Alumina Combustion Boat with Hole for Controlled Gas Flow in Combustion Tubes

Alumina combustion boat with hole supports oxygen combustion for C/S analysis with stable fit, low background contamination risk, and repeatable heating/cooling cycles. Standard hole sizes and custom options match furnace airflow and sample mass.

Catalog No. TE-AS-085-1
Material Al2O3
Purity 96% 99% 99.5% 99.7%
Density 3.6~3.93 g/cm3
Dimensions/Sizes Download PDF
24H Standard Dispatch
Small Batch Support OEM
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This alumina combustion boat with hole is designed for oxygen combustion furnaces in C/S analysis and loss-on-ignition tasks. The hole optimizes gas exchange and sample release, improving throughput and repeatability when paired with compatible covers and accelerators.

Alumina Combustion Boat With Hole Benefits

  • Hole-assisted gas exchange → improves combustion efficiency and reduces residuals in carbon/sulfur workflows.
  • High-temperature alumina body → withstands up to 1700 °C to maintain form and reduce warping across runs.
  • Dimensional consistency → low CTE (~8–9 × 10⁻⁶/K) supports repeatable placement and sealing with liners/covers.
  • Low contamination risk → ceramic chemistry minimizes metal pickup versus metallic boats for trace analysis.
  • Analyzer ecosystem fit → sizes compatible with mainstream C/S modules.

 

Alumina Combustion Boat With Hole Properties

Property Unit 99.7% Al₂O₃ 99.5% Al₂O₃ 99% Al₂O₃ 96% Al₂O₃
Color   Ivory White Ivory White Ivory White Ivory White
Density g/cm³ 3.94 3.9 3.83 3.6-3.75
Water Absorption % 0 0 0 0
Hardness Mohs Hardness 9.1 9 9 8.8
Flexural Strength (20°C) Mpa 330 320 300 260
Compressive Strength (20°C) Mpa 2300 2300 2210 1910
Maximum Operating Temperature °C 1730 1700 1680 1450
Thermal Expansion Coefficient(25°C to 800°C) 10⁻⁶/°C 7.6 7.6 7.6 7.6
Thermal Conductivity (25°C) W/(m·K) 29 27 24 22
Dielectric Strength (5mm thickness) AC-kv/mm 22 21 19 15
Dielectric Loss at 25°C@1MHz --- < 0.0001 < 0.0001 0.0003 0.0004
Dielectric Constant at 25°C@1MHz --- 9.8 9.7 9.5 9.2
Volume Resistivity (20°C) Ω·cm³ >10¹⁴ >10¹⁴ >10¹⁴ >10¹⁴
Volume Resistivity (300°C) Ω·cm³ 2*10¹² 2*10¹² 4*10¹¹ 2*10¹¹

 

Combustion Boat Alumina With Hole Specifications

Type 1- Square alumina combustion boat with hole

Square alumina crucible boat with hole size

Item NO. length (mm) width (mm) height (mm)
TE-AS-071 100 84 35
TE-AS-072 100 56 35
TE-AS-073 100 43 26
TE-AS-074 100 27 27
TE-AS-075 100 24 17
TE-AS-075-1 100 20 20
TE-AS-075-2 100 27 27
TE-AS-075-3 103 28 30
TE-AS-075-4 100 43 25
TE-AS-075-5 100 24 17
TE-AS-075-6 100 27 25
TE-AS-075-7 100 43 26
TE-AS-075-8 100 56 35
TE-AS-075-9 100 50 35
TE-AS-075-10 100 56 35
TE-AS-076 73 30 22
TE-AS-076-1 73 30 22
TE-AS-076-2 70 30 22
TE-FA-001 300 70 30
TE-FA-002 200 80 35
TE-FA-003 200 11 12
TE-FA-004 105 23 20
TE-FA-005 100 30 25
TE-FA-006 90 10 10
TE-FA-007 80 30 20
TE-FA-008 88 12 10

 

Type 2-Long alumina combustion boat with hole

 

Alumina crucible boat with hole size

 

Item NO. Length(mm) Width(mm) Height(mm) Purity
TE-AS-085-5 95 16 11 99%
TE-AS-085-3 77 13 8 99%
TE-AS-083-3 40 10 7 99%
TE-AS-077 44 11 7 99%
TE-AS-079-7 88 15 9 99%
TE-AS-079-4 97 17 12 99%

 

Type 3-Alumina combustion boat with 2 holes

Alumina crucible boat with 2 holes size

 

Item NO. Length(mm) Width(mm) Height(mm) Purity
TE-AS-083-1 44 11 8 99%

 

Type 4- Alumina combustion boat crucible with hole

Combustion boat alumina with hole size

 

Item NO. Length(mm) Width(mm) Height(mm) Purity
TE-AS-077-1 39 10 6.5 99%

 

*Note: The table above shows only some standard specifications. For more specifications, please refer to the complete product catalogue or contact us for customization.

Alumina Combustion Boat with Hole Packaging

  • Boats are separated with cushioning layers inside inner boxes; outer cartons use foam/blocking to reduce edge chipping.

Alumina Combustion Boat with Hole

 

Alumina Oxide Combustion Boats with Hole

  • Steel & Alloys – Carbon/Sulfur Determination (Metallurgy & Materials Testing)

    ✅ Key Advantages

    1. Hole-driven oxygen access accelerates combustion and stabilizes CO₂/SO₂ release for detection.
    2. High-temperature stability supports consistent blanks across repeated cycles.
    3. Dimensional control and low CTE help maintain seal quality with furnace tubes and covers.️

    Problem Solved

    In routine C/S testing, variable airflow caused drift and repeat runs. Adopting a 4 mm-hole boat with a matched lid improved gas exchange and peak stability in detection. Over a 1,000-run window, rework frequency decreased as background values stabilized, while breakage fell due to better fit and durable rim geometry.

  • Coal/Coke & Solid Fuels – Sulfur and Ash Work (Energy & Fuel Analysis)

    ✅ Key Advantages

    1. Hole-driven oxygen access accelerates combustion and stabilizes CO₂/SO₂ release for detection.
    2. High-temperature stability supports consistent blanks across repeated cycles.
    3. Dimensional control and low CTE help maintain seal quality with furnace tubes and covers.

    ✅ Problem Solved

    In routine C/S testing, variable airflow caused drift and repeat runs. Adopting a 4 mm-hole boat with a matched lid improved gas exchange and peak stability in detection. Over a 1,000-run window, rework frequency decreased as background values stabilized, while breakage fell due to better fit and durable rim geometry.

  • Battery Materials & Powder Chemistry – Residuals/LOI

    ✅ Key Advantages

    1. High-temperature alumina reduces warping during binder burn-off and residue checks.
    2. Tuned hole size/position improves off-gas release for high-solids samples.
    3. Custom footprints align with pilot-line carriers.

    ✅ Problem Solved

    Pilot lines reported inconsistent LOI on cathode powders. Boats with optimized hole geometry improved off-gas paths; quarter-over-quarter repeatability increased and retests declined as carriers and trays were standardized.

Combustion Boat Alumina with Hole Usage Instructions

  • Use

    1. Before use, check that the alumina combustion boat with hole is free from surface cracks or chips.
    2. Place the sample centrally, ensuring the hole remains unobstructed for airflow.
    3. Fit the matched lid (with or without hole) when required by the analyzer method.
    4. Follow the analyzer’s recommended furnace temperature and gas settings to ensure repeatable results.
    5. Do not exceed the designed sample capacity, as overloading may affect combustion efficiency.

  • Store

    1. Keep boats in a dry, ambient environment; avoid high humidity or sudden temperature swings.
    2. Store in their original packaging with separators to prevent rim contact or edge chipping.
    3. When long-term storage is required, use sealed containers with desiccant packs to avoid moisture absorption.
    4. Label cartons with batch numbers for easier traceability and inventory management.

  • Clean

    1. Allow the boat to cool naturally before handling.
    2. Remove residues by gentle brushing or, if necessary, by rinsing with mild non-corrosive solvents.
    3. Avoid ultrasonic cleaning or harsh abrasives that can weaken the ceramic surface.
    4. Ensure complete drying before reuse to prevent thermal shock on reheating.

  • Common Misuse & Fix

    1. Over-packing samples → Blocks the airflow channel; reduce sample mass and keep the hole clear.
    2. Rapid quenching → Sudden immersion in liquid causes thermal shock; always allow natural cooling.
    3. Lid mismatch → Improper lid size or hole alignment leads to leakage and data drift; confirm diameter and alignment before runs.
    4. Stacking without separators → Direct rim-to-rim stacking increases chipping risk; always use dividers.
    5. Using cracked boats → Hairline cracks can propagate under heat; discard and replace to avoid sample loss.

Alumina Combustion Boat with Hole FAQ

  1. Q: What hole diameters are typical for an alumina combustion boat with hole?
    A: Commonly 3–5 mm; choose based on sample mass and airflow.
  2. Q: Do you supply ceramic lids with a 4 mm hole?
    A: Yes. Lids with 4 mm holes are available and sized to match the boats and carriers.
  3. Q: Is 99.7% alumina suitable for high-temperature oxygen combustion?
    A: Yes. It supports demanding furnace profiles when operated per method settings.
  4. Q: Can these alumina combustion boats with hole replace metal boats to reduce contamination?
    A: Alumina minimizes metallic pickup and is preferred in many trace C/S analyses.
  5. Q: How do I choose between boats with hole and without?
    A: Use with-hole when gas exchange and off-gas release are critical; without-hole when containment is prioritized.
  6. Q: Do you offer samples for fit checks before bulk orders?
    A: Yes. We will offer small alumina combustion boats with hole as samples to validate hole alignment, furnace clearances, and carriers.

Customer Reviews about Alumina Combustion Boat with Hole

  • ⭐️⭐️⭐️⭐️⭐️
    “Alumina combustion boat with hole geometry matched our C/S furnace; repeat runs stabilized and we reordered it in the next quarter.”
    — Quality Manager, Steel Mill
  • ⭐️⭐️⭐️⭐️⭐️
    “The 4 mm lid and combustion boat alumina with hole set improved off-gas flow; handling with dedicated tongs cut breakage during batch shifts.”
    — Lab Supervisor, Fuel Testing Centre
  • ⭐️⭐️⭐️⭐️⭐️
    “The customized depth, shape and hole for the combustion boat match our drawings and are also within tolerances.”
    Procurement Specialist, Contract Lab
  • ⭐️⭐️⭐️⭐️⭐️
    “Combustion boat alumina with dimensional tolerance stayed consistent through multiple heat cycles; stock availability helped us avoid delays.”
    — Procurement Specialist, Contract Lab
customize size

Customize Alumina Combustion Boat

What You Can Specify:

  • Outer/inner dimensions & tolerance: length, width, depth; typical drawing call-outs down to ±0.2 mm where feasible.
  • Hole geometry: diameter (e.g., 3–5 mm typical), count, and position relative to the sample zone.
  • End details & bottom style: square or round bottom, gentle radius, lip or flat rim for lids.
  • Material option: 96%,99%-99.7% Al₂O₃
  • Surface finish: as-sintered, light polished, or glazed

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