Michigan News Updates

Application of hydraulic rising column in airport

 Breaking News
  • No posts were found

Application of hydraulic rising column in airport

July 24
23:23 2026

Because the airport is a busy transportation hub, it guarantees the take-off and landing of various flights, and there will be crossings for vehicles to enter and exit in various areas of the airport. Therefore, hydraulic lifting columns play a very important role in the airport. The operator can control the lift by means of electric, remote control or card swiping, which can effectively prevent the entry of vehicles from outside units and the intrusion of ille

Hydraulic rising bollards are a proven, flexible solution for controlling vehicle access at busy airports. They provide a strong physical barrier when raised and a quick, controlled opening when authorised vehicles or emergency services need to pass.

Why airports use hydraulic lifting columns

Airports use hydraulic lifting columns because they combine robust physical protection with rapid, remote, controlled access for authorised traffic. Airports have many vehicle crossings—service roads, fire lanes, terminal forecourts—and lifting columns allow operators to block or permit vehicle movement exactly where and when it is needed.

  • They stop unauthorised vehicles while permitting staff, emergency responders, and service vehicles.
  • They integrate with remote controls and automated access systems for selective entry.
  • They lower quickly during emergencies to maintain operational continuity.

How hydraulic lifting columns work

Hydraulic lifting columns operate by moving a solid steel column up and down inside a recessed pit using a hydraulic actuator or motor-driven mechanism. Controls can be local (pushbutton), remote (radio or networked control), or tied to access systems such as card readers and vehicle detectors.

  • Normal state: raised to prevent vehicle entry.
  • Release state: lowered quickly to allow authorized vehicles to pass.
  • Safety: integrated sensors, obstacle detection, and fail-safe lowering ensure predictable behaviour.

Main components and construction

Each section below names the component and states its core purpose.

Column body

The column body is the visible steel element that forms the vehicular barrier. It is typically made from heavy‑gauge A3 carbon steel with a thermoset powder coat or from stainless steel (304/316) for high‑corrosion environments.

Structural shell

The structural shell is a steel frame and plate assembly that supports the column and houses the pit. It is treated against corrosion and engineered for alignment and anchor interfaces.

Internal lifting frame

The internal lifting frame guides the column and ensures smooth, repeatable motion during deployment and retraction, reducing wear on seals and bearings.

Integrated flanges and castings

One‑piece cast upper and lower flanges improve impact resistance and anti‑destructive performance, increasing the system’s ability to withstand collisions.

Operation modes and emergency response

Rising bollards are operated in supervised and unsupervised modes depending on location and security needs. In supervised zones, an operator grants entry; in automated lanes, integration with access control systems handles authorisation.

  • Emergency lowering: bollards can be rapidly lowered for first responders using priority controls.
  • Manual backup: mechanical or hydraulic manual override exists in case of power failure.
  • Diagnostics: modern systems provide status telemetry, error logs, and remote alerts.

Materials, finishes and site selection

Choose materials and finishes to match the airport environment and lifetime cost objectives. Stainless steel or powder‑coated carbon steel are common choices.

  • Coastal or high‑corrosion sites: specify 316L stainless steel and increased service intervals.
  • High‑impact or vehicle‑stop applications: ensure flanges and casting are rated for the expected impact class.
  • Aesthetic areas: polished or matte stainless finishes can match terminal design while remaining maintainable.

Maintenance and testing best practices

Regular maintenance keeps lifting columns reliable and ready for both security and emergency use. A quarterly service cadence is a good baseline for most airport installations, with increased frequency for coastal or high‑traffic zones.

  • Daily/weekly: visual checks of seals, sensors and evidence of debris in the pit for high‑exposure locations.
  • Monthly: clean the pit, confirm drainage, and exercise the bollard several cycles under observation.
  • Quarterly: inspect hydraulic fluid, seals, electrical enclosures, and sensor operation; test fail‑safe functions.
  • Annually: full mechanical service, component replacement as recommended, and a written condition report.

Include a maintenance log and photographic records as part of service contracts to provide traceability and to support lifecycle planning.

Security integration and access control

Hydraulic lifting columns are most effective when integrated into the airport’s broader access control and security systems. Linkage options include card readers, ANPR (automatic number plate recognition), barrier interlocks, and the airport operations center (AOC).

  • Interlocks: combine bollards with gates and barriers to avoid conflicting movements.
  • Access rules: tiered permissions for staff, emergency services, contractors and deliveries.
  • Monitoring: telemetry and CCTV tie into the security operations center for situational awareness.

FAQ

Q: Are hydraulic lifting columns safe for emergency vehicles?A: Yes — systems are designed to lower quickly for authorised emergency vehicles and have fail‑safe and manual override options to guarantee access when needed.

Q: How fast can a bollard be lowered in an emergency?A: Typical lowering times are 2–6 seconds depending on model and column height; site‑specific options can achieve faster response where required.

Q: Do these systems need special foundations?A: Yes — the pit and foundation must be engineered for local soil, impact requirements, drainage and service access; manufacturers provide foundation drawings for design coordination.

Media Contact
Company Name: Chengdu Ruisijie Intelligent Technology Co., Ltd.
Email: Send Email
Country: China
Website: https://www.cd-ricj.com/

Categories