| Payment Terms | T/T, L/C, PayPal |
| Supply Ability | 50 Sets per Month |
| Packaging Details | Aluminum alloy flight case with custom foam inserts, vacuum-sealed desiccant packaging, export-grade wooden crate with shock indicators |
| Delivery Time | 7-15 Working Days |
| Certification | ISO 9001:2015, ISO 14001:2015, ISO 45001:2018 |
| Place of Origin | Suzhou, China |
| Brand Name | GoGo |
| Model Number | H1000-MT |
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Product Specification
| Payment Terms | T/T, L/C, PayPal | Supply Ability | 50 Sets per Month |
| Packaging Details | Aluminum alloy flight case with custom foam inserts, vacuum-sealed desiccant packaging, export-grade wooden crate with shock indicators | Delivery Time | 7-15 Working Days |
| Certification | ISO 9001:2015, ISO 14001:2015, ISO 45001:2018 | Place of Origin | Suzhou, China |
| Brand Name | GoGo | Model Number | H1000-MT |
| High Light | Precision metallography microscope heating stage ,Microscope heating stage 1000°C stability ,Phase transformation grain analysis heating stage | ||
The GoGo H1000-MT Precision Metallography Microscope Heating Stage is purpose-built for the exacting requirements of metallurgical microstructure analysis. Designed in close collaboration with practicing metallurgists, this Microscope Heating Stage delivers the temperature uniformity, optical clarity, and long-duration stability essential for observing grain boundary migration, recrystallization kinetics, and solid-state phase transformations in metals and alloys. The 1000°C maximum temperature covers the critical transformation ranges of most engineering alloys including steels, aluminum alloys, titanium alloys, and nickel-based superalloys.
What distinguishes the H1000-MT from general-purpose heating stages is its optimization for metallographic observation workflows. The ceramic sample holder provides a chemically inert platform that prevents sample contamination during heating, while the 20mm × 20mm surface accommodates standard metallographic specimens with room for reference materials. The 7mm working distance is carefully matched to the focal lengths of common metallographic objective lenses, ensuring crisp high-magnification imaging without the need for specialized long-working-distance optics.
The integrated TNEX control platform includes a dedicated time-lapse acquisition module that synchronizes temperature control with image capture, enabling automated documentation of microstructural evolution over extended experimental durations. Researchers can program complex multi-step thermal profiles with user-defined hold times at critical transformation temperatures, then review the complete thermal and imaging record as a unified dataset. This integration eliminates the manual coordination typically required between separate temperature controllers and microscope cameras, dramatically improving experimental throughput and data consistency.
Key Features| Parameter | Specification |
|---|---|
| Model | H1000-MT |
| Temperature Range | RT ~ 1000°C |
| Temperature Stability | ±0.1°C |
| Maximum Heating Rate | 50°C/min |
| Sample Holder | Ceramic, 20mm × 20mm |
| Optical Path | Reflection |
| Top Window | φ25mm, JGS2 Fused Silica (220-2500nm) |
| Working Distance | 7mm |
| Chamber Height | 6mm |
| Dimensions | 95mm × 160mm × 24mm |
| Net Weight | 0.8kg |
| Cooling Method | Recirculating Chiller |
| Control Software | TNEX Control Platform with Time-Lapse Module |
The H1000-MT Microscope Heating Stage addresses the specialized requirements of metallurgy laboratories in both academic research and industrial quality control settings. Steel researchers use it for real-time observation of austenite-to-ferrite transformations, martensite formation kinetics, and carbide precipitation behavior in micro-alloyed steels. Aluminum alloy development teams rely on the stage for solution heat treatment observation, aging precipitation sequence imaging, and recrystallization grain size evolution studies. Copper and brass manufacturers employ it for annealing process optimization and grain growth kinetics characterization. The welding research community benefits from the ability to simulate heat-affected zone thermal cycles while observing microstructural changes in real time. Failure analysis laboratories use the H1000-MT to reproduce service-temperature conditions during forensic microstructural examination of failed components. Quality control departments in foundries and heat treatment facilities integrate the stage into their process validation workflows, using thermal-microstructural correlation data to optimize heat treatment parameters and ensure consistent product quality across production batches.
Packaging and Quality AssuranceEach H1000-MT Microscope Heating Stage is manufactured and calibrated under ISO 9001:2015, ISO 14001:2015, and ISO 45001:2018 certified quality management systems. Factory acceptance testing includes full-range temperature calibration with 12-point verification, spatial temperature uniformity mapping across the ceramic sample holder, and optical path alignment certification. The complete system is packaged in a custom aluminum alloy flight case with precision-cut foam inserts, vacuum-sealed desiccant packaging, and an export-grade wooden outer crate with integrated shock and tilt indicators. Standard delivery includes the H1000-MT stage assembly, precision temperature controller, recirculating chiller, TNEX software with time-lapse module, and all interconnection cables and tubing. Optional accessories include gas inlet modification kits for controlled atmosphere metallography, customized adapter plates for specific metallographic microscope models, and calibration certification packages for ISO 17025 accredited laboratories. Standard warranty is 12 months with optional extended coverage and priority application support available.
Company Details
Business Type:
Importer,Trading Company
Year Established:
2017
Total Annual:
20 million yuan-30 million yuan
Employee Number:
40~50
Ecer Certification:
Verified Supplier
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