注意:因業務調整,暫不接受個人委托測試望見諒。
空調,冰箱,保溫箱,冷凍庫,冷藏柜,冷庫,冷凍車,冰淇淋機,冷飲機,溫控箱,冷藏車,制冷船,冷卻塔,冷卻器,冷卻裝置,制冷設備,低溫實驗柜,冷凍機,制冷系統,冷凍設備
氨氣檢測,氧氣檢測,二氧化碳檢測,甲醛檢測,苯乙烯檢測,光彈性檢測,表面粗糙度檢測,芬頓檢測,硬度檢測,電導率檢測,霍爾效應檢測,對比度檢測,恒溫器檢測,接地線安全檢測,紫外線消毒檢測,資料加密檢測,槽化粘度檢測,干旱度檢測,功率檢測,單體電池檢測
Thermal Conductivity Test:
This method measures the thermal conductivity of the sample to determine its maximum cooling capacity.
Specific Heat Capacity Test:
This test evaluates the specific heat capacity of the sample to understand its ability to store and release energy during cooling.
Thermogravimetric Analysis (TGA):
TGA can be used to analyze the thermal stability of the sample under different temperature conditions.
Differential Scanning Calorimetry (DSC):
DSC is employed to study the phase transitions and heat flow of the sample at various temperatures.
X-ray Diffraction (XRD):
XRD helps in identifying the crystal structure of the sample, which can affect its cooling performance.
Scanning Electron Microscopy (SEM):
SEM can provide information on the surface morphology and microstructure of the sample.
Energy Dispersive X-ray Spectroscopy (EDS):
EDS is used to analyze the elemental composition of the sample, which can influence its cooling properties.
Dynamic Mechanical Analysis (DMA):
DMA can evaluate the viscoelastic properties of the sample at different temperatures to understand its behavior during cooling.
Particle Size Analysis:
This method determines the size distribution of particles in the sample, which can impact its overall cooling efficiency.
Thermo Scientific Sorvall ST 8 Centrifuge, Beckman Coulter Avanti JXN-30 Centrifuge, Agilent 1260 Infinity HPLC System, PerkinElmer Lambda 365 UV/Vis Spectrophotometer, Waters Acquity UPLC System, Bruker ALPHA FT-IR Spectrometer, Agilent 7890B Gas Chromatograph, Shimadzu Nexera X2 HPLC System, Thermo Scientific TRACE 1300 Gas Chromatograph, Agilent 7700 ICP-MS, Malvern Panalytical Mastersizer 3000 Particle Size Analyzer, Bruker D2 PHASER X-Ray Diffractometer, Horiba FluoroLog-3 Fluorometer, PerkinElmer Optima 8300 ICP-OES, Waters Xevo TQ-S Mass Spectrometer, Beckman Coulter DelsaMax PRO Light Scatter Instrument, Agilent 4500 Series FTIR Spectrometer, Shimadzu TOC-LCPH Total Organic Carbon Analyzer, Thermo Fisher DXR3 Raman Microscope, PerkinElmer Clarus 680 GC, Waters Alliance HPLC System
GB/T 18517-2012:制冷術語
GB/T 27940-2011:制冷用容積式單級制冷壓縮機并聯機組
GB/T 26205-2010:制冷空調設備和系統 減少鹵代制冷劑排放規范
GB/T 7941-2019:制冷試驗裝置
GB/T 33224-2016:制冷和供熱用機械制冷系統環境影響評價方法
JJG (輕工) 105-1994:制冷壓縮機量熱計(第二制冷劑量熱器法)
JB/T 14076-2022:小型GM制冷機
GB/T 21145-2023:運輸用制冷機組
JB/T 8701-2018:制冷用板式換熱器
GB/T 16426-1996:粉塵云最大爆炸壓力和最大壓力上升速率測定方法
JB/T 4119-2013:制冷用電磁閥
GB/T 15912.1-2009:制冷機組及供制冷系統節能測試 第1部分:冷庫
GB/T 19315-2003:小艇 最大裝載量
QB/T 5369-2019:半導體制冷器具
AQ 7015-2018:氨制冷企業安全規范
JB/T 11520-2013:制冷設備用單向閥
DB31/T 836-2014:制冷劑使用技術通則
JB/T 12319-2015:制冷劑回收機
JB/T 3548-2013(2017):制冷用熱力膨脹閥
NB/T 10534-2021:煤礦用壓縮式制冷裝置
QB/T 5970-2023:金屬復合用輻射制冷膜
GB/T 33841.1-2017:制冷系統節能運行規程 第1部分:氨制冷系統
JB/T 12319-2015(2017):制冷劑回收機
NB/T 47012-2020:制冷裝置用壓力容器
JB/T 7249-2022:制冷與空調設備 術語
JB/T 7245-2017:制冷系統用鋼制、鐵制制冷劑截止閥和升降式止回閥
GB/T 22070-2008:氨水吸收式制冷機組
JB/T 11132-2011:制冷與空調用套管換熱器
JB/T 3548-2013:制冷用熱力膨脹閥
GB/T 8059-2016:家用和類似用途制冷器具
1.具體的試驗周期以工程師告知的為準。
2.文章中的圖片或者標準以及具體的試驗方案僅供參考,因為每個樣品和項目都有所不同,所以最終以工程師告知的為準。
3.關于(樣品量)的需求,最好是先咨詢我們的工程師確定,避免不必要的樣品損失。
4.加急試驗周期一般是五個工作日左右,部分樣品有所差異
5.如果對于(最大制冷檢測)還有什么疑問,可以咨詢我們的工程師為您一一解答。
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