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Plates and Gaskets for Plate Heat Exchangers

Plates and Gaskets for Plate Heat Exchangers

एमओक्यू: 1
कीमत: बातचीत योग्य
मानक पैकेजिंग: लकड़ी का बक्सा
वितरण अवधि: 5-8 कार्य दिवस
भुगतान विधि: एल/सी, डी/ए, डी/पी, टी/टी, वेस्टर्न यूनियन
आपूर्ति क्षमता: 100
विस्तृत जानकारी
उत्पत्ति के प्लेस
चीन
ब्रांड नाम
Botai
मॉडल संख्या
टीएस6-एल
प्रसव के समय:
10 कार्य दिवस
ओरिजियो:
तियान जिन, चीन
उत्पादन क्षमता:
100000 टुकड़े/वर्ष
डिजाइन दबाव:
2.2 मी/पीए
सामग्री का प्रकार:
SS304/SS316L
प्रमुखता देना:

plate heat exchanger gaskets

,

heat exchanger replacement plates

,

industrial heat exchanger plates

उत्पाद का वर्णन
Plates and Gaskets for Plate Heat Exchangers
TS6-L plates and gaskets are essential components of plate heat exchangers, working together to ensure stable operation through two core functions:
Medium Isolation
Physical separation of plates combined with precise gasket sealing prevents cross-flow between hot and cold media, eliminating equipment failures and process contamination.
Efficient Heat Exchange
Special structural design enhances heat transfer efficiency, enabling precise temperature regulation by cooling hot media and heating cold media.
TS6-L plate heat exchanger plates and gaskets assembly
Plate Specifications and Characteristics
Composition and Structure
Each TS6-L plate consists of metal plate and sealing gasket components with complementary functions:
Component Structural Design Core Functions and Advantages
Metal Plate Thin metal sheets with corrugations, sealing grooves, and corner holes via mold stamping
  • Heat Transfer Enhancement: Corrugated structure expands contact area and improves heat transfer coefficient
  • Structural Reinforcement: Increases rigidity and pressure-bearing capacity
  • Self-Cleaning: Turbulent flow reduces sediment accumulation
  • Flow Channel Distribution: Corner holes and sealing grooves create dedicated fluid paths
Sealing Gasket Custom-sized polymer gasket installed in plate groove
  • Sealing and Leakage Prevention: Fills plate gaps to prevent fluid leakage
  • Flow Channel Partitioning: Seals corner holes to eliminate cross-flow risk
TS6-L plate detailed structural view showing corrugations and sealing grooves
Material Selection for Plates
TS6-L metal plates are available in various corrosion-resistant materials for different industrial applications:
Stainless Steel Series
  • 304/304L: General-purpose corrosion resistance for neutral media like water and air
  • 316/316L: Superior acid and alkali resistance for chemical and food processing
  • 254SMO: High-corrosion resistance for salt solutions and acidic wastewater
Special Alloy Series
  • Titanium: Excellent corrosion resistance for seawater desalination and marine engineering
  • Nickel: High-temperature and alkali resistance for caustic soda solutions
  • Titanium-Palladium Alloy: Superior corrosion resistance for high-concentration strong acids
  • Hastelloy: Resistant to extreme corrosive media for demanding industrial applications
Plate Manufacturing Process
TS6-L plates utilize one-time mold stamping forming with significant advantages:
  • Ensures dimensional accuracy and structural consistency across all plates
  • Enables uniform metal point contact for improved sealing stability
  • Provides stable operation under high pressure and pressure shock conditions
Sealing Gasket Technical Parameters
Gasket Composition
TS6-L sealing gaskets are complex polymer composite systems with optimized components:
Component Type Core Function Performance Impact
Rubber Polymer Base gasket material Determines basic elasticity, temperature resistance, and corrosion resistance
Vulcanizing Agent Crosslinks rubber molecules Enhances strength, hardness, and anti-aging properties
Filler Optimizes physical properties Improves wear resistance and pressure resistance while reducing costs
Anti-Aging Agent Slows aging rate Extends service life and reduces oxidation degradation
Processing Aid Improves manufacturing process Optimizes mixing, extrusion, and molding processes
Diluent Adjusts rubber compound viscosity Facilitates precise gasket forming and plate groove matching
Rubber Material Performance Comparison
Rubber Type Chemical Composition Core Performance Advantages Applicable Scenarios
Natural Rubber Extracted from Hevea brasiliensis latex Excellent elasticity, high mechanical strength, good wear resistance Normal temperature, low pressure, neutral media (civil HVAC systems)
Isoprene Rubber Polymerized from isoprene Performance similar to natural rubber with stable supply General conditions requiring stable supply and natural rubber performance
Styrene-Butadiene Rubber (SBR) Copolymer of butadiene and styrene Good aging resistance, better wear resistance, low cost General industrial sealing for non-strongly corrosive media
cis-Polybutadiene Rubber (BR) Polymerized from butadiene Excellent cold resistance, wear resistance, elasticity, and aging resistance Low-temperature environments and high dynamic load conditions
Sealing gasket material comparison and performance characteristics
Recommended Application Scenarios
TS6-L plates and gaskets adapt to various industrial heat exchange requirements:
Chemical Industry
Temperature regulation of acid-alkali solutions and chemical raw materials. Recommended: 316L, titanium alloy, or Hastelloy plates with corrosion-resistant gaskets.
Food and Beverage Industry
Sterilization, cooling, and preheating processes. Recommended: 304 stainless steel plates with food-grade rubber gaskets.
Water Treatment Industry
Seawater desalination and industrial wastewater treatment. Recommended: Titanium or 254SMO plates resistant to seawater/sewage corrosion.
HVAC Industry
Building heating and central air conditioning systems. Recommended: 304 stainless steel plates with standard temperature-resistant gaskets.
Low-Temperature Industrial
Heat exchange of chilled water and low-temperature fluids. Recommended: cis-polybutadiene rubber gaskets for low-temperature elasticity.
TS6-L plate heat exchanger industrial application scenarios
उत्पादों
उत्पादों का विवरण
Plates and Gaskets for Plate Heat Exchangers
एमओक्यू: 1
कीमत: बातचीत योग्य
मानक पैकेजिंग: लकड़ी का बक्सा
वितरण अवधि: 5-8 कार्य दिवस
भुगतान विधि: एल/सी, डी/ए, डी/पी, टी/टी, वेस्टर्न यूनियन
आपूर्ति क्षमता: 100
विस्तृत जानकारी
उत्पत्ति के प्लेस
चीन
ब्रांड नाम
Botai
मॉडल संख्या
टीएस6-एल
प्रसव के समय:
10 कार्य दिवस
ओरिजियो:
तियान जिन, चीन
उत्पादन क्षमता:
100000 टुकड़े/वर्ष
डिजाइन दबाव:
2.2 मी/पीए
सामग्री का प्रकार:
SS304/SS316L
न्यूनतम आदेश मात्रा:
1
मूल्य:
बातचीत योग्य
पैकेजिंग विवरण:
लकड़ी का बक्सा
प्रसव के समय:
5-8 कार्य दिवस
भुगतान शर्तें:
एल/सी, डी/ए, डी/पी, टी/टी, वेस्टर्न यूनियन
आपूर्ति की क्षमता:
100
प्रमुखता देना

plate heat exchanger gaskets

,

heat exchanger replacement plates

,

industrial heat exchanger plates

उत्पाद का वर्णन
Plates and Gaskets for Plate Heat Exchangers
TS6-L plates and gaskets are essential components of plate heat exchangers, working together to ensure stable operation through two core functions:
Medium Isolation
Physical separation of plates combined with precise gasket sealing prevents cross-flow between hot and cold media, eliminating equipment failures and process contamination.
Efficient Heat Exchange
Special structural design enhances heat transfer efficiency, enabling precise temperature regulation by cooling hot media and heating cold media.
TS6-L plate heat exchanger plates and gaskets assembly
Plate Specifications and Characteristics
Composition and Structure
Each TS6-L plate consists of metal plate and sealing gasket components with complementary functions:
Component Structural Design Core Functions and Advantages
Metal Plate Thin metal sheets with corrugations, sealing grooves, and corner holes via mold stamping
  • Heat Transfer Enhancement: Corrugated structure expands contact area and improves heat transfer coefficient
  • Structural Reinforcement: Increases rigidity and pressure-bearing capacity
  • Self-Cleaning: Turbulent flow reduces sediment accumulation
  • Flow Channel Distribution: Corner holes and sealing grooves create dedicated fluid paths
Sealing Gasket Custom-sized polymer gasket installed in plate groove
  • Sealing and Leakage Prevention: Fills plate gaps to prevent fluid leakage
  • Flow Channel Partitioning: Seals corner holes to eliminate cross-flow risk
TS6-L plate detailed structural view showing corrugations and sealing grooves
Material Selection for Plates
TS6-L metal plates are available in various corrosion-resistant materials for different industrial applications:
Stainless Steel Series
  • 304/304L: General-purpose corrosion resistance for neutral media like water and air
  • 316/316L: Superior acid and alkali resistance for chemical and food processing
  • 254SMO: High-corrosion resistance for salt solutions and acidic wastewater
Special Alloy Series
  • Titanium: Excellent corrosion resistance for seawater desalination and marine engineering
  • Nickel: High-temperature and alkali resistance for caustic soda solutions
  • Titanium-Palladium Alloy: Superior corrosion resistance for high-concentration strong acids
  • Hastelloy: Resistant to extreme corrosive media for demanding industrial applications
Plate Manufacturing Process
TS6-L plates utilize one-time mold stamping forming with significant advantages:
  • Ensures dimensional accuracy and structural consistency across all plates
  • Enables uniform metal point contact for improved sealing stability
  • Provides stable operation under high pressure and pressure shock conditions
Sealing Gasket Technical Parameters
Gasket Composition
TS6-L sealing gaskets are complex polymer composite systems with optimized components:
Component Type Core Function Performance Impact
Rubber Polymer Base gasket material Determines basic elasticity, temperature resistance, and corrosion resistance
Vulcanizing Agent Crosslinks rubber molecules Enhances strength, hardness, and anti-aging properties
Filler Optimizes physical properties Improves wear resistance and pressure resistance while reducing costs
Anti-Aging Agent Slows aging rate Extends service life and reduces oxidation degradation
Processing Aid Improves manufacturing process Optimizes mixing, extrusion, and molding processes
Diluent Adjusts rubber compound viscosity Facilitates precise gasket forming and plate groove matching
Rubber Material Performance Comparison
Rubber Type Chemical Composition Core Performance Advantages Applicable Scenarios
Natural Rubber Extracted from Hevea brasiliensis latex Excellent elasticity, high mechanical strength, good wear resistance Normal temperature, low pressure, neutral media (civil HVAC systems)
Isoprene Rubber Polymerized from isoprene Performance similar to natural rubber with stable supply General conditions requiring stable supply and natural rubber performance
Styrene-Butadiene Rubber (SBR) Copolymer of butadiene and styrene Good aging resistance, better wear resistance, low cost General industrial sealing for non-strongly corrosive media
cis-Polybutadiene Rubber (BR) Polymerized from butadiene Excellent cold resistance, wear resistance, elasticity, and aging resistance Low-temperature environments and high dynamic load conditions
Sealing gasket material comparison and performance characteristics
Recommended Application Scenarios
TS6-L plates and gaskets adapt to various industrial heat exchange requirements:
Chemical Industry
Temperature regulation of acid-alkali solutions and chemical raw materials. Recommended: 316L, titanium alloy, or Hastelloy plates with corrosion-resistant gaskets.
Food and Beverage Industry
Sterilization, cooling, and preheating processes. Recommended: 304 stainless steel plates with food-grade rubber gaskets.
Water Treatment Industry
Seawater desalination and industrial wastewater treatment. Recommended: Titanium or 254SMO plates resistant to seawater/sewage corrosion.
HVAC Industry
Building heating and central air conditioning systems. Recommended: 304 stainless steel plates with standard temperature-resistant gaskets.
Low-Temperature Industrial
Heat exchange of chilled water and low-temperature fluids. Recommended: cis-polybutadiene rubber gaskets for low-temperature elasticity.
TS6-L plate heat exchanger industrial application scenarios
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