The single ply is constructed from a silicone-coated glass fabric with a single outer glass cord, supported by an exposed bronze plated steel wire helix.
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The single ply is constructed from a silicone-coated glass fabric with a single outer glass cord, supported by an exposed bronze plated steel wire helix.
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The single ply is constructed from a silicone-coated glass fabric with a single outer glass cord, supported by an exposed bronze plated steel wire helix.
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The single ply is constructed from a silicone-coated glass fabric with a single outer glass cord, supported by an exposed bronze plated steel wire helix.
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The single ply is constructed from a silicone-coated glass fabric with a single outer glass cord, supported by an exposed bronze plated steel wire helix.
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The single ply is constructed from a silicone-coated glass fabric with a single outer glass cord, supported by an exposed bronze plated steel wire helix.
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The single ply is constructed from a silicone-coated glass fabric with a single outer glass cord, supported by an exposed bronze plated steel wire helix.
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The single ply is constructed from a silicone-coated glass fabric with a single outer glass cord, supported by an exposed bronze plated steel wire helix.
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The single ply is constructed from a silicone-coated glass fabric with a single outer glass cord, supported by an exposed bronze plated steel wire helix.
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The single ply is constructed from a silicone-coated glass fabric with a single outer glass cord, supported by an exposed bronze plated steel wire helix.
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The single ply is constructed from a silicone-coated glass fabric with a single outer glass cord, supported by an exposed bronze plated steel wire helix.
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The single ply is constructed from a silicone-coated glass fabric with a single outer glass cord, supported by an exposed bronze plated steel wire helix.
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The single ply is constructed from a silicone-coated glass fabric with a single outer glass cord, supported by an exposed bronze plated steel wire helix.
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The single ply is constructed from a silicone-coated glass fabric with a single outer glass cord, supported by an exposed bronze plated steel wire helix.
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The single ply is constructed from a silicone-coated glass fabric with a single outer glass cord, supported by an exposed bronze plated steel wire helix.
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The single ply is constructed from a silicone-coated glass fabric with a single outer glass cord, supported by an exposed bronze plated steel wire helix.
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The single ply is constructed from a silicone-coated glass fabric with a single outer glass cord, supported by an exposed bronze plated steel wire helix.
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The single ply is constructed from a silicone-coated glass fabric with a single outer glass cord, supported by an exposed bronze plated steel wire helix.
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The double ply has an internal coating of silicone/glass, encapsulating the wire helix. It is perfect for high temperature under bonnet applications such as air intake and brake ducting.
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The double ply has an internal coating of silicone/glass, encapsulating the wire helix. It is perfect for high temperature under bonnet applications such as air intake and brake ducting.
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The double ply has an internal coating of silicone/glass, encapsulating the wire helix. It is perfect for high temperature under bonnet applications such as air intake and brake ducting.
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The double ply has an internal coating of silicone/glass, encapsulating the wire helix. It is perfect for high temperature under bonnet applications such as air intake and brake ducting.
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The double ply has an internal coating of silicone/glass, encapsulating the wire helix. It is perfect for high temperature under bonnet applications such as air intake and brake ducting.
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The double ply has an internal coating of silicone/glass, encapsulating the wire helix. It is perfect for high temperature under bonnet applications such as air intake and brake ducting.
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The double ply has an internal coating of silicone/glass, encapsulating the wire helix. It is perfect for high temperature under bonnet applications such as air intake and brake ducting.
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The double ply has an internal coating of silicone/glass, encapsulating the wire helix. It is perfect for high temperature under bonnet applications such as air intake and brake ducting.
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The double ply has an internal coating of silicone/glass, encapsulating the wire helix. It is perfect for high temperature under bonnet applications such as air intake and brake ducting.
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The double ply has an internal coating of silicone/glass, encapsulating the wire helix. It is perfect for high temperature under bonnet applications such as air intake and brake ducting.
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The double ply has an internal coating of silicone/glass, encapsulating the wire helix. It is perfect for high temperature under bonnet applications such as air intake and brake ducting.
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The double ply has an internal coating of silicone/glass, encapsulating the wire helix. It is perfect for high temperature under bonnet applications such as air intake and brake ducting.
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The double ply has an internal coating of silicone/glass, encapsulating the wire helix. It is perfect for high temperature under bonnet applications such as air intake and brake ducting.
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The double ply has an internal coating of silicone/glass, encapsulating the wire helix. It is perfect for high temperature under bonnet applications such as air intake and brake ducting.
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The double ply has an internal coating of silicone/glass, encapsulating the wire helix. It is perfect for high temperature under bonnet applications such as air intake and brake ducting.
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The double ply has an internal coating of silicone/glass, encapsulating the wire helix. It is perfect for high temperature under bonnet applications such as air intake and brake ducting.
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The double ply has an internal coating of silicone/glass, encapsulating the wire helix. It is perfect for high temperature under bonnet applications such as air intake and brake ducting.
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The double ply has an internal coating of silicone/glass, encapsulating the wire helix. It is perfect for high temperature under bonnet applications such as air intake and brake ducting.
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