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As a part of any comprehensive fire sprinkler system corrosion assessment program, a video scope is used to collect visual evidence of corrosion activity inside the system. A pipe inspection using video scoping inside the fire sprinkler system piping provides for in-situ observation of many corrosion-related issues. Due to the highly localized nature of corrosion in fire sprinkler systems, we have found that other non-destructive methods of pipe investigation are severely limited in their ability to reproduce the wealth of data provided from an internal video inspection.
An ECS Corrosion Assessment exceeds the NFPA 25 five (5) year internal investigation requirement and provides usable data that offers more cost-effective, system specific remediation options besides total system replacement.
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Various wet, dry, and preaction fire sprinkler systems as viewed from the ECS video scope equipment. Internal video inspection is the only way to truly identify localized areas of corrosion that can be easily missed by non-destructive testing methods.
Various wet, dry, and preaction fire sprinkler systems as viewed from the ECS video scope equipment. Internal video inspection is the only way to truly identify localized areas of corrosion that can be easily missed by non-destructive testing methods.
Various wet, dry, and preaction fire sprinkler systems as viewed from the ECS video scope equipment. Internal video inspection is the only way to truly identify localized areas of corrosion that can be easily missed by non-destructive testing methods.
Various wet, dry, and preaction fire sprinkler systems as viewed from the ECS video scope equipment. Internal video inspection is the only way to truly identify localized areas of corrosion that can be easily missed by non-destructive testing methods.
Various wet, dry, and preaction fire sprinkler systems as viewed from the ECS video scope equipment. Internal video inspection is the only way to truly identify localized areas of corrosion that can be easily missed by non-destructive testing methods.
Various wet, dry, and preaction fire sprinkler systems as viewed from the ECS video scope equipment. Internal video inspection is the only way to truly identify localized areas of corrosion that can be easily missed by non-destructive testing methods.
Various wet, dry, and preaction fire sprinkler systems as viewed from the ECS video scope equipment. Internal video inspection is the only way to truly identify localized areas of corrosion that can be easily missed by non-destructive testing methods.
Various wet, dry, and preaction fire sprinkler systems as viewed from the ECS video scope equipment. Internal video inspection is the only way to truly identify localized areas of corrosion that can be easily missed by non-destructive testing methods.
Various wet, dry, and preaction fire sprinkler systems as viewed from the ECS video scope equipment. Internal video inspection is the only way to truly identify localized areas of corrosion that can be easily missed by non-destructive testing methods.
Various wet, dry, and preaction fire sprinkler systems as viewed from the ECS video scope equipment. Internal video inspection is the only way to truly identify localized areas of corrosion that can be easily missed by non-destructive testing methods.
Various wet, dry, and preaction fire sprinkler systems as viewed from the ECS video scope equipment. Internal video inspection is the only way to truly identify localized areas of corrosion that can be easily missed by non-destructive testing methods.
Various wet, dry, and preaction fire sprinkler systems as viewed from the ECS video scope equipment. Internal video inspection is the only way to truly identify localized areas of corrosion that can be easily missed by non-destructive testing methods.