CN205067308U - Experimental device for acquire granular material suppression power and mould wall frictional force - Google Patents

Experimental device for acquire granular material suppression power and mould wall frictional force Download PDF

Info

Publication number
CN205067308U
CN205067308U CN201520805064.9U CN201520805064U CN205067308U CN 205067308 U CN205067308 U CN 205067308U CN 201520805064 U CN201520805064 U CN 201520805064U CN 205067308 U CN205067308 U CN 205067308U
Authority
CN
China
Prior art keywords
particulate material
pressed compact
former
die wall
experimental provision
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.)
Expired - Fee Related
Application number
CN201520805064.9U
Other languages
Chinese (zh)
Inventor
钟文镇
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.)
University of Jinan
Original Assignee
University of Jinan
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 University of Jinan filed Critical University of Jinan
Priority to CN201520805064.9U priority Critical patent/CN205067308U/en
Application granted granted Critical
Publication of CN205067308U publication Critical patent/CN205067308U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Investigating Strength Of Materials By Application Of Mechanical Stress (AREA)

Abstract

Experimental device for acquire granular material suppression power and mould wall frictional force belongs to the experimental mechanics field, and its structure includes stamping, bottom punch, bed die and granular material pressed compact, last stamping on install a pressure sensor, the bottom punch on install the 2nd pressure sensor, a pressure sensor and the 2nd pressure sensor pass through the changer and connect the record appearance. The granular material pressed compact carries out the in -process suppressed, and the pressure signal that a pressure sensor obtained is for on the F, and the pressure signal that the 2nd pressure sensor obtained is for under the F, the changer with F go up convert 4 -20mA to with F pressure signal down standard signal with standard signal transmits for the record appearance, the record appearance go up F and F under real -time recording. The utility model is used for coefficient of friction in the demarcation DEM method between granule and the mould wall.

Description

Obtain the experimental provision of particulate material press power and die wall friction power
Technical field
The utility model relates to Experimental Mechanics field, specifically a kind of experimental provision obtaining particulate material press power and die wall friction power.
Background technology
When utilizing DEM (discreteelementmethod, i.e. discrete element) method to carry out the analysis and research of particulate material stressing conditions, need to demarcate the friction factor between particle and die wall, first will obtain the friction force between particle and die wall for this reason.At present, most pressure experiment machine or forming press can only obtain a total force value, this force value accurately have expressed the pressurized situation of mould upper surface particle, cannot send out the friction force mirrored between particle and die wall, also cannot provide the stressing conditions of bottom particle.Therefore, the demarcation that current pressure experiment device cannot realize the friction factor between particle and die wall is utilized.
Utility model content
For the problems referred to above, the purpose of this utility model is to provide a kind of experimental provision obtaining particulate material press power and die wall friction power, this experimental provision can obtain the press power of press power above particulate material and below, thus obtain the die wall friction power of particulate material, for demarcating the friction factor between particle and die wall in Discrete-parcel method.
The technical scheme in the invention for solving the technical problem is: the experimental provision obtaining particulate material press power and die wall friction power, comprise upper punch, bottom punch, former and particulate material pressed compact, particulate material pressed compact is inner and between upper punch and bottom punch, described upper punch is provided with the pressure F that the first pressure transducer bears for obtaining particulate material pressed compact upper surface particle at former on, described bottom punch is provided with the pressure F that the second pressure transducer bears for obtaining particulate material pressed compact bottom particle under; Described first pressure transducer and the second pressure transducer are by transmitter linkage record instrument, and transmitter is used for converting pressure signal to discernible signal (standard signal as 4-20mA) and by signal transmission to registering instrument, registering instrument realizes F onand F underreal time record thus obtain press power above particulate material pressed compact, the press power of below and die wall friction power.
Further technical scheme is: the first described pressure transducer is arranged on the center of upper punch upper surface.
Further technical scheme is: the second described pressure transducer is arranged on the center of bottom punch lower surface.
First pressure transducer is arranged on the center of upper punch upper surface, the second pressure transducer is arranged on the center of bottom punch lower surface.Reduce the error of measurement result, improve the accuracy of measurement result.
Further technical scheme is: described former is provided with the Vertical Channel of up/down perforation, described upper punch, bottom punch and particulate material pressed compact are all positioned at described Vertical Channel, and upper punch, bottom punch and the sidewall of particulate material pressed compact match with the sidewall of Vertical Channel.Upper punch, bottom punch and particulate material pressed compact are all positioned at the Vertical Channel of former, and upper punch, bottom punch and former are suppressed particulate material pressed compact, and structure is very simple, thus the operation of experimental technique and the acquisition of experimental result are all simplified.
Further technical scheme is: described former is arranged on former seat.
Further technical scheme is: described former seat is provided with the groove holding former, former activity is plugged in described groove.
Former seat be set thus make the particle in particulate material pressed compact and the friction force between die wall conduct to former seat through former, then conducting to the lower shoe of experimental provision, thus friction force is delivered to lower shoe cleverly without bottom punch.
Further technical scheme is: described registering instrument is recording instrument without paper.The feature that recording instrument without paper has paperless tests, real-time is good, precision is high, band communicates, can search and intelligentized function, four-way recording instrument without paper generally selected by experimental provision, but only use the two paths of recording instrument without paper when testing at present, therefore also can select binary channels recording instrument without paper.
Further technical scheme is: also comprise demoulding seat, and demoulding seat is used for making the demoulding of described particulate material pressed compact.
Further technical scheme is: described demoulding seat comprises a column, and column is provided with the vertical demoulding passage of up/down perforation.
Demoulding toilet is set in the demoulding of having tested rear pressed compact, after having tested, the mould comprising pressed compact is placed on demoulding seat, then apply pressure and make the pressed compact demoulding.
The beneficial effects of the utility model are: the pressurized situation that can not only reflect particulate material pressed compact upper surface particle, the stressing conditions of bottom particle can also be reflected, thus press power above particulate material, the press power of below and die wall friction power can be drawn, for the friction factor demarcated between particle and die wall provides basis.
Accompanying drawing explanation
Fig. 1 is the stressed schematic diagram of particulate material pressed compact in the utility model;
Fig. 2 is the structural representation of experimental provision in the utility model embodiment pressing stage;
Fig. 3 is the structural representation that experimental provision in the stage mentioned by the utility model embodiment former;
Fig. 4 is the structural representation of experimental provision in the utility model embodiment ejection phase.
In figure: 1 particulate material pressed compact, 2 upper punch, 3 first pressure transducers, 4 bottom punches, 5 second pressure transducers, 6 formers, 7 lower shoes, 8 former seats, 9 demoulding seats.
Embodiment
Below in conjunction with Figure of description and specific embodiment, the utility model will be further described:
As shown in Figure 2, obtain the experimental provision of particulate material press power and die wall friction power, comprise upper punch 2, bottom punch 4, former 6 and particulate material pressed compact 1, particulate material pressed compact 1 is inner and between upper punch 2 and bottom punch 4, described upper punch 2 is provided with the pressure F that the first pressure transducer 3 bears for obtaining particulate material pressed compact 1 upper surface particle at former 6 on, described bottom punch 4 is provided with the pressure F that the second pressure transducer 5 bears for obtaining particulate material pressed compact 1 bottom particle under; Described first pressure transducer 3 and the second pressure transducer 5 are by transmitter linkage record instrument, transmitter and registering instrument not shown, transmitter is used for converting pressure signal the standard signal of 4-20mA to and described standard signal being passed to registering instrument, and registering instrument realizes F onand F underreal time record thus obtain press power above particulate material pressed compact 1, the press power of below and die wall friction power.
The first described pressure transducer 3 is arranged on the center of upper punch 2 upper surface, and the second described pressure transducer 5 is arranged on the center of bottom punch 4 lower surface, and above-mentioned mounting means can reduce the error of measurement result, improves the accuracy of measurement result.
Described former 6 is provided with the Vertical Channel of up/down perforation, and described upper punch 2, bottom punch 4 and particulate material pressed compact 1 are all positioned at described Vertical Channel, and upper punch 2, bottom punch 4 and the sidewall of particulate material pressed compact 1 match with the sidewall of Vertical Channel.Upper punch 2, bottom punch 4 and particulate material pressed compact 1 are all positioned at the Vertical Channel of former 6, upper punch 2, bottom punch 4 and former 6 pairs of particulate material pressed compacts 1 are suppressed, structure is very simple, thus the operation of experimental technique and the acquisition of experimental result are all simplified.
As Fig. 3, described former 6 is arranged on former seat 8, and described former seat 8 is provided with the groove holding former 6, former 6 activity is plugged in described groove.
Former seat 8 be set thus make the particle in particulate material pressed compact 1 and the friction force between die wall conduct to former seat 8 through former 6, then conducting to the lower shoe 7 of experimental provision, thus friction force is delivered to lower shoe 7 cleverly without bottom punch 4.Simultaneously because the pressure signal detected by the second pressure transducer 5 that friction force not through bottom punch 4, also ensure that on bottom punch 4 is the press power below particulate material pressed compact 1, ensure that the accuracy of experimental result.
Described registering instrument is recording instrument without paper.The feature that recording instrument without paper has paperless tests, real-time is good, precision is high, band communicates, can search and intelligentized function, four-way recording instrument without paper generally selected by experimental provision, but only use the two paths of recording instrument without paper when testing at present, therefore also can select binary channels recording instrument without paper.
As shown in Figure 4, experimental provision also comprises demoulding seat 9, and demoulding seat 9 is for making the demoulding of described particulate material pressed compact 1, and described demoulding seat 9 comprises a column, and column is provided with the vertical demoulding passage of up/down perforation.
The demoulding that demoulding seat 9 is convenient to test rear pressed compact is set, after having tested, the mould comprising pressed compact is placed on demoulding seat 9, then apply pressure and make the pressed compact demoulding.
When above-mentioned experimental provision carries out pressure experiment, three phases can be divided into: pressing stage, former mention stage and ejection phase to the pressing process of particulate material pressed compact 1, as shown in Figure 2, former mentions the stage as shown in Figure 3 to pressing stage, and ejection phase as shown in Figure 4.Particulate material pressed compact 1 in pressing process stressing conditions as shown in Figure 1, described particulate material pressed compact 1 is subject to F on, F underand F frictionthe effect of three power, the pass between three is: F on=F under+ F friction.
Experimental technique comprises: in the process that upper punch 2, bottom punch 4 and former 6 pairs of particulate material pressed compacts 1 are suppressed, and the pressure signal that the first pressure transducer 3 obtains is F on, the pressure signal that the second pressure transducer 5 obtains is F under, transmitter is by F onand F underpressure signal convert the standard signal of 4-20mA to and described standard signal passed to registering instrument, registering instrument is by F onand F underreal time record.
F onvalue be press power above particulate material pressed compact, F undervalue be press power below particulate material pressed compact, F onand F underdifference be the die wall friction power F of particulate material pressed compact friction.
In the present embodiment, experimental provision adopts the material experiment-machine of 60 tons, and the first pressure transducer 3 and the second pressure transducer 5 all adopt the pressure transducer of 20 tons.But the utility model is not limited to the specifications and models described in embodiment, the utility model is applicable to any single action press, simple to operation, accuracy of reading.
The foregoing is only preferred embodiment of the present utility model; it is not whole embodiment of the present utility model; not in order to limit the utility model; all within spirit of the present utility model and principle; any amendment of doing, equivalent replacement, improvement etc., all should be included within protection domain of the present utility model.
Except technical characteristic described in instructions, all the other technical characteristics are those skilled in the art's known technology, and in order to outstanding innovative characteristics of the present utility model, above-mentioned technical characteristic does not repeat them here.

Claims (9)

1. obtain the experimental provision of particulate material press power and die wall friction power, comprise upper punch, bottom punch, former and particulate material pressed compact, particulate material pressed compact is inner and between upper punch and bottom punch at former, it is characterized in that, described upper punch being provided with the pressure F that the first pressure transducer bears for obtaining particulate material pressed compact upper surface particle on, described bottom punch is provided with the pressure F that the second pressure transducer bears for obtaining particulate material pressed compact bottom particle under; Described first pressure transducer and the second pressure transducer are by transmitter linkage record instrument, and transmitter is used for converting pressure signal to discernible signal and by signal transmission to registering instrument, registering instrument realizes F onand F underreal time record thus obtain press power above particulate material pressed compact, the press power of below and die wall friction power.
2. the experimental provision of acquisition particulate material press power according to claim 1 and die wall friction power, is characterized in that, the first described pressure transducer is arranged on the center of upper punch upper surface.
3. the experimental provision of acquisition particulate material press power according to claim 1 and die wall friction power, is characterized in that, the second described pressure transducer is arranged on the center of bottom punch lower surface.
4. the experimental provision of acquisition particulate material press power according to claim 1 and die wall friction power, it is characterized in that, described former is provided with the Vertical Channel of up/down perforation, described upper punch, bottom punch and particulate material pressed compact are all positioned at described Vertical Channel, and upper punch, bottom punch and the sidewall of particulate material pressed compact match with the sidewall of Vertical Channel.
5. the acquisition particulate material press power according to claim 1 or 4 and the experimental provision of die wall friction power, it is characterized in that, described former is arranged on former seat.
6. the experimental provision of acquisition particulate material press power according to claim 5 and die wall friction power, is characterized in that, described former seat is provided with the groove holding former, former activity is plugged in described groove.
7. the experimental provision of acquisition particulate material press power according to claim 1 and die wall friction power, is characterized in that, described registering instrument is recording instrument without paper.
8. the experimental provision of acquisition particulate material press power according to claim 1 and die wall friction power, is characterized in that, also comprises demoulding seat, and demoulding seat is used for making the demoulding of described particulate material pressed compact.
9. the experimental provision of acquisition particulate material press power according to claim 8 and die wall friction power, is characterized in that, described demoulding seat comprises a column, and column is provided with the vertical demoulding passage of up/down perforation.
CN201520805064.9U 2015-10-15 2015-10-15 Experimental device for acquire granular material suppression power and mould wall frictional force Expired - Fee Related CN205067308U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520805064.9U CN205067308U (en) 2015-10-15 2015-10-15 Experimental device for acquire granular material suppression power and mould wall frictional force

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520805064.9U CN205067308U (en) 2015-10-15 2015-10-15 Experimental device for acquire granular material suppression power and mould wall frictional force

Publications (1)

Publication Number Publication Date
CN205067308U true CN205067308U (en) 2016-03-02

Family

ID=55393848

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520805064.9U Expired - Fee Related CN205067308U (en) 2015-10-15 2015-10-15 Experimental device for acquire granular material suppression power and mould wall frictional force

Country Status (1)

Country Link
CN (1) CN205067308U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111735761A (en) * 2020-05-14 2020-10-02 济南大学 Method and device for obtaining sliding friction coefficient of powder

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111735761A (en) * 2020-05-14 2020-10-02 济南大学 Method and device for obtaining sliding friction coefficient of powder
CN111735761B (en) * 2020-05-14 2023-06-02 济南大学 Powder sliding friction coefficient acquisition method and device

Similar Documents

Publication Publication Date Title
CN104777181A (en) Method for determining nuclear magnetic resonance T2 cutoff value and fluid saturation of tight oil, and apparatus thereof
CN101725344A (en) Method for determining litho-electric parameters
CN202964283U (en) Device for detecting length of tool of numerical control milling machine
CN205067308U (en) Experimental device for acquire granular material suppression power and mould wall frictional force
CN202420975U (en) Elastic body detection device
CN202256051U (en) Large-travel pressure measurement testing machine
CN203011706U (en) Multi-variety microcomputer control unit brake test bench
WO2015058440A1 (en) Digital and mechanical measurement shoe last, and signal acquisition and analysis method thereof
CN105136657A (en) Experimental device and method for obtaining granular material press power and die wall friction force
CN201273875Y (en) Gas content data collecting system for coal layer
CN104785574B (en) Measuring device and measuring method for measuring high-speed stamping formation force of progressive die
CN201368721Y (en) Three-point plane measuring instrument
CN201348604Y (en) Sensor for measuring plate shaping friction coefficient
CN202522181U (en) Inner-bore depth detection apparatus
CN203004380U (en) Middle die structure of single-punch tablet press
CN204666458U (en) Sour pick-up unit is inhaled in a kind of dividing plate pressurization
CN202256127U (en) Electronic compression tester
CN205729381U (en) A kind of squeeze dynamometer
CN203705298U (en) Ultrasonic specific gravity measuring equipment
CN202403881U (en) Butterfly spring performance detector
CN203148345U (en) Combination type thickness tester for rubber sample
CN203414229U (en) Multichannel flexible piezomagnetic sensor calibration test device
CN203148411U (en) Stop lamp switch stroke detection apparatus
CN206177570U (en) Cell -phone side key measuring head
CN201754072U (en) Digital-display sounding caliper rule

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160302

Termination date: 20191015