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Temperature Measurement

Temperature measurement is designed for accurate temperature monitoring in glass-lined reactors and related equipment. It helps you measure process temperature reliably while maintaining good corrosion resistance and the mechanical strength needed for demanding operating conditions.

Temperature measurement components are typically made with a metal substrate and an external glass lining. The metal substrate, usually carbon steel, provides structural strength and support, while the outer glass lining provides corrosion resistance. The upper end is fitted with a flange for connection to the reactor, and the lower end forms a closed temperature-sensing tip.

Temperature Measurement

Features
  • Basic Structure
    Temperature measurement components are generally made of a carbon steel base with an external glass lining. This combination gives the component both mechanical strength and corrosion resistance, making it suitable for use in glass-lined reactors and similar equipment.
  • Connection Design
    The upper end is equipped with a flange for installation on the reactor, while the lower end is designed as a closed measuring end for temperature detection inside the vessel.
  • Temperature Measurement Principle
    Built-in measuring elements, such as a thermocouple or resistance temperature detector, convert the material temperature into an electrical signal. The signal is then transmitted to a display instrument or control system so that the process temperature can be monitored in real time.
Why Us

Why Us

  • Certified manufacturing standards
    We hold authoritative ASME (Section VIII Division 1) and CE (PED) certifications, ensuring full compliance with international safety and quality standards. This guarantees our glass-lined steel equipment meets the strict regulatory requirements of global chemical, pharmaceutical, and agrochemical clients.
  • In-House Enamel R&D Laboratory
    Our dedicated in-house R&D center specializes in custom enamel formulations, including acid-resistant, acid-alkali resistant, high-temperature resistant, and wear resistant options. These proprietary formulas deliver exceptional durability against corrosive media, mechanical impact, and thermal shock, ensuring reliable performance in diverse operating environments.
  • Precision Belt Polishing Pretreatment
    Prior to enameling, every steel shell undergoes rigorous precision belt polishing to thoroughly remove mill scale, pits, and surface impurities. This meticulous pretreatment process ensures superior substrate smoothness and integrity, providing an ideal, contamination-free foundation for strong and uniform enamel bonding.
  • Advanced Cold Spray Enameling Process
    Our glass-lined equipment utilizes advanced cold spray enameling process with multiple high-temperature firing cycles. This technology ensures a thinner, more uniform, and denser enamel layer with significantly reduced risk of chipping or peeling. The controlled firing process guarantees optimal adhesion and long-term durability in the most demanding chemical processing conditions.
  • Multi-zone electric furnace control
    The enameling furnace uses independent multi-zone control with computerized management of heating, holding, and cooling. The temperature difference inside the furnace is controlled within 5°C, helping maintain consistent firing quality.
  • Vertical firing process
    All equipment is produced using a vertical firing process, which provides more even heating, reduces deformation, and helps maintain the overall appearance of the equipment as well as flange flatness.
  • Controlled slow firing curve
    The firing process follows a low-temperature entry and low-temperature exit slow-firing curve. Combined with dedicated furnace tooling and controlled firing methods, this helps ensure enamel quality comparable to that of established international manufacturers.
  • Full-process quality management
    We maintain a complete quality management system with full-process control. For glass-lined quality inspection, we apply three inspection procedures covering:
    1. internal and external visible defects
    2. enamel thickness
    3. high-voltage spark testing
    This helps ensure that delivered products meet required standards and specifications.
  • Custom non-standard equipment design and manufacturing
    Custom design and manufacturing support is available for non-standard products. Based on different process requirements, tailored solutions can be developed for special equipment structures and agitator selection supported by CFD fluid dynamics simulation.
  • Strong R&D capability
    We have strong research and development capacity and currently hold more than 40 national patents covering equipment tooling, products, and manufacturing processes.

ASME & CE Certified | Premium Glass-Lined Equipment Manufacturer

We engineer and customize high-performance Glass-Lined steel equipment to meet your exact process requirements across pharmaceutical, chemical, food, and agrochemical industries.

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