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PDF QC/T 529-2013 English (QC/T 529-2000: Older version)


Search result: QC/T 529-2013 (QC/T 529-2000 Older version)
Standard IDContents [version]USDSTEP2[PDF] delivered inName of Chinese StandardStatus
QC/T 529-2013English350 Add to Cart 0-9 seconds. Auto-delivery. Motor vehicles - Hydraulic power steering gear - Technique requirements and test methods Valid
QC/T 529-2000English239 Add to Cart 2 days Automotive power steering assembly bench test method Obsolete
QC/T 529-1999EnglishRFQ ASK 3 days (Chinese Industry Standard) Obsolete

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QC/T 529-2013: PDF in English (QCT 529-2013)

QC/T 529-2013 QC AUTOMOBILE INDUSTRY STANDARD OF THE PEOPLE’S REPUBLIC OF CHINA ICS 43.040.50 T 23 Replacing QC/T 529-2000, QC/T 530-2000 Motor vehicles - Hydraulic power steering gear - Technique requirements and test methods ISSUED ON: APRIL 25, 2013 IMPLEMENTED ON: SEPTEMBER 01, 2013 Issued by: Ministry of Industry and Information Technology of PRC Table of Contents Foreword ... 7 1 Scope ... 8 2 Normative references ... 8 3 Terms and definitions ... 8 4 General ... 10 5 Test samples ... 10 6 Recirculating ball power steering gear ... 11 7 Rack and pinion power steering gear ... 15 8 Inspection rules ... 21 Motor vehicles - Hydraulic power steering gear - Technique requirements and test methods 1 Scope This standard specifies the technical conditions and test methods, for the constant flow hydraulic power steering gear of automobiles. This standard applies to constant flow hydraulic power steering gear of automobiles. This standard does not apply to full hydraulic steering gear. 2 Normative references The following documents are essential to the application of this document. For the dated documents, only the versions with the dates indicated are applicable to this document; for the undated documents, only the latest version (including all the amendments) is applicable to this standard. GB 5179 Motor vehicle - Steering system - Terms and definitions QC/T 305 Specifications for power steering control valve assembly of automobile QC/T 306 Bench test method for automobile power steering control valve assembly 3 Terms and definitions The terms and definitions, as defined in GB/T 5179, as well as the following terms and definitions, apply to this standard. 3.1 Center location The 1/2 position of the total number of turns of the hydraulic power steering gear assembly (hereinafter referred to as the assembly). 3.2 Circle e) The tightening torque of the internal and external screws, during disassembly and inspection, is less than 0.7 times the minimum tightening torque, which is specified for the product; f) Deformation or cracks in any parts. 4 General 4.1 Installation and arrangement of the tested assembly bench. 4.1.1 When testing the assembly, refer to the layout of the original car OR install it straight on the test bench. The oil tank is allowed to use the test bench oil tank. The absolute filtration accuracy of the oil filter shall not be lower than that of the original car. It is allowed to use the device, which is equipped on the test bench, to replace other device. 4.1.2 The oil used in the test shall meet the requirements of the product instruction manual. The oil temperature for performance test is (50 ± 5) °C; the oil temperature for reliability test is (80 ± 5) °C. The test flow rate shall be the rated flow Qn, which is specified in the product manual or design. 4.2 Test errors of test instruments and meters a) Pressure: The error of the pressure test system shall not be greater than 0.5%. b) Flow: The error of the flow test system shall not be greater than 0.5%; c) Rotation angle: The error of the rotation angle test system shall not be greater than 0.5%; d) Displacement: The error of the displacement test system shall not be greater than 0.5%; e) Torque: The error of the torque test system shall not be greater than 0.5%; f) Force: The error of the force test system shall not be greater than 0.5%. 5 Test samples The test samples shall be manufactured, in accordance with the drawings and technical documents, which are approved by the prescribed procedures. Their materials, dimensions, heat treatment and assembly conditions shall comply with the provisions of the drawings and technical documents. 6 Recirculating ball power steering gear 6.1 Performance requirements 6.1.1 The total number of turns of the steering gear and the rotation angle of the rocker shaft. The total number of turns of the steering gear and the rotation angle of the rocker shaft shall meet the design requirements. 6.1.2 No-load torque. The variation range of the average value of left steering and right steering torque shall meet the design requirements. The variation range, from the maximum value to the minimum value, shall meet the design requirements. The variation range of adjacent peaks and troughs in the curve shall meet the design requirements. 6.1.3 Free clearance. The free clearance is not more than 5°. 6.1.4 Functional test. In the process of turning the input end, it feels smooth and no jamming, AND the steering control valve can automatically return. 6.1.5 Steering force characteristics. The steering torque and characteristic curve, at the highest working pressure, shall meet the design requirements; the symmetry of the curve shall not be less than 85%. 6.1.6 Return ability. The return time is not more than 5 s. 6.1.7 Internal leakage. The internal leakage volume meets the design requirements; after the reliability test, it does not exceed 150% of the design value of the leakage volume before the test. 6.1.8 External leakage. No external leakage is allowed in any part of the assembly. 6.2 Reliability requirements 6.2.1 Reverse fatigue test. Install the assembly on the test bench. The test oil pressure is the highest working pressure. The steering rocker arm reaches the maximum output torque, during the test. The input end runs at a speed of (20 ~ 30) r/min. The angle of the input end is not less than 90% of the total turning angle. After 25000 cycles are completed, continue the test according to 6.3.3, 6.3.4, 6.3.5, 6.3.7, after this test. 6.4.3 Forced steering test. This test is not applicable to the semi-integrated hydraulic power steering gear. Install the assembly on the test bench. The oil pump does not work during the test. Rotate the input end, to adjust the output load, so that the torque at the input end is 125 N·m (assembly which has an output torque not greater than 2500 N·m) or 175 N·m (assembly which has an output torque greater than 2500 N·m). After completing 10 cycles, continue the test according to 6.3.4, after this test. 6.4.4 Reverse overload test. Install the assembly on the test bench. Under the powered conditions, fix the input end rigidly in the center location. At the connection between the steering rocker arm and the straight rod, quickly apply the load in the direction of 90° to the centerline of the steering rocker arm, until the load is equal to 3 times the maximum output force of the assembly, stop the test. Finish the test in two directions, respectively. After this test, continue to carry out the test according to 6.3.4. 6.4.5 Overpressure test. Install the assembly on the test bench. Install a stopper, at the maximum swing angle of the steering rocker arm. Rotate the input end, so that the pressure at the oil inlet of the assembly is 2.5 times (for assemblies which have an output torque greater than 2500 N·m) and 2.0 times (for assemblies which have an output torque not more than 2500 N·m) the highest working pressure. Finish the test in two directions, respectively. 7 Rack and pinion power steering gear 7.1 Performance requirements 7.1.1 The total number of turns of the steering gear and the movement of the rack. The total number of turns of the steering gear and the movement of the rack shall meet the design requirements. 7.1.2 No-load torque. Same as 6.1.2. 7.1.3 Free clearance. Same as 6.1.3. 7.1.4 Functional test. Same as 6.1.4. 7.1.5 Steering force characteristics. Same as 6.1.5. 7.1.6 Return ability. The return time is not more than 3 s. 7.1.7 Internal leakage. Same as 6.1.7. 7.1.8 External leakage. Same as 6.1.8. 7.1.9 Steering gear stiffness. Steering gear stiffness shall meet the design requirements. 7.1.10 Reverse drive loads. The reverse drive load shall meet the design requirements. 7.1.11 Noise. The noise shall meet the design requirements. 7.1.12 Vacuum test. There is no abnormal phenomenon, such as suction, sealing ring or sealing lip turning over. 7.2 Reliability requirements 7.2.1 Reverse fatigue test. The internal leakage meets the requirements. There shall be no external leakage, fault, or seal falling off. The reduction of the no-load torque of the input shaft is not more than 30%; the reduction of the rotation rigidity of input shaft is not more than 30%; the change of steering force characteristic is not more than 5%; the rack and pinion's tooth surface have no scratch or fatigue pitting. 7.2.2 Forward-rotation muddy water durability test. Same as 7.2.1. 7.2.3 Forced steering test. There must be no fault to the assembly. 7.2.4 Reverse overload test. The assembly shall be free from fault, extravasation, or other abnormal conditions, during the test. 7.2.5 Overpressure test. The assembly shall be free from fault, extravasation, or other abnormal conditions, during the test. 7.2.6 Tightness test under alternating temperature. The dust cover has no fault; there is no external leakage in each sealing part; the internal leakage does not exceed 15% of the test flow; the function is normal. 7.3 Performance test method 7.3.1 The total number of turns of the steering gear and the movement of the rack. Install the assembly on the test bench. Measure the total number of turns, which are made by the input end, from one extreme position to another. Measure the rack movement. 7.3.2 No-load torque. Same as 6.3.2. 7.3.3 Free clearance. Same as 6.3.3. 7.3.4 Functional test. Same as the test method in 6.3.4. 7.3.5 Steering force characteristics. Same as 6.3.5. 7.3.6 Return ability. ......
 
Source: Above contents are excerpted from the PDF -- translated/reviewed by: www.chinesestandard.net / Wayne Zheng et al.

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