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怎么檢測山東電纜橋架的承載能力?

  檢測電纜橋架承載能力主要有以下幾種方法:

  There are several methods to test the bearing capacity of cable trays, including:base64_image

  1.靜載試驗

  1. Static load test

  · 試驗準備:根據橋架規格和設計要求,確定試驗載荷值。通常采用砝碼、鋼條或其他非連續剛性材料作為加載物,確保載荷均勻分布在橋架上。

  ·Test preparation: Determine the test load value based on the specifications and design requirements of the bridge frame. Usually, weights, steel bars, or other non continuous rigid materials are used as loading objects to ensure that the load is evenly distributed on the bridge.

  · 加載過程:將橋架固定在試驗支架上,按照規定的加載速度和步驟,逐步增加載荷設計的工作載荷(SWL)。加載過程中需保持載荷均勻分布,避免局部過載。

  ·Loading process: Fix the bridge frame on the test bracket, gradually increase the load to the designed safe working load (SWL) according to the specified loading speed and steps. During the loading process, it is necessary to maintain a uniform distribution of load to avoid local overload.

  · 測量與觀察:在加載過程中及加載完成后,測量橋架的撓度、變形情況,檢查橋架是否有明顯的變形、裂紋、焊點開裂等問題。合格的橋架在承受額定均布荷載時,相對撓度應不大于1/200。

  ·Measurement and observation: During and after the loading process, measure the deflection and deformation of the bridge frame, and check whether there are obvious permanent deformations, cracks, and weld cracking on the bridge frame. Qualified cable trays should have a relative deflection of no more than 1/200 when subjected to rated uniformly distributed loads.

  2.動載試驗

  2. Dynamic load test

  · 模擬動態荷載:通過振動臺或其他設備,模擬橋架在實際使用中可能遇到的動態荷載,如機械振動、車輛行駛引起的振動等。加載頻率和幅值應根據橋架的使用環境和設計要求確定。

  ·Simulate dynamic loads: By using a vibration table or other equipment, simulate the dynamic loads that bridge structures may encounter in actual use, such as mechanical vibrations, vibrations caused by vehicle movement, etc. The loading frequency and amplitude should be determined according to the usage environment and design requirements of the bridge.

  · 試驗過程:在動態荷載作用下,持續一定時間(如數小時或數天),觀察橋架的結構穩定性、連接部位的松動情況以及是否有異常響聲或變形。

  ·Experimental process: Under dynamic load for a certain period of time (such as several hours or days), observe the structural stability of the bridge, the looseness of the connection parts, and whether there are any abnormal sounds or deformations.

  · 結果評估:試驗結束后,檢查橋架的結構完整性,測量橋架的疲勞損傷程度,如裂紋擴展情況、焊點疲勞強度等。動載試驗主要檢驗橋架在長期動態荷載下的承載能力和耐久性。

  ·Result evaluation: After the experiment is completed, the structural integrity of the bridge frame is checked, and the fatigue damage degree of the bridge frame is measured, such as crack propagation and fatigue strength of welding points. The dynamic load test mainly tests the bearing capacity and durability of the bridge under long-term dynamic loads.

  3.極限載荷試驗

  3. Ultimate load test

  · 確定極限載荷值:根據橋架的設計參數和材料性能,計算或參考標準規定的極限載荷值,通常為工作載荷的1.5倍左右。

  ·Determine the ultimate load value: Based on the design parameters and material properties of the bridge frame, calculate or refer to the standard specified ultimate load value, which is usually about 1.5 times the safe working load.

  · 加載操作:將橋架加載極限載荷值,保持一定時間(如15-30分鐘),觀察橋架的變形、破壞情況。若橋架在極限載荷下未發生破壞或超過允許的變形范圍,則說明其承載能力滿足要求。

  ·Loading operation: Load the bridge to the maximum load value and maintain it for a certain period of time (such as 15-30 minutes), observe the deformation and damage of the bridge. If the bridge does not fail or exceed the allowable deformation range under ultimate load, it indicates that its bearing capacity meets the requirements.

  · 風險提示:極限載荷試驗具有一定風險,可能導致橋架損壞,因此需在人員指導下進行,并采取必要的防護措施。

  ·Risk Warning: Extreme load testing carries certain risks and may cause damage to the bridge frame. Therefore, it is necessary to conduct it under the guidance of professional personnel and take necessary safety precautions.

  4.理論計算驗證

  4. Theoretical calculation verification

  · 收集參數:獲取橋架的材質、規格尺寸、支撐間距、電纜荷載等參數,以及橋架的設計標準和規范要求。

  ·Collect parameters: Obtain the material, specification dimensions, support spacing, cable load and other parameters of the bridge frame, as well as the design standards and specification requirements of the bridge frame.

  · 計算承載能力:根據力學原理和相關公式,計算橋架的允許均布荷載、集中荷載等承載能力指標。常用的計算方法包括梁的彎曲強度計算、撓度計算等。

  ·Calculate bearing capacity: Based on mechanical principles and relevant formulas, calculate the allowable uniformly distributed load, concentrated load and other bearing capacity indicators of the bridge frame. The commonly used calculation methods include bending strength calculation and deflection calculation of beams.

  · 對比驗證:將計算結果與實際試驗結果或設計要求進行對比,若計算值與試驗值偏差較大,需分析原因并調整設計或施工方案。以上方法可根據實際需求和條件選擇使用,對于重要工程或對承載能力要求較高的橋架,建議結合多種方法進行綜合檢測,以確保橋架的性和可靠性。

  ·Comparative verification: Compare the calculated results with the actual experimental results or design requirements. If the calculated values deviate significantly from the experimental values, analyze the reasons and adjust the design or construction plan. The above methods can be selected and used according to actual needs and conditions. For important projects or bridge structures with high load-bearing capacity requirements, it is recommended to combine multiple methods for comprehensive testing to ensure the safety and reliability of the bridge structure.

  本文由  山東電纜橋架 友情奉獻.更多有關的知識請點擊  http://www.zkhtkj.cn/  真誠的態度.為您提供為的服務.更多有關的知識我們將會陸續向大家奉獻.敬請期待.

  This article is a friendly contribution from Shandong Cable Bridge For more related knowledge, please click http://www.zkhtkj.cn/ Sincere attitude To provide you with comprehensive services We will gradually contribute more relevant knowledge to everyone Coming soon.

 
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