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Professional Industrial Epoxy Floor Coating Construction at ... by Chuan A Contractor

Professional Industrial Epoxy Floor Coating Construction at ... by Chuan A Contractor

DETAILED TECHNICAL AND CONSTRUCTION PROGRESS REPORT

I. GENERAL PROJECT INFORMATION AND SITE LOG ON MAY 16, 2026

In the evolutionary landscape of manufacturing infrastructure modernization for supporting industries in 2026, industrial floor rehabilitation and optimization stand as paramount requirements. The industrial floor matrix is not merely a geometric plane to sustain mechanical dead loads of heavy machinery, but a critical component determining occupational safety levels, anti-bacterial compliance, and dust-free operational parameters aligned with international ISO standards. On May 16, 2026, Chuan A Mechanical Electrical and Fire Protection Construction Design Co., Ltd. officially updated the field construction log at the factory of our strategic partner, GLOPACO. This high-profile project demands stringent compliance regarding timeline metrics, materials science technology, and industrial architectural aesthetics.

This technical reporting document is generated directly by the Lead Site Supervisor – Engineer Pham Hoang Son, aggregating all practical data points concerning manpower allocation, raw materials consumption, equipment synchronization, and structural testing metrics during the work shift. Every single operational milestone strictly adheres to ISO 9001:2015 protocols and contemporary civil engineering standards, aimed at delivering an unblemished engineering asset that embodies the core corporate philosophy of the Chuan A brand: "Your Trust In Us."

Project Name / Client: GLOPACO COMPANY (Industrial Manufacturing & Assembly Plant).

Core Construction Item: Roller-applied Epoxy coating for high-performance load-bearing concrete floor protection.

Site Supervisor: Engineer Pham Hoang Son (Chuan A Quality Assurance & Technical Management Dept.).

Execution Date: May 16, 2026 (Day shift operational hours from 07:30 to 17:00; environmental conditions: dry weather, ambient room temperature at 32°C, relative atmospheric humidity at 65%, completely satisfying standard thermodynamic envelopes for polymer chemical applications).

Completed Workload Volume: Reached precisely 30% of the total surface area for Phase 1 zone layout.


II. WORK SPECIFICS: ADVANCED MASTIC PUTTY REPAIR AND EPOXY COATING PROCESS

The construction operations at the GLOPACO facility floor on May 16, 2026, were highly focused on two fundamental chemical engineering procedures that fundamentally dictate the ultimate lifespan of the project: Mastic putty surface defect remediation and the systematic layer application of epoxy primers and intermediate coats. To achieve a perfectly flat finish and eliminate risks of delamination caused by hydrostatic pressure or latent moisture, the technical sequence was executed as follows:

1. Technical Mastic Putty Surface Correction and Leveling

The original concrete substrate of the GLOPACO facility, following prolonged operational use or raw structural pouring, inevitably displayed superficial micro-cracks, pitting, or weak tensile zones due to localized mechanical impact degradation. The Chuan A technical team applied a specialized three-component epoxy-based mastic compound, synthesized from macromolecular epoxy resins, polyamine curing agents, and ultra-fine reinforced quartz crystalline powders.

Workers meticulously injected and spread this compound over all predefined V-section routed cracks and structural surface cavities. The leveling thickness was quantified using a 2-meter mechanical straightedge to guarantee that the absolute deviation between surface coordinates did not exceed $\Delta h \le 1mm$. This strategic layer effectively functions as an impervious moisture barrier against capillary water rise while significantly reducing the consumption rate of subsequent liquid polymer coatings by completely sealing macroscopic concrete pores.

2. Standard Roller-Applied Epoxy Coating Engineering Technique

As soon as the mastic putty matrix reached its full physical curing state (verified by a Protimeter concrete moisture analyzer showing results below 4%), the crew proceeded with orbital mechanical abrasion to provide a distinct mechanical tooth anchoring profile (meeting CSP 2 surface profile standards), followed by high-efficiency particulate air (HEPA) vacuuming. Throughout the May 16 shift, Phase 1 was successfully treated with a high-performance polymer system applied via a manual three-coat roller methodology.

The process initiated with an ultra-penetrating epoxy primer layer engineered to integrate deep into the concrete capillaries, effectively creating a permanent mechanical bond. Upon the complete chemical solidification of the primer (approximately 4 hours), application technicians initiated the deployment of the first pigmented intermediate body coat. This formula utilizes a high-grade solvent-based epoxy matrix engineered with exceptional resistance characteristics against common industrial chemicals, petrochemical spillages, and heavy mechanical shear wear under continuous forklift traffic.


III. SITE MANPOWER MOBILIZATION AND TECHNICAL EQUIPMENT MATRIX

To maximize financial efficiency for the investor while maintaining an uncompromising stance on quality engineering, Chuan A deployed a lean yet highly specialized organizational human resources structure at the GLOPACO site:

Management & Technical Supervision (01 Field Engineer): Directly managed by Engineer Pham Hoang Son. The supervisory scope encompasses microclimate monitoring, strict monitoring of stoichiometric mixing ratios between Component A (pigmented resin) and Component B (curing agent) in exact accordance with manufacturer data sheets, layout mapping using high-tack paper masking tapes, and dry film integrity validation using high-intensity halogen illumination at the conclusion of the operational shift.

Direct Skilled Labor (02 Certified Technicians): These industrial coating practitioners possess over 5 years of field experience in macromolecular coatings, thoroughly understanding the rapid exothermic reaction of industrial epoxies in tropical environments, ensuring uniform roller wet-edge maintenance to completely eliminate structural overlapping marks or micro-defects.

Regarding application tools, all equipment utilized represented state-of-the-art standards, preventing synthetic fiber shedding from rollers and ensuring solvent-resistant precision edges from specialized hand brushes. Localized heavy-duty masking tapes were structurally deployed along wall perimeters and technical conduits to shield peripheral structural assets from paint splatter. Most notably, all site personnel were fully outfitted in the iconic blue occupational safety uniforms of Chuan A, equipped with rigid protective hardhats, active-carbon organic vapor respirators, and steel-toed safety boots, projecting the ultimate corporate image of professional compliance and safety culture.


IV. CONSTRUCTION TIMELINE ANALYSIS AND SUBSEQUENT PHASE ROADMAP

As of the closing of the May 16, 2026 work shift, the total verified completed workload stands precisely at 30% of the contractual phase 1 zone. This indicates a robust progress vector, safely within the target threshold of the master GANTT chart established with GLOPACO. The most time-intensive phase involving substrate re-engineering and surface flaw eradication has been cleared successfully, paving the way for rapid deployment of final coats.

For the remaining 70% of the contractual volume, Chuan A has architected a precise dual-phase implementation roadmap:

Phase 2 (Scheduled from May 17 to May 19): Conducting comprehensive surface evaluations of the intermediate coat, performing mechanical sanding to ensure mechanical adhesion, extraction of micro-dust, and executing the secondary final pigmented topcoat application. This will elevate cumulative completion metrics to 70%.

Phase 3 (Scheduled from May 20 to May 22): Final dry film thickness validations via Elcometer electromagnetic gauges, high-visibility reflective warehouse line marking in strict compliance with the facility’s technical layout, final heavy-duty industrial cleaning, full chemical curing maintenance, and formal engineering handover protocols to GLOPACO for live operational startup (achieving 100% turnkey completion). The project is currently on track to finish 2 days ahead of the contract deadline.


V. CONCLUSION AND QUALITY COMMITMENT FROM CHUAN A CONTRACTOR

Every square meter of epoxy flooring at the GLOPACO facility stands as a tangible testament to Chuan A's unyielding commitment to long-term structural durability. The meticulous execution of defect-rectifying mastic putty, coupled with flawless roller application techniques under the stringent oversight of Engineer Pham Hoang Son, guarantees a floor matrix that is not only visually striking with its modern industrial green hue but also possesses superior physical-chemical characteristics. It delivers high compressive strength under continuous forklift traffic, outstanding anti-bacterial traits, dust-generation mitigation, chemical spill resilience, and advanced slip resistance for optimal worker safety. Chuan A vows to maintain this exceptional operational velocity, upholding the highest international technical standards to guide this project to a successful completion, maximizing the long-term asset value and operational efficiency for GLOPACO Company.


✍️ SƠ ĐỒ KÝ DUYỆT (SIGN-OFF BLOCK)

ĐẠI DIỆN BAN GIÁM SÁT CHUẨN A(CHUAN A SUPERVISORY BOARD)ĐƠN VỊ THI CÔNG SƠN EPOXY(EPOXY COATING TEAM LEAD)




 

Kỹ sư Phạm Hoàng Sơn


 

(Engineer Pham Hoang Son)




 

Tổ trưởng Kỹ thuật Hiện trường


 

(Lead Coating Technician)

CHUAN'A CONSTRUCTION INVESTMENT JOINT STOCK COMPANY

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  • Email: info@chuana.com.vn
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