CN112834115A - Method and device for testing high-speed dynamic balancing machine - Google Patents

Method and device for testing high-speed dynamic balancing machine Download PDF

Info

Publication number
CN112834115A
CN112834115A CN202110311581.0A CN202110311581A CN112834115A CN 112834115 A CN112834115 A CN 112834115A CN 202110311581 A CN202110311581 A CN 202110311581A CN 112834115 A CN112834115 A CN 112834115A
Authority
CN
China
Prior art keywords
dynamic balancing
balancing machine
speed dynamic
balance weight
mass
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN202110311581.0A
Other languages
Chinese (zh)
Inventor
盛德恩
赵梦梦
孟庆慈
马建军
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Hengchao Test Beijing Technology Co ltd
Original Assignee
Hengchao Test Beijing Technology Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Hengchao Test Beijing Technology Co ltd filed Critical Hengchao Test Beijing Technology Co ltd
Priority to CN202110311581.0A priority Critical patent/CN112834115A/en
Publication of CN112834115A publication Critical patent/CN112834115A/en
Pending legal-status Critical Current

Links

Images

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01MTESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES; TESTING OF STRUCTURES OR APPARATUS, NOT OTHERWISE PROVIDED FOR
    • G01M1/00Testing static or dynamic balance of machines or structures
    • G01M1/14Determining imbalance
    • G01M1/16Determining imbalance by oscillating or rotating the body to be tested
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01MTESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES; TESTING OF STRUCTURES OR APPARATUS, NOT OTHERWISE PROVIDED FOR
    • G01M1/00Testing static or dynamic balance of machines or structures
    • G01M1/30Compensating imbalance
    • G01M1/32Compensating imbalance by adding material to the body to be tested, e.g. by correcting-weights

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Testing Of Balance (AREA)

Abstract

The invention provides a method and a device for testing a high-speed dynamic balancing machine. The balance weight disk is symmetrically provided with balance weight holes for installing the check mass block, the geometric positions of the balance weight holes are accurately machined, the check mass block is accurately controlled, and the metering authentication can be carried out. When the device is used, the excitation main shaft is driven by a driving system of the high-speed dynamic balancing machine, and the amplitude and the phase of the unbalance amount (or vibration) of the swing frame are measured by a measuring system of the high-speed dynamic balancing machine, so that the whole measuring system of the high-speed dynamic balancing machine is tested. The use of the inspection method and the inspection device is beneficial to the perfection of the industrial standard and promotes the implementation of the industrial standard of the high-speed dynamic balancing machine.

Description

Method and device for testing high-speed dynamic balancing machine
Technical Field
The invention relates to the field of high-speed dynamic balance and overspeed tests, in particular to a method and a device for testing a high-speed dynamic balancer.
Background
The high-speed dynamic balancing machine is a test device specially used for the dynamic balance measurement of the flexible rotor. The device is not as extensive as a low-speed dynamic balancing machine, but is a device with strong speciality. There is currently no international or national standard for such equipment. In 2017, the first edition of the industry standard JB/T13220-2017 high-speed dynamic balancing machine is established in China. Performance profiling and verification methods for such devices are also being explored.
The current practice and the above standards adopt an additional exciting motor to perform excitation inspection of equipment, and the method has certain limitations, mainly including the following aspects.
1) Since the drive system of the high-speed dynamic balancing machine itself is not used, the phase measurement system of the high-speed dynamic balancing machine itself cannot be inspected, and the inspection is incomplete.
2) The full speed range cannot be inspected due to the influence of vibration motor parameters.
3) The detection system comprises an excitation motor, a frequency modulation drive control system, an independent measurement and data acquisition system, professional detection software and the like. The system is huge and complex, needs to be operated by professionals, is not beneficial to the wide application of the high-speed dynamic balancing machine inspection, and cannot meet the requirement that the high-speed dynamic balancing machine user autonomously performs regular and daily inspection.
In view of the above characteristics of the excitation motor inspection method, the device and the method are suitable for manufacturers of the high-speed dynamic balancing machine, and the quality inspection of the core component of the swing frame of the high-speed dynamic balancing machine is not suitable for the inspection of the whole equipment on site by a user before the equipment leaves a factory.
Disclosure of Invention
Aiming at the actual situation, the invention provides a method and a device for testing a high-speed dynamic balancing machine.
The core of the invention is a set of excitation main shafts which are used for the inspection of the high-speed dynamic balancing machine. The structure schematic diagram is shown in figure 1.
The spindle 13 is the core part of the device and is supported on the spindle housing 14 by two high-speed roller bearings 6.
Two balance weight plates 2 with the same structure and size are arranged at two ends of the mandrel 13.
The weight plate 2 is symmetrically perforated with weight ports 7 to make it self-balancing when the proof mass is not loaded.
The balance weight holes 7 are used for installing check mass blocks, the check mass blocks are composed of screw mass 9 and screw hole mass 10 and used in groups, and the balance weight discs at two ends are additionally provided with the check mass blocks in the same-phase balance weight holes at the same time.
The geometric position of the balance weight hole 7 is accurately processed, the quality of the proof mass body consisting of the screw mass 10 and the screw hole mass 11 is accurately controlled, and traceability metering authentication can be carried out.
The end covers 3 are arranged at two ends of the main shaft shell 14 and fixed by screws 12 and used for positioning the outer ring of the high-speed rolling bearing 6.
The inner rings of the high-speed rolling bearings 6 at two ends are positioned by the positioning sleeve 15 and are directly pressed by the counterweight plate 2.
The left end of the mandrel 13 is provided with an interface flange 1, and a centering spigot and a threaded hole are processed on the interface flange 1 and are used for being connected with a driving shaft and being connected to a driving system interface of a high-speed dynamic balancing machine.
The interface flange 1 is matched with the mandrel 13 through a hexagonal section for torque transmission.
The interface flange 1 directly compresses the left counterweight plate and is locked by a locking nut 9.
The right-side weight plate is fixed on the mandrel 13 by a snap ring 8.
The whole excitation main shaft is arranged on the swing frame bearing seat 4 through the middle ring 5.
Drawings
Fig. 1 is a schematic diagram of a method and an apparatus for testing a high-speed dynamic balancing machine according to the present invention.
The bearing support comprises a bearing support lower shoe seat 1, a balance weight disc 2, an end cover 3, a swing frame bearing seat 4, an intermediate ring 5, a high-speed rolling bearing 6, a balance weight hole 7, a clamping ring 8, a locking nut 9, a screw mass 10, a screw hole mass 11, a screw 12, a core shaft 13, a support rod spring 14 and a positioning sleeve 15.
Detailed Description
The invention relates to a method for testing a high-speed dynamic balancing machine. The structure schematic diagram is shown in figure 1.
The spindle 13 is the core part of the device and is supported on the spindle housing 14 by two high-speed roller bearings 6.
Two balance weight plates 2 with the same structure and size are arranged at two ends of the mandrel 13.
The weight plate 2 is symmetrically perforated with weight ports 7 to make it self-balancing when the proof mass is not loaded.
The balance weight holes 7 are used for installing check mass blocks, the check mass blocks are composed of screw mass 9 and screw hole mass 10 and used in groups, and the balance weight discs at two ends are additionally provided with the check mass blocks in the same-phase balance weight holes at the same time.
The geometric position of the balance weight hole 7 is accurately processed, the quality of the proof mass body consisting of the screw mass 10 and the screw hole mass 11 is accurately controlled, and traceability metering authentication can be carried out.
The end covers 3 are arranged at two ends of the main shaft shell 14 and fixed by screws 12 and used for positioning the outer ring of the high-speed rolling bearing 6.
The inner rings of the high-speed rolling bearings 6 at two ends are positioned by the positioning sleeve 15 and are directly pressed by the counterweight plate 2.
The left end of the mandrel 13 is provided with an interface flange 1, and a centering spigot and a threaded hole are processed on the interface flange 1 and are used for being connected with a driving shaft and being connected to a driving system interface of a high-speed dynamic balancing machine.
The interface flange 1 is matched with the mandrel 13 through a hexagonal section for torque transmission.
The interface flange 1 directly compresses the left counterweight plate and is locked by a locking nut 9.
The right-side weight plate is fixed on the mandrel 13 by a snap ring 8.
The whole excitation main shaft is arranged on a swing frame bearing seat 4 through an intermediate ring 5.
When the test mass block is used, the driving system of the high-speed dynamic balancing machine drives the excitation main shaft to rotate so as to install the centrifugal dynamic load excitation swing frame of the test mass block.
The phase sensor arranged on the driving system of the high-speed dynamic balancing machine measures the phase of the unbalance, and the sensor arranged in the swing frame measures the amplitude of the unbalance (or vibration), so that the swing frame is arranged on the actual cabin body and the actual bed body of the high-speed dynamic balancing machine to test the whole measuring system.
By using the device, the minimum reachable residual unbalance amount and the dynamic stiffness of the bearing system in a full rotating speed range are tested according to a method specified by a standard JB/T13220-2017 high-speed dynamic balancing machine, so that the performance of the high-speed dynamic balancing machine is evaluated.
Through proper combination of the positions of the balance weight holes in the balance weight disc and the proof mass blocks, one set of excitation main shafts can be used for checking different swing frames with adjacent specifications.
By replacing the balance weight disc and the proof mass block, the application range of the excitation main shaft can be further expanded.
The excitation main shaft functions similarly to a standard rotor in the technical field of low-speed dynamic balancing machines.
The introduction of the device and the inspection method can help promote the perfection and implementation of the high-speed dynamic balancing machine standard.

Claims (7)

1. A method and a device for testing a high-speed dynamic balancing machine are characterized in that a set of newly designed excitation main shafts are used, a driving system of the high-speed dynamic balancing machine drives the excitation main shafts to rotate, a centrifugal dynamic load excitation swing frame provided with a proof mass block is added, and a measuring system of the high-speed dynamic balancing machine measures the amplitude and the phase of unbalance of the swing frame, so that the swing frame is arranged on an actual cabin body and a bed body of the high-speed dynamic balancing machine to test the whole measuring system.
2. The method and the device for testing the high-speed dynamic balancing machine according to claim 1 are characterized in that the excitation main shaft consists of a core part mandrel (13), an interface flange (1), a balance weight disc (2), an end cover (3), a swing frame bearing seat (4), an intermediate ring (5), a high-speed rolling bearing (6), a balance weight hole (7), a clamping ring (8), a locking nut (9), a screw mass (10), a screw hole mass (11), a screw (12), a main shaft shell (14) and a positioning sleeve (15).
3. The method and the device for inspecting the high-speed dynamic balancing machine according to the claim 1 or 2 are characterized in that two balance weight plates (2) with the same structure and size are arranged at two ends of the mandrel (13) and are supported on the main shaft shell (14) through two high-speed rolling bearings (6).
4. The inspection method and the inspection device for the high-speed dynamic balancing machine according to the claim 1 or 2 are characterized in that the balance weight discs (2) are symmetrically provided with balance weight holes (7), the balance weight holes (7) are used for installing inspection mass blocks, the inspection mass blocks are composed of screw mass (9) and screw hole mass (10) and are used in groups, the inspection mass blocks are additionally arranged on the balance weight discs (2) at two ends in the same phase position of the balance weight holes (7), the geometric positions of the balance weight holes (7) are accurately machined, the quality of the inspection mass blocks composed of the screw mass (10) and the screw hole mass (11) is accurately controlled, and traceability metering certification can be carried out.
5. The method and the device for inspecting the high-speed dynamic balancing machine according to the claim 1 or 2 are characterized in that the outer ring of the high-speed rolling bearing (6) is fixed by the end cover (3), and the inner ring is positioned by the positioning sleeve (15) and is directly pressed by the balance weight disc (2).
6. The method and the device for inspecting the high-speed dynamic balancing machine according to claim 1 or 2, wherein the interface flange (1) is installed at the left end of the mandrel (13) and is used for being connected with a driving shaft and being connected to a driving system interface of the high-speed dynamic balancing machine.
7. The method and apparatus for testing a high speed dynamic balancing machine according to claim 1, wherein the phase of the unbalance is measured by a phase sensor installed on a driving system of the high speed dynamic balancing machine and the amplitude of the unbalance is measured by a sensor installed in the swing frame during the test using the excitation main shaft.
CN202110311581.0A 2021-03-24 2021-03-24 Method and device for testing high-speed dynamic balancing machine Pending CN112834115A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202110311581.0A CN112834115A (en) 2021-03-24 2021-03-24 Method and device for testing high-speed dynamic balancing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202110311581.0A CN112834115A (en) 2021-03-24 2021-03-24 Method and device for testing high-speed dynamic balancing machine

Publications (1)

Publication Number Publication Date
CN112834115A true CN112834115A (en) 2021-05-25

Family

ID=75930454

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202110311581.0A Pending CN112834115A (en) 2021-03-24 2021-03-24 Method and device for testing high-speed dynamic balancing machine

Country Status (1)

Country Link
CN (1) CN112834115A (en)

Similar Documents

Publication Publication Date Title
CN106441707B (en) Digital rotating body static balance measuring device and measuring method
CN110579312B (en) Dynamic balance fault detection method for multi-wheel-disc shafting of non-trial-weight rotating machinery
CN101435733A (en) Laser balance adjusting device and method
CN110118632A (en) By the method for the degree of unbalancedness of displacement sensor axis elastic rotor
CN104101464B (en) Multi-wheel-disc rotor dynamic balancing test method based on rotating coordinate system
CN106769043A (en) The angular contact bearing bearing test methods that a kind of inner ring and outer ring rotate simultaneously
CN107356394A (en) Rail car axle box bearing dither is test bed
CN116046387A (en) General durability testing machine and testing method for hub bearing unit
CN111215648B (en) Electric spindle reliability rapid experiment loading method and loading system
CN109115408A (en) A kind of Large Hydropower Station dynamic balance running method based on centrifugal force equation
CN108444661B (en) Oblique circle spring fatigue test platform
CN208399123U (en) A kind of testing stand for spring fatigue test
CN108871769B (en) Fixed involute spline pair fretting wear test device
CN214407880U (en) Testing device of high-speed dynamic balancing machine
CN112834115A (en) Method and device for testing high-speed dynamic balancing machine
RU2340882C1 (en) Stand for vibration diagnostics of rotor systems
CN210221391U (en) Dynamic balancing machine suitable for self-driven impeller rotor
JP2008089467A (en) Method for inspecting precision of tire testing machine
JP3427948B2 (en) Dynamic balancer for tires
US2796759A (en) Ball bearing test machine
CN212513622U (en) Bearing simulation loading test device
CN107300447A (en) A kind of flabellum single-side dynamic balance machine
RU189957U1 (en) Balancing stand
CN209910816U (en) Sensor test bench
WO2020134042A1 (en) Apparatus and method for testing accelerated life of high-speed electrospindle

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination