CN209727079U - A kind of calibrating installation for Hegman grind gage - Google Patents

A kind of calibrating installation for Hegman grind gage Download PDF

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Publication number
CN209727079U
CN209727079U CN201920450853.3U CN201920450853U CN209727079U CN 209727079 U CN209727079 U CN 209727079U CN 201920450853 U CN201920450853 U CN 201920450853U CN 209727079 U CN209727079 U CN 209727079U
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China
Prior art keywords
hegman grind
grind gage
workbench
fixed
calibrating installation
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CN201920450853.3U
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Chinese (zh)
Inventor
刘涛
陈欢
李月樵
董宁
潘璐
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JINHUA MUNICIPAL QUALITY AND TECHNICAL SUPERVISION AND INSPECTION INSTITUTE
Zhejiang Province Institute of Metrology
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JINHUA MUNICIPAL QUALITY AND TECHNICAL SUPERVISION AND INSPECTION INSTITUTE
Zhejiang Province Institute of Metrology
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Priority to CN201920450853.3U priority Critical patent/CN209727079U/en
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Abstract

The utility model provides a kind of calibrating installation for Hegman grind gage, including two-dimension displacement platform, clamp mechanism and shift sensing mechanism, two-dimension displacement platform includes pedestal, gearshift and workbench, gearshift is connected to base top, workbench is horizontally disposed with and is connected at the top of gearshift, and gearshift keeps workbench mobile with Y-direction in X direction in the horizontal plane, clamp mechanism is for clamping Hegman grind gage, clamp mechanism is connected on workbench, shift sensing mechanism includes displacement sensor, connection frame and fixed device, connection frame is fixed on pedestal, displacement sensor is connected on connection frame by fixed device.The utility model can precisely examine and determine the flatness of skewed slot baseplane by setting two-dimension displacement platform and shift sensing mechanism.

Description

A kind of calibrating installation for Hegman grind gage
Technical field
The utility model relates to a kind of calibrating installations for Hegman grind gage.
Background technique
Hegman grind gage is primarily used to the measurement of coating and ink particle fineness, in order to guarantee the accurate of measurement result Property, it is necessary to assure the precision of Hegman grind gage itself, this just needs to examine and determine Hegman grind gage.In calibrating Hegman grind gage Skewed slot baseplane flatness when, need knife-edge ruler to be examined and determine using light gap method.But due to the basic item of light gap method calibrating Part is relatively inaccessible in actual production, causes the flatness verification result of the skewed slot baseplane of Hegman grind gage not accurate, this meeting In Hegman grind gage in use, causing the grain finenesses measurement results such as coating or the ink of measurement not accurate.It therefore, can be compared with For accurately examine and determine Hegman grind gage skewed slot baseplane flatness, become common requirements in the industry.
Utility model content
In order to solve the above technical problems, the purpose of this utility model is to provide a kind of calibrating dresses for Hegman grind gage It sets, can precisely examine and determine the flatness of skewed slot baseplane.
Based on this, the utility model proposes a kind of calibrating installation for Hegman grind gage, including two-dimension displacement platform, Clamp mechanism and shift sensing mechanism, the two-dimension displacement platform include pedestal, gearshift and workbench, institute's displacement apparatus It is connected to the base top, the workbench is horizontally disposed with and is connected at the top of institute's displacement apparatus, and institute's displacement apparatus Keep the workbench mobile with the direction Y in X direction in the horizontal plane, the clamp mechanism is used to clamp Hegman grind gage, The clamp mechanism is connected on the workbench, and the shift sensing mechanism includes displacement sensor, connection frame and fixed dress It sets, the connection frame is fixed on the pedestal, and institute's displacement sensors are connected to the connection frame by the fixed device On.
Optionally, the fixed device includes the first fixed part and the interconnecting piece on first fixed part, described First fixed part is connected on the connection frame, and the interconnecting piece is connected with institute's displacement sensors.
Optionally, the interconnecting piece is equipped with the adjusting knob of the displacement sensors position for adjusting.
Optionally, first fixed part is equipped with the first adjusting handle for adjusting first fixed part position.
Optionally, the connection frame is portal frame, and first fixed part is connected on the horizon bar of the portal frame, institute Two upright bars for stating portal frame are fixed on the pedestal.
Optionally, the clamp mechanism includes pedestal and pushing block, and the pedestal includes the second fixed part and pressing portion, described Second fixed part is connected on the table top of the workbench, and the pressing portion is connected to the side of the first end of second fixed part Side, the pushing block are equipped with the push rod for pushing the Hegman grind gage, and the pushing block is connected to the side of the workbench.
Optionally, the pushing block includes ontology, and the ontology is equipped with the through-hole passed through for the push rod, and the push rod is worn It crosses the through-hole and is threadedly coupled with the ontology.
Optionally, one end that the push rod is used to push the Hegman grind gage is equipped with sheath, the other end of the push rod Equipped with the second adjusting handle.
Optionally, institute's displacement apparatus includes driving device, the first sliding rail, the first sliding block, the second sliding rail and the second sliding block, First sliding rail is fixed on the top of the pedestal, and first sliding block is slidably connected with first sliding rail, and described second Sliding rail is fixed on the top of first sliding block, and second sliding rail is perpendicular to first sliding rail, second sliding block with Second sliding rail is slidably connected, and the driving device is described for driving first sliding block and second sliding block to slide Workbench is connected to the top of second sliding block.
Optionally, the base bottom is equipped with several stabilizer blades, and the stabilizer blade is equipped with horizontal for adjusting the workbench Levelling device.
A kind of calibrating installation for Hegman grind gage of the utility model, including two-dimension displacement platform, clamp mechanism and Shift sensing mechanism, two-dimension displacement platform include pedestal, gearshift and workbench, and gearshift is connected to base top, work Make platform to be horizontally disposed with and be connected at the top of gearshift, and gearshift enable workbench in the horizontal plane in X direction with the side Y To movement, for clamping Hegman grind gage, clamp mechanism is connected on workbench clamp mechanism, and shift sensing mechanism includes displacement Sensor, connection frame and fixed device, connection frame are fixed on pedestal, and displacement sensor is connected to connection frame by fixed device On.By Hegman grind gage clamping on clamp mechanism, by the way that two-dimension displacement platform is arranged, make Hegman grind gage prolonging along skewed slot Direction movement is stretched, the variation of motion process displacement is measured by the way that shift sensing mechanism is arranged, to precisely examine and determine skewed slot baseplane Flatness.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of the utility model embodiment.
Fig. 2 is the front view of the utility model embodiment.
Fig. 3 is the side view of the utility model embodiment.
Fig. 4 is the top view of the utility model embodiment.
Description of symbols:
1, two-dimension displacement platform;11, pedestal;111, stabilizer blade;12, gearshift;121, the first sliding rail;122, first is sliding Block;123, the second sliding rail;124, the second sliding block;13, workbench;2, clamp mechanism;21, pedestal;211, the second fixed part; 212, pressing portion;22, pushing block;221, push rod;222, ontology;223, sheath;224, the second adjusting handle;3, displacement sensing machine Structure;31, displacement sensor;32, connection frame;321, horizon bar;322, upright bar;33, fixed device;331, the first fixed part; 332, interconnecting piece;333, adjusting knob;334, the first adjusting handle;4, Hegman grind gage.
Specific embodiment
In the description of the present invention, it should be noted that term " center ", " longitudinal direction ", " transverse direction ", "upper", "lower", The orientation or positional relationship of the instructions such as "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom" "inner", "outside" is It is based on the orientation or positional relationship shown in the drawings, is merely for convenience of describing the present invention and simplifying the description, rather than indicate Or imply that signified device or element must have a particular orientation, be constructed and operated in a specific orientation, therefore cannot understand For limitations of the present invention.In addition, term " first ", " second ", " third " are used for description purposes only, and should not be understood as Indication or suggestion relative importance.
In the description of the present invention, it should be noted that unless otherwise clearly defined and limited, term " is pacified Dress ", " connected ", " connection " shall be understood in a broad sense, for example, it may be being fixedly connected, may be a detachable connection, or integrally Connection;It can be mechanical connection, be also possible to be electrically connected;Can be directly connected, can also indirectly connected through an intermediary, It can be the connection inside two elements.For the ordinary skill in the art, above-mentioned art can be understood with concrete condition The concrete meaning of language in the present invention.
In addition, in the description of the present invention, unless otherwise indicated, the meaning of " plurality " is two or more.
For the ordinary skill in the art, it can understand above-mentioned term in the present invention with concrete condition Concrete meaning.
With reference to the accompanying drawings and examples, specific embodiment of the present utility model is described in further detail.Below Embodiment is not intended to limit the scope of the present invention for illustrating the utility model.
Fig. 1 to Fig. 4 is please referred to, the present embodiment provides a kind of calibrating installations for Hegman grind gage 4, including two-dimension displacement Platform 1, clamp mechanism 2 and shift sensing mechanism 3, two-dimension displacement platform 1 include pedestal 11, gearshift 12 and workbench 13, Gearshift 12 is connected to 11 top of pedestal, and workbench 13 is horizontally disposed and is connected to 12 top of gearshift, and gearshift 12 enable workbench 13 to move in the horizontal plane along the direction X and Y-direction, and clamp mechanism 2 is pressed from both sides for clamping Hegman grind gage 4 Tool mechanism 2 is connected on workbench 13, and shift sensing mechanism 3 includes displacement sensor 31, connection frame 32 and fixed device 33, is connected It connects frame 32 to be fixed on pedestal 11, displacement sensor 31 passes through fixed device 33 and is connected on connection frame 32.When in use, first will Hegman grind gage 4 is on clamp mechanism 2, and gauge head is against one end that the depth of skewed slot is zero, and hereafter 12 band of gearshift is started building Make platform 13 to move along the shallow place of skewed slot to the direction of skewed slot depths, to drive clamping scraping on clamp mechanism 2 by workbench 13 Plate fineness gauge 4 is moved along the direction of skewed slot shallow place to skewed slot depths, and displacement sensor 31 does not move during this, is displaced by measurement Variation so that precisely examine and determine the flatness of skewed slot baseplane.It is to be herein pointed out workbench 13 is 0 grade of plate, have The precisely test condition of the flatness of calibrating skewed slot baseplane.In the present embodiment, setting gearshift 12 enables workbench 13 It is enough mobile with Y-direction in X direction in the horizontal plane, it not only ensure that workbench 13 can be moved along the extending direction of skewed slot, may be used also To realize the calibrating of the flatness of the slot bottom plane of the Hegman grind gage 4 of different size.Displacement sensor 31 selects in the present embodiment Select grating sensor.
Fig. 1 is please referred to, fixed device 33 includes the first fixed part 331 and the interconnecting piece on the first fixed part 331 332, the first fixed part 331 is connected on connection frame 32, and interconnecting piece 332 is connected with displacement sensor 31.Fixed device 33 can Displacement sensor 31 is fixed on connection frame 32.In the present embodiment, interconnecting piece 332 is equipped with for adjusting displacement sensor 31 The adjusting knob 333 of position.By the way that adjusting knob 333, the high and low position of adjustable displacement sensor 31 is arranged.First is fixed Portion 331 is equipped with the first adjusting handle 334 for adjusting 331 position of the first fixed part.It is thin in the scraper plate of calibrating different size In the flatness of the skewed slot baseplane of degree meter 4, pass through the adjusting of the first adjusting handle 334, it is ensured that displacement sensor 31 Gauge head is located above skewed slot.
Referring to figure 2., in the present embodiment, connection frame 32 is portal frame, and the first fixed part 331 is connected to the water of portal frame On flat bar 321, two upright bars 322 of portal frame are fixed on pedestal 11.Portal frame is fixed on pedestal 11, not by gearshift 12 control and generate linkage, while also guaranteeing not join by fixing the displacement sensor 31 that device 33 is fixed on horizon bar 321 It is dynamic, it is ensured that verification result it is accurate.In the present embodiment, upright bar 322 is connected by screw to pedestal 11.
Referring to figure 4., clamp mechanism 2 includes pedestal 21 and pushing block 22, and pedestal 21 includes the second fixed part 211 and pushes Portion 212, the second fixed part 211 are connected on the table top of workbench 13, and pressing portion 212 is connected to the first of the second fixed part 211 The side at end, pushing block 22 are equipped with the push rod 221 for pushing Hegman grind gage 4, and pushing block 22 is connected to the side of workbench 13.In In the present embodiment, a short side of Hegman grind gage 4 is against in pressing portion 212, and another short side corresponding thereto is by push rod 221 It pushes, in addition, a long side of Hegman grind gage 4 is against on the second fixed part 211, another long side corresponding thereto is by push rod 221 push, and under the cooperation of pedestal 21 and pushing block 22, the clamping that Hegman grind gage 4 is consolidated guarantees on clamp mechanism 2 In verification process, Hegman grind gage 4 relative displacement will not occur with workbench 13, avoid the accuracy for influencing verification result. In the present embodiment, pushing block 22 includes ontology 222, and ontology 222 is equipped with the through-hole passed through for push rod 221, and push rod 221 passes through logical Kong Bingyu ontology 222 is threadedly coupled.One end that push rod 221 is used to push Hegman grind gage 4 is equipped with sheath 223, push rod 221 The other end is equipped with the second adjusting handle 224.By adjusting the second adjusting handle 224, clamping Hegman grind gage 4 can control Power guarantees clamping effect, in addition, the setting of sheath 223 can anti-throw-out lever 221 damage the edge of Hegman grind gage 4.
Fig. 1 to Fig. 3 is please referred to, gearshift 12 is sliding including driving device, the first sliding rail 121, the first sliding block 122, second Rail 123 and the second sliding block 124, the first sliding rail 121 are fixed on the top of pedestal 11, and the first sliding block 122 and the first sliding rail 121 slide Connection, the second sliding rail 123 is fixed on the top of the first sliding block 122, and the second sliding rail 123 is sliding perpendicular to the first sliding rail 121, second Block 124 is slidably connected with the second sliding rail 123, and driving device is for driving the first sliding block 122 and the sliding of the second sliding block 124, work Platform 13 is connected to the top of the second sliding block 124.By the way that the glide direction of the first sliding block 122 and the sliding of the second sliding block 124 is arranged Direction is perpendicular, guarantees that the workbench 13 at the top for being fixed on the second sliding block 124 can be moved with Y-direction along the X direction. 11 bottom of pedestal is equipped with several stabilizer blades 111, and stabilizer blade 111 is equipped with for adjusting the horizontal levelling device of workbench 13.In this reality It applies in example, four stabilizer blades 111 is set, it is ensured that displacement assembling device is able to drive workbench 13 and is moved in the horizontal plane, avoids Influence verification result.
In addition, in the present embodiment, be also provided with software model, by the displacement of software control gearshift 12, Can also setting program carry out the calibration operation of plate fineness gauge automatically, and export verification result.In addition, the software model may be used also The calibrating data of sundry item are imported, export all verification results simultaneously later.
A kind of calibrating installation for Hegman grind gage 4 is present embodiments provided, is started building by the way that 12 band of gearshift is arranged Make the movement of platform 13, move Hegman grind gage 4 along the shallow place of skewed slot to the direction of skewed slot depths, by the way that shift sensing mechanism is arranged 3 measure the variation of motion process displacement, to precisely examine and determine the flatness of skewed slot baseplane.
The above is only the preferred embodiment of the utility model, it is noted that for the common skill of the art For art personnel, without deviating from the technical principle of the utility model, several improvement and replacement can also be made, these change It also should be regarded as the protection scope of the utility model into replacement.

Claims (10)

1. a kind of calibrating installation for Hegman grind gage, which is characterized in that including two-dimension displacement platform, clamp mechanism and displacement Sensing mechanism;
The two-dimension displacement platform includes pedestal, gearshift and workbench, and institute's displacement apparatus is connected to the base top, The workbench is horizontally disposed with and is connected at the top of institute's displacement apparatus, and institute's displacement apparatus enables the workbench in water It is mobile with Y-direction in X direction in plane;
For clamping Hegman grind gage, the clamp mechanism is connected on the workbench clamp mechanism;
The shift sensing mechanism includes that displacement sensor, connection frame and fixed device, the connection frame are fixed on the pedestal On, institute's displacement sensors are connected on the connection frame by the fixed device.
2. a kind of calibrating installation for Hegman grind gage according to claim 1, which is characterized in that the fixed device Interconnecting piece including the first fixed part and on first fixed part, first fixed part are connected to the connection frame On, the interconnecting piece is connected with institute's displacement sensors.
3. a kind of calibrating installation for Hegman grind gage according to claim 2, which is characterized in that the interconnecting piece is set There is the adjusting knob of the displacement sensors position for adjusting.
4. a kind of calibrating installation for Hegman grind gage according to claim 2, which is characterized in that described first is fixed Portion is equipped with the first adjusting handle for adjusting first fixed part position.
5. a kind of calibrating installation for Hegman grind gage according to claim 2, which is characterized in that the connection frame is Portal frame, first fixed part are connected on the horizon bar of the portal frame, and institute is fixed in two upright bars of the portal frame It states on pedestal.
6. a kind of calibrating installation for Hegman grind gage according to claim 1, which is characterized in that the clamp mechanism Including pedestal and pushing block, the pedestal includes the second fixed part and pressing portion, and second fixed part is connected to the workbench Table top on, the pressing portion is connected to the side of the first end of second fixed part, and the pushing block is equipped with for pushing The push rod of Hegman grind gage is stated, the pushing block is connected to the side of the workbench.
7. a kind of calibrating installation for Hegman grind gage according to claim 6, which is characterized in that the pushing block includes Ontology, the ontology are equipped with the through-hole passed through for the push rod, the push rod pass through the through-hole and with the ontology screw thread Connection.
8. a kind of calibrating installation for Hegman grind gage according to claim 6, which is characterized in that the push rod is used for The one end for pushing the Hegman grind gage is equipped with sheath, and the other end of the push rod is equipped with the second adjusting handle.
9. a kind of calibrating installation for Hegman grind gage according to claim 1, which is characterized in that institute's displacement apparatus Including driving device, the first sliding rail, the first sliding block, the second sliding rail and the second sliding block, first sliding rail is fixed on the pedestal Top, first sliding block is slidably connected with first sliding rail, and second sliding rail is fixed on the top of first sliding block Portion, and second sliding rail, perpendicular to first sliding rail, second sliding block is slidably connected with second sliding rail, the drive For dynamic device for driving first sliding block and second sliding block to slide, the workbench is connected to the top of second sliding block Portion.
10. a kind of calibrating installation for Hegman grind gage according to claim 1, which is characterized in that the pedestal bottom Portion is equipped with several stabilizer blades, and the stabilizer blade is equipped with the levelling device for adjusting the workbench level.
CN201920450853.3U 2019-04-04 2019-04-04 A kind of calibrating installation for Hegman grind gage Active CN209727079U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920450853.3U CN209727079U (en) 2019-04-04 2019-04-04 A kind of calibrating installation for Hegman grind gage

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920450853.3U CN209727079U (en) 2019-04-04 2019-04-04 A kind of calibrating installation for Hegman grind gage

Publications (1)

Publication Number Publication Date
CN209727079U true CN209727079U (en) 2019-12-03

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CN201920450853.3U Active CN209727079U (en) 2019-04-04 2019-04-04 A kind of calibrating installation for Hegman grind gage

Country Status (1)

Country Link
CN (1) CN209727079U (en)

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