Optical fiber stripping and cleaning all-in-one machine

By integrating fiber thermal stripping and fiber wiping functions into a single fiber thermal stripping and wiping machine, the problem of traditional fiber processing equipment having to complete the process step by step has been solved. This enables efficient processing of various types of optical fibers, reduces costs, and improves efficiency and equipment applicability.

CN224553523UActive Publication Date: 2026-07-24NANJING XINGYAO SHENZHOU COMM TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NANJING XINGYAO SHENZHOU COMM TECH CO LTD
Filing Date
2025-08-11
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

In traditional optical fiber processing, the thermal stripping and wiping of optical fibers need to be completed in separate steps, and different types of optical fibers require a variety of specialized equipment, resulting in high costs and low efficiency.

Method used

A fiber optic thermal stripping and wiping integrated machine was designed, which integrates thermal stripping and wiping functions, supports the processing of various types of optical fibers, adopts adjustable temperature heating elements and high-hardness alloy blades to achieve constant temperature control and precise stripping, and is equipped with countdown and sound prompt functions.

Benefits of technology

It enables batch processing of various types of optical fibers, reduces equipment costs and storage space, improves work efficiency, and ensures the integrity of optical fibers and signal transmission performance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an optical fiber hot stripping and wiping integrated machine relates to optical fiber processing technical field. The utility model discloses the inner wall fixed mounting of base has the charging port, the top fixed mounting of base has the body cover, the inner wall sliding connection of body cover has the key, the top fixed mounting of body cover has the screen, the top rotary connection of base has the upper cover, the outer wall fixed mounting of upper cover has the magnet. Through setting up the integration of optical fiber hot stripping and wiping function, hot stripping forceps blade and wiping cotton piece can support simultaneously the stripping of various types optical fiber such as bare optical fiber, ribbon optical fiber and the residual coating wiping, hot stripping forceps blade can also handle 48 bare optical fiber and 14 0.9mm bundle optical fiber simultaneously, realize batch processing. In the different scene such as communication engineering, optical fiber sensor manufacturing, need not to prepare multiple special equipment, reduce cost and storage space, improve optical fiber processing work efficiency greatly, shorten the project cycle.
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Description

Technical Field

[0001] This utility model relates to the field of optical fiber processing technology, and in particular to an integrated machine for thermal stripping and wiping optical fibers. Background Technology

[0002] In today's rapidly developing era of fiber optic communication, fiber preprocessing plays a crucial role in communication quality and system stability.

[0003] In traditional optical fiber processing, thermal stripping and fiber wiping often require separate steps using different specialized equipment. For example, thermal stripping equipment is first used to soften and strip the fiber coating, and then specialized fiber wiping equipment is used to remove residual coating and impurities. Furthermore, different types of optical fibers, such as bare fiber, ribbon fiber, bundled fiber, and stealth fiber, have significantly different structures and characteristics, resulting in the need for multiple specialized equipment for processing different types of fibers, leading to high costs. Utility Model Content

[0004] The purpose of this utility model is to solve the technical problems mentioned in the background art.

[0005] This utility model adopts the following technical solution: an integrated fiber optic thermal stripping and wiping machine, including a base, a charging port fixedly installed on the inner wall of the base, a body cover plate fixedly installed on the top of the base, a button slidably connected to the inner wall of the body cover plate, a screen fixedly installed on the top of the body cover plate, an upper cover plate rotatably connected to the top of the base, a magnet fixedly installed on the outer wall of the upper cover plate, a thermal stripping pliers blade fixedly installed on the top of the upper cover plate, a silicone pad fixedly installed on the inner wall of the upper cover plate, a wiping cotton pad provided on the inner wall of the upper cover plate, and a silicone pad pressure plate fixedly installed on the outer wall of the silicone pad.

[0006] Preferably, a spring is fixedly installed on the outer wall of the upper cover plate, a fiber wiping pad is provided on the top of the base, a heating plate is fixedly installed on the inner wall of the base, a heating plate is fixedly installed on the bottom of the heating plate, a heat stripper blade is fixedly installed on the outer wall of the heating plate, the inner wall of the base is engaged with the outer wall of the fiber wiping pad, and the inner wall of the upper cover plate is engaged with the outer wall of the fiber wiping pad. Here, the spring fixedly installed on the outer wall of the upper cover plate provides upward elastic force assistance when opening the upper cover plate, making the upper cover plate easier to open and reducing the user's operating force. At the same time, during the closing of the upper cover plate, the spring's buffering effect can prevent the upper cover plate from damaging the internal structure and blades and other components due to rapid collision between the upper cover plate and the base. The fiber wiping pad provided on the top of the base, together with the fiber wiping pad on the inner wall of the upper cover plate, ensures that residual coating layers on different parts of the optical fiber can be effectively wiped away. The heating plate pressure plate, fixedly installed on the inner wall of the base, secures and protects the heating plate, preventing it from shaking or shifting during operation, which could affect heating efficiency and equipment stability. The heating plate uses a built-in adjustable temperature heating element to achieve constant temperature control and adjust the temperature. It has four preset temperature levels and also supports custom temperature settings to meet the specific heating temperature requirements of different types of optical fibers and adapt to varying ambient temperatures. For example, in low-temperature environments, the temperature can be appropriately increased to ensure effective softening of the fiber coating for easy stripping. For some special fiber materials, the heating process can be precisely controlled through custom temperature settings, ensuring stripping quality without damaging the fiber. The inner wall of the base engages with the outer wall under the wiping pad, and the inner wall of the top cover engages with the outer wall on the wiping pad. This engagement method facilitates the installation and replacement of the wiping pad. When the wiping pad becomes dirty or loses its wiping effect after a period of use, users can easily remove and replace it with a new pad to maintain the equipment's cleaning function.

[0007] Preferably, the side of the silicone pad pressure plate away from the silicone pad is fixedly installed to the inner wall of the upper cover plate; the side of the spring away from the upper cover plate is fixedly installed to the outer wall of the base via a round shaft; the bottom of the heating plate is fixedly installed to the inner wall of the base; the positions of the wiping cotton pad and the fiber-cleaning cotton pad correspond; and the bottom of the hot stripper blade and the top of the hot stripper blade overlap. Here, the side of the silicone pad pressure plate away from the silicone pad is fixedly installed to the inner wall of the upper cover plate to ensure the silicone pad is firmly installed and will not shift or fall off during long-term use, continuously providing stable protection and fixation for the optical fiber. The side of the spring away from the upper cover plate is fixedly installed to the outer wall of the base via a round shaft to ensure the spring is accurately positioned and can stably perform its opening assistance and buffer closing functions. The bottom of the heating plate is fixedly installed to the inner wall of the base to ensure the heating plate is firmly installed and heat can be effectively transferred to the optical fiber to be processed. The wiping cotton pads are positioned opposite each other, allowing for complete coverage of the fiber surface during wiping and removal of residual coating from different angles, thus improving wiping efficiency. The bottom of the thermal stripper blades and the top of the blades overlap, ensuring precise alignment during thermal stripping and guaranteeing uniform removal of the fiber coating, preventing incomplete removal or damage to the fiber.

[0008] Preferably, after the top cover is closed, a countdown begins, and an audible alert is issued simultaneously when the countdown on the screen ends. This function provides users with clear prompts regarding operation time points. During fiber optic thermal stripping, heating requires a certain amount of time to soften the fiber coating to a suitable degree. The countdown function allows users to clearly know when to proceed with the next stripping operation, avoiding premature or delayed operations that could affect the stripping effect. The audible alert further enhances the notification effect, ensuring that users are promptly aware that the operation time has elapsed even in noisy environments or when their attention is distracted, thus improving operational efficiency and accuracy.

[0009] Preferably, the hot stripper blade, the area below the hot stripper blade, and the wiping pad and fiber optic wiping pad can simultaneously support the stripping of bare optical fibers, ribbon optical fibers, bundled optical fibers, and invisible optical fibers, as well as the removal of residual coatings. The hot stripper blade and the area below the hot stripper blade can simultaneously support 48 bare optical fibers and 14 0.9mm bundled optical fibers. This simultaneous support for stripping of bare optical fibers, ribbon optical fibers, bundled optical fibers, and invisible optical fibers, as well as the removal of residual coatings, greatly expands the applicability of the equipment. In various optical fiber application scenarios, such as optical fiber laying and maintenance in communication engineering, and optical fiber sensor manufacturing, this equipment can be used for optical fiber processing, eliminating the need for multiple dedicated devices for different types of optical fibers, reducing equipment procurement costs and storage space. The simultaneous support of 48 bare optical fibers and 14 0.9mm bundled optical fibers on and under the hot stripper blade enables batch optical fiber processing, improving work efficiency. In large-scale optical fiber production or construction projects, it can quickly complete the stripping and cleaning of a large number of optical fibers, shortening the project cycle and reducing labor costs.

[0010] Preferably, the heating plate has an adjustable temperature heating element fixedly installed inside, thereby achieving constant temperature control and temperature adjustment. It has four preset temperature settings: 120℃-130℃-145℃-160℃, and also supports custom temperature settings within the range of 50-180℃, suitable for different types of optical fibers and different ambient temperatures. This precise temperature control function is of great significance for different types of optical fibers. Different optical fibers have different coating materials and thicknesses, and therefore different softening temperature requirements. For example, some low-melting-point coated fibers may be effectively softened and stripped at lower temperatures, while high-melting-point or special material coated fibers require higher temperatures. With preset temperature settings and customizable temperature functions, users can quickly and accurately set the appropriate temperature according to the actual fiber type, ensuring a smooth fiber stripping process. This prevents the coating from being difficult to remove due to excessively low temperatures, and avoids damaging the fiber due to excessively high temperatures. Furthermore, by adjusting the temperature under different ambient temperatures, the equipment can adapt to environmental changes, maintaining optimal operating conditions and ensuring the stability of fiber processing quality.

[0011] Preferably, the screen uses a 0.96-inch display that can show the battery level and temperature in real time, as well as the blade closure status. The charging port supports power from a regular mobile phone power bank, allowing for simultaneous charging and use. Here, the 0.96-inch screen can display the battery level and temperature in real time, and also show the blade closure status. The battery level display allows users to know the remaining battery power at any time, preparing to charge in advance and avoiding work interruptions due to insufficient power. The temperature display allows users to monitor the heating plate temperature, ensuring it operates within the set range and guaranteeing the fiber heating effect. The blade closure status display provides users with intuitive information about the working status of the thermal stripper blades. Before performing fiber thermal stripping operations, users can check whether the blades are properly closed via the screen. If any abnormalities are found, adjustments can be made in time to prevent stripping failure or damage to the fiber due to blade closure problems. The charging port supports power from a regular mobile phone power bank, allowing for simultaneous charging and use. This feature frees the device from dependence on fixed power outlets. In environments without power outlets, such as outdoor operations or temporary workplaces, the device can continue to work as long as there is a power bank, greatly improving the convenience and flexibility of the device and meeting the needs of users in various complex work scenarios.

[0012] Preferably, the upper and lower blades of the thermal stripper employ high-hardness alloy cutting edges, which are linked with the heating plate to achieve rapid removal of the softened coating. When the upper and lower blades are closed, a gap exists to ensure no damage to the optical fiber. The upper and lower wiping cotton pads are integrated into the inner wall of the upper cover and base, with replaceable cotton pads inside. Here, the high-hardness alloy cutting edges of the thermal stripper blades provide excellent wear resistance and sharpness, ensuring stable and efficient removal of the optical fiber coating during long-term use. Linked with the heating plate, the coating is softened and rapidly removed. The gap created when the upper and lower blades are closed is precisely designed to prevent damage to the optical fiber during coating removal, effectively protecting the fiber's integrity and ensuring its continued normal use. The integrated design makes the device compact, space-saving, and user-friendly. The replaceable cotton pad design allows users to easily and quickly replace the cotton pads when they become dirty or lose their wiping effect after a period of use, maintaining the device's cleaning function and ensuring that the wiping effect on the residual coating layer of the optical fiber is always good, improving the cleanliness of the optical fiber surface, and thus improving the optical fiber signal transmission performance.

[0013] Compared with the prior art, the advantages and positive effects of this utility model are as follows:

[0014] 1. This utility model integrates optical fiber thermal stripping and wiping functions into one unit. The thermal stripping pliers blade and wiping pad can simultaneously support the stripping of various types of optical fibers, such as bare optical fibers and ribbon optical fibers, as well as the removal of residual coatings. The thermal stripping pliers blade can also process 48 bare optical fibers and 14 0.9mm bundled optical fibers at the same time, achieving batch processing. In different scenarios such as communication engineering and optical fiber sensor manufacturing, there is no need to prepare multiple special equipment, reducing costs and storage space, significantly improving the efficiency of optical fiber processing, and shortening the project cycle.

[0015] 2. In this invention, constant temperature control is achieved by setting an adjustable temperature heating element built into the heating plate. Four temperature levels are preset, and a custom temperature range of 50-180℃ is supported. The heating temperature can be precisely set for different types of optical fiber coating materials and thicknesses, as well as different ambient temperatures, ensuring effective stripping without damaging the optical fiber. Simultaneously, the hot stripping pliers blade uses a high-hardness alloy blade linked to the heating plate. The blade has a precise gap when closed, ensuring rapid stripping of the softened coating without damaging the optical fiber. A spring assists in opening the upper cover and provides cushioning when closing. A silicone pad secures and protects the optical fiber. These multiple safety features ensure stable equipment operation and high-quality optical fiber processing. Attached Figure Description

[0016] Figure 1 A three-dimensional structural diagram of an integrated optical fiber thermal stripping and wiping machine is provided for this utility model;

[0017] Figure 2 This utility model provides a schematic diagram of the other side of the fiber optic thermal stripping and wiping integrated machine;

[0018] Figure 3 This utility model provides a schematic diagram of the silicone pad structure for an integrated optical fiber thermal stripping and wiping machine;

[0019] Figure 4 This utility model presents a schematic diagram of the spring structure of an integrated optical fiber thermal stripping and wiping machine.

[0020] Legend:

[0021] 1. Base; 2. Charging port; 3. Body cover; 4. Button; 5. Screen; 6. Top cover; 7. Magnet; 8. On the hot peeler blade; 9. Silicone pad; 10. On the wiping cotton pad; 11. Silicone pad pressure plate; 12. Spring; 13. Under the wiping cotton pad; 14. Heating plate pressure plate; 15. Heating plate; 16. Under the hot peeler blade. Detailed Implementation

[0022] To better understand the above-mentioned objectives, features, and advantages of this utility model, the present utility model will be further described below with reference to the accompanying drawings and embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0023] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the present invention is not limited to the specific embodiments disclosed in the following specification.

[0024] Example 1

[0025] Please see Figures 1-4 This utility model provides a technical solution: an integrated fiber optic thermal stripping and wiping machine, including a base 1, a charging port 2 fixedly installed on the inner wall of the base 1, a body cover 3 fixedly installed on the top of the base 1, a button 4 slidably connected to the inner wall of the body cover 3, a screen 5 fixedly installed on the top of the body cover 3, an upper cover 6 rotatably connected to the top of the base 1, a magnet 7 fixedly installed on the outer wall of the upper cover 6, a thermal stripping pliers blade 8 fixedly installed on the top of the upper cover 6, a silicone pad 9 fixedly installed on the inner wall of the upper cover 6, a wiping cotton pad 10 provided on the inner wall of the upper cover 6, and a silicone pad 9 pressure plate fixedly installed on the outer wall of the silicone pad 9.

[0026] A spring 12 is fixedly installed on the outer wall of the top cover plate 6. A fiber wiping pad 13 is provided on the top of the base 1. A heating plate pressure plate 14 is fixedly installed on the inner wall of the base 1. A heating plate 15 is fixedly installed on the bottom of the heating plate pressure plate 14. A heat stripping pliers blade 16 is fixedly installed on the outer wall of the heating plate 15. The inner wall of the base 1 is engaged with the outer wall of the fiber wiping pad 13, and the inner wall of the top cover plate 6 is engaged with the outer wall of the wiping pad 10. Here, the spring 12 fixedly installed on the outer wall of the top cover plate 6 provides upward elastic force assistance when opening the top cover plate 6, making the top cover plate 6 easier to open and reducing the user's operating force. At the same time, during the closing process of the top cover plate 6, the buffering effect of the spring 12 can prevent the top cover plate 6 from being damaged by rapid collision with the base 1, thus avoiding damage to the internal structure and blades. The fiber wiping pad 13 provided on the top of the base 1 works together with the wiping pad 10 on the inner wall of the top cover plate 6 to ensure that the residual coating layer on different parts of the optical fiber can be effectively wiped away. The heating plate pressure plate 14, fixedly installed on the inner wall of the base 1, serves to fix and protect the heating plate 15, preventing it from shaking or shifting during equipment operation, thus affecting the heating effect and equipment stability. The heating plate 15 uses a built-in adjustable temperature heating element to achieve constant temperature control and temperature adjustment. It has four preset temperature levels and also supports custom temperature settings, which can meet the special heating temperature requirements of different types of optical fibers and adapt to the working needs of different ambient temperatures. For example, in low-temperature environments, the temperature can be appropriately increased to ensure that the optical fiber coating layer can be effectively softened for easy stripping; for some special optical fibers, the heating process can be precisely controlled by customizing the temperature to ensure the stripping quality without damaging the optical fiber. The inner wall of the base 1 is engaged with the outer wall of the lower 13 of the fiber wiping pad, and the inner wall of the upper cover plate 6 is engaged with the outer wall of the upper 10 of the wiping pad. This engagement method facilitates the installation and replacement of the pads. When the pads become dirty or lose their wiping effect after a period of use, users can easily remove and replace them with new pads to maintain the cleaning function of the equipment.

[0027] The side of the silicone pad 9 pressure plate away from the silicone pad 9 is fixedly installed to the inner wall of the upper cover plate 6. The side of the spring 12 away from the upper cover plate 6 is fixedly installed to the outer wall of the base 1 via a round shaft. The bottom of the heating plate 15 is fixedly installed to the inner wall of the base 1. The positions of the wiping cotton pad 10 and the fiber wiping cotton pad 13 correspond to each other. The bottom of the hot stripper blade 8 and the top of the hot stripper blade 16 overlap. Here, the side of the silicone pad 9 pressure plate away from the silicone pad 9 is fixedly installed to the inner wall of the upper cover plate 6 to ensure that the silicone pad 9 is firmly installed and will not shift or fall off during long-term use, continuously providing stable protection and fixation for the optical fiber. The side of the spring 12 away from the upper cover plate 6 is fixedly installed to the outer wall of the base 1 via a round shaft to ensure that the spring 12 is accurately positioned and can stably perform its opening assistance and buffer closing functions. The bottom of the heating plate 15 is fixedly installed to the inner wall of the base 1 to ensure that the heating plate 15 is firmly installed and that heat can be effectively transferred to the optical fiber to be processed. The positions 10 on the wiping cotton pad and 13 on the fiber optic wiping cotton pad correspond to each other, allowing for complete coverage of the fiber surface during wiping operations and removal of residual coating from different angles, thus improving the wiping effect. The bottom of 8 on the hot stripper blade and the top of 16 on the hot stripper blade overlap, ensuring precise alignment during fiber hot stripping operations. This guarantees a uniform and consistent removal of the fiber coating, avoiding incomplete removal or damage to the fiber.

[0028] After the top cover 6 is closed, a countdown begins. An audible alert is sounded after the 5-second countdown ends. This function provides users with clear time indicators for operation. During fiber optic thermal stripping, heating requires a certain amount of time to soften the fiber coating to the appropriate degree. The countdown function allows users to clearly know when to proceed with the next stripping step, avoiding premature or delayed operations that could affect the stripping effect. The audible alert further enhances the notification effect, ensuring users are promptly aware that the operation time has elapsed even in noisy environments or when their attention is distracted, thus improving operational efficiency and accuracy.

[0029] The upper 8 and lower 16 blades of the thermal stripper pliers, along with the upper 10 and lower 13 wiping pads, can simultaneously support the stripping of bare optical fibers, ribbon fibers, bundled optical fibers, and invisible optical fibers, as well as the removal of residual coatings. The upper 8 and lower 16 blades can simultaneously support 48 bare optical fibers and 14 0.9mm bundled optical fibers. This simultaneous support for stripping of bare optical fibers, ribbon fibers, bundled optical fibers, and invisible optical fibers, as well as the removal of residual coatings, greatly expands the applicability of the equipment. In various optical fiber application scenarios, such as optical fiber laying and maintenance in communication engineering and optical fiber sensor manufacturing, this equipment can be used for optical fiber processing, eliminating the need for multiple dedicated devices for different types of optical fibers, reducing equipment procurement costs and storage space. The upper 8 and lower 16 blades of the thermal stripper pliers support 48 bare optical fibers and 14 0.9mm bundled optical fibers simultaneously, enabling batch optical fiber processing and improving work efficiency. In large-scale optical fiber production or construction projects, it can quickly complete the stripping and cleaning of a large number of optical fibers, shortening the project cycle and reducing labor costs.

[0030] The heating plate 15 is internally equipped with an adjustable temperature heating element, enabling constant temperature control and temperature adjustment. It has four preset temperature settings: 120℃-130℃-145℃-160℃, and also supports custom temperature settings within the range of 50-180℃, suitable for different types of optical fibers and varying ambient temperatures. This precise temperature control is crucial for different types of optical fibers. Different optical fibers have different coating materials and thicknesses, resulting in different softening temperature requirements. For example, some low-melting-point coated fibers may be effectively softened and stripped at lower temperatures, while high-melting-point or special-material coated fibers require higher temperatures. With preset temperature settings and customizable temperature functions, users can quickly and accurately set the appropriate temperature according to the actual fiber type, ensuring a smooth fiber stripping process. This prevents the coating from being difficult to remove due to excessively low temperatures, and avoids damaging the fiber due to excessively high temperatures. Furthermore, by adjusting the temperature under different ambient temperatures, the equipment can adapt to environmental changes, maintaining optimal operating conditions and ensuring the stability of fiber processing quality.

[0031] Screen 5 uses a 0.96-inch display screen to show real-time battery level and temperature, as well as the blade closure status. Charging port 2 supports power from a standard mobile phone power bank, allowing for simultaneous charging and use. The battery level display allows users to know the remaining battery power and prepare for charging in advance, avoiding work interruptions due to insufficient power. The temperature display allows users to monitor the temperature of heating plate 15, ensuring it operates within the set range and guaranteeing effective fiber heating. The blade closure status display provides users with intuitive information about the working status of the heat stripper blades. Before performing fiber heat stripping, users can check screen 5 to confirm whether the blades are properly closed. If any abnormalities are found, adjustments can be made promptly to prevent stripping failure or damage to the fiber due to blade closure issues. Charging port 2 supports power from a standard mobile phone power bank, allowing for simultaneous charging and use. This feature frees the device from dependence on fixed power outlets. In environments without power outlets, such as outdoor operations or temporary workplaces, the device can continue to work as long as there is a power bank, greatly improving the convenience and flexibility of the device and meeting the needs of users in various complex work scenarios.

[0032] The upper blade 8 and lower blade 16 of the thermal stripper pliers employ high-hardness alloy cutting edges, which are linked with the heating plate 15 to achieve rapid removal of the softened coating. A gap exists when the upper and lower blades are closed to prevent damage to the optical fiber. The upper wiping pad 10 and lower wiping pad 13 are integrated into the inner wall of the upper cover plate 6 and the base 1, with replaceable pads inside. Here, the upper blade 8 and lower blade 16 of the thermal stripper pliers employ high-hardness alloy cutting edges, possessing excellent wear resistance and sharpness, ensuring stable and efficient removal of the optical fiber coating during long-term use. Linked with the heating plate 15, they achieve rapid removal of the softened coating. A gap exists when the upper and lower blades are closed; this gap is precisely designed to ensure that the optical fiber is not damaged during coating removal, effectively protecting the integrity of the optical fiber and ensuring its subsequent normal use. The upper wiping pad 10 and lower wiping pad 13 are integrated into the inner wall of the upper cover plate 6 and the base 1, with replaceable pads inside. The integrated design makes the device compact and space-saving, while also facilitating user operation. The replaceable cotton pad design allows users to easily and quickly replace the pads when they become dirty or lose their cleaning effectiveness, maintaining the device's cleaning function and ensuring consistently good cleaning of residual coatings on optical fibers. This improves the cleanliness of the fiber surface and ultimately enhances the fiber optic signal transmission performance.

[0033] Working principle: Press and hold button 4. The screen 5 will light up, indicating the device is powered on. Simultaneously, the heating plate 15 will begin heating. The temperature of the heating plate 15 can be set using button 4. The heating plate 15 has four preset temperature levels (120℃-130℃-145℃-160℃). If the preset levels are insufficient, a custom temperature function can be used to precisely set the temperature within the range of 50-180℃. For example, a lower temperature level can be selected for low-melting-point coated optical fibers; for high-melting-point coated optical fibers of special materials, the temperature needs to be appropriately increased. After setting, wait for the heating plate 15 to reach the set temperature. When the heating plate 15 reaches the set temperature, the screen 5 will display a corresponding prompt. At this point, open the top cover 6. The spring 12 on the outer wall of the top cover 6 provides elastic assistance, making the opening process easy and effortless. Place the fiber to be heat-stripped smoothly on the heating plate 15, paying attention to the fiber's position and ensuring it is within the effective range of the heat stripper blades 8 and 16. The silicone pads 9 and 11 will fix and protect the fiber, preventing displacement. Close the top cover 6. The magnet 7 will cause the top cover 6 to fit tightly against the base 1. During closing, the spring 12 acts as a buffer to prevent damage from impact. After closing the top cover 6, the device will emit an audible alert and begin a countdown, displayed on the screen 5 (5 seconds). When the countdown ends, the device will emit another audible alert. At this point, smoothly pull the fiber outwards. The heat stripper blades 8 and 16, in conjunction with the heating plate 15, quickly strip the softened fiber coating. Due to the precise gap design of the blades, the fiber itself will not be damaged. Open the top cover 6 and place the heat-stripped fiber on the wiping pad 13, ensuring full contact between the fiber and the wiping pad 13 and 10 to guarantee effective wiping. Close the top cover 6 and smoothly pull the optical fiber outwards. During the pulling process, the lower wiping pad 13 and the upper wiping pad 10 work together to remove residual coatings and other impurities from the optical fiber surface, completing the optical fiber surface cleaning. If the lower wiping pad 13 and the upper wiping pad 10 become dirty or their wiping effect decreases after use, they can be easily disassembled using the snap-fit ​​structure and replaced with new replaceable pads to maintain the device's cleaning function. When the device is no longer in use, press and hold the power button 4 to turn off the device, disconnect the power supply, and store the device properly for future use.

[0034] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present utility model without departing from the technical solution of the present utility model shall still fall within the protection scope of the technical solution of the present utility model.

Claims

1. A fiber optic thermal stripping and wiping integrated machine, comprising a base (1), characterized in that: A charging port (2) is fixedly installed on the inner wall of the base (1). A body cover plate (3) is fixedly installed on the top of the base (1). A button (4) is slidably connected to the inner wall of the body cover plate (3). A screen (5) is fixedly installed on the top of the body cover plate (3). An upper cover plate (6) is rotatably connected to the top of the base (1). A magnet (7) is fixedly installed on the outer wall of the upper cover plate (6). A hot peeling pliers blade (8) is fixedly installed on the top of the upper cover plate (6). A silicone pad (9) is fixedly installed on the inner wall of the upper cover plate (6). A wiping cotton pad (10) is provided on the inner wall of the upper cover plate (6). A silicone pad pressure plate (11) is fixedly installed on the outer wall of the silicone pad (9).

2. The fiber optic thermal stripping and wiping integrated machine according to claim 1, characterized in that: A spring (12) is fixedly installed on the outer wall of the upper cover plate (6). A wiping cotton pad (13) is provided on the top of the base (1). A heating plate pressure plate (14) is fixedly installed on the inner wall of the base (1). A heating plate (15) is fixedly installed on the bottom of the heating plate pressure plate (14). A heat stripping pliers blade (16) is fixedly installed on the outer wall of the heating plate (15). The inner wall of the base (1) is engaged with the outer wall of the wiping cotton pad (13). The inner wall of the upper cover plate (6) is engaged with the outer wall of the wiping cotton pad (10).

3. The fiber optic thermal stripping and wiping integrated machine according to claim 2, characterized in that: The silicone pad pressure plate (11) is fixedly installed on the side away from the silicone pad (9) and the inner wall of the upper cover plate (6). The spring (12) is fixedly installed on the side away from the upper cover plate (6) and the outer wall of the base (1) by a round shaft. The bottom of the heating plate (15) is fixedly installed on the inner wall of the base (1). The positions of the wiping cotton pad (10) and the wiping cotton pad (13) correspond to each other. The bottom of the hot stripping pliers blade (8) and the top of the hot stripping pliers blade (16) overlap.

4. The fiber optic thermal stripping and wiping integrated machine according to claim 3, characterized in that: After the top cover (6) is closed, a countdown begins. After the countdown on the screen (5 seconds) ends, an audio prompt is given.

5. The fiber optic thermal stripping and wiping integrated machine according to claim 2, characterized in that: The hot stripper blade (8), the hot stripper blade (16), the wiping cotton pad (10), and the fiber wiping cotton pad (13) can simultaneously support the stripping of bare optical fibers, ribbon optical fibers, bundled optical fibers, invisible optical fibers, and the removal of residual coating layers. The hot stripper blade (8) and the hot stripper blade (16) can simultaneously support 48 bare optical fibers and 14 0.9mm bundled optical fibers.

6. The fiber optic thermal stripping and wiping integrated machine according to claim 2, characterized in that: The heating plate (15) is internally fixed with an adjustable temperature heating element, thereby achieving constant temperature control and temperature adjustment. It has four preset temperature levels: 120℃-130℃-145℃-160℃, and also supports custom temperature settings. The temperature can be set within the range of 50-180℃, making it suitable for different types of optical fibers and different ambient temperatures.

7. The fiber optic thermal stripping and wiping integrated machine according to claim 6, characterized in that: The screen (5) uses a 0.96-inch display screen that can display the power and temperature in real time, and can also show the closed state of the blade. The charging port (2) supports power supply from ordinary mobile phone power banks, so that it can be used while charging.

8. The fiber optic thermal stripping and wiping integrated machine according to claim 6, characterized in that: The upper (8) and lower (16) blades of the hot stripper are made of high-hardness alloy blades and are linked with the heating plate (15) to achieve rapid stripping after the coating is softened. After the upper and lower blades are closed, there will be a gap to ensure that the optical fiber is not damaged. The upper (10) and lower (13) wiping cotton pads are integrated into the inner wall of the upper cover plate (6) and the base (1) and have replaceable cotton pads inside.