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汽车、摩托车用燃油传感器
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QCT 823-2009
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标准编号: QC/T 823-2009 (QC/T823-2009) 中文名称: 汽车、摩托车用燃油传感器 英文名称: Fuel sensor for automobile and motorcycle 行业: 汽车行业标准 (推荐) 中标分类: T35 国际标准分类: 43.040.10 字数估计: 11,182 发布日期: 2009-11-17 实施日期: 2010-04-01 引用标准: QC/T 727-2007; QC/T 29106 起草单位: 合肥邦立电子有限公司 归口单位: 全国汽车标准化技术委员会 标准依据: 工科(2009)第63号;行业标准备案公告2010年第2号(总第122号) 范围: 本标准规定了汽车、摩托车用燃油传感器(以下简称传感器)的分类、要求、试验方法、检验规则、标志、包装、贮存和保管。
QC/T 823-2009
QC
ICS 43.040.10
T 35
AUTOMIBILE INDUSTRY STANDARD
OF THE PEOPLE’S REPUBLIC OF CHINA
Fuel sensor for automobile and motorcycle
ISSUED ON. NOVEMBER 17, 2009
IMPLEMENTED ON. APRIL 1, 2010
Issued by. Ministry of Industry and Information Technology of the
People’s Republic of China
Ministry of Industry and Information Technology of the
People’s Republic of China
Notice
GK (2009) No. 63
Ministry of Industry and Information Technology has approved 139 industry standards,
including Snow removal vehicle etc. In which, it includes 29 automobile industry
standards, 29 pharmaceutical equipment industry standards, 4 packaging industry
standards, and 77 textile industry standards (see Annex 1 for standard number, name,
main content and the initial implementation date); and the approved modification list of
FZ/T 73001-2008 textile industry standard of Socks (See Annex 2). Hereby it is
announced. The standard modification list shall be implemented from the
announcement date. Automobile Industry Standard shall been implemented since
April 1, 2010.
The above mentioned automobile, pharmaceutical equipment and packaging industry
standards are published by China Planning Press. And textile industry standards are
published by Standards Press of China.
Annex. Numbers and names of 29 items of automobile industry standards
Ministry of Industry and Information Technology
of the People’s Republic of China
November 17, 2009
Annex.
Numbers and names of 29 items of automobile industry standards
Serial
No. Standard No. Standard name Replaced standard
1 QC/T 807-2009 Snow removal vehicle
2 QC/T 808-2009 Technical specifications for bloodmobile
3 QC/T 631-2009 Automobile exhaust muffler assembly technical specification and test methods
QC/T 631-1999
QC/T 630-1999
4 QC/T 60-2009 Methods of running test on bench for motorcycles and mopeds QC7T 60-1993
5 QC/T 658-2009
Air-conditioning refrigeration system
performances road test method for motor
vehicles
QC/T 658-2000
6 QC/T44-2009 Vehicle-windshield window wiper of motor QC/T44-1997
7 QC/T 633-2009 The seats of passenger vehicles QC/T 633-2000
8 QC/T 809-2009 Nozzle of gas-fired vehicle
9 QC/T 810-2009 Solenoid switch for automobile starters specification
10 QC/T 811-2009 The microwave maintenance vehicle for bituminous pavement
11 QC/T 812-2009 Specifications and test methods for oil separator for crankcase ventilation of diesel engine
12 QC/T 813-2009 Technical requirements for special equipment of dimethyl-ether vehicles
13 QG/T 814-2009 Mounting requirements of special equipment for dimethyl-ether vehicles
14 QC/T 815-2009 Quick-insert filling receptacle of DME vehicle
15 QC/T 816-2009 Specification of mobile hydrogen refueling vehicles
16 QC/T 817-2009
Durability requirements and testing methods of
reed valve type second air injectors for
motorcycles and mopeds
17 QC/T 818-2009 Spoke-wheels of motorcycles and mopeds
18 QC/T 71-2009 Rims of motorcycles and mopeds QC7T 71-1993
19 QC/T 819-2009 Frame of two-wheel motorcycle and two-wheel moped
20 QC/T 227.1-2009 Test methods of the friction performance of brake lining for motorcycles and mopeds QC/T 227.1-1997
21 QC/T 227.2-2009
Test methods of the adhesive bonding shearing
strength of brake lining for motorcycles and
mopeds
QG/T 227.2-1997
22 QC/T 232-2009 Strength requirements and test methods for brake handle of motorcycles and mopeds QC7T 232-1997
24 QC/T 14-2009 Tyre air-pressure gauge for automobile QC/T 14-1992
25 QC/T 821-2009 Engine cold-water and oil temperature sensor for automobile
26 QC/T 822-2009 Engine oil pressure sensor for automobile
27 QC/T 823-2009 Fuel sensor for automobile and motorcycle
28 QC7T 824-2009 Tachometer sensor for automobile
29 QC/T 462-2009 Automobile engine working hour meter QC/T 462-1999
Table of Contents
Foreword ... 5
1 Scope ... 6
3 Classifications ... 6
4 Requirements ... 6
5 Test methods ... 9
6 Inspection rules ... 11
7 Marking, packaging, storage and safekeeping ... 12
Foreword
This standard is drafted with reference to the enterprise standards of foreign
companies.
This standard was proposed by National Technical Committee on Road Vehicles of
This standard shall be under the jurisdiction of National Technical Committee on Road
Vehicles of Standardization Administration of China.
The responsible drafting organizations of this standard. Hefei Bangli Electronic Co.,
Ltd, Shaoxing Longyi Automobile Fittings Co., Ltd, Shaoxing Jiasheng Instrument Co.,
Ltd, Wuhu Dongfang Vehicle Instrument Co., Ltd., and Anhui Jinhaida Automotive
Electronics Co., Ltd.
The chief drafting staffs of this standard. Fang Xibang, Qiao Xiaoxia, Zhang Lu, Wang
Wei, Shan Liming, Hu Heqi, and Chen Jianhai.
This standard is issued for the first-time.
1 Scope
This standard specifies the classification, requirements, test methods, inspection rules
and markings, packaging, storage, and maintenance of fuel sensor for automobile
and motorcycle (hereinafter referred to as the sensor).
This standard applies to fuel sensor for automobile and motorcycle. Fuel sensor for
other motor vehicles shall also be implemented with reference to this standard.
2 Normative references
The articles contained in the following documents have become part of this standard
when they are quoted herein. For the dated documents so quoted, all the
applicable to this standard. For the undated documents so quoted, the latest editions
shall be applicable to this standard.
QC/T 727-2007 Instrument for automobile and motorcycle
QC/T 29106 Technical specification of low-voltage electric harness for motor
vehicles
3 Classifications
Sensors shall be classified into 3 types – resistance-type, capacitance-type, and
pressure-type. Resistance-type sensors are divided into 2 types - reed
variable-resistance sensors, and sliding variable-resistance sensors.
4.1 General provisions
4.1.1 Product documentation.
4.1.1.1 The sensors shall conform to the requirements of this standard. And it shall be
manufactured according to the drawings and design documents approved by the
specified procedures.
4.1.1.2 Appearance and mounting dimensions of the sensors shall conform to the
provisions of the product drawings.
4.10 Durability
The sensor shall be able to withstand 30,000 times of alternating cycle inspections. Its
variation of indication value shall not exceed 7% of the nominal value of the measured
point; it shall conform to the provisions of 4.3, before and after the inspection.
4.11 Oil resistance
The sensor shall be able to withstand the immersion in the alcohol, gasoline or diesel.
After the inspection, the mechanical part and rubber part shall be free of the defects
such as deformation, color change and cracks. And it shall conform to the provisions
of 4.3 and 4.4.
4.12 Gas tightness
For gas tightness inspection, pressure gauge reading of the sensor shall remain
5 Test methods
5.1 Test conditions
5.1.1 Output value test of the sensor shall be conducted under the environment
conditions specified in 4.1.2.
5.1.2 The accuracy of digital multimeter for the test shall be ± 0.5.
5.1.3 The accuracy of steel gauge shall be ± 1mm.
5.1.4 The accuracy of standard thermometer shall be ± 1°C.
5.2 Appearance
For appearance inspection, it shall be inspected with an average illumination of about
5.3 Basic error test
The test shall be conducted on the special equipment. The height deviation of the
special equipment shall be ±2mm. During the test, the liquid level shall be changed
steadily from UP (Full 1) to DOWN (Empty 0); output value at 1, 1/2, alarming point,
and 0 shall be measured by using multimeter. During the test, indication value can be
read only after it remains at the test reference line for at least 1min. State of the
movable part shall be inspected in the test.
5.4 Insulation and voltage resistance test
It shall be conducted according to the provisions 5.8 in QC/T 727-2007.
It shall be conducted according to the provisions 5.9 in QC/T 727-2007.
5.6 Temperature effect test
5.6.1 Test points. Conduct the inspection only at 1/2 place.
5.6.2 High-temperature effect test. Firstly, INSPECT the output value of the sensor
under the specified environment condition specified in 4.1.2. Then PLACE the sensor
into the high temperature cabinet. MAINTAIN the temperature for 2 hours after the
cabinet temperature rises to 80°C±2°C. INSPECT the output value according to the
methods specified in 5.3. OBTAIN the difference of output value between high
temperature ...
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