Fluid Channel Dimple Plate Pressure Resistance Stainless Steel Material
Our bulging plate technology offers significant advantages for complex working conditions. With exceptional pressure bearing capacity, it operates reliably in high-pressure environments, meeting stringent requirements for large industrial equipment. Available in various materials including corrosion-resistant and high-temperature resistant options, these plates are suitable for corrosive chemical media and high-temperature flue gas applications. Excellent sealing performance and stress cracking resistance ensure leak-free operation and system stability.
Pillow-shaped plates are formed through laser welding or resistance welding spot welding processes, combined with hydraulic expansion technology to create wavy flow channels. This design provides superior sealing, structural stability, high pressure resistance (100 Bar), and high temperature resistance (800℃). Available configurations include:
- Single-layer embossed plate: Features thicker base plate (≥2mm) with expanded top thin plate, ideal for jacketed containers and static heat transfer applications
- Double-layer embossed plate: Symmetrically expanded double thin plates forming modular heat exchanger stacking units for dynamic heat transfer requirements
- Flow guide baffle design: Optimizes fluid flow direction through weld guidance, enhancing flow velocity distribution and heat transfer efficiency
| Category | Parameter Description |
|---|---|
| Material | Stainless steel (SS304, 316L, 2205 duplex steel), Hastelloy, titanium, etc. |
| Plate thickness combination | Double-layer: 0.8mm+0.8mm, 1.0mm+1.0mm, 1.5mm+1.5mm, etc. Single-layer: 0.8mm+2.0mm, 1.0mm+2.5mm, 1.2mm+4-15mm, etc. |
| Maximum pressure | Normal conditions: 60 Bar Extreme conditions: 100 Bar (applicable to high temperature 800℃) |
| Surface treatment | Polishing, sandblasting and other customized treatments |
| Standard specification | DIN, GB, ISO, JIS, ASME and other international standards |
- Laser welding: High-precision weld quality ensures superior sealing and pressure resistance
- Hydraulic expansion forming: Flow channel turbulence enhances heat transfer with efficiency increased by 30%+
- Extreme condition performance: Supports 100 Bar/800℃ operations with corrosion and deformation resistance
- Fully sealed structure: Eliminates leakage risk with service life exceeding 15 years
- Flexible configurations: Single-layer/double-layer embossed plates adapt to various heat transfer scenarios
- Industrial heat transfer: Reactor jacket, flue gas waste heat recovery, melting crystallizer
- Environmental protection and energy: Sewage treatment, ice storage system, exhaust gas condensation
- Refrigeration and heat storage: Plate falling film cooler, immersion heat exchanger
Ruiding operates the Jiangsu Province Clean Incineration Resource Engineering Technology Center and the JICUI-Ruidings Joint Innovation Center Key Laboratory. Our advanced facility includes ICP inductively coupled plasma emission spectrometry, atomic absorption spectrophotometry, atomic fluorescence spectrophotometry, high-temperature combustion ion chromatography analyzers, and rapid equilibrium flash point testers. Capabilities include heavy metal analysis, elemental analysis, off-gas calorific value analysis, ash melting point detection, incineration boiler water quality testing, sewage analysis, and volatile waste analysis.
- Waste gas incinerators: RTO, RCO, CO, TO, SCR systems
- Waste liquid incinerators: Organic, salt-containing, and heavy component residue systems
- Solid incinerators: Rotary kiln, pyrolysis, fluidized bed, and step-type systems
- A-level boilers: Modular waste heat, tunnel waste heat, and integrated incineration boilers
- Plate heat exchangers: Fully welded pressure, vortex tube, and spiral tube designs
- Incineration auxiliary equipment: Sludge dryers, burners, crushers, and VOC catalysts
Tel: +86 15606162805; +86 0510-87418884
Email: ruiding@rdee.com.cn
Address: Xinzhuang Industrial Concentration Zone, Yixing City, Jiangsu Province, China
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