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內窺鏡維修是否涉及導光管修復?

來源:http://www.csfqw.net/ 發布時間:2025-05-20 瀏覽量:0

  在微創醫療領域,內窺鏡作為醫生的“第二雙眼睛”,其性能穩定性直接關系到診療精度與患者安全。導光管作為內窺鏡的光學“血管”,其維修與保養是設備維護的關鍵環節。本文將從技術原理、故障模式、修復工藝三個維度,深度解析內窺鏡維修中的導光管修復技術。

  In the field of minimally invasive medicine, endoscopes serve as the "second pair of eyes" for doctors, and their performance stability directly affects the accuracy of diagnosis and treatment and patient safety. As the optical "blood vessel" of endoscopes, the repair and maintenance of the light guide tube is a key step in equipment maintenance. This article will deeply analyze the light guide tube repair technology in endoscopic maintenance from three dimensions: technical principles, failure modes, and repair processes.

  一、導光管的技術架構與功能定位

  1、 Technical architecture and functional positioning of light guide tube

  導光管是內窺鏡的光傳導通道,由光纖束、金屬護套、光學接口三部分構成:

  The light guide tube is the optical transmission channel of an endoscope, consisting of three parts: fiber bundle, metal sheath, and optical interface

  光纖束

  Fiber bundle

  采用石英玻璃或塑料光纖,通過全反射原理傳輸照明光。單根內窺鏡導光管包含5000-10000根光纖,光損耗率<3%/m,確保成像亮度均勻。

  Using quartz glass or plastic optical fibers, the illumination light is transmitted through the principle of total reflection. A single endoscope light guide tube contains 5000-10000 optical fibers with a light loss rate of<3%/m, ensuring uniform imaging brightness.

  金屬護套

  metallic sheath

  通常由304不銹鋼或鈦合金制成,壁厚0.2-0.5mm,提供機械保護與光學屏蔽。在彎曲半徑<30mm時,仍能保持光纖排列精度,避免光斑畸變。

  Usually made of 304 stainless steel or titanium alloy, with a wall thickness of 0.2-0.5mm, providing mechanical protection and optical shielding. When the bending radius is less than 30mm, the fiber arrangement accuracy can still be maintained to avoid spot distortion.

  光學接口

  optical interface

  通過SMA或C型接口與光源連接,采用鍍膜透鏡組進行光束整形,將發散光轉換為平行光,照明均勻性達90%以上。

  Connect to the light source through SMA or C-type interface, use coated lens group for beam shaping, convert scattered light into parallel light, and achieve illumination uniformity of over 90%.

  二、導光管的典型失效模式

  2、 Typical failure modes of light guide tubes

  導光管故障呈現多樣化特征,主要分為三類:

  The faults of the light guide tube exhibit diverse characteristics, mainly divided into three categories:

  光學性能衰減

  Optical performance attenuation

  光纖端面污染、光纖斷裂、鍍膜老化等因素,導致光通量下降。實測顯示,使用500小時后,光輸出功率衰減可達15%。

  Factors such as fiber end contamination, fiber breakage, and coating aging lead to a decrease in luminous flux. Tests have shown that after 500 hours of use, the optical output power can decay by up to 15%.

  機械損傷

  mechanical damage

  因彎曲半徑過小、碰撞或清潔不當,造成光纖斷裂或護套變形。在胃鏡檢查中,導光管需承受≥1000次彎曲循環,疲勞損傷風險高。

  Due to insufficient bending radius, collision or improper cleaning, fiber breakage or sheath deformation may occur. In gastroscopy examination, the light guide tube needs to withstand ≥ 1000 bending cycles, which poses a high risk of fatigue damage.

  密封失效

  Sealing failure

  接口密封圈老化或護套破損,導致體液滲入。在濕熱環境下,絕緣電阻可降至1MΩ以下,引發電氣安全隱患。

  The interface sealing ring is aging or the protective sheath is damaged, causing bodily fluids to seep in. In humid and hot environments, the insulation resistance can drop below 1M Ω, causing electrical safety hazards.

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  三、導光管修復的核心工藝

  3、 The core process of repairing light guide tubes

  導光管修復需經過八道精密工序,形成閉環維護體系:

  The repair of the light guide tube requires eight precision processes to form a closed-loop maintenance system:

  無損檢測

  NDT

  使用光纖顯微鏡與光功率計,對光纖端面進行400倍放大檢查,定位斷裂點與污染區域。光損耗檢測精度達0.1dB,誤差<5%。

  Using a fiber optic microscope and optical power meter, perform a 400x magnification inspection on the fiber end face to locate the fracture point and contaminated area. The accuracy of optical loss detection reaches 0.1dB, with an error of less than 5%.

  清潔處理

  Cleaning treatment

  采用超聲波清洗機與異丙醇,分三階段清潔:預洗去除大顆粒,精洗溶解有機物,漂洗去除殘留。清潔后光纖端面顆粒數<50個/cm2

  Using an ultrasonic cleaning machine and isopropanol, the cleaning process is divided into three stages: pre washing to remove large particles, fine washing to dissolve organic matter, and rinsing to remove residues. After cleaning, the particle count on the fiber end face is less than 50 particles/cm2.

  端面研磨

  End grinding

  使用自動研磨機,通過金剛石研磨膏進行八級精度研磨。研磨后光纖端面粗糙度Ra<0.1μm,耦合效率提升20%。

  Use an automatic grinder to grind with eight levels of precision using diamond grinding paste. After grinding, the roughness Ra of the fiber end face is less than 0.1 μ m, and the coupling efficiency is improved by 20%.

  鍍膜修復

  Coating repair

  對老化鍍膜層,采用離子束濺射技術重新沉積增透膜。在400-700nm波長范圍內,反射率<0.5%,恢復光學性能。

  For the aging coating layer, ion beam sputtering technology is used to re deposit the anti reflective film. Within the wavelength range of 400-700nm, reflectance<0.5% restores optical performance.

  護套整形

  Sheath shaping

  對變形護套,使用液壓校直機與激光測徑儀,將彎曲半徑恢復至設計值±0.5mm。整形后護套抗拉強度≥800MPa,滿足臨床使用要求。

  For the deformed sheath, use a hydraulic straightening machine and a laser caliper to restore the bending radius to the design value ± 0.5mm. After shaping, the tensile strength of the sheath should be ≥ 800MPa, which meets the clinical requirements.

  密封重建

  Sealing reconstruction

  更換氟橡膠密封圈,涂覆硅橡膠密封膠。在2bar壓力下,泄漏率<1×10^-6Pa·m3/s,達到IP68防護等級。

  Replace the fluororubber sealing ring and apply silicone rubber sealant. At a pressure of 2 bar, the leakage rate is less than <1×10^-6Pa·m3/s, achieving an IP68 protection level.

  性能驗證

  Performance Verification

  進行光通量測試、色溫測試、彎曲疲勞測試。修復后導光管的光輸出功率恢復至新品的95%以上,色溫偏差<200K。

  Conduct luminous flux testing, color temperature testing, and bending fatigue testing. After repair, the light output power of the light guide tube has been restored to over 95% of the new product, and the color temperature deviation is less than 200K.

  滅菌處理

  Sterilization treatment

  通過環氧乙烷或過氧化氫等離子滅菌,SAL達10^-6。滅菌后光纖端面無殘留,光學性能無衰減。

  Through plasma sterilization with ethylene oxide or hydrogen peroxide, the SAL reaches 10 ^ -6. After sterilization, there is no residue on the fiber end face and no attenuation in optical performance.

  四、修復技術的創新方向

  4、 Innovation direction of repair technology

  隨著材料科學與精密加工技術的發展,導光管修復呈現兩大趨勢:

  With the development of materials science and precision machining technology, there are two major trends in the repair of light guide tubes:

  光纖再生技術

  Fiber optic regeneration technology

  采用飛秒激光微加工系統,對斷裂光纖進行精準熔接。在顯微鏡下,可實現0.1mm精度的光纖對接,連接損耗<0.2dB。

  Using a femtosecond laser microfabrication system, precise fusion welding is performed on fractured optical fibers. Under the microscope, fiber optic docking with a precision of 0.1mm can be achieved, and the connection loss is less than 0.2dB.

  智能監測系統

  Intelligent monitoring system

  在內窺鏡手柄集成光纖傳感器,實時監測光通量與溫度。當光損耗>10%或溫度>50℃時,自動觸發維護預警,延長導光管使用壽命。

  The endoscope handle integrates fiber optic sensors to monitor real-time light flux and temperature. When the light loss exceeds 10% or the temperature exceeds 50 ℃, an automatic maintenance warning is triggered to extend the service life of the light guide tube.

  內窺鏡維修中的導光管修復,是光學、機械、電子技術的綜合應用。通過建立標準化修復流程與質量控制體系,可顯著延長導光管使用壽命,降低設備全生命周期成本。這種精密維護技術不僅保障了內窺鏡的診療性能,更推動了醫療設備向可維修、可持續方向發展,成為現代醫學工程的重要支撐。

  The repair of light guide tubes in endoscopic maintenance is a comprehensive application of optical, mechanical, and electronic technologies. By establishing a standardized repair process and quality control system, the service life of the light guide tube can be significantly extended, and the total lifecycle cost of the equipment can be reduced. This precision maintenance technology not only ensures the diagnostic and therapeutic performance of endoscopes, but also promotes the development of medical equipment towards repairability and sustainability, becoming an important support for modern medical engineering.

  本文由內窺鏡設備維修友情奉獻.更多有關的知識請點擊:http://www.csfqw.net我們將會對您提出的疑問進行詳細的解答,歡迎您登錄網站留言.

  This article is a friendly contribution from the maintenance of endoscopic equipment For more information, please click: http://www.csfqw.net We will provide detailed answers to your questions. You are welcome to log in to our website and leave a message

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樊經理:13153199508     李經理:13873135765

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