CN204555999U - Measuring probe rotating mechanism - Google Patents

Measuring probe rotating mechanism Download PDF

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Publication number
CN204555999U
CN204555999U CN201520134980.4U CN201520134980U CN204555999U CN 204555999 U CN204555999 U CN 204555999U CN 201520134980 U CN201520134980 U CN 201520134980U CN 204555999 U CN204555999 U CN 204555999U
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China
Prior art keywords
probe
rotating shaft
measuring
runner
probe rotating
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Active
Application number
CN201520134980.4U
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Chinese (zh)
Inventor
刘伟
李东明
顾忠华
芦文才
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Harbin broad power technology development Co., Ltd.
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703th Research Institute of CSIC
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Abstract

The utility model proposes measuring probe rotating mechanism.Runner measuring section Flange joint housing, along the probe radial direction of the sector crosssection of runner measuring section being arranged multiple measuring point, probe is arranged on probe support, probe support is fixed in probe rotating shaft, probe rotating shaft is supported by the bearing in housing, probe rotating shaft is stretched out outside housing, pointer and probe lead are equipped with in the side of probe rotating shaft, opposite side flat key is connected with the output shaft of reducing gear, control motor to be connected with the input shaft of reducing gear, probe lead wears out from the center pit of probe rotating shaft, each junction surface and lead outlet place are equipped with seal, form annular seal space.When control motor accepts order-driven reducing gear, and probe rotating shaft is rotated, and probe rotating shaft drives probe support to rotate, the measuring point parameter of any angle on fan-shaped runner inner periphery direction can be measured, so not only measuring probe total quantity is less, data transmission channel is less, measure count many, and the area taking runner is less, improve surveying work efficiency.

Description

Measuring probe rotating mechanism
technical field:
The utility model relates to Rotating Machinery Experiment field of measuring technique, specifically measuring probe rotating mechanism.
background technology:
Along with the development of measuring technology, developing rapidly particularly along with microelectric technique, various novel sensor and receptor constantly occur, apply various types of sensor at present and test, steam turbine in high-speed rotating machine or engineering machinery, gas turbine, centrifugal compressor, the high-speed rotating machines such as axial-flow compressor have been widely used in energy industry field, the importance simultaneously improving its aeroperformance is self-evident, one of research means and experimental study is absolutely necessary always, as everyone knows, in the experimental study course of work of high-speed rotating machine aeroperformance, pressure, temperature, flow, rotating speed, moments of torsion etc. are all the parameters needing to measure, wherein pressure, the measurement of temperature and flow is even more important, and moving gaseouse medium flows through the stagnation pressure in arbitrary section process in runner, static pressure, speed and temperature are the important parameters in high-speed rotating machine in the course of work, because the shape of cross section of fluid channel is different, and the stagnation pressure of each point in flow field, static pressure, the parameter such as speed and temperature is also just different, and parameter difference sometimes on same cross section is comparatively large, measures the air-flow stagnation pressure of each point in flow field at present, static pressure, speed and the isoparametric way of temperature have a lot, according to different test demands and test condition, adopt the method for testing of different measurement parameters, such as: the total pressure measurement of air-flow is exactly air-flow thermal insulation, exhausted merit, pressure under constant entropy stagnation, common are L-type stagnation pressure tube, band sleeve pipe stagnation pressure tube, ball-and-socket type stagnation pressure tube, the various multi-form stagnation pressure tubes such as multiple spot stagnation pressure tube and boundary layer stagnation pressure tube are measured, what air-flow static pressure measurement method was conventional is that wall static pressure hole and static tube etc. are measured, static pressure be when receptor on air-flow without any interference and gas velocity and streamline are not any affect record, have Pitot-static tube, three hole probes, five-hole probe, hot-wire anemometer and laser Doppler measuring instrument etc. that the measuring method of gas velocity is conventional are measured, the measuring method of gas flow temperature has stagnation formula thermocouple temperature measurement, optical fiber temperature-measurement, jet thermometric, laser temperature-measuring, infrared measurement of temperature and high-temp strain thermometric etc.Air-flow is in runner in flow process, in flow field, the motion conditions of air-flow is very complicated, because the shape in some cross sections is different, air-flow stagnation pressure value on the diverse location point of same cross section, static pressure, temperature value and flow speed value are just different, even sometimes, different each point parameter gradients is larger, the gas flow great majority of high-speed rotating machine are annular channel or the fan-shaped runner formed by multiple Cycle-symmetry, air-flow is in runner in flow process, in flow field, the motion conditions of air-flow is very complicated, the air-flow stagnation pressure value of each point on a sector crosssection, static pressure, temperature value and flow speed value are all different, if will arrange on this cross section that dozens of point is measured, each point needs measure air-flow stagnation pressure value, the parameter such as static pressure and flow speed value, this arranges many probe measuring points by causing on this cross section, the quantity of the measuring probe so not only needed for test job is more, the data channel increasing number of testing apparatus, counting of measuring cannot change, and needed for take the area of runner larger, also the measurement result of test will be had influence on to a certain extent.
utility model content:
For the problems referred to above, the utility model provides a kind of measuring probe rotating mechanism.
The technical solution of the utility model is: measuring probe rotating mechanism, by runner measuring section, control motor, reducing gear, housing, probe rotating shaft, bearing, probe support, probe, pointer and seal composition, runner measuring section Flange joint housing, along the probe radial direction of the sector crosssection of runner measuring section being arranged multiple measuring point, probe is arranged on probe support, probe support is fixed in probe rotating shaft, probe rotating shaft is supported by the bearing in housing, probe rotating shaft is stretched out outside housing, pointer and probe lead are equipped with in probe rotating shaft side, opposite side flat key is connected with the output shaft of reducing gear, control motor to be connected with the input shaft of reducing gear, probe lead wears out from the center pit of probe rotating shaft, each junction surface and lead outlet place are equipped with seal, form annular seal space.
The utility model has following beneficial effect: measuring probe rotating mechanism is along the probe radial direction of the runner measuring section of sector crosssection being arranged multiple measuring point, probe support is driven to rotate by probe rotating shaft, the measuring point parameter of fan-shaped runner circumferentially any angle can be measured, can see that from needle dial probe support rotates rear residing position, probe lead wears out from the center pit of probe rotating shaft, because the air-flow in runner measuring section has certain pressure and temperature, be equipped with sealer at junction surface and lead outlet place to seal, so not only measuring probe total quantity is less, data channel is less, counting of measuring is many, and the area taking runner reduces, improve surveying work efficiency.
accompanying drawing illustrates:
Fig. 1 is structural representation of the present utility model;
Accompanying drawing 2 is accompanying drawing 1A-A sectional views.
1-runner measuring section in figure, 2-controls motor, 3-reducing gear, the rotating shaft of 4-probe, 5-housing, 6-bearing, 7-probe support, 8-probe, 9-pointer, 10-seal.
embodiment:
Below in conjunction with accompanying drawing, the utility model is described in further detail:
Shown in Fig. 1 composition graphs 2, measuring probe rotating mechanism, by runner measuring section 1, control motor 2, reducing gear 3, housing 5, probe rotating shaft 4, bearing 6, probe support 7, probe 8, needle dial and seal 10 form, runner measuring section 1 Flange joint housing 5, along the probe 8 radial direction of the sector crosssection of runner measuring section 1 being arranged multiple measuring point, probe 8 is arranged on probe support 7, probe support 7 is fixed in probe rotating shaft 4, probe rotating shaft 4 is connected with housing 5 by bearing 6, housing parts concatenation pointer 9 is stretched out in probe rotating shaft 4, control motor 2 to be in transmission connection reducing gear 3, the output shaft of reducing gear 3 is connected with probe rotating shaft 4 flat key, probe 8 goes between from the center pit of probe rotating shaft 4 and wears out, each junction surface and lead outlet place are equipped with seal 10, form annular seal space.
By control motor 2 drive deceleration mechanism 3, the output shaft of reducing gear 3 is connected with key with probe rotating shaft 4, probe support 7 is driven to rotate by probe rotating shaft 4 again, the measuring point parameter of fan-shaped runner circumferentially any angle can be measured, can see that probe support 7 rotates the position residing for rear probe 8 from pointer 9 simultaneously, because the air-flow of runner measuring section 1 li has certain pressure and temperature, be equipped with seal 10 at junction surface and lead outlet place and seal.

Claims (1)

1. a measuring probe rotating mechanism, by runner measuring section (1), control motor (2), reducing gear (3), housing (5), probe rotating shaft (4), bearing (6), probe support (7), probe (8), pointer (9) and seal (10) composition, it is characterized in that: runner measuring section (1) Flange joint housing (5), along the probe (8) radial direction of the sector crosssection of runner measuring section (1) being arranged multiple measuring point, probe (8) is arranged on probe support (7), probe support (7) is fixed in probe rotating shaft (4), probe rotating shaft (4) is supported by the bearing (6) in housing (5), probe rotating shaft (4) is stretched out outside housing, pointer (9) and probe (8) lead-in wire are equipped with in probe rotating shaft (4) side, the opposite side output shaft of flat key with reducing gear (3) is connected, control motor (2) to be connected with the input shaft of reducing gear (3), probe (8) lead-in wire wears out from the center pit of probe rotating shaft (4), each junction surface and lead outlet place are equipped with seal (10), form annular seal space.
CN201520134980.4U 2015-03-10 2015-03-10 Measuring probe rotating mechanism Active CN204555999U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520134980.4U CN204555999U (en) 2015-03-10 2015-03-10 Measuring probe rotating mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520134980.4U CN204555999U (en) 2015-03-10 2015-03-10 Measuring probe rotating mechanism

Publications (1)

Publication Number Publication Date
CN204555999U true CN204555999U (en) 2015-08-12

Family

ID=53831097

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520134980.4U Active CN204555999U (en) 2015-03-10 2015-03-10 Measuring probe rotating mechanism

Country Status (1)

Country Link
CN (1) CN204555999U (en)

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C14 Grant of patent or utility model
GR01 Patent grant
C41 Transfer of patent application or patent right or utility model
TR01 Transfer of patent right

Effective date of registration: 20151211

Address after: 150090 No. 35, Honghu Road, Yingbin Road, Harbin hi tech Development Zone, Heilongjiang, China

Patentee after: Harbin broad power technology development Co., Ltd.

Address before: 150000 Honghu Road, Daoli District, Heilongjiang, No. 35, Harbin

Patentee before: No.703 Inst. China Ship Heavy Industry Group Co.