Compressor platforms are steel structural systems used to position compressors, dryers, air receivers and auxiliary equipment safely at a defined elevation in factories and industrial facilities. They carry equipment loads securely, organize maintenance access and support controlled planning of compressed-air and drainage routes.
Each system is engineered specifically according to equipment weight, installation elevation, service clearances, floor or foundation capacity, vibration effects, piping and drainage penetrations, ventilation requirements and operating environment.
A compressor platform is a steel supporting system that carries compressors and related auxiliary equipment on columns, primary beams, secondary beams, bracing and deck elements while providing controlled maintenance access.
Depending on project requirements, the system may include:
Supporting sections, connections and anchors are sized according to the total compressor and auxiliary-equipment load.
Stairs, guardrails, service clearances and passage areas create a defined working zone for maintenance personnel.
Raising equipment above floor level provides additional protection against water, moisture, dirt and surface effects.
A rigid supporting structure, equipment-fixing points and vibration mounts help transfer operating effects in a controlled manner.
Compressed-air piping, condensate drainage and service penetrations can be integrated into the platform design.
The platform can be extended or fitted with additional modules when new compressors, dryers, air receivers or auxiliary equipment are introduced.
Prepared in compact dimensions to support one compressor and provide service access.
Allow multiple compressors and auxiliary equipment to be positioned on a shared supporting system.
Create guarded working areas for periodic inspection, connections and maintenance around compressors.
Manufactured with stairs, landings and guardrails for safe access to equipment at different elevations.
Prepared with galvanizing or suitable protective coatings against rain, humidity and corrosion.
Developed for high loads, large spans, confined spaces, different elevations or integration with existing buildings.
Each project is evaluated individually according to equipment load, site geometry and maintenance scenario.
Compressor type, dimensions, total weight, installation elevation, floor or foundation structure, piping-drainage routes and access conditions are evaluated.
Platform dimensions, structural system, service clearances, stairs, guardrails, piping penetrations and equipment-fixing points are determined.
Steel profiles, sheets, gratings, base plates, guardrails and connection components are cut, drilled, machined and assembled according to technical drawings.
Blasting, primer, electrostatic powder coating, wet paint or hot-dip galvanizing is applied. Dimensions, welds, holes and installation compatibility are inspected.
Platform modules are delivered; anchoring, alignment, bolted connections, stairs, guardrails and deck installation are completed.
Structural stability, access components, equipment-fixing points, piping-drainage penetrations and overall site compatibility are checked before handover.
Existing platforms may require modification because of corrosion, insufficient capacity, poor access, damaged connections or new equipment layouts.
Following a technical inspection, the following works may be carried out:
Material and surface treatment are selected according to load capacity, outdoor exposure and corrosion conditions.
Provide high strength and cost-effective production for primary structural systems.
Can be used on service surfaces for drainage, airflow and slip resistance.
Can be considered for projects requiring chemical resistance, hygiene or high corrosion protection.
Provide durable surfaces for indoor applications or projects requiring corporate colors.
Provides long-term protection in outdoor, humid and highly corrosive environments.
Anchors, bolted connections, guardrails, gates, stairs, vibration mounts and equipment-fixing plates are selected according to the project.
Projects are not limited to standard platform dimensions; they are prepared according to actual equipment loads, facility geometry, maintenance access, piping-drainage layout, foundation conditions and environmental effects.
Site survey, technical design, steel fabrication, surface treatment and site installation are managed within a single process. Reinforcement, extension and access modifications can also be carried out on existing platforms.
No. Platform dimensions are determined according to equipment weight, service clearances, installation elevation and site conditions.
Yes. Primary supporting sections, columns, bracing and anchoring details are reinforced according to load information.
Yes. Following technical assessment, the platform can be reinforced, extended or fitted with new modules.
Yes. Hot-dip galvanizing or project-specific protective coating systems can be applied.
Yes. Fixed stairs, service stairs, landings, guardrails and controlled access gates can be integrated.
Connection of the steel platform to the equipotential bonding and earthing system should be planned according to the electrical design and installation requirements.
Technical assessment and project engineering can be provided for a platform system suited to compressor weight, installation elevation, maintenance requirements and facility conditions.
You can request a quotation for a new platform, reinforcement of an existing system or access and capacity modification by sharing your project information.