Sondex Plate Heat Exchanger Gasket

Product Details
Customization: Available
Customized: Customized
Certification: CE, ISO, RoHS
Gold Member Since 2019

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  • Sondex Plate Heat Exchanger Gasket
  • Sondex Plate Heat Exchanger Gasket
  • Sondex Plate Heat Exchanger Gasket
  • Sondex Plate Heat Exchanger Gasket
  • Sondex Plate Heat Exchanger Gasket
  • Sondex Plate Heat Exchanger Gasket
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Basic Info.

Model NO.
S41/S41A/S38
Sectional Shape
Square
Performance
Pressure Resistant, Temperature Resistant, Corrosion Resistant
Transport Package
Wooden Box
Specification
S41/S41A/S38
Trademark
DGXT
Origin
China
HS Code
8501109190
Production Capacity
1000000

Product Description

Product Introduction

Sondex Plate heat exchanger Gasket S41/S41A/S38
Product Description
* We strictly enforce the requirements of ISO9000 and strictly control every aspect of production, so that each Gasket has can be traced back.
* Perfect product needs perfect material,strictly control the production and strict delivery inspection.
* FDA standards.
* Years of experience in OEM and aftermarket

 
The basic performance of gasket  
Material Max Use
Temperature
Hardness Application Media  
 
NBR 110ºC 76±2 alkanes,alaenes and other non-polar media; 
fuel oil and other mineral oil; animal and vegetable oils; 
hot water,salt water,etc
 
H-NBR 140ºC 76±2  
NBR-HT 130ºC 76±2  
EPDM 150ºC 80±2 water,steam,atmospheric,ozone;
non-petroeum-based lubricants; weak acid,
weak base,ketones,alcohols,polar medium,etc
 
EPDM-HT 170ºC 80±2  
VITON A 180ºC 80±2 hot oil, acid,alkali,organic solvent  
VITON G 200ºC 80±2 strong acid and alkali,hot oil,saturated steam  

Gasketed plate heat exchangers are efficient for moderate heat transfer applications. In addition to these types of heat exchangers, SONDEX also offers accessories and spare parts for its products, as well as maintenance and service solutions for customers
A plate heat exchanger is a compact type of heat exchanger that uses a series of thin plates to transfer heat between two fluids. There are four main types of PHE: gasketed, brazed, welded, and semi-welded

The plates are commonly made of  304/316 or titanium, but can also be made from other pressable and exotic materials. The type of material depends on the treated media and their temperatures. The plates form the plate pack, which is held firmly between the head and the follower of the frame. The corrugated pattern on the plates ensures a turbulent flow in the entire heat transmission area, and is designed to eliminate "dead zones
Heat Transmission Area The heat transmission area is the "main" part of the plate, and this is where the primary heat transfer takes place. Our many years of experience with thermal design and plate pressing techniques is our greatest strength, and our plate design is based on this knowledge. Through our expertise we have maximized the heat transmission area of each plate. This improves the thermal efficiency of the entire plate pack in   plate heat exchangers. The size of the heat transmission area depends, of course, on the size of the plate. We have the process knowledge that enables us to develop heat transmission areas that perfectly match the requirements of your duty, and deliver a plate size that is optimized for maximum efficiency in your installation.

High heat transfer efficiency
The Heat transfer coefficient K of plate heat exchanger is in the range of 3000-6000W/m2Sondex Plate Heat Exchanger GasketSondex Plate Heat Exchanger GasketSondex Plate Heat Exchanger GasketSondex Plate Heat Exchanger GasketSondex Plate Heat Exchanger GasketSondex Plate Heat Exchanger GasketSondex Plate Heat Exchanger GasketSondex Plate Heat Exchanger GasketSondex Plate Heat Exchanger GasketSondex Plate Heat Exchanger GasketSondex Plate Heat Exchanger GasketSondex Plate Heat Exchanger Gasket

act according to circumstances
The heat exchange plate is easy to disassemble, and suitable heat transfer effect and capacity can be obtained by adjusting the number of heat exchanger plates or changing the pass.

Low heat loss
Due to its compact structure and small size, the surface area of the heat exchanger is also very small, resulting in minimal heat loss. Usually, equipment does not require insulation.

Reliable use
Two seals have been designed on the sealing device between the plates, along with signal holes. Once a leak occurs, it can be discharged from the outside of the heat exchanger, preventing the mixing of the two medium and serving as a safety alarm.

It is conducive to the utilization of low temperature heat source
Due to the almost complete countercurrent flow of the two medium and their high heat transfer efficiency, using them to recycle low-temperature waste heat or utilize low-temperature heat sources is an ideal equipment.

Small footprint, easy to maintain
The structure of plate heat exchangers is extremely compact, occupying only 1/2-1/3 of the space of shell&tube heat exchangers under equal heat conditions.

Less Friction loss
On the premise of the same heat transfer, compared with the shell&tube heat exchanger, the plate heat exchanger has reduced the equipment investment, infrastructure investment, power consumption and other costs due to the reduction of heat exchange area, floor area, fluid resistance, cooling water consumption and other project values. Especially when expensive materials are needed, the equipment is more economical due to the efficiency and thin plates.


 

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