SS316L Multilayer Mesh Filter For High-Temperature Corrosive Liquid Filtration
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SS316L Multilayer Mesh Filter For High-Temperature Corrosive Liquid Filtration

SS316L Multilayer Mesh Filter For High-Temperature Corrosive Liquid Filtration

Unmatched Structural Integrity from Metallurgical Bonding.

Absolute Filtration Precision with Pore Stability.

Superior Chemical Resistance for Harsh Corrosive Media.

Exceptional Thermal Stability for High-Temperature Processes.

Excellent Cleanability and Full Performance Regeneration.

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Product Introduction
 

Products Introduction

 

 

 

 

 

TOPTITECH's SS316L Multilayer Mesh Filter for High-Temperature Corrosive Liquid Filtration delivers exceptional performance in aggressive process environments. Its construction employs a vacuum sintering process that creates monolithic metallurgical diffusion bonds throughout multiple wire mesh layers. This fusion eliminates internal media migration, guaranteeing absolute fluid integrity. The sintered laminate exhibits superior mechanical strength, maintaining precise pore rating stability under significant pressure differentials and thermal cycling. The inherent properties of the SS316L stainless steel provide outstanding resistance to a wide spectrum of corrosive chemicals, making this filter an ideal choice for demanding industrial applications.

SS316L Multilayer Mesh Filter for High-Temperature Corrosive Liquid Filtration 3

 

 

SS316L Multilayer Mesh Filter for High-Temperature Corrosive Liquid Filtration ensures long-term operational reliability and consistent filtration efficiency. The rigid, porous matrix excels in deep-loading contaminants, offering a high dirt-holding capacity that extends service intervals. Its structural integrity permits repeated cleaning cycles via back-pulsing or ultrasonic methods, enabling full performance restoration for cost-effective reuse.

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Products Specifications

 

 

 

  • Material: SS316L
  • Pore size: 100um
  • Length: 220mm
  • Diameter: 48.3mm
  • Wall thickness: 1.7-2.0mm
  • Technique: Sintering
SS316L Multilayer Mesh Filter for High-Temperature Corrosive Liquid Filtration

 

 

Product Features

 

 

SS316L Multilayer Mesh Filter for High-Temperature Corrosive Liquid Filtration 1

Unmatched Structural Integrity from Metallurgical Bonding.

The filter's core strength originates from its vacuum furnace sintering process. This creates robust metallurgical diffusion bonds at every wire intersection across its multilayer laminate. The result is a monolithic, one-piece construction that resorts delamination and media migration, guaranteeing fluid integrity and withstanding significant pressure surges and mechanical shock.

 

Absolute Filtration Precision with Pore Stability.

 

Unlike simple woven wires that shift under load, our sintered mesh possesses a permanently locked pore structure. The rigid matrix maintains exact pore geometry and filtration rating consistently, even when subjected to high differential pressures and aggressive flow cycling. This ensures predictable and reliable particle removal throughout the filter's entire service life.

 

Superior Chemical Resistance for Harsh Corrosive Media.

Constructed from high-purity SS316L stainless steel, the filter exhibits exceptional resistance to a wide spectrum of corrosive chemicals. Its passive surface layer provides inherent protection against pitting and chloride stress corrosion cracking, making it an ideal long-term solution for processing aggressive acids, caustics, and solvents.

 

Exceptional Thermal Stability for High-Temperature Processes.

The filter retains its mechanical properties and dimensional stability at sustained elevated temperatures. The all-metal construction and sintered bonds do not degrade, allowing for reliable operation in hot fluids, thermal oils, or superheated steam environments where polymer-based filters would fail.

SS316L Multilayer Mesh Filter for High-Temperature Corrosive Liquid Filtration 5
SS316L Multilayer Mesh Filter for High-Temperature Corrosive Liquid Filtration 4

High Dirt Holding Capacity Through Deep-Bed Filtration.

The filter's multiple layers form a sophisticated three-dimensional network for depth filtration. This structure allows for the progressive capture and retention of contaminants throughout its cross-section, not just on the surface. This deep-loading capability provides a high dirt-holding capacity, which significantly extends service cycles and reduces operational downtime.

 

Excellent Cleanability and Full Performance Regeneration.

The filter's rigid and robust sintered structure can endure rigorous cleaning protocols. It is fully compatible with high-pressure back-pulsing, ultrasonic cleaning, and chemical rinsing. These methods effectively dislodge captured contaminants, restoring the filter's permeability and differential pressure to near-original levels for repeated reuse, offering outstanding long-term economy.

Proven Material Versatility and Custom Alloy Compatibility.

While SS316L is the standard, our sintering technology is compatible with a range of performance alloys such as Hastelloy, Monel, and Inconel. This allows for precise material selection to match specific process fluid compatibilities, ensuring optimal corrosion resistance and longevity in even the most unique and challenging operating environments.

SS316L Multilayer Mesh Filter for High-Temperature Corrosive Liquid Filtration 6

 

 

 

Product Applications in High-Temperature Corrosive Liquid Filtration

 
  • Catalyst Recovery and Purification in Continuous Chemical Processes.

In large-scale chemical production, such as petrochemical cracking or polymer synthesis, the filter ensures continuous catalyst recovery from aggressive process streams. It operates reliably within hot solvent and monomer slurries, protecting downstream equipment like pumps and reactors from abrasive catalyst fines and maintaining high product purity.

  • Hot Acid and Caustic Filtration in Metal Finishing and Surface Treatment.

The filter is deployed for clarifying concentrated pickling acids and hot caustic cleaning solutions. It effectively removes suspended oxides, scale, and other solid contaminants, thereby extending bath life and ensuring uniform surface treatment quality on metal alloys without introducing particulate contamination.

  • Polymer Melt Filtration prior to Spinning and Extrusion.

During the production of synthetic fibers and engineering plastics, the filter provides final-stage protection for spinnerets and extrusion dies. It withstands the high viscosity and elevated temperature of polymer melts, removing gel particles and carbonized deposits that would otherwise cause filament breaks and compromise product integrity. 

 

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  • Process Condensate and Glycol Filtration in Natural Gas Dehydration.

Within gas processing plants, the filter cleans triethylene glycol and process condensates, which are often hot and contain corrosive elements like chlorides. Its robust construction prevents media migration, ensuring the purity of the regenerated glycol and protecting the dehydration column's internals from fouling.

  • Quench Oil and Heat Transfer Fluid Clarification.

The filter maintains the clarity and thermal efficiency of hot heat transfer oils and quench baths in metallurgical and manufacturing processes. It continuously removes carbonaceous sludge and particulate matter, preventing fouling of heaters and heat exchangers while ensuring consistent cooling rates and product metallurgy.

  • Pre-Filtration for Critical Ion Exchange Resin Beds.

In high-value hydrometallurgy and chemical purification circuits, the filter acts as a guard unit. It removes fine suspended solids from hot, corrosive pregnant leach solutions or process liquors, preventing premature fouling and physical degradation of the sensitive and expensive ion exchange resin.

 

 

Contact Us

 

 

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Tel: 0917-3873009

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Phone: +86 18992731201

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Email: zhangjixia@bjygti.com

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Fax: 0917-3873009

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Address: No. 195, Gaoxin Avenue, High-tech Development Zone, Baoji City, Shaanxi, China

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Whatsapp: +86 18992731201

 

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