Precision Boron Nitride Sintering Crucible and BN Setter Box Components

¥100.00

Note: Final quotation is based on specific dimensions ($OD \times ID \times H$), geometry complexity, and material grade requirements (99.5% or 99.8% purity).

Precision-machined Boron Nitride Sintering Crucible and BN Setter Box components are manufactured from high-purity hot-pressed $h-BN$. These saggers sustain operating temperatures up to $2100^{\circ}C$ in vacuum (TLT-B- -LG grade) and offer non-wetting properties for AlN and Si3N4 sintering. Designed for structural stability in industrial vacuum furnaces.

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Boron Nitride Sintering Crucible and BN Setter Box Engineering

The Boron Nitride Sintering Crucible and specialized BN Setter Box are commonly used in technical powder processing and high-temperature vacuum sintering. At Telite Ceramics, we manufacture each hBN Sintering Sagger and Sintering tray for AlN Si3N4 from hot-pressed boron nitride for drawing-based furnace and laboratory projects. These parts are also considered for 2100C vacuum ceramic crucible service where chemical inertness, clean contact, and thermal stability are important.

Material Grade Comparison: Based on our current technical table, we can provide different BN routes for vacuum stability and load conditions. For saggers and setter structures that require higher mechanical load, composite routes may also be reviewed together with the actual furnace atmosphere, weight distribution, and service cycle.

1. Physical Characteristics of hBN Sintering Sagger Units

A hBN Sintering Sagger is often selected for chemical resistance and low wetting behavior. During the sintering of Aluminum Nitride (AlN) or Silicon Nitride (Si3N4), the Boron Nitride Sintering Crucible may help reduce cross-contamination and unwanted reaction with the container surface. For vacuum furnace use, a properly selected 2100C vacuum ceramic crucible is usually evaluated together with loading method, powder type, tray geometry, and repeated thermal cycling condition.

2. Technical Performance of 2100C vacuum ceramic crucible Applications

The following table is used as a reference when customers compare different material routes for a BN Setter Box, hBN Sintering Sagger, or 2100C vacuum ceramic crucible project:

Material GradePurity LevelMax Temp (Vacuum)Thermal Cond. (W/m·K)Compressive Strength
TLT-B- -LG99.8% BN2100°C4045 MPa
TLT-BN HP956-VG99.5% BN1900°C3525 MPa
TLT-BM-57220-SMBN + SiN Composite1800°C85400 MPa

3. Machining Standards for BN Setter Box

Each BN Setter Box and Boron Nitride Sintering Crucible is usually confirmed according to drawing and actual furnace condition. Telite supports machining of box-type structures, trays, lids, thin-wall cavities, and custom Sintering tray for AlN Si3N4 layouts. In practical review, customers often confirm overall size, inner usable space, lid fit, wall thickness, corner transition, bottom flatness, and local support areas together with the hBN Sintering Sagger drawing.

4. Industrial Application Scenarios

The Boron Nitride Sintering Crucible, BN Setter Box, and 2100C vacuum ceramic crucible are commonly used in high-purity powder calcination, technical ceramic sintering, laboratory furnace work, and related high-temperature vacuum processing. A Sintering tray for AlN Si3N4 is often selected where clean contact and stable thermal handling are needed. For repeated-use projects, the hBN Sintering Sagger is usually reviewed together with furnace atmosphere, loading weight, support method, and maintenance cycle.

For more technical documentation on high-temperature h-BN material properties, please consult: Boron Nitride Material Overview.

Telite Industrial Ceramics – Global Vacuum Material Expert
Technical Support: Mr. Zhang | Direct/WeChat: +86-18602175437 | Email: telice@teliceramic.com
Key Components: Boron Nitride Sintering Crucible, BN Setter Box, hBN Sintering Sagger, 2100C vacuum ceramic crucible, Sintering tray for AlN Si3N4.

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