CN110361298A - A kind of rheometer - Google Patents

A kind of rheometer Download PDF

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Publication number
CN110361298A
CN110361298A CN201810446971.7A CN201810446971A CN110361298A CN 110361298 A CN110361298 A CN 110361298A CN 201810446971 A CN201810446971 A CN 201810446971A CN 110361298 A CN110361298 A CN 110361298A
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CN
China
Prior art keywords
temperature control
control plate
rheometer
sleeve
driving motor
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
CN201810446971.7A
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Chinese (zh)
Inventor
宁炜
夏志宇
高双之
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.)
Libang Coatings (china) Co Ltd
Langfang Nippon Paint Co Ltd
Nippon Paint China Co Ltd
Original Assignee
Libang Coatings (china) Co Ltd
Langfang Nippon Paint Co Ltd
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Publication date
Application filed by Libang Coatings (china) Co Ltd, Langfang Nippon Paint Co Ltd filed Critical Libang Coatings (china) Co Ltd
Priority to CN201810446971.7A priority Critical patent/CN110361298A/en
Publication of CN110361298A publication Critical patent/CN110361298A/en
Pending legal-status Critical Current

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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N11/00Investigating flow properties of materials, e.g. viscosity, plasticity; Analysing materials by determining flow properties
    • G01N11/10Investigating flow properties of materials, e.g. viscosity, plasticity; Analysing materials by determining flow properties by moving a body within the material
    • G01N11/14Investigating flow properties of materials, e.g. viscosity, plasticity; Analysing materials by determining flow properties by moving a body within the material by using rotary bodies, e.g. vane
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N11/00Investigating flow properties of materials, e.g. viscosity, plasticity; Analysing materials by determining flow properties
    • G01N2011/0006Calibrating, controlling or cleaning viscometers
    • G01N2011/002Controlling sample temperature; Thermal cycling during measurement

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  • Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Biochemistry (AREA)
  • General Health & Medical Sciences (AREA)
  • General Physics & Mathematics (AREA)
  • Immunology (AREA)
  • Pathology (AREA)

Abstract

The present invention discloses a kind of rheometer, including upper fixture, lower fixture and temperature control system, the upper fixture and/or lower fixture have the driving motor for driving its rotation, the temperature control system is arranged on the upper fixture with driving motor and/or lower fixture, in the present invention, the ipsilateral of rheometer is arranged in temperature control system and driving motor, and composite integrated has been configured to rotatable temperature control system, by setting rotatable structure for temperature control system, improve the heat exchange efficiency of cooling system, rheometer smart structural design of the invention, it is structurally reasonable reliable, effectively raise radiating efficiency, simplify the structure of temperature control system.

Description

A kind of rheometer
Technical field
The present invention relates to material rheological behavior field, especially a kind of rheometer.
Background technique
Rotational rheometer is the important component in modern rheometer, they generate simple shear by rotary motion Flowing, may be used to determine the rheological property of viscosity, elasticity of material etc..
Rheometer currently on the market has a large amount in variety, and wherein rotational rheometer is relatively suitble to coating industry, factory Quotient is also relatively more, mainly has: water generation TA, Haake HAAKE, Bai Lifei Brookfield, Anton Paar Anton Paar, Malvern Malvern etc., and the producer of domestic production rheometer is few, there are also biggish rooms for promotion for technology.
Now, it there are no the rheometer for being directed to putty sample design, during putty sample test, needs to putty sample Product are heated or cooled, and temperature control system is provided on existing rheometer, and temperature control system is separated with the motor for driving fixture rotation Setting avoids and in the same side the two is interfered the two setting, furthermore existing temperature control system usually uses water cooling Mode radiate, the radiating mode of water cooling needs to introduce water pump, and external power supply case provides power, so that complicated integral structure Burden.
In addition, normal force transducer and torque sensor are provided in existing rheometer equipment, external rheometer choosing With the normal force transducer of small volume, which is arranged in air bearing, however because normal force senses Device structure is smaller, can not be used to installs fixture, needs to support mounting structure by other, although detection accuracy is high, it is tied Structure is complicated, higher cost.
Furthermore putty sample, in rheological experiment, because to imitate worker's work progress, rotary rpm is larger, The test panel of fixture is designed to plane tabular structure under existing rheometer, and in high speed rotation, then putty sample is being centrifuged Its edge is easily broken dispersion under power, directly influences the accuracy and repeatability of experimental result.
Finally, existing rheometer does not have Integration Design, it is often necessary to special setting power supply box and control cabinet, rheometer sheet Body is separately connected power supply box and control cabinet, and power supply box provides power supply for rheometer, and control cabinet provides some control processes, however this A little external structures make whole rheometer equipment become complex redundancy.
In view of this present invention is specifically proposed.
Summary of the invention
The technical problem to be solved in the present invention is that a kind of rheometer is overcome the deficiencies of the prior art and provide, by temperature control system With drive system the ipsilateral of rheometer is arranged in system, and composite integrated has been configured to rotatable temperature control system, by by temperature control System is set as rotatable structure, improves the heat exchange efficiency of cooling system, the rheometer smart structural design, structurally reasonable Reliably, radiating efficiency is effectively raised, the structure of temperature control system is simplified.
In order to solve the above technical problems, the basic conception of the technical solution adopted by the present invention is:
A kind of rheometer, including upper fixture, lower fixture and temperature control system, the upper fixture and/or lower fixture, which have, to be driven The driving motor of its rotation is moved, the temperature control system is arranged on the upper fixture with driving motor and/or lower fixture.
Preferably, the upper fixture and lower fixture include measuring part, and measuring part has connecing for engaged test sample The drive shaft of contacting surface, the upper fixture or the driving motor on lower fixture and its measuring part are drivingly connected, the temperature control system Including temperature control plate, the temperature control plate is mounted in the measuring part and/or the drive shaft, with the measurement portion Part rotates together.
In the above scheme, the ipsilateral of rheometer is arranged in temperature control plate and driving motor, and composite integrated is configured to Rotatable temperature control system improves the heat exchange efficiency of cooling system, is somebody's turn to do by setting rotatable structure for temperature control system Rheometer smart structural design, it is structurally reasonable reliable, radiating efficiency is effectively raised, the structure of temperature control system is simplified.
Preferably, the temperature control plate connects the power supply line of rheometer, the circuit switch by circuit switch device Device includes the mutual rotation section for keeping electrical connection and fixed part, and the rotation section and the temperature control plate are connected and fixed and electricity Connection, rotates together, the fixed part remain stationary state and is electrically connected with the power supply line with temperature control plate.
In the above scheme, prevent power supply line in temperature control plate rotation process by circuit switch device, rheometer Power cord wrap is in upper fixture or lower fixture, so that temperature control plate is during rotation, does not generate interference with the power supply line, Guarantee system normally works.
Preferably, the rotation section includes first sleeve, and the first sleeve is set in the outside of the drive shaft, Top is fixed on the temperature control plate and is electrically connected with temperature control plate, rotates together with temperature control plate, and the fixed part includes set It is located at outside the first sleeve and is in electrical contact the second sleeve being slidably connected with first sleeve, which connects described Power supply line connection, realizes and powers to temperature control plate.
In the above scheme, rotation section and fixed part are designed the inside and outside structure being set with, and ensure that rotation section and temperature control plate Linkage and electrical connection, and the body construction of fixed part and rheometer is fixed, so that temperature control plate is during rotation, with the electricity Source line does not generate interference, and guarantee system normally works.
Preferably, the temperature control plate includes several semiconductor temperature-control devices of the ontology and installation of plate on the body, institute It states ontology and fixation is installed in measuring part, be provided with the power interface for being connected to each semiconductor temperature controller on ontology, it is described First sleeve is electrically connected directly or by conducting wire with the power interface.
In the above scheme, in order to improve heating efficiency or refrigerating efficiency, a rheometer is provided with multiple semiconductor temperature Device is controlled, the present invention is provided with the ontology of plate further directed to each semiconductor temperature controller, is provided with multiple installations in plate-like body Portion is respectively used to install each semiconductor temperature controller, and each semiconductor temperature controller power supply is set as in plate-like body Power interface facilitates each semiconductor temperature controller of temperature control plate and being electrically connected for rotation section.
Preferably, rheometer further includes that the position of the restricted second sleeve prevents the position limiting structure of its rotation;
Preferably, the upper fixture and/or lower fixture include the bracket for installing driving motor, the limit knot Structure includes the protrusion being arranged in the second sleeve and the blocking portion that is arranged on bracket, the blocking portion limitation protrusion The position in portion, so that second sleeve remain stationary state.
In the above scheme, it is provided with the protrusion radially extended in the second sleeve, is corresponded on bracket convex It is provided with blocking portion out, which stops the rotation of protrusion, so that second sleeve remain stationary state, in this way, then temperature control Plate during rotation, the state that fixed part second sleeve is remain stationary, the power supply line can directly with described second set Cylinder connection, in system normally works, the two does not generate interference, and wrapping phenomena will not occur.
Preferably, the circuit switch device is conducting slip ring, and the inner ring rotor of conducting slip ring is fixed on temperature control plate And be electrically connected by conducting wire with temperature control plate, the outer ring stator of conducting slip ring is fixed and is electrically connected with the power supply line.
Preferably, the temperature control system further includes the thermal component connecting with temperature control plate, and driving motor drives its measurement Component rotation, drives the thermal component high speed rotation to carry out rapid cooling;
In the above scheme, during the rotation of driving motor driving measuring part, the thermal component is driven to rotate, Contact of the thermal component with air is improved, heat exchanger effectiveness is improved.
Preferably, the thermal component includes the cooling fin around temperature control plate edge setting in one week, cooling fin one End is fixed on temperature control plate, and the other end extends to the side of the outer ring stator.
The cooling fin extends to the side of conducting slip ring, is arranged around the conducting slip ring, to increase scattered Heat area improves heat exchange efficiency.
Further, the temperature control system further includes cooling device, and the cooling device setting is in thermal component week Side, the heat dissipation of auxiliary heat dissipation component;
The cooling device can use water cooling mode or air cooling mode.
Preferably, the cooling device includes cooling fan, and cooling fan is arranged towards the thermal component;It is cooling The thermal component of fan towards rotation drives air, improves heat exchange efficiency.
It is furthermore preferred that the cooling device includes two cooling fans that the opposite two sides of thermal component are arranged in, two Cooling fan is flowed to same direction driving air.
In the above scheme, two cooling fans are towards same direction driving air flowing, to accelerate at thermal component Air flowing, further improve heat exchange efficiency.
Preferably, the lower fixture includes bracket, rack-mount driving motor, the drive for being mounted on driving motor Measuring part on moving axis and the temperature control plate being mounted on measuring part are equipped with thermal component, the bracket on temperature control plate Top is equipped with cooling device, and cooling device is arranged towards the thermal component.
By using above technical scheme, the invention has the following advantages:
Rheometer of the invention, including upper fixture, lower fixture and temperature control system, the upper fixture and/or lower fixture tool There is the driving motor of its rotation of driving, the temperature control system is arranged on the upper fixture with driving motor and/or lower fixture, In the present invention, the ipsilateral of rheometer is arranged in temperature control system and driving motor, and composite integrated has been configured to rotatable temperature Control system improves the heat exchange efficiency of cooling system, rheology of the invention by setting rotatable structure for temperature control system Instrument smart structural design, it is structurally reasonable reliable, radiating efficiency is effectively raised, the structure of temperature control system is simplified.
A specific embodiment of the invention is described in further detail with reference to the accompanying drawing.
Detailed description of the invention
The a part of attached drawing as the application, for providing further understanding of the invention, of the invention is schematic Examples and descriptions thereof are used to explain the present invention, but does not constitute an undue limitation on the present invention.Obviously, the accompanying drawings in the following description Only some embodiments to those skilled in the art without creative efforts, can be with Other accompanying drawings can also be obtained according to these attached drawings.In the accompanying drawings:
Fig. 1 is rheometer complete machine structure schematic diagram of the invention;
Fig. 2 is the portion A enlarged drawing in Fig. 1;
Fig. 3 is the portion B enlarged drawing in Fig. 1.
Wherein, 11, upper measuring part;12, lower measuring part;3, driving motor;31, drive shaft;4, temperature control plate;41, it dissipates Thermal part;5, first sleeve;6, second sleeve;61, protrusion;7, bracket;71, blocking portion;8, cooling fan;9, normal force passes Sensor;101, first support;102, second support;1021, escape groove;1022, hole;1023, headlamp;103, torque sensing Device;104, upper Measuring plate;106, adapter;1061, first connecting portion;1062, second connecting portion;107, lower Measuring plate;108, Cyclic annular rib;109, pedestal;200, guide rail;201, motor;202, grating scale;203, sliding block;204, cabinet.
It should be noted that these attached drawings and verbal description are not intended to the design model limiting the invention in any way It encloses, but illustrates idea of the invention by referring to specific embodiments for those skilled in the art.
Specific embodiment
In order to make the object, technical scheme and advantages of the embodiment of the invention clearer, below in conjunction with the embodiment of the present invention In attached drawing, the technical solution in embodiment is clearly and completely described, the following examples are intended to illustrate the invention, but It is not intended to limit the scope of the invention.
In the description of the present invention, it should be noted that the orientation or position of the instructions such as term " on ", "lower", "inner", "outside" Setting relationship is to be based on the orientation or positional relationship shown in the drawings, and is merely for convenience of description of the present invention and simplification of the description, rather than The device or element of indication or suggestion meaning must have a particular orientation, be constructed and operated in a specific orientation, therefore cannot It is interpreted as limitation of the present invention.
In the description of the present invention, it should be noted that unless otherwise clearly defined and limited, term " installation " " connects Connect " it shall be understood in a broad sense, for example, it may be being fixedly connected, it may be a detachable connection, or be integrally connected;It can be machine Tool connection, is also possible to be electrically connected;It can be directly connected, it can also be indirectly connected through an intermediary.For this field For those of ordinary skill, the concrete meaning of above-mentioned term in the present invention can be understood with concrete condition.
Embodiment one
Ginseng is as shown in figure 1 to 3, described the present embodiment provides a kind of rheometer, including upper fixture, lower fixture and temperature control system Upper fixture and/or lower fixture there is the driving motor 3 for driving its rotation, the temperature control system is arranged with driving motor In 3 upper fixture and/or lower fixture.
Preferably, the upper fixture and lower fixture include measuring part, and measuring part has connecing for engaged test sample The drive shaft 31 of driving motor 3 on contacting surface, the upper fixture or lower fixture and its measuring part are drivingly connected, the temperature control system System includes temperature control plate 4, and the temperature control plate 4 is mounted in the measuring part and/or the drive shaft 31, and described Measuring part rotates together.
In the above scheme, the ipsilateral of rheometer is arranged in temperature control plate 4 and driving motor 3, and composite integrated is configured to Rotatable temperature control system improves the heat exchange efficiency of cooling system by by temperature control system setting rotatable structure, The rheometer smart structural design, it is structurally reasonable reliable, radiating efficiency is effectively raised, the structure of temperature control system is simplified.
Preferably, the temperature control plate 4 connects the power supply line of rheometer, the circuit switch by circuit switch device Device includes the mutual rotation section for keeping electrical connection and fixed part, and the rotation section and the temperature control plate 4 are connected and fixed simultaneously Electrical connection, rotates together, the fixed part remain stationary state and is electrically connected with the power supply line with temperature control plate 4.
In the above scheme, prevent power supply line in 4 rotation process of temperature control plate by circuit switch device, rheometer Power cord wrap is in upper fixture or lower fixture, so that temperature control plate 4 is during rotation, does not generate with the power supply line dry It relates to, guarantee system normally works.
Preferably, the rotation section includes first sleeve 5, and the first sleeve 5 is set in the outer of the drive shaft 31 Portion, top are fixed on the temperature control plate 4 and are electrically connected with temperature control plate 4, rotate together with temperature control plate 4, the fixation Portion includes being set in outside the first sleeve 5 to be in electrical contact the second sleeve 6 being slidably connected with first sleeve 5, and this second set 6 connection of the cylinder power supply line connection, realizes and powers to temperature control plate 4.
In the above scheme, rotation section and fixed part are designed the inside and outside structure being set with, and ensure that rotation section and temperature control plate 4 Linkage and electrical connection, and the body construction of fixed part and rheometer is fixed, and described so that temperature control plate 4 is during rotation Power supply line does not generate interference, and guarantee system normally works.
Preferably, the temperature control plate 4 includes several semiconductor temperature-control devices of the ontology and installation of plate on the body, institute It states ontology and fixation is installed in measuring part, be provided with the power interface for being connected to each semiconductor temperature controller on ontology, it is described First sleeve 5 is electrically connected directly or by conducting wire with the power interface.
In the above scheme, in order to improve heating efficiency or refrigerating efficiency, a rheometer is provided with multiple semiconductor temperature Device is controlled, the present invention is provided with the ontology of plate further directed to each semiconductor temperature controller, is provided with multiple installations in plate-like body Portion is respectively used to install each semiconductor temperature controller, and each semiconductor temperature controller power supply is set as in plate-like body Power interface facilitates each semiconductor temperature controller of temperature control plate 4 and being electrically connected for rotation section.
Preferably, rheometer further includes that the position of the restricted second sleeve 6 prevents the position limiting structure of its rotation;
Preferably, the upper fixture and/or lower fixture include the bracket 7 for installing driving motor 3, the limit Structure includes the protrusion 61 being arranged in the second sleeve 6 and the blocking portion 71 being arranged on bracket 7, and blocking portion 71 limits The position of the protrusion 61, so that second sleeve 6 remain stationary state.
In the above scheme, it is provided with the protrusion 61 radially extended in the second sleeve 6, it is right on bracket 7 It should protrude and be provided with blocking portion 71, which stops the rotation of protrusion 61, so that second sleeve 6 remain stationary state, In this way, then temperature control plate 4 during rotation, the state that fixed part second sleeve 6 is remain stationary, the power supply line can directly with The second sleeve 6 connects, and in system normally works, the two does not generate interference, and wrapping phenomena will not occur.
Preferably, the circuit switch device is conducting slip ring, and the inner ring rotor of conducting slip ring is fixed on temperature control plate 4 And be electrically connected by conducting wire with temperature control plate 4, the outer ring stator of conducting slip ring is fixed and is electrically connected with the power supply line.
Preferably, the temperature control system further includes the thermal component 41 connecting with temperature control plate 4, and driving motor 3 drives it Measuring part rotation, drives 41 high speed rotation of thermal component to carry out rapid cooling;
In the above scheme, during driving motor 3 drives measuring part rotation, 41 turns of the thermal component is driven It is dynamic, contact of the thermal component 41 with air is improved, heat exchanger effectiveness is improved.
Preferably, the thermal component 41 includes the cooling fin around 4 edge of temperature control plate setting in one week, cooling fin One end is fixed on temperature control plate 4, and the other end extends to the side of the outer ring stator.
The cooling fin extends to the side of conducting slip ring, is arranged around the conducting slip ring, to increase scattered Heat area improves heat exchange efficiency.
Further, the temperature control system further includes cooling device, and the cooling device is arranged in thermal component 41 Side, auxiliary heat dissipation component 41 radiate;
The cooling device can use water cooling mode or air cooling mode.
Preferably, the cooling device includes cooling fan 8, and cooling fan 8 is arranged towards the thermal component 41; The thermal component 41 of cooling fan 8 towards rotation drives air, improves heat exchange efficiency.
It is furthermore preferred that the cooling device includes two cooling fans 8 that the opposite two sides of thermal component 41 are arranged in, Two cooling fans 8 are flowed to same direction driving air.
In the above scheme, two cooling fans 8 are towards same direction driving air flowing, to accelerate thermal component 41 The air at place flows, and further improves heat exchange efficiency.
Preferably, the lower fixture includes bracket 7, the driving motor being mounted on bracket 73, is mounted on driving motor 3 Drive shaft 31 on measuring part and the temperature control plate 4 that is mounted on measuring part, thermal component 41 is installed on temperature control plate 4, Cooling device is installed, cooling device is arranged towards the thermal component 41 at the top of the bracket 7.
Embodiment two
Embodiment two further provides for the structure of rheometer on the basis of example 1:
Referring to shown in Fig. 1, Fig. 2, Fig. 3, in the present embodiment, rheometer equally includes the adjustable upper fixture of relative distance under Fixture, the upper fixture include the upper measuring part 11 of support construction and installation on the support structure, the support knot Structure includes normal force transducer 9, and the upper measuring part 11 is fixedly mounted on the normal force transducer 9.
In the above scheme, 9 structural volume of normal force transducer is big, intensity is big, has biggish rigidity, props up as a whole A part of support structure installs measuring part 11, and complete machine structure is stablized, and is suitable for carrying out rheology to high-speed rotating test sample Test.Rheometer of the invention is particularly suitable for the rheometer test of putty sample, and putty sample is because it needs to imitate constructor Work progress, therefore its revolving speed for testing selection is larger, therefore there are certain requirements to the structural strength of complete machine tool, existing small The modular normal force transducer of type is difficult to meet the test to putty sample.
Preferably, the support construction further includes bracket 101, and the normal force transducer 9 includes having foil gauge Elastomer, one end of elastomer is fixed on the bracket 101, and the other end is free end, and the free end is fixed described Upper measuring part 11, normal force transducer 9 calculate test sample (putty sample) according to the deformation quantity of foil gauge and are applied to Normal force on measuring part 11.
In the above scheme, the normal force transducer 9 is configured to the big and elasticity knot with certain rigidity of volume Structure, which constitute the main body supporting structures of upper fixture, for installing measuring part 11 and bearing what upper measuring part 11 transmitted Normal force.
Preferably, the lower fixture has the driving device for driving its rotation, and the rheometer includes torque sensing Device 103, the torque sensor 103 are arranged in upper fixture, and measurement test sample is applied to the torque in upper fixture.
In the above scheme, torque sensor 103 and driving device are separately positioned, and driving device is arranged on lower fixture, Torque sensor 103 is arranged in upper fixture, and in the prior art by torque sensor 103 and driving device setting ipsilateral, Inertia that is such then needing to deduct sample itself in calculated torque and other influence factors, to can just obtain true torque Data, the present invention is by by the treatment process of torque sensor 103 and the separately positioned simplified data of driving device: torque sensor There are the calibration problems of sensor and fixture inertia with drive combination design, it is necessary to the torsion for being generated inertia by mathematical method Square is deducted.When especially testing low viscosity or low modulus sample, because comparing sensor and fixture inertia, such sample The torque of generation is much smaller, and it is accurate that inertia calibration is difficult to.Mainstream rheometer, which does vibration test all and is, at present uses strain controlling, and Torque sensor and driver separate design are to directly control stress, and it is constant not to be able to maintain strain.Being generally separated design can only lead to Iterative cycles feedback loop is crossed, the controlled strain in vibration test, required strain could be obtained by generally requiring repeatedly to recycle, thus Increase the testing time.In addition, being tested for non-linear big strain oscillatory shear, due to the input signal and sensor of driver Measuring signal between exist coupling, the original signal tested will be generated when doing Fourier transform be not avoided that it is inclined Difference.
Torque sensor and driver separate design are the torques that direct test sample generates, and do not have to consider torque sensor And fixture, therefore without doing inertia calibration.Low viscosity in test process or modulus and viscosity and modulus are occurred huge The sample of variation, is very suitable to.Separate design is to directly control strain, without doing iterative feedback calculating in vibration test, Reach required strain in cycle of oscillation, it is accurate needed for easy Fourier transformation that Non-Linear Ocsillation test can directly obtain Original signal.
Preferably, upper measuring part 11 includes upper Measuring plate 104 and the axis body for connecting upper Measuring plate 104, and the torque passes The bottom connection of sensor 103 axis body, the top of torque sensor 103 by adapter 106 be connected to elastomer from By holding.
In the above scheme, the normal force transducer 9 laterally setting, passes through the Deformation calculation normal direction of free end Power, therefore torque sensor 103 and normal force transducer 9 are not easy to be directly connected to, therefore inventor is directed to the situation and devises Adapter 106 realizes the connection of torque sensor 103 Yu normal force transducer 9.
Preferably, the adapter 106 includes first connecting portion 1061 and second connecting portion 1062, first connection Portion 1061 is fixed on the free end of elastomer, and the second connecting portion 1062 is fixedly connected with the top of torque sensor 103.
Preferably, the elastomer is block structure, and the plate body that the first connecting portion 1061 is vertically arranged should The fitting of plate body surface is fixed on the end face of block structure free end, and the second connecting portion 1062 is horizontally disposed plate Shape body, the plate body surface connect the top of the torque sensor 103.
Preferably, described 1062 one end of second connecting portion is connect with the bottom end of the first connecting portion 1061, another It holds to the fixing end of elastomer and extends, torque sensor 103 is mounted on to the lower section of elastomer;
In the above scheme, second connecting portion 1062 extends in its fixing end of the lower direction of elastomer, so that torque be passed Sensor 103 has been mounted on the lower section of elastomer, so that complete machine structure is compact, this is reasonable in design reliable.
The second connecting portion 1062 and the elastomer are arranged in parallel and under its upper surface and the elastomers Surface has gap to not influence the measurement result of normal force transducer.
Preferably, the normal force transducer 9 is shear strain beam sensor, and the torque sensor 103 is to answer Variant torque sensor.
In the present invention, 9 selected range of normal force transducer and Accuracy Matching putty sample effect are in upper measuring part The shear strain beam sensor of 11 normal force profile;103 selected range of torque sensor and Accuracy Matching putty sample Act on the strain-type torque sensor of the torque range of measuring part 11;
Preferably, 103 selected range of torque sensor is 0-2NM, and the strain-type that precision is ± 0.01%F.S is turned round Square sensor 103.
The upper measuring part 11 has the upper contact surface of engaged test sample, and the lower fixture includes lower measurement portion Part 12, lower measuring part 12 have the lower contact surface of engaged test sample, and the diameter of the lower contact surface is 70~200mm, on The diameter ratio of contact surface and lower contact surface is 5:10~9:10.
Preferably, the lower fixture include driving motor 3 and with driving motor 3 be drivingly connected lower measuring part 12, The upper measuring part 11 and lower measuring part 12 all have the contact surface of engaged test sample, on the lower measuring part 12 Its contact surface side is provided with barrier structure, barrier structure and its contact surface form the loading part of test sample.
It is existing because putty sample, in rheological experiment, because to imitate worker's work progress, rotary rpm is larger The test panel of fixture is designed to plane tabular structure under some rheometers, and in high speed rotation, then putty sample is in centrifugal force Its lower edge is easily broken dispersion, directly influences experimental result.Therefore in the present invention, specially in the lower measuring part of lower fixture Barrier structure is set on 12, prevents putty sample in high-speed rotation process, edge rupture dispersion.
The barrier structure can be for around several protrusions of the contact surface of lower measuring part 12 setting, these protrusion limits The position of putty sample processed.
Preferably, the barrier structure is the cyclic annular rib 108 that the contact surface edge of lower measuring part 12 is arranged in, ring Shape rib 108 be higher than loading part in test sample upper surface, with prevent test sample high-speed rotation deformation lower edge rupture/point From.
Preferably, test sample (such as putty sample) be filled in as described in loading part in, be shaped to a thickness of 1~3mm, directly Diameter is 70~200mm cylindrical body, and the height of the annular rib is 1~9mm.Above-mentioned design is inventor by a large amount of real The existing test when putty sample formation for above-mentioned shape conducive to progress putty sample is issued after examination and approval, and test result is accurate.
Embodiment three
Existing rheometer does not have Integration Design, needs that power supply box and control cabinet is specially arranged, rheometer ontology connects respectively Power supply box and control cabinet are connect, power supply box provides power supply for rheometer, and control cabinet provides some control calculating process, however outside these The structure connect makes whole rheometer equipment become complex redundancy.For this situation, referring to described in Fig. 1, the present embodiment provides one Kind of rheometer comprising pedestal 109 installs lower fixture on pedestal 109, also vertically-mounted on pedestal 109 to have guide rail 200, bracket 101 are slidably disposed on the guide rail 200 by sliding block 203, can be moved up and down along guide rail 200, it is preferred that pedestal The driving mechanism for driving upper fixture to move up and down is installed, which includes guide rail 200 and drive with guide rail 200 on 109 The motor 201 of dynamic connection, 201 forward and reverse rotation of motor drive upper fixture to rotate upwardly and downwardly movement, and one of principle is guide rail 200 is have threaded rhabodoid, and the bracket 101 of upper fixture includes sliding block 203, are connected by sliding block 203 described rod-shaped On body, so then when motor rotates forward or backwards, which can move up and down along rhabodoid.In order to realize accurate control Gap between upper fixture processed and lower fixture in the present embodiment, is additionally provided with grating scale 202, and the design for passing through grating scale 202 is real The distance between accurate control upper fixture and lower fixture are showed.
Further, it is also equipped with cabinet 204 on the bottom stage, power module and control mould are installed in cabinet 204 Block, power module is for powering, and control module is for being controlled, by power module, control module and rheology in the present embodiment The setting of instrument Ontology integration is integrated, and structure is compact, is not take up space;
Preferably, rhabodoid and motor 201 are also disposed in cabinet 204, further, are provided with power supply on cabinet 204 Interface and cable mouth, power interface are used for external power supply, and external power supply described in electric power source pair of module carries out power supply control, cable mouth For external computer, so that control module sends data to computer, Data Analysis Services are carried out by computer.
Example IV
Shown in referring to figures 1-3, the lighting system of rheometer is described in example IV, in the present embodiment, rheology Instrument includes for fixing the first support 101 of normal force transducer 9 and extending to the second support of 103 bottom of torque sensor 102, the torque sensor 103 is mounted between normal force transducer 9 and second support 102,102 upper surface of second support Corresponding 103 indent of torque sensor is provided with escape groove 1021, and the slot bottom aperture 1022 of escape groove 1021 is used for upper Measuring plate 104 axis body passes through, and the bottom of the second support 102 is provided with headlamp 1023, and headlamp 1023 is arranged downward, to putty The loading area of sample is illuminated.
Preferably, 102 lower surface of second support is around one week multiple headlamp 1023 of setting of axis body, thus by putty The loading area of sample illuminates completely, and more preferably, a photograph is respectively set in the axis body two sides in second support 102 positioned at upper fixture Bright lamp 1023, the headlamp 1023 are LED light.
The above is only presently preferred embodiments of the present invention, is not intended to limit the present invention in any form, though So the present invention has been disclosed as a preferred embodiment, and however, it is not intended to limit the invention, any technology people for being familiar with this patent Member without departing from the scope of the present invention, when the technology contents using above-mentioned prompt are modified or are modified to The equivalent embodiment of equivalent variations, but anything that does not depart from the technical scheme of the invention content, it is right according to the technical essence of the invention Any simple modification, equivalent change and modification made by above embodiments, in the range of still falling within the present invention program.

Claims (10)

1. a kind of rheometer, which is characterized in that including upper fixture, lower fixture and temperature control system, the upper fixture and/or lower folder There is the driving motor for driving its rotation, upper fixture and/or lower folder with driving motor is arranged in the temperature control system On tool.
2. a kind of rheometer according to claim 1, which is characterized in that the upper fixture and lower fixture include measurement portion Part, measuring part have a contact surface of engaged test sample, the drive shaft of the upper fixture or the driving motor on lower fixture with Its measuring part is drivingly connected, and the temperature control system includes temperature control plate, the temperature control plate be mounted on the measuring part and/ Or in the drive shaft, rotated together with the measuring part.
3. a kind of rheometer according to claim 1 or 2, which is characterized in that the temperature control plate is filled by circuit switch The power supply line of connection rheometer is set, the circuit switch device includes the mutual rotation section for keeping electrical connection and fixed part, institute The rotation section stated is connected and fixed and is electrically connected with the temperature control plate, rotates together with temperature control plate, and the fixed part keeps quiet Only state is electrically connected with the power supply line.
4. a kind of rheometer according to claim 3, which is characterized in that the rotation section includes first sleeve, described First sleeve is set in the outside of the drive shaft, and top is fixed on the temperature control plate and is electrically connected with temperature control plate, with Temperature control plate rotates together, and the fixed part includes being set in outside the first sleeve to connect with first sleeve electrical contact sliding The second sleeve connect, the second sleeve connection power supply line connection, realizes and powers to temperature control plate.
5. a kind of rheometer according to claim 4, which is characterized in that the temperature control plate includes the ontology and peace of plate Several semiconductor temperature-control devices of dress on the body, the ontology install fixation in measuring part, are provided with and are connected on ontology The power interface of each semiconductor temperature controller, the first sleeve are electrically connected directly or by conducting wire with the power interface.
6. according to a kind of any rheometer of claim 4 or 5, which is characterized in that further include restricted described second set The position limiting structure that the position of cylinder prevents it from rotating;
Preferably, the upper fixture and/or lower fixture include the bracket for installing driving motor, the position limiting structure packet The blocking portion for including the protrusion being arranged in the second sleeve and being arranged on bracket, the blocking portion limitation protrusion Position, so that second sleeve remain stationary state.
7. according to a kind of any rheometer of claim 3-6, which is characterized in that the circuit switch device is conduction The inner ring rotor of slip ring, conducting slip ring is fixed on temperature control plate and is electrically connected by conducting wire with temperature control plate, the outer ring of conducting slip ring Stator is fixed and is electrically connected with the power supply line.
8. according to a kind of any rheometer of claim 2-7, which is characterized in that the temperature control system further includes and temperature The thermal component of plate connection is controlled, driving motor drives its measuring part to rotate, the thermal component high speed rotation is driven to carry out Rapid cooling;
Preferably, the thermal component includes the cooling fin around temperature control plate edge setting in one week, and cooling fin one end is solid It is scheduled on temperature control plate, the other end extends to the side of the outer ring stator.
9. a kind of rheometer according to claim 7 or 8, which is characterized in that the temperature control system further includes cooling dress It sets, the cooling device setting is in thermal component side, the heat dissipation of auxiliary heat dissipation component;
Preferably, the cooling device includes cooling fan, and cooling fan is arranged towards the thermal component;More preferably , the cooling device includes two cooling fans that the opposite two sides of thermal component are arranged in, and two cooling fans are to same Direction drives air flowing.
10. a kind of rheometer according to claim 9, which is characterized in that the lower fixture includes bracket, is mounted on branch Driving motor, the measuring part being mounted in the drive shaft of driving motor on frame and the temperature control plate being mounted on measuring part, Thermal component is installed, the cradle top is equipped with cooling device, and cooling device is towards the radiating part on temperature control plate Part setting.
CN201810446971.7A 2018-05-11 2018-05-11 A kind of rheometer Pending CN110361298A (en)

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CN111896425A (en) * 2020-07-31 2020-11-06 上海毅兴塑胶原料有限公司 Double-charging-barrel type capillary rheometer

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US6571610B1 (en) * 1999-11-29 2003-06-03 Anton Paar Gmbh Rotary rheometer
US20050199044A1 (en) * 2004-03-10 2005-09-15 Nigel Doe Heat spreader for rotary rheometer
US20100139375A1 (en) * 2007-02-15 2010-06-10 Johns William R Apparatus and method for measuring rheological properties of blood
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