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Dry Anti-seepage Material

Application Industry: Refractories for Nonferrous Metal Industry

Application Equipment: Nonferrous Metal Electrolytic Cell Cathode Block

Size: Custom dry anti-seepage material geometry per nonferrous metal electrolytic cell design (free engineering on request)

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Products Overview

Our Dry Anti-seepage Material is a high-performance refractory product engineered for nonferrous metal electrolytic cell cathode block service. The dry anti-seepage material has the features of simple construction, good thermal insulation effect, and strong anti-permeability. Its working principle is to react with alkali ions in materials and metal liquids at high temperature, form isolation layer on the surface, prevent sodium salt from infiltrating into cathode block. The medium is infiltrated and protects the cathode block, thereby prolonging the service life of the electrolytic cell and reducing power consumption.

The Dry Anti-seepage Material product family is offered in one engineering-proven TSL chemistry grade. The TSL grade features Al2O3 content maximum 40% for nonferrous metal electrolytic cell cathode block service, with Tamp Volume Weight 1.9±0.1 g/cm3, Refractoriness minimum 1600 °C, Thermal Conductivity maximum 0.35 W/m.k at 350 °C, and Thermal Conductivity maximum 0.43 W/m.k at 650 °C. The product family has the features of simple construction, good thermal insulation effect, and strong anti-permeability for nonferrous metal electrolytic cell cathode block service, with stable quality and good engineering performance.

Sourced from our Xinmi City, Zhengzhou, Henan, China facility, the Dry Anti-seepage Material product family is engineered to ASTM, GB/T, and ISO refractory standards. For an overview of the broader catalogue, see the Refractories for Nonferrous Metal Industry category, or contact our technical sales team for a free consultation against your refractory drawing.

Product Features

Features:

  1. Dry anti-seepage material with simple construction, good thermal insulation effect, and strong anti-permeability
  2. Engineering-proven reacts with alkali ions in materials and metal liquids at high temperature to form isolation layer on the surface
  3. Prevents sodium salt from infiltrating into the cathode block, thereby prolonging the service life of the electrolytic cell and reducing power consumption
  4. One TSL grade covering Al2O3 content maximum 40% with tamp volume weight 1.9±0.1 g/cm3 for nonferrous metal electrolytic cell service
  5. Refractoriness minimum 1600 °C and low Thermal Conductivity maximum 0.35 to 0.43 W/m.k for thermal insulation and anti-seepage service

Product Specification

Features: dry anti-seepage material, with simple construction, good thermal insulation effect and strong anti-permeability. Its working principle is to react alkali ions in materials and metal liquids at high temperature, form isolation layer on the surface, prevent sodium salt from going to cathode block. The medium is infiltrated and protects the cathode block, thereby prolonging the service life of the electrolytic cell and reducing power consumption.

Items TSL (Standard)
Al2O3 (%) ≤ 40
Tamp volume weight (g/cm³) 1.9 ± 0.1
Refractoriness (°C) ≥ 1600
Thermal Conductivity (W/m.k) ≤ (350°C) 0.35
Thermal Conductivity (W/m.k) ≤ (650°C) 0.43

Note: Five performance parameters specified: Al2O3 content, Tamp volume weight, Refractoriness, and Thermal Conductivity. One TSL chemistry grade engineered for nonferrous metal electrolytic cell cathode block service. For project-specific chemistry and geometry, contact CH Refractories engineering.

Product Applications

Dry Anti-seepage Material is a high-performance refractory product engineered for nonferrous metal electrolytic cell cathode block service. The dry anti-seepage material has the features of simple construction, good thermal insulation effect, and strong anti-permeability. Its working principle is to react with alkali ions in materials and metal liquids at high temperature, form isolation layer on the surface, prevent sodium salt from infiltrating into cathode block. The medium is infiltrated and protects the cathode block, thereby prolonging the service life of the electrolytic cell and reducing power consumption.

Application Industry: Refractories for Nonferrous Metal Industry.

Target Equipment: Nonferrous Metal Electrolytic Cell Cathode Block of small, medium-size, and large nonferrous metal electrolytic cells in metallurgical operations.

Specific Application Zones: The TSL grade is engineered for nonferrous metal electrolytic cell cathode block service, with Al2O3 content maximum 40% and Refractoriness minimum 1600 °C. The grade delivers Tamp Volume Weight 1.9±0.1 g/cm3 for stable tamping installation, and low Thermal Conductivity maximum 0.35 to 0.43 W/m.k at 350 to 650 °C for thermal insulation service. The product family forms an isolation layer on the surface at high temperature, preventing sodium salt from infiltrating into the cathode block, thereby prolonging the service life of the electrolytic cell and reducing power consumption.

CH Refractories is a Dry Anti-seepage Material manufacturer in China, Henan, Zhengzhou. The complete Dry Anti-seepage Material product family is manufactured in our Xinmi City, Zhengzhou, Henan, China facility to ASTM, GB/T, and ISO refractory standards. Each batch is supported by free consultation, on-site technical support, and a dedicated engineering team serving Refractories for Nonferrous Metal Industry customers across the global nonferrous metal value chain.

Product FAQ

A1: Dry Anti-seepage Material is a high-performance refractory product engineered for nonferrous metal electrolytic cell cathode block service. The dry anti-seepage material has the features of simple construction, good thermal insulation effect, and strong anti-permeability. Its working principle is to react with alkali ions in materials and metal liquids at high temperature, form isolation layer on the surface, prevent sodium salt from infiltrating into cathode block. The medium is infiltrated and protects the cathode block, thereby prolonging the service life of the electrolytic cell and reducing power consumption.

A2: CH Refractories offers one engineering-proven TSL chemistry grade of Dry Anti-seepage Material. The TSL grade features Al2O3 content maximum 40% for nonferrous metal electrolytic cell cathode block service, with Tamp Volume Weight 1.9±0.1 g/cm3, Refractoriness minimum 1600 °C, Thermal Conductivity maximum 0.35 W/m.k at 350 °C, and Thermal Conductivity maximum 0.43 W/m.k at 650 °C. The grade has simple construction, good thermal insulation effect, and strong anti-permeability for nonferrous metal electrolytic cell cathode block service.

A3: Dry Anti-seepage Material delivers Tamp Volume Weight 1.9±0.1 g/cm3. Refractoriness is minimum 1600 °C. Thermal Conductivity is maximum 0.35 W/m.k at 350 °C and maximum 0.43 W/m.k at 650 °C. The product family has simple construction, good thermal insulation effect, and strong anti-permeability for nonferrous metal electrolytic cell cathode block service, forming an isolation layer on the surface at high temperature to prevent sodium salt from infiltrating into the cathode block.

A4: Yes. CH Refractories offers custom chemistry, grade, and geometry optimization against the buyer's specific nonferrous metal electrolytic cell cathode block design and operating conditions. CH Refractories engineers can adjust Al2O3 content, raw material formulation, and tamping process to meet specific nonferrous metal electrolytic cell service temperature and anti-seepage conditions. Please send the nonferrous metal electrolytic cell drawing, cathode block design, cell capacity, and operating temperature data to our engineering team in Xinmi City, Zhengzhou, Henan, China for a free consultation, on-site technical support, and a tailored dry anti-seepage material formulation proposal with optimized grade selection, raw material adjustment, and installation procedure for your specific nonferrous metal electrolytic cell service conditions.

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