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Energy ceramics supplier

Energy Ceramics

Precision Ceramic Components for Energy Applications, High-Temp & Corrosion Resistant.

Product Overview

Jinghui Ceramics defines energy ceramic products as having the following relevant characteristics:
***Key structural components for energy-related equipment;
***Secondary processing (such as fine grinding, cutting, and polishing) after sintering;
***Operate stably in extreme environments (such as high temperature, corrosion, and high wear);
***Improving energy conversion efficiency and ensuring equipment reliability and safety.
***A certain dimensional accuracy and surface smoothness.

ceramic Precision machining

Your Reliable Energy Ceramic Parts Partner

Jinghui Ceramic is a manufacturer of engineering ceramic products with 10+ years of production experience. The energy ceramics we provide mainly consist of four types of ceramic materials: alumina, zirconia , aluminum nitride and  silicon carbide, etc.. Our production processes include dry pressing, hot pressing, and isostatic pressing, as well as precision injection molding. Combined with precision sintering at temperatures exceeding 1600°C, we ensure product density exceeding 99%, minimizing dimensional deviation and cracking.

Energy equipment, especially in the field of new energy, has extremely stringent requirements for material performance. The several representative ceramic materials we provide can perfectly meet these requirements due to their characteristics such as high temperature resistance, corrosion resistance, high insulation, high strength and excellent thermal conductivity.

We offer professional customized energy ceramic components services. Starting with needs analysis and material selection recommendations, we proceed through structural design, simulation analysis, precision molding and sintering, followed by secondary precision machining, and finally rigorous quality verification to ensure we provide you with the perfect solution to meet your specific application requirements.

We are committed to implementing our technology and creating value through our experience. Therefore, we are not just a supplier, but also a partner. We look forward to welcoming you.

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OUR PRODUCT

Product By Features

Eergy ceramic parts are mostly customized according to customer requirements, the features and shapes  are different for customization, generally, the structure is more complex and requires more machining processes.

bearing adapter sleeve
Bearing Adapter Sleeve

Silicon nitride ceramic for energy field.

Custom round base
Custom Round Base

99.5% Alumina ceramic, mounting plate for energy industry.

ceramic frame ring
Ceramic Frame Ring

Alumina ring,outer diameter 250 mm, for energy machine.

Energy Ceramic Base
Energy Ceramic Base

Alumina step base,  for power & energy components.

Zirconia Ceramic Grinder
Zirconia Ceramic Grinder

Zirconia, insulated waveguide tubes in the energy industry.

Energy ceramic parts
Energy Ceramic Parts

Alumina ceramic, custom-made threaded energy ceramics.

Aluminum nitride bridge connector
Aluminum nitride bridge connector

Aluminum nitride ceramic, hot press and CNC machining.

silicon carbide flange
Silicon Carbide Flange

Secure pump shaft, for energy industry.

advantage

Energy Ceramic Parts Main Materials

Energy structural ceramics were created to meet the material needs of rapidly developing technologies, giving full play to the mechanical properties of ceramics that are different from those of metals and plastics.

Alumina ceramics

Excellent overall performance, good electrical insulation, and cost-effectiveness, widely used in insulating components and structural parts of various energy equipment.

Aluminum nitride ceramics

With high thermal conductivity and a coefficient of thermal expansion matching that of silicon, they are an ideal heat dissipation substrate material for high-power electronic devices.

Zirconia ceramics

high fracture toughness and wear resistance, suitable for some special energy components.

Silicon carbide ceramics

high high-temperature strength, high thermal conductivity, and high wear resistance, corrosion resistance, and creep resistance.

Quality and Reliability of Energy Ceramic Parts

We implement a rigorous quality assurance system to ensure that every energy ceramic product meets the stringent specifications required in the energy sector. This includes everything from the quality of the raw material powder (high purity, ultrafine powder, and controllable morphology are the foundation for stable performance), to process monitoring, and comprehensive inspection of the finished product for dimensional accuracy, physical properties (such as strength and hardness), and functional characteristics (such as dielectric strength and thermal conductivity).

Quality control objectives for energy ceramic parts

Customer Satisfaction >95%
On Time Delivery >96%
QPPM <7000 PPM

Jinghui Ceramics has nearly 10+ years of experience in the production of advanced ceramic products. Based on the characteristics of different fields, combined with different material properties and different technical requirements, we meet customers’ customization requirements and help customers’ career development with high-quality products and professional services.

Why is the energy sector focusing on ceramic materials like silicon carbide?

The energy sector operates in environments characterized by extreme temperatures and intense radiation, placing extremely high demands on materials. Silicon carbide composites, due to their superior high-temperature resistance and radiation tolerance, along with their ultra-high-temperature ceramic melting point exceeding 3000°C, high thermal conductivity, and fracture toughness, make them ideal candidate materials for components that must withstand intense heat flux and radiation.

What are the advantages of silicon nitride ceramic bearings compared to traditional steel bearings in new energy vehicles?

Silicon nitride ceramic bearings have several key advantages over traditional steel bearings: First, they have a lower density, which helps reduce centrifugal stress under high-speed rotation, making them more suitable for the high-speed requirements of new energy vehicle motors; second, they have better wear resistance; third, silicon nitride is a natural electrical insulator, which reduces electro-corrosion caused by bearing discharge, preventing shortened bearing and lubricant lifespan and ultimately bearing failure.

How is the common "brittleness" problem in energy ceramic components addressed?

There are various methods to address the brittleness problem in ceramics. At the material level, materials with high fracture toughness, such as zirconium oxide, can be selected. In terms of structural design, stress concentration is reduced by optimizing the geometry (e.g., avoiding sharp angles). In terms of manufacturing processes, higher quality and more consistent powders (high purity, ultrafine, and controllable morphology), as well as advanced sintering technologies such as hot isostatic pressing, are used to improve density and uniformity, thereby enhancing the reliability of the material.

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