Inspection & Measurement Systems

用途/事例

アプリケーションノート

Bond Testing in Composite Power Line Insulators

power lines

Application: Verifying the integrity of bonding between the silicone skirts and the composite core of composite high voltage power line insulators.

Background: The high voltage pylon insulators used for power transmission lines and railroad traction power wires have traditionally been made of glass or ceramic, but many users are now switching to composite insulators because of their advantages with respect to weight, durability, and environmental performance. These insulators consist of an FRP composite core coated with a layer of silicone rubber and bracketed with metal end fittings. Good bonding between the silicone and the FPR is essential for proper electrical performance, since bond failures may result in flashovers. Ultrasonic flaw detectors can be used to quickly and nondestructively check the integrity of these bonds, both at the manufacturing stage and in service.

Example of sectioned composite insulator Example of disbonding

sectioned composite insulator

example of disbonding

Equipment: Any of the Olympus NDT EPOCH series flaw detectors can be used for this test, along with a small diameter contact transducer such as a V112-RM (10 MHz, 0.25"/6.25 mm diameter) that fits in the space between the flared skirts.

Procedure: The phase or polarity of an echo reflected from the boundary between two materials depends on the relative acoustic impedances (density x sound velocity) of the materials. With Olympus NDT flaw detectors, when the first material has an acoustic impedance higher than the second, the echo is negative polarity. When the first material has an acoustic impedance lower than the second, the echo is positive polarity. Silicone has an impedance lower than fiberglass but higher than air. Thus a bonded silicone/FRP joint returns a positive echo, and a disbonded silicone/air boundary returns a negative echo. In this test, the flaw detector is set to RF display mode. The operator identifies the echo from the silicone/FRP boundary, sets it in the center of the screen, and sets gain to approximately 80% screen height. The display patterns should then be as follows:

Bonded joint - positive peak Disbonded joint - negative peak
bondede joint positive peak disbonded joint negative peak

If the thickness and/or concentricity of the silicone coating are of interest, that can be measured at the same time by calibrating the instrument to the velocity of silicone (typically about 1.48 mm/uS or .058 in/uS) and placing a measurement gate on the echo.

この用途に使用される製品

直接接触型探触子

直接接触型探触子は、試験片に直接接触させて使用する一振動子の縦波探触子です。

EPOCH 1000 シリーズ

フェイズドアレイ機能(断面映像化)を搭載した高性能超音波探傷器です。

EPOCH 600NEW

高い性能と使いやすさにこだわった「ハイクオリティ&ユーザーフレンドリー」モデルの超音波探傷器です。

EPOCH LT

低価格ハンディータイプの超音波探傷器です。わずか38 mm(1.5インチ)の薄型探傷器です。

EPOCH LTC

わずか0.96 kgの堅牢でコンパクトな超音波探傷器です。マルチカラーVGAディスプレイ、PC用USB On-the-Go ポート、ダイナミックDAC/TVGは標準装備です。

EPOCH XT

数多くの機能を標準装備した高性能な超音波探傷器です。調整可能な矩形波パルサー、選択可能な狭帯域および広帯域のデジタルフィルターなど。

超音波探触子

超音波探触子は、探傷、厚さ測定、材料調査、医療診断等のさまざまな用途に使用されます。多数の形状、振動子径、周波数およびコネクタタイプを持つ5,000種類以上の超音波探触子があります。

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