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Emergency repair of production roof with 2K polyurea in Middelburg

Project file 04

Emergency repair of production roof with 2K polyurea

Middelburg, Netherlands · Local 2K polyurea waterproofing with reinforced details

Project image

Which is demonstrable in this project.

Approximately 150 m² of a commercial roof with multiple leaks has been purposefully renovated. The urgent system approach protects the valuable production equipment under the roof against further water damage.

The content is based on available implementation information and project images. For a new object, the surface, load, details and system choice are always determined project-specifically.
ObjectProduction company
LocationMiddelburg
TreatedApproximately 150 m²
ReasonMultiple leaks
RiskProduction equipment under the roof
ApproachLocal system renovation with 2K polyurea

Interactive Project Evidence

From the initial condition to a
verifiable result.

Review the work sequence by phase. Images gain technical value only when their content and project boundaries are clear.

Water tax at Emergency repair of production roof with 2K polyurea Middelburg01 / Water taxPROJECT EVIDENCE
VISUAL COMPARISONBefore / latest available project phase
Initial condition of Emergency repair of production roof with 2K polyurea
Latest available phase of Emergency repair of production roof with 2K polyurea
START / Water taxLATEST PHASE / Final check

Technical demarcation

Targeted leakage repair where consequential damage threatened business continuity.

Water intrusion over valuable production equipment required quick action, but not an uncontrolled emergency repair. The problem areas, drains and connections were treated as a local system scope, so that high-risk parts were sealed coherently.

01 / Challenge

The technical task

Leaks occurred in several places above a production environment with expensive equipment. The risk of consequential damage made it necessary to act quickly. The assignment did not call for an arbitrary emergency repair, but for a verifiable local system renovation of the affected zones, transitions and critical details.

02 / Approach

The system-oriented method

  1. 01Inspect the leakage-sensitive zones, drains, upstands and connections and determine the local treatment scope
  2. 02Clean the relevant roof surfaces under high pressure and make them suitable for further treatment
  3. 03Reinforce transitions and critical areas with geotextile that is fully embedded in the coating
  4. 04The selected roof zones were locally provided with cold-applied 2K polyurea with a total material consumption of approximately 2 kg per m²
  5. 05Visually check the treated surface, connections, drains and transition to the existing roof covering
03 / Result

The visible result

The leaks in the treated areas have been resolved. The critical connections, together with the roof surface, form a seamless local waterproofing, eliminating the immediate risk of water damage to the production equipment and allowing the customer to continue operations with greater certainty.

Decision factors

Why this scope made technical sense.

A system name alone does not explain project choice. The existing condition, risks, details and feasibility together determine the renovation strategy.

01

Project decision

  • Active leaks above critical business processes
  • Limited but related problem areas
  • Need to quickly limit consequential damage
  • Local renovation without including unaffected parts
02

Included in the scope

  • Inspection and demarcation of risk areas
  • High-pressure cleaning of treated areas
  • Geotextiles in critical transitions
  • Local 2K polyurea, approximately 2 kg/m²
03

Technically assessed

  • Water loads and drainage points
  • Defects in seams and upstands
  • Transition to existing roofing
  • Risk to underlying production equipment

Execution in pictures

Six controllable steps.

From leakage image and local risk analysis to reinforced 2K waterproofing of the critical roof zones.

Water load during emergency repair of production roof with 2k polyurea in Middelburg
01 / Werkfase

Water tax

Local water accumulation and pollution exposed the vulnerable roof area.

Inspection and scope during emergency repair of production roof with 2k polyurea in Middelburg
02 / Werkfase

Inspection and scope

The commercial roof has been assessed to determine the leakage-prone zones and necessary treatment limits.

Damage pattern during emergency repair of production roof with 2k polyurea in Middelburg
03 / Werkfase

Damage picture

Openings and defects in critical connections provided direct routes for water ingress.

Reinforced details during emergency repair of production roof with 2k polyurea in Middelburg
04 / Werkfase

Armored details

Transitions and critical places are reinforced with geotextile in the coating.

2K polyurea during emergency repair of production roof with 2K polyurea in Middelburg
05 / Werkfase

2K polyurea

The selected roof zones are locally provided with the cold-applied two-component membrane.

Final inspection during emergency repair of production roof with 2k polyurea in Middelburg
06 / Werkfase

Final check

Plane, elevations, drains and treatment boundaries are checked as one local waterproofing.

Project result

Leaks resolved. Production protected.

By treating the problem zones as a coherent local system, the direct risk above the production environment is limited without unnecessarily including unaffected roof parts.

  • 01Several active leaks in the treated areas were resolved in a targeted manner
  • 02Direct risk of costly consequential damage to production equipment is limited
  • 03Critical transitions and connections additionally reinforced with geotextile
  • 04Local system scope prevents unaffected roof parts from being treated unnecessarily

Quality & evidence limit

What has been checked, confirmed and deliberately not generalized?

Control

Quality moments

  • Determine treatment limits in advance
  • Reassess the surface after cleaning
  • Completely embed geotextile
  • Visually check connections and drains
Evidence

Confirmed project information

  • Initial situation, damage picture and implementation are photographically recorded
  • The size and material consumption covered are specified on a project-by-project basis
  • Leaks in the treated areas have been resolved after implementation
Border

Project-specific boundaries

  • The approximately 150 m² concerns the covered scope, not necessarily the entire roof
  • Result claim applies to the treated areas
  • Untreated roof parts are excluded from this project conclusion
Technical project passport

System variant, substrate, primer, batch data, consumption, application conditions, ETA/DoP, applicable BROOF build-up and maintenance are only included when confirmed project-specifically.

View the evidence and documentation method →

PolyShield System Passport

From system name to demonstrable project structure.

PSP-RR-002PS-PUA-01Local scope executed and recorded
Risicogericht dakherstel boven productie, projectbewijs voor PS-PUA-01Locally treated scope
Project
Risk-oriented roof repair over production
Location
Middelburg, Netherlands
Size
Approximately 150 m² treated
Substrate
Existing commercial roofing
AANLEIDING

Multiple leaks above valuable production equipment with risk of consequential damage.

01

Preparation

  • Demarcation of leakage-sensitive zones
  • Local high-pressure cleaning
  • Reassessment of connections and drains
02

System construction

  • Geotextiles in critical transitions
  • Local cold applied 2K polyurea
  • Total consumption approximately 2 kg / m²
03

Checkpoints

  • Treatment limits
  • Full embedment of reinforcement
  • Drains and connections
  • Transition to existing roof
RECORDED RESULT

The leaks in the treated zones have been resolved according to the project file and the direct risk above the production environment is limited.

BEWIJSGRENS

The approximately 150 m² concerns the covered scope. Untreated roof parts are excluded from this project conclusion.

View associated system family

Van projectbeeld naar controleerbaar bewijs

Een projectdossier moet meer laten zien dan alleen het eindresultaat.

PolyShield bouwt projectbewijs op rond zes vaste onderdelen: uitgangssituatie, technische keuze, systeemopbouw, uitvoering, kwaliteitscontrole en oplevering. Zo blijft zichtbaar wat daadwerkelijk is uitgevoerd en welke gegevens projectspecifiek zijn.

PolyShield Project Evidence
  • Voor-, tijdens- en na-beelden met functie
  • Bevestigde ondergrond en behandelde zones
  • Relevante systeem- en controlegegevens
  • Open benoemde bewijsgrenzen
Bekijk onze projectbewijsmethode →

NEXT STEP

Leakage above production or valuable inventory?

The first step is a quick but verifiable risk assessment. Share location, photos, consequences and accessibility so that urgency and treatment scope can be determined specifically.

Start technical screening Measure the roof areaConsult first →