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環境試験装置メーカー

  • Application of Temperature Flow Meters Application of Temperature Flow Meters
    Jul 09, 2025
     A temperature flow meter is a precision instrument used to measure gas flow and temperature, widely applied in environmental monitoring, air conditioning systems, industrial manufacturing, and related fields. Its fundamental principle involves detecting temperature variations caused by gas flow to accurately calculate airflow velocity and volume, thereby providing users with precise data support. The instrument's key features lie in high precision and rapid response. Typically equipped with advanced sensors, it can swiftly capture minute changes in flow rate and provide real-time feedback. Its measurement accuracy remains exceptional even under complex environmental conditions, which is particularly crucial for industrial applications requiring strict control of airflow and temperature. Additionally, the operation of temperature flow meters is relatively simple—users only need basic configuration to obtain required data. This user-friendly design makes it easy for both professionals and general users to operate. Many modern models also feature digital displays with intuitive interfaces, allowing users to quickly understand current status and enhance usability. The instrument demonstrates excellent stability, maintaining consistent measurements over extended periods without significant drift, ensuring data reliability. With continuous technological advancements, many devices now integrate data storage and transmission functions, enabling users to review and analyze historical data post-test for informed decision-making. In conclusion, the thermal anemometer has become an indispensable tool in various industries due to its high precision, rapid response, user-friendly operation, and excellent stability. In daily life and professional settings, mastering this instrument not only enhances work efficiency but also provides crucial support for scientific research and engineering applications. As a vital measurement technology in modern science, it plays a pivotal role in technological advancement.
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  • What are the customization processes of non-standard test boxes? What are the customization processes of non-standard test boxes?
    Jun 20, 2025
    1. Communicate with manufacturers directly to customize requirements  operating steps : Requirement submission: clear the test object (such as headlights, batteries, sensors, etc.), test scenario (such as simulated extreme cold wading, high temperature and high pressure spraying) and industry specifications (such as automobile, military, electronics); Technology docking: provide product parameters (size, weight), environmental conditions (temperature range, impact frequency) and special requirements (such as salt spray superposition test, dynamic Angle adjustment); Confirmation of the scheme: Based on general standards such as GB, IEC and GJB, and industry specifications such as VW 80101 and ISO 16750, the manufacturer designs customized test procedures and equipment configuration schemes. 2. Adapt to the existing standard framework Manufacturers can expand or adjust based on the following criteria:  national standards : GB/T 28046.4-2011: For the climate load test of automotive electrical equipment, the core parameters such as temperature, time and circulation times of ice water impact are defined; GB/T 2423.1: Environmental test specification for general electrical and electronic products, supporting the design of calibration and verification process.  codes of practice : VW 80101-2005: Volkswagen Electric Components Test Standard, applicable to the refinement of parameters such as spray pressure and water temperature accuracy; GMW3172: General Motors global engineering standard, supporting multi-environment composite testing (such as ice water impact + salt spray corrosion); ISO 16750-4:2006: International common vehicle electrical equipment test framework, compatible with customized cycles (e.g. 100 standard or 200 enhanced). Third, optimize standards by using manufacturers' technical resources Flexible parameter adjustment: Temperature range: standard high temperature range 65~160℃, can be extended to-70℃ to +150℃; Water splashing system: support flow (3~4L/3S or 80L/min), distance (325±25mm adjustable), nozzle type (gap/matrix) and other customization; Intelligent control: the PLC system can customize the temperature switching rate (such as 20 seconds to complete the conversion from extreme cold to high temperature), data acquisition frequency and report format. Function module superposition: Compatible with multiple test requirements such as waterproof (IPX5-6) and dustproof (IP5X-6X); Support dynamic Angle spraying (15 ~75 adjustable), salt spray composite test and other complex scene simulation. 4. Ensure compliance through certification and verification Equipment calibration: the manufacturer provides half-year temperature sensor calibration service, the error is controlled within ±2℃; Third-party verification: it is recommended to certify the temperature change rate, uniformity and other indicators of customized equipment through quality inspection institutions (such as China Electric Power Research Institute, FAW test site); Data traceability: The test chamber supports USB export of test logs, which is convenient for quality traceability and standard iteration. 5. Service support and case reference Technical team: Guangdong Hongzhan cooperates with universities and research institutes to provide whole-process support from demand analysis to standard implementation; Case library invocation: You can refer to the car company case (such as 800V battery pack IPX9K test, intelligent lamp cold and hot cycle verification) to optimize and customize the standard; After-sales guarantee: customized equipment enjoys 1 year warranty and 48 hours door-to-door maintenance to ensure the stability of standard implementation.
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  • 冷温衝撃試験室のメンテナンス方法 冷温衝撃試験室のメンテナンス方法
    Jun 09, 2025
    1. 冷凍機のコンデンサー(またはラジエーター)は、 冷熱衝撃試験室 コンデンサーは定期的にメンテナンスを行い、清潔な状態を維持してください。コンデンサーに付着した埃は、コンプレッサーの高圧スイッチを作動させ、誤報につながる可能性があります。コンデンサーは、月に一度、掃除機で冷却メッシュの埃を取り除くか、機械の起動後に硬い毛のブラシで掃除するか、高圧エアノズルで埃を吹き飛ばす必要があります。2. ドアを開閉するときや、炉から試験対象物を取り出すときは、ゴムのエッジが損傷して寿命が短くなるのを防ぐため、対象物がドアのゴムのエッジに触れないようにしてください。3. 機体内に大量の粉塵が吸い込まれることで起こる事故や性能低下を防ぐため、機体の周囲および下の地面を常に清潔に保ってください。4. 冷熱衝撃試験室の凍結システムは本機の核心です。半年ごとにすべての銅管の漏れや雪の付着の有無、ノズルおよび溶接継手を点検してください。油漏れが発生した場合は、当社までご連絡いただくか、直接対処してください。5. 配電盤の大電流接点は、配電室で少なくとも年に1回清掃および修理する必要があります。接点の緩みは、機器全体の動作を危険な状態に陥らせます。最悪の場合、部品の焼損につながり、最悪の場合、火災、警報、人身事故につながる可能性があります。清掃の際は、掃除機を使用して室内の埃を除去してください。6. 冷熱衝撃試験室の配電ボックス内にある2つの過熱保護装置の設定値は、安易に調整しないでください。工場出荷時に調整済みです。この保護スイッチは、加熱管の空焚きや警報音の発生を防ぐために使用されます。設定温度は20℃~30℃です。7. 冷熱衝撃試験室 試験時間が来たら、試験品を取り出すときは必ず電源を切った状態にし、作業員は乾燥した、耐電性、耐熱性の手袋を着用して試験品を取り出し、入れます。8. 冷熱衝撃試験室の内外を清掃し、メンテナンスしてください。9. 冷熱衝撃試験室を運転する前に、内部の不純物を除去してください。10. 配電室は少なくとも年に1回清掃する必要があります。清掃の際は、掃除機を使用してほこりを除去してください。試験室の外部は少なくとも年に1回清掃し、石鹸水で拭き取ってください。
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