Tầng 1, số 3, đại lộ Shugang, thị trấn Hongmei, thành phố Đông Quan, tỉnh Quảng Đông, Trung Quốc

Nhà sản xuất buồng kiểm tra môi trường 20 nămHơn 3000 khách hàng trên toàn thế giới giao hàng           Email: shirley@deruitest.com
Đường dây tư vấn toàn cầu:+86 15580327593

Buồng mô phỏng năng lượng mặt trời với kiểm soát chính xác cường độ tia Xênon và nhiệt độ

The DERUI Solar Simulation Chamber provides controlled simulated solar radiation for equipment, components and selected material-exposure programs. The lamp, optical filters, irradiated field, spectrum, irradiance, uniformity and thermal environment are configured from the applicable method and specimen.

Primary Purpose: Solar heating, functional exposure and method-defined radiation weathering
Published Light Source: Xenon-based system with method-specific optical configuration
Primary Reference: IEC 60068-2-5 simulated solar radiation applications; other methods require configuration review
System Selection: Based on spectrum, irradiance, exposed field, uniformity, climate profile and specimen heat load
Payment: L/C, D/P or T/T
Delivery: Confirmed after the optical and chamber configuration is approved

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Simulated Solar Radiation Testing

Controlled Solar Radiation Exposure for Equipment and Components

The DERUI solar simulation chamber exposes equipment, components or materials to a defined simulated solar spectrum while controlling the surrounding thermal environment. It can be configured to investigate solar heating, functional performance and radiation-related degradation under an approved IEC, military, product or customer test plan.

The lamp source, optical filters, irradiated area, spectral distribution, irradiance, uniformity, chamber temperature and specimen monitoring must be selected together. The published product configuration uses a xenon-based radiation system; final performance is confirmed against the exact method and specimen before quotation.

Test ObjectiveSolar heating, functional effects or radiation weathering
Nguồn sángXenon-based published configuration; method-specific optics
ControlIrradiance, chamber conditions and programmed timing
cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limitsMatched to spectrum, field size, specimen and method

Choose the Test Objective Before Choosing the Chamber

Solar heating and operation

Evaluate surface temperature rise, internal temperature, functional stability, display readability, seal behavior and other equipment responses while the specimen receives simulated ground-level solar radiation.

Solar radiation weathering

Investigate radiation-driven degradation such as color change, embrittlement, cracking or loss of performance using the spectral and environmental conditions defined by the applicable method.

Component qualification

Expose outdoor electronics, housings, vehicle components or assemblies under a customer-defined irradiance and temperature sequence while power and function are monitored.

Comparative material screening

Compare materials only when specimen preparation, optical exposure, reference materials and evaluation methods are controlled consistently.

No universal time conversion: chamber hours cannot be converted directly into a fixed number of outdoor months or years. Correlation depends on spectrum, climate, specimen temperature, moisture, orientation, material and failure criterion.

Solar Simulation, Xenon Weathering and PV Flash Testing Are Different

Equipment or testPrimary objectiveKey configuration focus
Solar simulation chambercURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limitscURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits
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cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits xenon arc weathering test chamber. cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits máy kiểm tra phơi sáng tia UV tăng tốc.

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DERUI solar simulation chamber for controlled radiation exposure testing
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VerificationField mapping, radiometer calibration, temperature survey and report formatDefines factory acceptance and ongoing laboratory control

Final lamp power, spectrum, irradiance range, uniformity, working volume, temperature, humidity, spray, specimen capacity and utility requirements are stated in the approved technical quotation. Generic values from another chamber configuration should not be used as contractual performance.

Standards and Application Boundaries

ReferenceScopePage application
IEC 60068-2-5:2018Simulated solar radiation at ground level for equipment and components; includes thermal-effect and weathering approachesPrimary reference for configuring a solar radiation chamber when the project cites this method
MIL-STD-810 Method 505Tailored solar radiation exposure for materiel based on the required revision and procedureUse the exact project revision, procedure, cycle and spectrum rather than a generic “MIL compliant” claim
ASTM G155Operation of xenon arc light apparatus for exposure of non-metallic materialsBetter served by a dedicated xenon weathering configuration if material weathering is the main objective
ISO 4892-2Filtered xenon-arc exposure of plastics in the presence of controlled moisture conditionsRequires method-specific filters, irradiance, temperature and wetting rather than a generic solar heating profile
cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limitsXenon-arc exposure of paints and varnishesUse the coating-specific exposure and evaluation procedure
SAE J2527/J2412Automotive exterior/interior accelerated exposure practicesConfirm the current OEM or SAE procedure and required optical system
PV clarification: IEC 61215 UV preconditioning and photovoltaic performance testing are separate requirements. A solar radiation chamber should not be presented as a universal IEC 61215 or PV flasher solution unless its exact configuration has been reviewed for the specified test.

Recommended Test Workflow

  1. Define the objectiveDecide whether the program evaluates solar heating, operation under radiation, material weathering or another defined effect.
  2. Freeze the methodRecord the standard edition, procedure, spectrum, irradiance, field size, cycle and acceptance criteria.
  3. cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limitsDefine orientation, mounting, surface condition, power state, heat dissipation, cable routing and measurement points.
  4. Map the exposure fieldVerify irradiance distribution and sensor traceability over the intended specimen plane before qualification exposure.
  5. Verify thermal responseCheck chamber-air and specimen temperatures at representative locations; set safety and functional abort limits.
  6. Execute and monitorRecord radiation, chamber condition, specimen temperatures, function and any interruption or deviation.
  7. Evaluate consistentlyUse the specified post-exposure conditioning, functional checks and material measurements to determine compliance.

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Start with spectrum—not lamp wattage

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Các ứng dụng điển hình

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Materials and coatings

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Repeatability controls

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Request a Solar Simulation Configuration Review

Send the spectrum, irradiance, exposed area, uniformity, climate profile and specimen information. DERUI will review the lamp, optics, chamber, cooling, monitoring and installation requirements as one system.

  • Method-specific lamp and optical configurations
  • Customized working space, mounting and monitoring ports
  • Destination voltage and controller-language options
  • Factory mapping, training and technical documentation
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1. Hỏi: Buồng mô phỏng mặt trời là gì và hoạt động như thế nào?
A: Buồng mô phỏng mặt trời là một buồng kiểm tra môi trường mô phỏng ánh sáng tự nhiên bằng cách sử dụng nguồn sáng cường độ cao (thường là đèn Xenon hoặc đèn halide kim loại) kết hợp với bộ lọc quang học chính xác. Nó tạo ra chùm tia kiểm soát với cường độ bức xạ cụ thể (ví dụ, 200-1200 W/m²), quang phổ (phù hợp với ánh sáng mặt trời như AM1.5G), và thường tích hợp kiểm soát nhiệt độ và độ ẩm. Điều này cho phép các nhà nghiên cứu tăng tốc quá trình thời tiết hóa vật liệu, kiểm tra hiệu quả của các tấm quang điện (PV) và xác nhận độ bền của sản phẩm dưới tác động của ánh sáng mặt trời mô phỏng trong phòng thí nghiệm.

2. Hỏi: Sự khác biệt giữa máy mô phỏng mặt trời và máy đo thời tiết bằng đèn Xenon là gì?
A: Cả hai đều sử dụng đèn Xenon, nhưng trọng tâm chính của chúng khác nhau. Một máy mô phỏng mặt trời ưu tiên phù hợp quang phổ với ánh sáng mặt trời (ví dụ, để kiểm tra hiệu quả PV) và thường có đặc điểm đồng đều cường độ bức xạ cao. Một máy đo thời tiết xenon tập trung vào bức xạ thời tiết tăng tốc và sự suy giảm vật liệu, thường nhấn mạnh kiểm soát chính xác các chu kỳ ánh sáng, nhiệt độ và độ ẩm theo tiêu chuẩn như ASTM G155. Nhiều buồng thử nghiệm tiên tiến, như một số của Derui, kết hợp cả hai khả năng để thử nghiệm toàn diện.

3. H: Các tiêu chuẩn mà buồng mô phỏng mặt trời tuân thủ là gì?
A: Các buồng uy tín tuân thủ các tiêu chuẩn quốc tế chính. Để kiểm tra quang điện, IEC 60904-9 xác định hiệu suất mô phỏng mặt trời (ví dụ, phân loại phù hợp quang phổ A, B, C). Đối với bức xạ thời tiết vật liệu, các tiêu chuẩn bao gồm ASTM G155 (tiếp xúc cung xenon) và ISO 4892-2. Đối với kiểm tra ô tô, SAE J2412 và J2527 là phổ biến. Luôn xác nhận rằng buồng đáp ứng các tiêu chuẩn cụ thể cần thiết cho ngành công nghiệp và yêu cầu chứng nhận của bạn.

4. H: Các ứng dụng chính của buồng thử nghiệm mô phỏng mặt trời là gì?
A: Các ứng dụng chính bao gồm: 1) Pin mặt trời: Kiểm tra công suất của tấm pin mặt trời (theo dõi đường cong I-V), độ bền và hiệu suất lâu dài. 2) Ô tô: Đánh giá phai màu, nứt vật liệu và độ tin cậy của các thành phần cho nội thất và ngoại thất. 3) Hàng Không: Kiểm tra vật liệu và cảm biến dưới điều kiện mặt trời cực đoan và chân không nhiệt. 4) Khoa học vật liệu: Nghiên cứu sự bào mòn của polymer, lớp phủ, vải dệt và nhựa.

5. H: Làm thế nào để bạn chọn giữa mô phỏng mặt trời ổn định và mô phỏng mặt trời xung?
A: Chọn dựa trên loại thử nghiệm của bạn. A máy mô phỏng mặt trời trạng thái ổn định cung cấp ánh sáng liên tục, ổn định lý tưởng cho kiểm tra phơi sáng lâu dài (ví dụ, đánh giá mô-đun PV, thời tiết vật liệu). Một máy mô phỏng mặt trời xung phát ra các tia chớp ngắn, cường độ cao, hoàn hảo cho kiểm tra tốc độ cao, không tiếp xúc của các tế bào quang điện (ví dụ, trong dây chuyền sản xuất) vì nó giảm thiểu tác động của nhiệt. Một số buồng tiên tiến cung cấp cả hai chế độ để linh hoạt.

6. H: Những thông số kỹ thuật chính nào tôi nên kiểm tra khi mua buồng mô phỏng mặt trời?
A: Thông số quan trọng bao gồm: 1) Phù hợp quang phổ (Lớp A là tốt nhất cho PV). 2) Đồng đều bức xạ (độ đồng đều cao đảm bảo kiểm tra nhất quán). 3) Phạm vi & điều chỉnh bức xạ (ví dụ, 200-1200 W/m²). 4) Kích thước buồng / Khu vực thử nghiệm. 5) Kiểm soát môi trường tích hợp (phạm vi nhiệt độ, kiểm soát độ ẩm). 6) Tuân thủ các tiêu chuẩn liên quan đến lĩnh vực của bạn.

7. H: Một buồng mô phỏng mặt trời có thể mô phỏng các điều kiện ánh sáng mặt trời toàn cầu khác nhau không?
A: Có, các buồng tiên tiến có thể mô phỏng các quang phổ khác nhau bằng cách sử dụng các bộ lọc quang học khác nhau. Phổ biến nhất là AM1.5G, đại diện cho ánh sáng mặt trời tại bề mặt Trái đất (dùng để kiểm tra PV). Các loại khác bao gồm AM0 (quang phổ không gian vũ trụ dành cho hàng không vũ trụ) và AM1.5D (ánh sáng mặt trời trực tiếp cho hệ thống PV tập trung). Đảm bảo hệ thống lọc của buồng có thể được cấu hình phù hợp với quang phổ cụ thể mà bạn cần kiểm tra.

8. H: Làm thế nào để bạn bảo trì và hiệu chuẩn buồng mô phỏng mặt trời?
A: Bảo trì định kỳ bao gồm: làm sạch bộ lọc quang học và vỏ đèn, kiểm tra và thay thế đèn xêon khi cần thiết (tuổi thọ điển hình 1000-2000 giờ), xác nhận độ chính xác của cảm biến, và đảm bảo hệ thống làm mát hoạt động tốt. Hiệu chuẩn hàng năm bởi kỹ thuật viên có trình độ là rất quan trọng để duy trì độ chính xác quang phổ, cường độ bức xạ, và độ đồng đều nhiệt độ theo các tiêu chuẩn như ISO/IEC 17025.

9. H: Giá thành điển hình của một buồng mô phỏng mặt trời là bao nhiêu?
A: Giá cả thay đổi rất nhiều dựa trên thông số kỹ thuật. Các thiết bị cơ bản để bàn bắt đầu từ $25,000, các buồng ổn định trạng thái đầy đủ tính năng cho Nghiên cứu và Phát triển dao động $40,000 - $100,000+, và các hệ thống lớn, tùy chỉnh với kiểm soát môi trường tiên tiến có thể vượt quá $150,000. Cần xem xét tổng chi phí sở hữu, bao gồm thay thế đèn, bảo trì, và dịch vụ hiệu chuẩn.

10. H: Tại sao việc phù hợp quang phổ lại quan trọng trong một máy mô phỏng mặt trời để kiểm tra PV?
A: Pin mặt trời phản ứng khác nhau với các bước sóng ánh sáng khác nhau. Một việc phù hợp quang phổ chính xác (đặc biệt là Loại A theo IEC 60904-9) đảm bảo ánh sáng của máy mô phỏng gần giống với ánh sáng mặt trời thực tế trên tất cả các bước sóng. Điều này rất quan trọng để có được kết quả đo chính xác và có thể lặp lại về hiệu quả của mô-đun PV, công suất định mức và hiệu suất, giúp ngăn chặn các lỗi đắt đỏ trong chứng nhận sản phẩm hoặc dữ liệu R&D.

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