Explore our advanced engineered line of micro-mobility systems, commercial bicycle racks, and traffic safety solutions optimized for urban environments.
KAVASS Security Tech Limited is a professional manufacturer focused on traffic safety and perimeter protection solutions, with more than 18 years of industry experience. We specialize in the design, production, and supply of a wide range of products, including parking locks, bollards, bike racks, and other urban infrastructure equipment. By integrating product development, manufacturing, and after-sales support, we provide efficient one-stop solutions tailored to the needs of global clients.
Our production base is equipped with advanced machinery and modern manufacturing processes, supported by a skilled engineering and quality control team. From raw material selection to final inspection, every step is carefully managed to ensure consistent product performance and long-term reliability. This enables us to meet the demands of various applications, from standard products to customized project requirements.
Providing high-precision hardware designed to optimize security, micro-mobility, and utility in modern public sectors.
Fixed, fold-down, telescopic, removable, automatic, and lighting bollards for perimeter security and access control.
Durable and space-saving bicycle parking systems for commercial and residential areas.
Safety barriers, guardrails, and protective equipment for industrial and construction environments.
Benches, bins, and other customized outdoor furniture solutions for public spaces.
Manual, remote-controlled, solar, and IoT smart parking locks for modern parking management.
Strategic analysis of urban planning adaptations, regulatory demands, and sustainable material sciences.
As metropolitan clusters worldwide prioritize green transit corridors, the requirement for multi-functional, heavy-duty micro-mobility parking has surged. Municipalities are transitionally moving away from low-capacity rack placements toward smart, high-density hubs. These structures must accommodate hybrid transport networks, integrating high-capacity double-decker bike racks with electric charging infrastructure for e-bikes and scooters. This evolution demands robust, weather-resistant alloys (such as marine-grade 316 stainless steel or heavy-duty galvanized structural steel) capable of resisting continuous wear, structural loading, and dynamic environmental degradation.
Contemporary public design requires the seamless integration of defensive elements into pedestrian landscapes. Hostile Vehicle Mitigation (HVM) strategies are no longer limited to industrial barriers; they are now embedded within functional street park furniture. Dual-function bollard-bike racks, heavy-duty planters, and architectural seating structures are engineered to satisfy crash-test specifications (ASTM F2656, IWA 14-1) while complementing local aesthetics. These solutions safeguard heavily populated civilian zones without imparting a militaristic feel, creating protective buffers around municipal plazas, public parks, and transit centers.
Modern procurement specialists assess street furniture on a Lifecycle Cost Analysis (LCCA) framework rather than initial capital expenditure alone. High-exposure public infrastructure must withstand constant UV exposure, coastal salinity, chemical de-icing agents, and high-frequency tactile interaction. Utilizing advanced metallurgical surface treatments, such as hot-dip galvanization according to BS EN ISO 1461 and thick-film thermosetting TGIC polyester powder coatings, minimizes maintenance cycles. This prevents early structural oxidation and ensures a design life exceeding 20 years, dramatically lowering the overall cost of ownership for asset managers.
Urban environments are becoming increasingly digitized, turning basic street furniture into data-collecting nodes. Modern parking systems and solar lighting bollards now integrate IoT sensors, smart locks, and sensor-driven solar LEDs. These integrations enable real-time tracking of space occupancy, parking optimization, and remote structural health monitoring. By deploying solar-powered components, cities can reduce grid dependency, align with global decarbonization policies, and collect crucial urban traffic data, turning street furniture into active agents of citywide planning.
Inside KAVASS's dual production centers: Deqing and Zhuji. Custom engineering, high-volume production, and rigorous QA testing.
Operating as our primary center for precision fabrication, our Deqing facility handles heavy-duty carbon steel cutting, laser profile processing, and automated structural welding. Supported by automated powder-coating lines, this facility focuses on standard and high-volume custom production orders.
Factory Floor
Fabrication Area
Precision Machining
Testing Mockups
Inventory & Storage
Our Zhuji production center specializes in assembly, logistics, custom final styling, and quality testing. Housing our clean-room electronics assembly for smart parking locks and solar integrations, this facility handles global shipping preparation and custom projects.
Deqing Dispatch Yard
Container Loading Bay
Helping municipal procurement officers, estate builders, and transit authorities streamline global supply chains.
Procuring architectural hardware for major municipal developments requires structural flexibility. Custom fabrication must support detailed specifications—ranging from precise millimeter alterations in heights and wall thicknesses to custom laser-cut branding. With a strong export network, KAVASS has established long-term cooperation with customers in more than 80 countries and regions, including Europe, the Middle East, Southeast Asia, and North and South America. Our experience in international markets allows us to better understand local standards, project requirements, and customer expectations. We supply full technical submittals, including CAD drawings, 3D renderings, and product samples, ensuring seamless procurement.
Compliance with regional access laws is a critical factor for landscape architects and municipal contractors. Our security equipment meets key standards, including ADA (Americans with Disabilities Act) accessibility guidelines for clear pathway spacing, and European CE marking standards. Our manufacturing processes follow strict quality management guidelines, ensuring weld integrity conforms to EN ISO 3834. This commitment guarantees that every bollard and bicycle rack installed in public spaces passes local structural and environmental inspections.
A closer look at the advanced metallurgical treatments, assembly procedures, and quality testing that define KAVASS infrastructure.
Outdoor equipment must resist dynamic environmental degradation. KAVASS utilizes dual-barrier coatings to protect raw carbon steel. The base metal undergoes hot-dip galvanization at temperatures exceeding 450°C, forming an alloyed zinc-iron layer. This layer provides electrochemical protection to prevent sub-surface oxidation. Following this, a TGIC polyester powder coating is electrostatic-applied and heat-cured, providing a high-impact shell resistant to UV fading, vandalism, and abrasive physical contact.
We are continuing to develop smart parking security and automated traffic access control. KAVASS remote parking locks integrate Bluetooth, Narrowband IoT (NB-IoT), and LoRaWAN networks, allowing automated control via parking management apps. These smart parking locks feature low-energy consumption modules, integrated solar charging panels, and durable physical casings. Designed to withstand heavy structural impact and harsh environmental exposure, they offer reliable, autonomous operation for modern, connected cities.
Addressing B2B procurement, customized engineering, material selections, and shipping logistics.
We primarily utilize high-tensile structural carbon steel (Q235/Q345 grades) for heavy-duty in-ground bollards and parking barriers. For architectural installations and bike racks, we use marine-grade 316 stainless steel or commercial-grade 304 stainless steel, which can be custom finished with fine brushing, electropolishing, or electrostatic powder coating depending on application demands.
Yes. As a direct manufacturer with advanced engineering capabilities, we offer complete OEM and ODM customization. We can alter diameter, wall thickness, locking mechanism configurations, visual striping colors, and laser-cut corporate or municipal branding. Technical submittals, including CAD drawings and engineering calculations, are provided for approval prior to production.
Our hot-dip galvanization process conforms to EN ISO 1461 standards, creating a thick protective zinc layer (typically 55 to 85 microns depending on material thickness). This process creates a metallurgically bonded zinc-iron alloy that protects the steel from both physical damage and environmental exposure. This offers significantly longer outdoor performance compared to standard zinc plating, which only provides a thin cosmetic layer that is easily compromised by weather or impact.
Yes. Our automatic, semi-automatic, and smart parking locks are built to integrate with existing building management systems (BMS), parking garage software, and municipal traffic controllers. They can be controlled via standard dry contact relays, RS485 communication protocols, or custom mobile application APIs via integrated IoT nodes.
Standard product orders are typically manufactured and dispatched within 25 to 35 days. For complex custom fabrications, timeline requirements are determined during the design phase. We export to over 80 countries, providing full shipping support, container loading coordination, and custom documentation to ensure smooth port clearance.
Explore our high-performance parking bollards, solar lighting installations, and heavy-duty storage racks.
Leverage our 18+ years of engineering experience. Whether you are submitting a public bid, designing a commercial development, or looking for a manufacturing partner, our team is here to assist. Contact us today to discuss your project requirements, request a quote, or schedule a technical consultation.
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