GMW GMW14787-2011 HVAC Hybrid Filter Particle and Odor Issue 2 English《HVAC混合滤波器 颗粒和气味 第2次出版(英文版本)》.pdf
《GMW GMW14787-2011 HVAC Hybrid Filter Particle and Odor Issue 2 English《HVAC混合滤波器 颗粒和气味 第2次出版(英文版本)》.pdf》由会员分享,可在线阅读,更多相关《GMW GMW14787-2011 HVAC Hybrid Filter Particle and Odor Issue 2 English《HVAC混合滤波器 颗粒和气味 第2次出版(英文版本)》.pdf(11页珍藏版)》请在麦多课文档分享上搜索。
1、 WORLDWIDE ENGINEERING STANDARDS General Specification GMW14787 HVAC Hybrid Filter, Particle and Odor Copyright 2011 General Motors Company All Rights Reserved December 2011 Originating Department: North American Engineering Standards Page 1 of 11 1 Introduction Note: Nothing in this standard superc
2、edes applicable laws and regulations. Note: In the event of conflict between the English and domestic language, the English language shall take precedence. 1.1 Scope. For all vehicle interior hybrid filters. The requirements indicated in this specification are coordinated for flowed through filter a
3、reas 5 dm2. Filter areas of 3 95 95 95 Condition: New Any After Aging Loading: unloaded/+50 Pa +200 Pa unloaded/+50 Pa 165 110 55 0 0 Copyright General Motors Company Provided by IHS under license with General Motors CompanyNot for ResaleNo reproduction or networking permitted without license from I
4、HS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW14787 Copyright 2011 General Motors Company All Rights Reserved December 2011 Page 5 of 11 Table 3: Limiting Curves of Fractional Collection Rates for Small Particles Particle Diameter Mobility Diameter in m Limiting Curve F1 in % Limiting Curve F2 in % L
5、imiting Curve F3 in % 0.05 55 55 35 0.1 45 45 25 0.2 to 0.3 30 40 20 Condition: New Any After Aging Loading: unloaded/+50 Pa +200 Pa unloaded/+50 Pa 4.3.1 Immediate Break-Through. The immediate break-through is defined as the percentage rate of the concentrations before and after the filter, immedia
6、tely after the commencement of loading the filter with the test gas. The immediate break-though is calculated from the first measured values after beginning of the application of gas. The time between the application of gas and the 1st measured value may be 20 seconds (maximum). Dead times caused by
7、 the test stand between the application of gas and arrival of the gas before the filter shall be proved by measurement in the individual case and taken into account mathematically in the evaluation if necessary. Determination in accordance with DIN 71460-2 under the following test conditions: Volume
8、tric flow: 50 L/s Relative humidity (RH): (50 3)% Temperature: (+23 3) C Application concentration, n-Butane or toluene: (80 2) ppm Application concentration SO2: (30 2) ppm Application concentration NOx and NO2: (30 3) ppm 4.3.1.1 Requirements. See Table 4. Table 4: Immediate Break-Through Limit Va
9、lues Test Gas Immediate Break-Through n-Butane 12% maximum toluene 10% maximum SO2 10% maximum NOx 9% maximum NO2 5% maximum 4.3.2 Storage Capacity (Adsorption Capacity). The storage capacity refers to the maximum quantity of the test gas in grams which can be adsorbed by a filter element. Determina
10、tion in accordance with DIN 71460-2. Calculate from concentrations subject to the following test conditions: Volumetric flow: 50 L/s Relative humidity: (50 3)% Copyright General Motors Company Provided by IHS under license with General Motors CompanyNot for ResaleNo reproduction or networking permit
11、ted without license from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW14787 Copyright 2011 General Motors Company All Rights Reserved December 2011 Page 6 of 11 Temperature: (+23 2) C Application concentration, n-Butane or toluene: (80 2) ppm Application concentration SO2: (30 3) ppm Application co
12、ncentration NOx and NO2: (30 3) ppm Criterion for stopping: Break-through 95% 4.3.2.1 Requirements. See Table 5. Table 5: Minimum Storage Capacity Requirement Test Gas Storage Capacity g/Filter Element n-Butane 4 toluene 28 SO2 5 within 60 minutes NOx 4 within 60 minutes NO2 7 within 60 minutes 4.3.
13、3 Break-Through Behavior. Without prejudice to the requirements regarding immediate break-through (paragraph 4.3.1) and the requirements regarding storage capacity (paragraph 4.3.2), the efficiency described below shall be proved over the test period in the first 15 minutes of the test. Determinatio
14、n similar to DIN 71460-2 under the following test conditions: Volumetric flow: 50 L/s Relative humidity: (50 3)% Temperature: (23 3) C Application concentration, n-Butane or toluene: (80 2) ppm Application concentration SO2: (30 2) ppm Application concentration NOx and NO2: (30 3) ppm 4.3.3.1 Requir
15、ements. The break-through graph determined for the respective test gas may not exceed the values in Table 6. Table 6: Maximum Permissible Limit Values for the Break-Through Graphs in the First 15 Minutes Test Gas Break-Through in % After 300 seconds After 600 seconds After 900 seconds n-Butane 50 80
16、 90% toluene 16% 25% 30% SO2 32% 45% 50% NOx 27% 35% 43% NO2 7% 11% 15% Copyright General Motors Company Provided by IHS under license with General Motors CompanyNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW14787 Copyright 2
17、011 General Motors Company All Rights Reserved December 2011 Page 7 of 11 Figure 2: Maximum Permissible Limit Values for the Break-Through Graphs in the First 15 Minutes 4.4 Aging Test. To evaluate the reduction in the effectiveness of the filter caused by temperature and humidity, the filters are s
18、ubjected to the aging test below. The filters shall pass through the test cycle described in paragraph 4.4.1 three times. See Table 7. After completion, the filters are deemed to be “aged“ within the meaning of this specification. After the aging test, the filters shall pass the tests according to A
19、ppendix A and fulfill the described requirements. 4.4.1 Aging Test (Dry-Humid-Wet-Frost). See Table 8. The test points 1, 2, 3 a/b, and 4 are each performed on one day. Work-free days falling within the test period (e.g., weekends or holidays) are to be filled in with storage at (23 3) C. Prevent st
20、orage of the filter for several days at (23 3) C in a thawed-wet condition (after the end of the third test day) in order not to falsify the results. In a normal 5 day week, Monday or Tuesday is, therefore, the best day for beginning of the test cycle. During the entire aging test, care shall be tak
21、en that the filter is not accidentally loaded with dust. Table 9 shows the pattern and the possible starting times for a complete cycle. Copyright General Motors Company Provided by IHS under license with General Motors CompanyNot for ResaleNo reproduction or networking permitted without license fro
22、m IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW14787 Copyright 2011 General Motors Company All Rights Reserved December 2011 Page 8 of 11 Table 7: Aging Cycle Part Cycle Test Conditioning Duration Intermediate Storage at (23 3) C 1 Temperature-Humidity-Storage At (100 3) C, 25% RH 20 hours 4 hours
23、2 Temperature-Humidity-Storage At (60 3) C, 98% RH 20 hours 4 hours 3a Moistening The filter is wetted with 600 mL distilled water using a suitable atomizer. After an exposure time of 2 hours, any water remaining on the filter is poured off. 2 hours 3b Freezing The filter is frozen in the wet condit
24、ion at (-30 3) C. After a frost time of 18 hours, the filter is thawed for 4 hours at (23 3) C and stored. 18 hours 4 hours 4 Drying The thawed filter is dried in an oven with circulating air at (50 3) C 20 hours 4 hours Table 8: Aging Test for Vehicle Interior Filters and Combi-filters Aging Cycle
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