Motorlager, chassis Teile und bearbeitete Teile für die Montage Linien.
Hohe-Festigkeit Befestigungen, Fahrwerk Teile, und strukturellen Baugruppen.
Geschmiedete Gehäuse, Rüstung Klammern und mission-kritische strukturelle Teile.
Präzisions-Gehäuse, Antrieb Rahmen und Anker-Verknüpfungen für die Automatisierungstechnik.
Metallrahmen, Halterungen und Baugruppen für Geräte und Ausrüstung zu Hause.
Sammelschienen-Halter, Batterie pack Teile und leichte strukturelle Gehäuse.
Solar Montage Teile, wind turbine Klammern, und Batterie-Gehäuse.
Ventilgehäuse, Flansch Blöcke, und Bohrloch bohren-Komponenten.
Große geschweißte Rahmen, PEB Strukturen und Baugruppen für Industrieanlagen.
Langlebige Transformatoren gebaut für konsistente Leistung, Energie-Effizienz und stabile Leistung-Verordnung.
Fregatte industrial-grade-Gehäuse bietet robusten, anpassbaren Schutz mit effiziente thermische management.
High-performance-Kabel und Leitungen für Haltbarkeit konstruiert und nahtlose Konnektivität zwischen Anwendungen.
Maßgeschneiderte Kabelbäume für sichere verbindungen und optimierte Anlagen.
Precision-engineered sammelschienensystem für die effiziente Energieverteilung und minimale Energieverluste.
Robuste Anschlüsse konzipiert für die sichere Verriegelung, zuverlässige Leitfähigkeit und lange-term performance.
Vielfältige Lösungen für die Automobil -, Elektro -, Maschinenbau-und Industriebedarf mit Präzisions-Komponenten.
CNC-Bearbeitung, liefert Mikron Präzision und engen Toleranzen für komplexe Geometrien.
Fregatte CNC Bearbeitung bietet hochpräzise, kundenspezifische Lösungen für komplexe casting Geometrien. Multi-Achsen-Funktionen sorgen für festen Toleranzen und optimale Oberflächen.
Sheet metal fabrication verwendet laser schneiden, Stanzen und biegen für Präzision.
Fregatte Sheet Metal Fabrication nutzt erweiterte laser schneiden und Abkantpresse-Technologie für kundenspezifische casting-Anwendungen. Engen Toleranzen, superior Schweißnähte, und hochfeste Materialien stellen die strukturelle Integrität.
Spritzguss fertigt hochpräzise Teile mit gleich bleibender Qualität.
Fregatte Injection Molding liefert custom-engineered Teile mit Mikrometer-Präzision und strukturelle Integrität. Spezielle Formen pflegen enge Toleranzen für komplexe Geometrien und hohe-stress-Anwendungen.
Feinguss sorgt genauehohe-Qualität Teile.
Schmieden Dienstleistungen, die Verbesserung der materiellen Stärke mit präzise Toleranzen.
Fregatte Casting Services bietet kundenspezifische casting mit engen Toleranzen und komplexen Geometrien. Wir verbessern die material Eigenschaften, die mit Fortgeschrittener Metallurgie, Gewährleistung Festigkeit und tragen Widerstand. Unsere Präzisions-Methoden unterstützen die Hochleistungs-Luft-und Raumfahrt -, Automobil-und industrielle Anwendungen.
Ende-zu-Ende Teil der Produktion aus Proben zu liefern bulk.
Ready-to-use assemblies gebaut, um genaue fit und Funktion.
Heavy-duty Herstellung mit high-Festigkeit Materialien für anspruchsvolle Anwendungen. Robust Schweißen für maximale strukturelle Haltbarkeit.
System designers often face challenges with pressure loss across filtration components. Strainer valves are designed using CFD-validated geometries that promote streamlined fluid movement and minimize turbulence. Pressure drop values are maintained within ≤5% of system line pressure, depending on micron retention levels. Flow coefficients (Cv/Kv) are optimized based on Reynolds number-specific ranges, allowing integration without recalibration of process control loops.
Applications involving aggressive media—such as chlorinated solvents, caustic alkalis, or high-temperature hydrocarbons—require strainer components constructed from NACE-compliant alloys. Selection includes 316L, Duplex 2205, Inconel, and Hastelloy C variants depending on chloride content, fluid pH, and temperature envelope. Wetted surfaces are passivated or coated as per ASTM A967 or equivalent to prevent microstructural degradation over time. Mechanical seals, gaskets, and fasteners are specified according to elastomer compatibility and thermal cycling tolerance.
Strainer valves are equipped with mesh inserts fabricated using sintered wire cloth or wedge wire technology with precision ratings from 10 microns to 3 mm, allowing selection based on upstream fluid loading and expected particulate size distribution. Back-flushable or drainable designs are offered for high-frequency service intervals. Designs support mean time to maintenance (MTTM) of less than 20 minutes with top-access or quick-release bolting mechanisms, contributing to reduced scheduled downtime in automated or remote pipeline environments.
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Isolates catalyst dust, polymer residues, and process byproducts from corrosive media to prevent clogging of precision flow control devices.
Screens micro particulates from purified water and solvent streams to protect sanitary valves, diaphragm pumps, and instrumentation sensors.
Captures biological matter, silt, and scale from intake and RO feed lines to prevent membrane fouling and pump impeller damage.
Removes undissolved solids and processing residues from CIP circuits and syrup transfer lines to protect hygienic equipment and flow meters.
Filters bark particles, fiber slurries, and chemical residues to protect high-capacity circulation pumps and steam line valves.
Extracts seaweed, sand, and marine growth from seawater cooling and ballast lines to prevent heat exchanger fouling and valve blockage.
All valves undergo 100% hydrostatic testing at 1.5x design pressure and pneumatic seat leakage testing as per API 598 or EN 12266-1 (Leakage Rate A). Welded components are subjected to NDT techniques such as RT, UT, or DPI based on project-specific ITPs. Certification packages include EN 10204 3.1 MTCs, PMI reports, dimensional inspection records, and pressure test charts. Units intended for sour gas environments are validated against NACE MR0175/ISO 15156 with hardness controls applied during heat treatment and machining stages.
Units are manufactured in multiple geometries including Y-pattern for horizontal installations with minimal footprint, T-type for bidirectional use, and basket-type for high-capacity vertical lines. Pressure class options cover ANSI 150 to 2500, DIN PN10 to PN160, and API 600 configurations. End connections are available in RF, RTJ, NPT, BSPT, or BW/SW formats with dimensional tolerances conforming to ASME B16.5 and B16.25. All face-to-face and centerline measurements are compliant with international standards such as ISO 5752 or API 594.
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Frigate uses multi-layer sintered wire mesh with reinforced edge welding to handle high differential pressures without deformation. The mesh is mechanically locked inside the housing to prevent bypass. Each unit is tested under simulated flow pressure conditions up to 1.5× rated value. This ensures long-term retention efficiency even in pulsating or surge-prone systems.
Frigate applies TIG or orbital welding on stainless steel bodies to achieve full-penetration, low-defect joints. Weld seams are stress-relieved and subjected to radiographic or ultrasonic inspection as per project ITP. This prevents crack initiation under thermal fatigue or pressure cycling. All welds conform to ASME Section IX and meet NACE hardness limits if required.
Frigate uses custom-calculated mesh open area ratios and oversized body chambers to prevent excessive pressure drop. Flow simulations using CFD help validate pressure profile and particulate deposition zones. For highly viscous fluids, wedge wire inserts are preferred due to easier flow path maintenance. This design avoids clogging and ensures steady flow even at low velocities.
Material selection is based on process fluid chemistry, temperature, and chloride content. Frigate provides Duplex, Super Duplex, Inconel, and Hastelloy options depending on corrosion index calculations. All wetted parts undergo PMI and optional ferrite content validation. Coatings or passivation are applied based on media compatibility and site specifications.
Yes, Frigate offers basket-type and custom inline strainers with vertical flow orientation and compact body design. CAD modeling ensures proper clearances for removal and servicing. Flow dynamics are validated to avoid dead zones and sediment re-entrainment. These configurations are ideal for skid-mounted or modular systems with height restrictions.
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10-A, First Floor, V. V Komplex, Prakash Nagar, Thiruverumbur, Trichy-620013, Tamil Nadu, Indien.
9/1, Poonthottam Nagar, Ramanandha Nagar, Saravanampatti Coimbatore-641035, Tamil Nadu, Indien. ㅤ
FREGATTE ist eine B2B-produzierende Unternehmen, die es erleichtert, Neue Produkt Entwicklung, Auftragsfertigung, parallel-Fertigung, und mehr, und nutzt seine umfangreichen partner-Netzwerke.
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Need reliable Machining for your next project? Get in touch with us today, and we’ll help you find exactly what you need!