巨哥科技從事精準測溫熱像儀研發(fā)十余年,助力各領域科研人員從事前沿科學研究,以下列舉材料科學與工程研究的部分論文。
1. CFD investigation of a new flat plate collector with additional front side transparent insulation for use in cold regions,2019年發(fā)表于Renewable Energy, ELSEVIER
該研究用聚甲基丙烯酸甲酯(PMMA)片材集成的平板太陽能集熱器在寒冷天氣下的性能,分析片材的厚度和位置對穩(wěn)態(tài)集熱器效率的影響。研究使用巨哥科技紅外熱像儀觀察玻璃罩的溫度分布情況:A thermal infrared imager (accuracy ±2℃, Shanghai Magnity Electronics Co., Ltd.) is used to observe the temperature distribution of the glass cover.

2. Characteristics and influences of plume during CW laser-CFRP interaction under tangential gas flow,2020年發(fā)表于Laser Physics
該研究分析了連續(xù)波激光輻照碳纖維增強塑料層合板(CFRP)在切向氣流或氮氣流作用下的羽流特性,分析羽流中的最高溫度與羽流對激光的吸收的相關性。研究使用巨哥科技紅外熱像儀測量碳纖維板和羽流的溫度:Thermal images are recorded using a MAG32HF camera made by Magnity Electronics at 384 × 288 pixel resolution.

3. Effect of Color Coating of Cover Plate on Thermal Behavior of Flat Plate Solar Collector,2020年發(fā)表于 Energies
該研究測試涂層對太陽能集熱器熱性能的影響。彩色涂層降低了蓋板的透射率,增加了蓋板的吸收率,從而降低了吸熱板的溫度,提高了蓋板的溫度。當涂層位于外表面時,涂層吸收的大部分太陽能會直接損失。當涂層位于內表面時,涂層吸收的部分太陽能被保留,這減少了太陽能集熱器的頂部熱損失,從而增加了有用能量增益和吸熱板溫度。與蓋板外表面有涂層的太陽能集熱器相比,內表面有涂層的太陽能集熱器吸熱板溫度高0.8℃,頂部熱損失低5%。研究使用巨哥科技紅外熱像儀觀測不同涂層方式的蓋板溫度分布情況:A thermal infrared imager (MAG62, 2% accuracy, Shanghai Magnity Electronics Co., Ltd., Shanghai, China) was used to observe the temperature distribution of cover plates.

4. Effects of Strand Lay Direction and Crossing Angle on Tribological Behavior of Winding Hoist Rope,2017年發(fā)表于Materials, MDPI
該研究利用自制的試驗臺進行了一系列試驗,研究了股線鋪設方向和交叉角對纏繞鋼絲繩摩擦學性能的影響。研究使用巨哥科技紅外熱像儀觀測纏繞鋼絲摩擦位置的溫度變化情況:the evolution of the temperature value of the point selected in the picture can be derived through the software (ThermoX, MAGNITY ELECTRONICS, Shanghai, China)

5. Electro-active Shape Memory Composite Enhanced by Flexible Carbon Nanotube/Graphene Aerogel,發(fā)表于Journal of Materials Chemistry A
該研究提出了一種新型的形狀記憶氣凝膠/環(huán)氧樹脂復合結構材料,由還原碳納米管和石墨烯復合氣凝膠作為支架,環(huán)氧樹脂作為基體組成,具有高導電性。研究使用巨哥科技紅外熱像儀檢測復合材料表面溫度:Surface temperatures of composites were monitored by a thermal infrared imager(MAG30, Magnity Electronics, CHN) with temperature range of -20~150℃ (maximum 240 ℃) and accuracy of 0.1 ℃.

6. Evolution Properties of Tribological Parameters for Steel Wire Rope under Sliding Contact Conditions,2018年發(fā)表于Metals, MDPI
該研究通過分析摩擦系數(shù)、溫升及磨損特性,研究鋼絲繩在不同接觸方式及不同滑動距離下的摩擦情況。研究使用巨哥科技紅外熱像儀觀測鋼絲繩不同解除條件下接觸區(qū)域的溫升情況:the maximum temperature rise in the contact region was obtained using a thermal infrared imager and the supporting software (ThermoX, MAGNITY ELECTRONICS, Shanghai, China).

7. Evolution Behavior and Closure Mechanism of Porosity in Large Billet during the Reduction Pretreatment,2022年發(fā)表于Metals, MDPI
該研究提出了在大型鋼坯上采用壓下預處理工藝,以減輕中心疏松,降低軋制比,利用大型鋼坯在還原預處理過程中氣孔的演化行為和閉合機理,證明了還原預處理在降低孔隙度方面的有效作用。研究使用巨哥科技紅外熱像儀測量鋼坯表面溫度:The temperature at the center point of the surface was measured by an infrared thermometer (MAGNITY TECHNOLOGIES, Shanghai, China).

8. Graphene-Carbon Composites for Solar and Low-voltage Powered Efficient Interfacial Evaporation,2020年發(fā)表于Advanced Sustainable Systems
該研究通過氧化石墨烯(rGO)的原位電化學還原,制備了柔性超薄石墨烯-碳布(CC)基碳-碳復合材料。碳-碳復合材料在光熱蒸發(fā)方面表現(xiàn)出了很高的性能,在可持續(xù)的能源收集和能源利用方面具有巨大潛力,如太陽能熱流的產生和界面蒸發(fā)。研究使用巨哥科技紅外熱像儀觀測不同材料在相同電壓加熱情況下的溫度變化情況:The collection of the infrared photos during the experiments was done using an IR camera (MAG32, Magnity Electronics, China).

9. Highly efficient solar seawater desalination with environmentally friendly hierarchical porous carbons derived from halogen-containing polymers,2019年發(fā)表于Royal Society of Chemistry
該研究提供了一種簡單、低成本的工藝,將鹵化塑料轉化為環(huán)境友好和有用的多孔碳材料(HPC),可在生產清潔淡水的同時回收鹵化聚合物并收集太陽能。該研究使用巨哥科技紅外熱像儀觀測柔性HPC/紙張設備運行時的溫度和熱能分布:The infrared mappings and the temperature distributions were captured by using an IR camera (MAG32, Magnity Electronics, China).

10. Highly thermally conductive phase change composites for thermal energy storage featuring shape memory,2020年發(fā)表于Composites Part A, ELSEVIER
該研究以PEG為相變材料,固化交聯(lián)的介晶環(huán)氧樹脂為形態(tài)穩(wěn)定材料,基于共價非共價互穿網絡設計了具有形狀記憶的高導熱形態(tài)穩(wěn)定相變材料(PCMs)。研究使用巨哥科技紅外熱像儀觀測4種不同的環(huán)氧樹脂樣品的溫度分布圖像及表面溫度隨時間的變化:The infrared thermal imaging was collected by MAG32 infrared thermal imager (Magnity Electronics).

11. Investigation on Friction Characteristics of Micro Double Cup Extrusion Assisted by Different Ultrasonic Vibration Modes,2022年發(fā)表于Research Square
該研究對T2銅進行微雙杯擠壓實驗,分析樣品與模具型腔在多個超聲振動模式下的摩擦特性,建立數(shù)值模型以量化多個超聲振動模式引起的摩擦應力降低,并估計其對降低成形應力的影響。研究使用巨哥科技紅外熱像儀觀測具有多種超聲振動模式的模具和刀具的溫度:The temperatures of tool and mold with multiple ultrasonic vibration modes were obtained by MAG62 thermal imaging camera of Magnity, China.

12. Low Cost, Robust, Environmentally Friendly Geopolymer-Mesoporous Carbon Composites for Efficient Solar Powered Steam Generation,2018年發(fā)表于Advanced Functional Materials
該研究介紹一種具有中孔和大孔結構的地聚合物生物質介孔碳復合材料(GBMCC)裝置,用于收集太陽能,然后將其用于裝置中,利用負壓、風力和蒸汽發(fā)電高效產生水蒸氣。研究使用巨哥科技紅外熱像儀觀測GBMCC裝置在不同太陽能照明下的表面溫度隨時間變化情況:The infrared photographs and videos were captured by using an IR camera (MAG32, Magnity Electronics, China).

13. Parametric Studies of Laminated Cooling Configurations: Overall Cooling Effectiveness,2021年發(fā)表于International Journal of Aerospace Engineering,Hindawi
該研究通過模型實驗驗證幾何參數(shù)和熱力學參數(shù)對層壓結構整體冷卻效率的影響,建立了一個經驗關聯(lián)式來預測特定范圍內氣膜的整體冷卻效率。研究使用巨哥科技紅外熱像儀觀測不同參數(shù)條件下氣膜冷卻效果的溫度分布情況:The infrared thermography (Mag32HF model) is produced by Magnity Electronics Co., Ltd.

14. Shape-Stabilized Phase Change Materials with Superior Thermal Conductivity for Thermal Energy Harvesting,2022年發(fā)表于ACS APPLIED POLYME MATERIALS
該研究制備了在低填充量下制備高導熱、形狀穩(wěn)定的相變復合材料,該復合材料是通過EG/PEG雜化物和EP/BN混合物的共混和固化獲得的,具有良好的熱穩(wěn)定性,相變組分PEG在復合材料中穩(wěn)定牢固,在高溫和長時間加熱下不會從基體中泄漏,并具有優(yōu)異的光熱轉換和熱管理能力。研究使用巨哥科技紅外熱像儀觀測樣品在太陽模擬器下充電過程的溫度變化情況:The infrared thermal imaging was recorded by an MAG32 infrared thermal imager (Magnity Electronics).

15. Study of photocurable energetic resin based propellants fabricated by 3D printing,2021年發(fā)表于Materials & Design,ELSEVIER
該研究制備并表征了一種新型含能丙烯酸酯封端聚-3-硝基甲基-3-甲基氧代烷(APNIMO)齊聚物,展示了由APNIMMO和CL-20(六硝基六氮雜異纖鋅烷十二烷)組成的新型復合推進劑的性能,適用于立體光刻(SLA)3D打印,不僅提供了改進的熱力學能量,而且大大提高了燃燒率。研究使用巨哥科技紅外熱像儀觀測UV固化過程中APNIMO的溫度變化:a MAGNITY MAG62 infrared thermal imager and THERMO X software were used to measure the maximum exothermic temperature of the binder matrix under the irradiation of UV light.

16. Study on Film Cooling Performance of Round Hole Embedded in Different Shaped Craters and Trenches,2021年發(fā)表于Aerospace,MDPI
該研究通過建立溝槽氣膜冷卻的CFD模型,研究橫向溝槽、W形溝槽和橢圓形溝槽的薄膜冷卻性能,驗證吹風比和幾何參數(shù)對排放系數(shù)和薄膜冷卻效率的影響。研究使用巨哥科技紅外熱像儀對涂有黑色涂料的橡膠實驗板進行溫度測量,觀測不同溝槽冷卻情況:The infrared thermography (Mag32HF model) produced by Magnity Electronics Co. Ltd. (Shanghai, China) has a test range of -20~300℃and an accuracy of ±1℃.

17. The friction and wear properties of steel wire rope sliding against itself under impact load,2018年發(fā)表于Wear,ELSEVIER
該研究利用摩擦試驗臺進行滑動摩擦試驗,了解纏繞式提升鋼絲繩層間摩擦磨損機理。研究使用巨哥科技紅外熱像儀觀測接觸摩擦區(qū)鋼絲繩之間滑動摩擦產生的溫升變化情況:The characteristics of the friction temperature rise are studied using a thermal infrared imageing, which can monitor the temperature distribution in real time by the manual camera, process the signal, record and display it through the software (ThermoX, MAGNITY ELECTRONICS, shanghai, China).

18. Ultra-long W microfiber achieving 0.2Ω sq-1@90% transparency as newtype high-performance flexible transparent conductor,2020年發(fā)表于Chemical Engineering Journal,ELSEVIER
該研究通過拉伸紡絲成功地生產出了超長W超細纖維,并組裝成微纖維網絡,可以作為一種高性能的柔性透明導體,有效消除光纖到光纖的連接電阻,并具有優(yōu)異的抗熱和防腐蝕性能。研究使用巨哥科技紅外熱像儀觀測不同電壓W微纖維網絡的溫度變化及扭轉實驗時W微纖維網絡的溫度分布:Infrared images were taken by the infrared thermal imager (MAG 32, Magnity Electronics Co. Ltd., China).

19. Experimental Analysis of Critical Acceleration Condition for Two-Sided Upward Flame Spread Over Inclined Thin Fuel Surfaces,2018年發(fā)表于Fire Technology
該研究通過實驗分析傾斜表面上的雙面向上火焰行為,計算熱解蔓延速率、熱解長度、預熱長度、點火時間、火焰傾角和距離,獲得傾斜表面上雙面火焰?zhèn)鞑ヒ?guī)律,可應用于消防安全設計。研究使用巨哥科技紅外熱像儀觀測火焰?zhèn)鞑ミ^程中樣品表面隨時間增加的溫度分布情況:A high-frequency IR imager (MAGNITY-MAG32HF) was set perpendicular to the sample surface to obtain the surface temperature field.

20. Experimental investigations of width effects and flame splitting phenomenon in upward flame spread over advertising canvas,2019年發(fā)表于Case Studies in Thermal Engineering, ELSEVIER
該研究通過觀測廣告畫布燃燒情況來研究火焰向上傳播過程中的寬度效應和火焰分裂現(xiàn)象,了解火焰?zhèn)鞑ズ蜕L的機制。研究使用巨哥科技紅外熱像儀監(jiān)測畫布燃燒時的表面溫度分布:The infrared imager (MAGNITY-MAG32HF) with a band pass filter was set at the front of the samples to monitor the advertising canvas surface temperature.

21. Fire Extinguishment Behaviors of Liquid Fuel Using Liquid Nitrogen Jet, 2016年發(fā)表于Wiley Online Library
該研究通過測量液氮的重量、溫度和紅外熱圖,觀測液氮與池火的相互作用過程,比較液氮垂直和水平射流對池火的滅火性能。研究使用巨哥科技紅外熱像儀繪制池火表面上方空間的溫度分布圖,并觀測滅火過程:An infrared thermal imager (Magnity Electronic, China) with the spectral range of 8–17 um was employed to map the temperature profiles of the space above the pool fire surface.

22. Spacing effects on downward flame spread over thin PMMA slabs,2019年發(fā)表于Case Studies in Thermal Engineering,ELSEVIER
該研究對聚甲基丙烯酸甲酯(PMMA)樣品上的向下火焰?zhèn)鞑ミM行了實驗,探索非炭化材料上的火焰?zhèn)鞑C理,提出了一個傳熱模型來檢驗PMMA板上的間距效應,并根據(jù)實驗結果導出火焰?zhèn)鞑ニ俾逝c間距的關系式。研究使用巨哥科技紅外熱像儀觀察到PMMA板預熱區(qū)的溫度分布情況:A high-frequency infrared thermal imager (MAGNITY-MAG32HF) has an uncooled focal plane array microbolometer with the adjustable emissivity of 0.01–1.0.

以上就是材料科學與工程研究中使用巨哥科技熱像儀開展的部分研究工作。巨哥科技致力于為前沿科學研究領域提供科學級精準測溫熱像儀,助力科研人員取得優(yōu)秀的科研成果,歡迎聯(lián)系咨詢。
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