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臥式丁基膠涂布機傳動系統維護要點解析

時間:2025-05-20 來源:http://www.xyspace.net/ 發布人:昌盛機械

  在軟包裝生產領域,臥式丁基膠涂布機憑借其高精度涂布能力,成為光伏組件、建筑密封等行業的核心設備。其傳動系統作為設備運行的“神經中樞”,直接決定涂布均勻性、生產效率及運行穩定性。本文將從技術原理與工程實踐雙維度,系統性闡述傳動系統的維護要點,為行業提供兼具理論深度與實用價值的操作指南。

  In the field of flexible packaging production, the horizontal butyl rubber coating machine has become a core equipment in industries such as photovoltaic modules and building sealing due to its high-precision coating capability. The transmission system, as the "nerve center" of equipment operation, directly determines the uniformity of coating, production efficiency, and operational stability. This article will systematically explain the maintenance points of the transmission system from both technical principles and engineering practice, providing the industry with a practical and theoretical operation guide.

  一、傳動系統技術架構解析

  1、 Analysis of Transmission System Technical Architecture

  臥式丁基膠涂布機傳動系統由伺服電機、行星減速機、同步帶輪、張緊裝置及涂布輥組成。其核心功能是實現膠料輸送速度與涂布輥轉速的精準匹配,確保膠層厚度偏差控制在±2μm以內。系統工作原理如下:

  The transmission system of the horizontal butyl rubber coating machine consists of a servo motor, planetary reducer, synchronous belt pulley, tensioning device, and coating roller. Its core function is to achieve precise matching between the conveying speed of the adhesive material and the speed of the coating roller, ensuring that the thickness deviation of the adhesive layer is controlled within ± 2 μ m. The working principle of the system is as follows:

  動力傳輸路徑:伺服電機輸出扭矩經行星減速機放大后,通過同步帶傳遞至涂布輥。張緊裝置動態調節皮帶張力,防止打滑現象。

  Power transmission path: The output torque of the servo motor is amplified by the planetary reducer and transmitted to the coating roller through the synchronous belt. The tensioning device dynamically adjusts the belt tension to prevent slipping.

  速度閉環控制:編碼器實時采集涂布輥轉速,與設定值比對后,由伺服驅動器調整電機輸出,形成全數字閉環控制系統。

  Speed closed-loop control: The encoder real-time collects the speed of the coating roller, compares it with the set value, and adjusts the motor output by the servo driver to form a fully digital closed-loop control system.

  負載均衡機制:雙輥傳動結構采用剛性聯軸器連接,通過預緊力調節裝置,確保兩輥線速度差值小于0.5%。

  Load balancing mechanism: The dual roller transmission structure is connected by a rigid coupling, and the pre tension adjustment device is used to ensure that the difference in linear velocity between the two rollers is less than 0.5%.

  二、關鍵部件維護策略

  2、 Key component maintenance strategy

  1. 同步帶維護

  1. Synchronous belt maintenance

  張力動態管理:采用激光對中儀檢測皮帶跨距,通過張緊輪螺栓調節預緊力。建議每周使用皮帶張力計校準,確保張力值在標準值的±5%范圍內。

  Dynamic tension management: Laser centering instrument is used to detect the belt span, and the pre tension force is adjusted through the tensioning wheel bolt. It is recommended to calibrate the belt tension meter weekly to ensure that the tension value is within ± 5% of the standard value.

  磨損監測技術:在皮帶側面設置磨損標記線,當標記線消失時,表明皮帶齒高磨損超過20%,需立即更換。同步帶輪齒面應保持清潔,避免膠料殘留導致異常磨損。

  Wear monitoring technology: Set wear marking lines on the side of the belt. When the marking lines disappear, it indicates that the belt teeth have worn more than 20% and need to be replaced immediately. The tooth surface of the synchronous belt should be kept clean to avoid abnormal wear caused by residual rubber material.

  2. 軸承潤滑管理

  2. Bearing lubrication management

  潤滑劑選型:根據工況溫度選擇潤滑脂,常溫環境(20℃-40℃)采用NLGI 2級鋰基脂,高溫環境(>60℃)升級為復合磺酸鈣基脂。

  Lubricant selection: Choose lubricating grease according to the operating temperature. For normal temperature environments (20 ℃ -40 ℃), use NLGI grade 2 lithium based grease, and upgrade to composite calcium sulfonate based grease for high temperature environments (>60 ℃).

  智能潤滑系統:配置單點潤滑器,設置3個月為潤滑周期。對于重載軸承,采用油氣潤滑裝置,通過脈沖式供油確保潤滑膜完整。

  Intelligent lubrication system: equipped with a single point lubricator and set a lubrication cycle of 3 months. For heavy-duty bearings, an oil air lubrication device is used to ensure the integrity of the lubrication film through pulsed oil supply.

  3. 減速機維護

  3. Maintenance of gearbox

  油液監控方案:每季度取樣檢測油液粘度、水分及金屬顆粒含量。當運動粘度變化超過15%,或水分含量超過0.1%,立即更換潤滑油。

  Oil monitoring plan: Sampling and testing of oil viscosity, moisture, and metal particle content every quarter. When the viscosity changes by more than 15% or the moisture content exceeds 0.1%, immediately replace the lubricating oil.

  密封件檢查:每月檢查輸入輸出軸密封圈,采用熒光檢漏劑探測微小滲漏。發現油漬時,需在8小時內更換骨架油封。

  Seal inspection: Check the input and output shaft sealing rings monthly and use fluorescent leak detectors to detect minor leaks. When oil stains are found, the skeleton oil seal needs to be replaced within 8 hours.

  三、精密對中調整技術

  3、 Precision alignment and adjustment technology

  1. 激光對中工藝

  1. Laser alignment process

  三維校準法:使用激光對中儀,在減速機與電機法蘭盤投影面設置三個測量點。通過調整電機底腳螺栓,使同心度偏差≤0.02mm,角度偏差≤0.05mm/m。

  Three dimensional calibration method: Use a laser alignment instrument to set three measurement points on the projection surface of the reducer and motor flange. Adjust the motor foot bolts to ensure concentricity deviation ≤ 0.02mm and angle deviation ≤ 0.05mm/m.

  動態補償機制:在設備空載運行狀態下,再次進行對中校準,補償熱膨脹引起的位移偏差。實測表明,該技術可使傳動效率提升8%。

  Dynamic compensation mechanism: During the no-load operation of the equipment, perform centering calibration again to compensate for displacement deviation caused by thermal expansion. Tests have shown that this technology can increase transmission efficiency by 8%.

img_350_220_202206061723475KC8lR.jpg

  2. 聯軸器預緊力控制

  2. Pre tightening force control of coupling

  扭矩扳手應用:采用數字式扭矩扳手,按聯軸器規格設定預緊扭矩。對于梅花形聯軸器,預緊扭矩值控制在額定扭矩的1.2-1.5倍。

  Application of torque wrench: Using a digital torque wrench, set the pre tightening torque according to the specifications of the coupling. For the plum blossom shaped coupling, the pre tightening torque value should be controlled at 1.2-1.5 times the rated torque.

  防松設計:在螺栓螺紋處涂抹螺紋鎖固劑,配合彈簧墊圈使用。每半年檢查螺栓伸長量,當伸長量超過0.05mm時,需重新緊固。

  Anti loosening design: Apply thread locking agent to the bolt threads and use it in conjunction with spring washers. Check the elongation of bolts every six months. If the elongation exceeds 0.05mm, it needs to be re tightened.

  四、智能監測系統部署

  4、 Deployment of Intelligent Monitoring System

  1. 振動分析技術

  1. Vibration analysis technology

  在線監測模塊:在電機、減速機、軸承座安裝三向加速度傳感器,實時采集振動信號。通過FFT頻譜分析,識別齒輪嚙合頻率、軸承故障特征頻率。

  Online monitoring module: Install three-way acceleration sensors on the motor, reducer, and bearing seat to collect real-time vibration signals. Identify gear meshing frequency and bearing fault characteristic frequency through FFT spectrum analysis.

  預警閾值設定:建立設備振動數據庫,當振動速度有效值超過基準值30%時,觸發黃色預警;超過50%時,啟動紅色警報并停機檢修。

  Warning threshold setting: Establish a device vibration database, and trigger a yellow warning when the effective value of vibration speed exceeds 30% of the reference value; When it exceeds 50%, activate a red alarm and shut down for maintenance.

  2. 溫度巡檢系統

  2. Temperature inspection system

  紅外測溫網絡:在傳動部件表面布置紅外測溫探頭,形成溫度場分布圖。設置三級溫度報警:一級80℃,二級90℃,三級100℃。

  Infrared temperature measurement network: Install infrared temperature measurement probes on the surface of transmission components to form a temperature field distribution map. Set up a three-level temperature alarm: Level 1 at 80 ℃, Level 2 at 90 ℃, and Level 3 at 100 ℃.

  熱成像診斷:每季度使用熱成像儀進行全面掃描,建立溫度云圖檔案。異常溫升區域需在48小時內完成拆檢。

  Thermal imaging diagnosis: Use a thermal imaging device to conduct comprehensive scans every quarter and establish a temperature cloud map file. The area with abnormal temperature rise needs to be dismantled and inspected within 48 hours.

  五、維護周期優化方案

  5、 Maintenance cycle optimization plan

  1. 狀態監測維護(CBM)

  1. Condition Monitoring and Maintenance (CBM)

  數據驅動決策:基于振動、溫度、油液分析數據,動態調整維護周期。對于運行平穩的設備,可延長定期維護間隔至6個月。

  Data driven decision-making: Based on vibration, temperature, and oil analysis data, dynamically adjust maintenance cycles. For equipment that runs smoothly, the regular maintenance interval can be extended to 6 months.

  備件智能管理:建立關鍵部件壽命模型,預測軸承、皮帶等易損件剩余壽命。當預測值低于20%時,自動生成備件采購申請。

  Intelligent spare parts management: Establish a key component life model to predict the remaining life of vulnerable parts such as bearings and belts. When the predicted value is below 20%, a spare parts procurement request will be automatically generated.

  2. 預防性維護(PM)

  2. Preventive Maintenance (PM)

  潤滑周期優化:根據環境濕度、粉塵濃度調整潤滑頻率。在潔凈車間(ISO 7級),潤滑周期可延長至6個月。

  Lubrication cycle optimization: Adjust the lubrication frequency according to environmental humidity and dust concentration. In the clean room (ISO 7 level), the lubrication cycle can be extended to 6 months.

  清潔度控制:每日生產結束后,用異丙醇擦拭傳動部件表面。每季度進行深度清潔,使用高壓氣槍清除內部積塵。

  Cleanliness control: After daily production, wipe the surface of transmission components with isopropanol. Perform deep cleaning every quarter and use high-pressure air guns to remove internal dust accumulation.

  通過實施上述維護策略,可使臥式丁基膠涂布機傳動系統的無故障運行時間延長至8000小時以上,涂布精度穩定性提升30%,為連續化生產提供堅實保障。

  By implementing the above maintenance strategy, the fault free operation time of the transmission system of the horizontal butyl rubber coating machine can be extended to over 8000 hours, and the stability of coating accuracy can be improved by 30%, providing a solid guarantee for continuous production.

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