutions recorded by the photoelectric sensor 912. Then, the calculated value is added to the distance between the fixed plate 93 and the guide roller 97, and the obtained value is the wound length of the light strip.

[0056] See also Figure 5In the embodiment of the present invention, a support 101 is provided on the upper front part of the substrate 1 at a position on one side of the first guide roller 3, a cutting hydraulic cylinder 102 is installed on the upper part of the support 101, and the output shaft of the cutting hydraulic cylinder 102 is connected to the cutter 103, and a support plate 104 is provided on the front side of the substrate 1 at a position below the cutter 103, and a cutting groove 105 is provided on the upper part of the support plate 104. When the light strip is wound to the required length, the cutting hydraulic cylinder 102 drives the cutter 103 to move downward, and the cutter 103 cuts the light strip and cuts it off.

[0057] Working principle: After the light strip is manufactured, it is passed between the two second guide rollers 4 and the two first guide rollers 3, and at the same time, the light strip is located below the guide rollers 97 and between the cutter 103 and the support plate 104;

[0058] The winding roller is placed in the material storage shell 81. When loading, the loading hydraulic cylinder 83 drives the L-shaped plate 84 to move, and the L-shaped plate 84 drives the push cylinder 85 to move, so that the push cylinder 85 moves to the inside of the material storage shell 81, and pushes the lowest winding roller to be pushed onto the winding shaft 63, and the second to last winding roller will fall on the push cylinder 85. When the loading hydraulic cylinder 83 drives the push cylinder 85 to leave the interior of the material storage shell 81, the second to last winding roller will fall, and the winding roller put on the winding shaft 63 will press the inner side of the winding roller tightly under the elasticity of the elastic arc piece 65, thereby fixing the winding roller, and then one end of the light strip is After the material is unloaded, the reel 63 is moved to the position of the push slot 82 on the storage shell 81, and the above steps are repeated to install the next reel.

[0059] When the light strip is being wound and conveyed, the guide hydraulic cylinder 92 drives the fixed plate 93 to move downward, thereby driving the guide roller 97 to move downward. The guide roller 97 pushes the light strip downward to guide it. Under the elasticity of the first spring 95, as the guide roller 97 is pressed downward, the T-shaped shaft 94 also drives the guide roller 97 to move slightly upward. The second spring 99 generates pressure on the pressure sensor 98. By setting a preset pressure value for the pressure sensor 98 in the controller, the preset pressure value is the guiding force of the light strip. When the force generated by the guide roller 97 on the light strip is greater than or less than the preset value, the guide hydraulic cylinder 92 drives the guide roller 97 to move and adjusts the guiding position of the guide roller 97, so that the guiding force of the light strip remains constant.

[0060] During the conveying process, the light strip drives the guide roller 97 to rotate, the guide roller 97 drives the limit shaft 910 to rotate, and the limit shaft 910 drives the counting plate 911 to rotate. Every time the counting plate 911 rotates one circle, it blocks the photoelectric sensor 912 once. When the light strip is wound up, the photoelectric sensor 912 records the total number of circles the light strip has rotated, calculates the circumference of the guide roller 97, and then multiplies the circumference by the number of circles recorded by the photoelectric sensor 912. The calculated value is then added to the distance between the fixed plate 93 and the guide roller 97. The resulting value is the wound length of the light strip.

[0061] When the light strip is wound to a required length, the cutting hydraulic cylinder 102 drives the cutter 103 to move downward, and the cutter 103 cuts the light strip and cuts it off.

[0062] Meanwhile, the contents not described in detail in this specification belong to the prior art known to those skilled in the art.

Claims

1. A method for manufacturing an adjustable flexible light strip, characterized in that: The following steps are involved: S1. Wiring: Fix the circuit board and wires to the light strip housing with hot melt glue or glue, and connect the power cord and controller wire; S2. Install LED lamp beads: According to the design requirements, install LED lamp beads on the circuit board, which can be completed by manual welding or automatic placement machine; S3, Sealing glue: Inject glue or silicone between the LED lamp beads and the circuit board to make them tightly bonded to prevent leakage or damage during use of the light strip; S4. Testing: Use automatic testing instruments to check whether the brightness, color temperature, power and other parameters of the light strip meet the requirements, and repair or eliminate unqualified products; S5. Packaging: Wind the qualified light strips and then pack them after winding. In the step S5, the device for winding the light strip comprises a substrate (1), a movable groove (2) is provided at the front of one side of the substrate (1), and the front of the substrate (1) is located at a position on one side of the movable groove (2) and is rotatably provided with two first guide rollers (3), the front of the substrate (1) is located at a position on one side of the first guide roller (3) and is rotatably provided with two second guide rollers (4), and a lifting hydraulic cylinder (5) is installed on the upper part of one side of the substrate (1), the output shaft of the lifting hydraulic cylinder (5) is located at an internal position of the movable groove (2) and is connected to a winding member (6), a connecting seat (7) is provided at the front edge of one side of the substrate (1), and a feeding member (8) is provided on the front side of the connecting seat (7); The winding member (6) comprises a movable block (61) connected to the output shaft of the lifting hydraulic cylinder (5); a winding motor (62) is installed on the back of the movable block (61); and the output shaft of the winding motor (62) is connected to a winding shaft (63); The feeding member (8) comprises a material storage shell (81) arranged on the front side of the connecting seat (7), and the front and rear sides of the lower part of the material storage shell (81) are both provided with a pushing groove (82) connected to the interior thereof, and the inner lower part of the pushing groove (82) is connected to the inner lower side of the material storage shell (81), and a feeding hydraulic cylinder (83) is installed on one side of the material storage shell (81), and the output shaft of the feeding hydraulic cylinder (83) is connected to an L-shaped plate (84), and the lower end back of the L-shaped plate (84) is connected to a pushing cylinder (85), and the pushing cylinder (85) is located at the position of the central axis of the pushing groove (82).

2. The method for manufacturing an adjustable flexible light strip according to claim 1, wherein: The inner length and width of the material storage shell (81) are respectively equal to the length and diameter of the winding roller for winding the light strip, the length of the push cylinder (85) is greater than the outer length of the material storage shell (81), and the inner diameter and outer diameter of the material storage shell (81) are both equal to the inner diameter and outer diameter of the winding roller, and the pushing groove (82) is equal to the outer diameter of the pushing cylinder (85), so that the pushing cylinder (85) can just pass through the pushing groove (82).

3. The method for manufacturing an adjustable flexible light strip according to claim 1, wherein: When the output shaft of the lifting hydraulic cylinder (5) is retracted, the reel (63) is exactly located at the center axis of the pushing groove (82), and the reel roller for winding the light strip can be exactly sleeved onto the outside of the reel (63).

4. The method for manufacturing an adjustable flexible light strip according to claim 1, wherein: Grooves (64) are provided on both sides of the reeling shaft (63), and elastic arc pieces (65) are provided inside the grooves (64), with the arc surface of the elastic arc pieces (65) protruding outwards.

5. The method for manufacturing an adjustable flexible light strip according to claim 1, wherein: A push-out hydraulic cylinder (66) is installed on the back of the movable block (61) at a position on one side of the winding motor (62). The output shaft of the push-out hydraulic cylinder (66) is connected to a limit plate (67). An annular push plate (68) is provided at one end of the limit plate (67). The annular push plate (68) is slidably sleeved on the outside of one end of the winding shaft (63).

6. The method for manufacturing an adjustable flexible light strip according to claim 1, wherein: The positions of the two first guide rollers (3) and the positions of the two second guide rollers (4) are respectively located on two identical axes, and the light strip can pass between the two first guide rollers (3) and the two second guide rollers (4).

7. The method for manufacturing an adjustable flexible light strip according to claim 1, wherein: The front portion of the base plate (1) is provided with a guide member (9) at a position between the first guide roller (3) and the second guide roller (4), and the guide member (9) comprises a limit seat (91) provided at the front portion of the base plate (1), a guide hydraulic cylinder (92) is installed on the upper portion of the limit seat (91), an output shaft of the guide hydraulic cylinder (92) is connected to a fixed plate (93), a T-shaped shaft (94) is slidably installed through the upper portion of the front side of the fixed plate (93), a first spring (95) is sleeved on the outer portion of the upper end of the T-shaped shaft (94), and the first spring (95) is provided with a spring. The two ends are respectively connected to the upper part of the fixed plate (93) and the inner side of the upper end of the T-shaped shaft (94); the lower end of the T-shaped shaft (94) is connected to a concave seat (96); a guide roller (97) is rotatably provided on the inner side of the concave seat (96); a pressure sensor (98) is provided at the middle position of the lower part of the fixed plate (93); a second spring (99) corresponding to the position of the pressure sensor (98) is provided on the upper part of the concave seat (96); the upper end of the second spring (99) contacts the lower part of the pressure sensor (98), and there is no pressure between the two.

8. The method for manufacturing an adjustable flexible light strip according to claim 7, wherein: The front side of the concave seat (96) is connected to a limiting shaft (910), one end of the limiting shaft (910) is connected to one end of a guide roller (97), and the other end of the limiting shaft (910) is connected to a counting plate (911). A photoelectric sensor (912) is provided on the front side above the concave seat (96), and each time the counting plate (911) rotates one circle, it blocks the photoelectric sensor (912) once.

9. The method for manufacturing an adjustable flexible light strip according to claim 1, wherein: A support (101) is provided on the upper front portion of the base plate (1) at a position on one side of the first guide roller (3); a cutting hydraulic cylinder (102) is installed on the upper portion of the support (101); an output shaft of the cutting hydraulic cylinder (102) is connected to a cutter (103); a support plate (104) is provided on the front side of the base plate (1) at a position below the cutter (103); and a cutting groove (105) is provided on the upper portion of the support plate (104).

Citation Information

Patent Citations

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