CN105598882A - Intelligent device for detecting shaft part and use method of intelligent device - Google Patents

Intelligent device for detecting shaft part and use method of intelligent device Download PDF

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Publication number
CN105598882A
CN105598882A CN201610150163.7A CN201610150163A CN105598882A CN 105598882 A CN105598882 A CN 105598882A CN 201610150163 A CN201610150163 A CN 201610150163A CN 105598882 A CN105598882 A CN 105598882A
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CN
China
Prior art keywords
axial workpiece
detection means
detection
slide
pedestal
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
CN201610150163.7A
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Chinese (zh)
Inventor
邵华
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.)
Wenling Jinpeng Daily Commodity Co Ltd
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Wenling Jinpeng Daily Commodity Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by Wenling Jinpeng Daily Commodity Co Ltd filed Critical Wenling Jinpeng Daily Commodity Co Ltd
Priority to CN201610150163.7A priority Critical patent/CN105598882A/en
Publication of CN105598882A publication Critical patent/CN105598882A/en
Pending legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25BTOOLS OR BENCH DEVICES NOT OTHERWISE PROVIDED FOR, FOR FASTENING, CONNECTING, DISENGAGING OR HOLDING
    • B25B11/00Work holders not covered by any preceding group in the subclass, e.g. magnetic work holders, vacuum work holders
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01MTESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES; TESTING OF STRUCTURES OR APPARATUS, NOT OTHERWISE PROVIDED FOR
    • G01M13/00Testing of machine parts

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Machine Tool Sensing Apparatuses (AREA)

Abstract

The invention discloses an intelligent device for detecting a shaft part and a use method of the intelligent device. The intelligent device comprises a clamp part and a detecting part. The clamp part comprises a slide base with a movable motor at the front end. A slide groove is formed in the slide base. A base is installed in the slide groove in a slidable mode. A front end limiting part and a rear end limiting part are arranged on the base. A threaded hole is formed in the front end limiting part. A threaded rod is installed in the movable motor and matched with the threaded hole. Two slide clamping blocks which can slide in two vertically-symmetrical vertical slide ways respectively are arranged on the base. The two slide clamping blocks are oppositely arranged, and a clamping part with a clamping cone concave part on the outer side end face is installed on each slide clamping block through a bearing in a rotating mode. With the aid of the pushing and pressing force of a clamping elastic part which abuts against the base and then presses the two slide clamping blocks towards each other, the shaft part between the clamping parts of the two slide clamping blocks is clamped.

Description

A kind of smart machine for detection of axial workpiece and using method thereof
Technical field
The present invention relates to piece test field, especially a kind of smart machine for detection of axial workpiece and using method thereof.
Background technology
The detection of axial workpiece has important function for dependability and the product yield of its product. More existing detection modes comprise some Non-Destructive Testings or non-contact detection, for example ultrasound detection, X-ray check or surface image detection (vision-based detection) etc. These different detection modes detect for the different performance of product. But these detecting instruments only carry out a kind of detection of mode, or detect an only angle for product and detect. Therefore, this is difficult to product be carried out to comprehensive detection comprehensively. And if the comprehensive comprehensive detection that will realize this effect needs different instruments, carry out separate detection with different steps, this has increased equipment cost and has increased testing cost.
Summary of the invention
The object of the present invention is to provide a kind of smart machine for detection of axial workpiece and using method thereof, it can overcome defect of the prior art.
According to a kind of smart machine for detection of axial workpiece of the present invention, comprise clamp member and detection part, described clamp member is included in front end and is provided with the sliding seat of mobile motor, in described sliding seat, be provided with sliding tray, pedestal is installed in described sliding tray slidably, described pedestal is provided with front end limiting section and rear end limiting section, in described front end limiting section, be provided with screwed hole, in described mobile motor, screw rod is installed, described screw rod coordinates installation with described screwed hole, on described pedestal, be provided with and can descend respectively two slip fixture blocks that slide in symmetrically arranged two vertical slideways thereon, described two slip fixture blocks are oppositely arranged and each hold assembly that is all rotatably mounted with side end face place outside and is offered clamping circular cone recess by bearing, thereby by means of the pushing force that is resisted against the clamping elastomeric element on described pedestal, described two slip fixture blocks being biased toward one another, axial workpiece between the hold assembly of described two slip fixture blocks is held, on each described hold assembly, be provided with driven wheel, thereby in order to can be respectively be symmetricly set on up and down in described pedestal and vertical with described two vertical slideways two before and after two rack member of sliding in slideways engage the described axial workpiece rotation that drives described hold assembly and be held, each in described two rack member is provided with spacing junction surface at front end place, thus the leading flank at described spacing junction surface be pressed on bias voltage elastomeric element on described pedestal and engage and can make the trailing flank at described spacing junction surface be resisted against on the rear end limiting section of described front and back slideway, each rearward end in described two rack member is free end, in order to engage location with the rear wall of the support of described detection part, the side that sidewall is extended in the front and back of described support is provided with the multiple detection means that distribute along fore-and-aft direction, in order to detect described axial workpiece, on the end face of described rear wall near described clamp member, be provided with groove, in described groove, contact plate is installed, described contact plate is in order to contact with one of them of described two rack member, described groove is also provided with the first feeler being connected with described multiple detection means and the second feeler being connected with described mobile motor, when one of them of described two rack member contacts with described contact plate, activation signal is passed to respectively described multiple detection means and mobile motor by described the first feeler and the second feeler, described multiple detection means and mobile motor just bring into operation after receiving signal, so that described axial workpiece is detected.
According to a further aspect in the invention, the using method of the above-mentioned smart machine for detection of axial workpiece, wherein, first, there is the described clamp member of axial workpiece to move to the surveyed area of described detection part clamping and make the free end at the each rearward end place in described two rack member against the rear wall of described support, afterwards, described mobile motor drives described pedestal to move backward, described driven wheel is by driving described axial workpiece to rotate with engaging of described rack member, described axial workpiece is with described pedestal translational motion simultaneously, thereby pass through successively described multiple detection means in rotating, can carry out multi-angle detection for each described detection means thus.
By the present invention, workpiece is carried out to driven in translation and rotarilys actuate two kinds of motions driving owing to directly utilizing the driving force of mobile motor, therefore do not increasing the combination campaign that realizes two kinds of motion modes under the situation that detects execution motion complexity, exceed 360 degree by rotation in the valid analysing range of the detecting instrument through corresponding, therefore can detect difficulty of implementation in the situation that not increasing, realize the detection of full angle for every kind of detecting instrument of multiple detection means. And by the slide block fixture block that can slip off to both sides is set, can be convenient to the loading and unloading of workpiece and can securely clamps, and can rotate with clamping part. And the elastomeric element that contacts with tooth bar is set, after tooth bar can being biased toward, therefore can travelling forward when workpiece is being withdrawn to direction and moved and can carry out rotary actuation repeatedly and detection repeatedly to workpiece at pedestal. In the time that finally withdrawing from workpiece, needs also can make tooth bar reset with respect to pedestal. Whole device is simple to operate, uses reliably, can detect the quality of workpiece comprehensive full angle.
Brief description of the drawings
Fig. 1 is the schematic diagram of the smart machine for detection of axial workpiece of the present invention.
Fig. 2 is the cross section structure schematic diagram of the direction of arrow of the device in Fig. 1.
Shown in the drawings of corresponding directionality instruction, so that the relative position relation between illustrative description architecture parts. These directionality instructions needn't limit the actual orientation of product.
Detailed description of the invention
Below in conjunction with Fig. 1-2, the present invention is described in detail.
According to a kind of smart machine for detection of axial workpiece of embodiment, comprise clamp member 100 and detection part 200, described clamp member 100 is included in front end and is provided with the sliding seat 913 of mobile motor 910, in described sliding seat 913, be provided with sliding tray 914, in described sliding tray 914, pedestal 9 is installed slidably, described pedestal 9 is provided with front end limiting section 922 and rear end limiting section 921, in described front end limiting section 922, be provided with screwed hole 923, in described mobile motor 910, screw rod 911 is installed, described screw rod 911 coordinates installation with described screwed hole 923, two slip fixture blocks 7 that slide in symmetrically arranged two vertical slideways 91 under can distinguishing are thereon installed on described pedestal 9, described two slip fixture blocks 7 are oppositely arranged and each hold assembly 6 that is all rotatably mounted with side end face place outside and is offered clamping circular cone recess 60 by bearing 71, thereby by means of the pushing force that is resisted against the clamping elastomeric element 8 on described pedestal 9, described two slip fixture blocks 7 being biased toward one another, axial workpiece 5 between the hold assembly 6 of described two slip fixture blocks 7 is held, on each described hold assembly 6, be provided with driven wheel 63, thereby in order to can be respectively be symmetricly set on up and down in described pedestal 9 and vertical with described two vertical slideways 91 two before and after two rack member 4 of sliding in slideways 92 engage the described axial workpiece 5 that drives described hold assembly 6 and be held and rotate, each in described two rack member 4 is provided with spacing junction surface 41 at front end place, thus the leading flank at described spacing junction surface 41 be pressed on bias voltage elastomeric element 93 on described pedestal 9 and engage and can make the trailing flank at described spacing junction surface 41 be resisted against on the rear end limiting section 921 of described front and back slideway 92, each rearward end in described two rack member 4 is free end, in order to engage location with the rear wall 302 of the support 3 of described detection part 200, the side that sidewall 301 is extended in the front and back of described support 3 is provided with the multiple detection means 31,32,33 that distribute along fore-and-aft direction, in order to detect described axial workpiece 5, on the end face of described rear wall 302 near described clamp member 100, be provided with groove 35, in described groove 35, contact plate 34 is installed, described contact plate is in order to contact with one of them of described two rack member 4, described groove 35 is also provided with and described multiple detection means 31, 32, 33 the first feelers 36 that are connected and the second feeler 37 being connected with described mobile motor 910, when one of them of described two rack member 4 contacts with described contact plate 34, activation signal is passed to respectively described multiple detection means 31 by described the first feeler 36 and the second feeler 37, 32, 33 and mobile motor 910, described multiple detection means 31, 32, 33 and mobile motor 910 just bring into operation after receiving signal, so that described axial workpiece 5 is detected.
Valuably, wherein, described multiple detection means 31,32,33 are different types of detection means.
Valuably, wherein, described multiple detection means 31,32,33 are respectively ultrasound detection device, vision-based detection device and X-ray check device.
According to embodiment, wherein, first, there is the described clamp member 100 of axial workpiece to move to the surveyed area of described detection part 200 clamping and make the free end at the each rearward end place in described two rack member 4 against the rear wall 302 of described support 3, afterwards, described mobile motor 910 drives described pedestal 9 to move backward, described driven wheel 63 is by driving described axial workpiece 5 to rotate with engaging of described rack member 4, described axial workpiece 5 is with described pedestal 9 translational motions simultaneously, thereby pass through successively described multiple detection means 31 in rotating, 32, 33, can carry out multi-angle detection for each described detection means thus.
Workpiece is carried out to driven in translation and rotarilys actuate two kinds of motions driving owing to directly utilizing the driving force of mobile motor, therefore do not increasing the combination campaign that realizes two kinds of motion modes under the situation that detects execution motion complexity, exceed 360 degree by rotation in the valid analysing range of the detecting instrument through corresponding, therefore can detect difficulty of implementation in the situation that not increasing, realize the detection of full angle for every kind of detecting instrument of multiple detection means. And by the slide block fixture block that can slip off to both sides is set, can be convenient to the loading and unloading of workpiece and can securely clamps, and can rotate with clamping part. And the elastomeric element that contacts with tooth bar is set, after tooth bar can being biased toward, therefore can travelling forward when workpiece is being withdrawn to direction and moved and can carry out rotary actuation repeatedly and detection repeatedly to workpiece at pedestal. In the time that finally withdrawing from workpiece, needs also can make tooth bar reset with respect to pedestal.
By with upper type, those skilled in the art can make various changes according to mode of operation within the scope of the invention.

Claims (4)

1. the smart machine for detection of axial workpiece, comprise clamp member (100) and detection part (200), described clamp member (100) is included in the sliding seat (913) that front end is provided with mobile motor (910), in described sliding seat (913), be provided with sliding tray (914), pedestal (9) is installed in described sliding tray (914) slidably, described pedestal (9) is provided with front end limiting section (922) and rear end limiting section (921), in described front end limiting section (922), be provided with screwed hole (923), screw rod (911) is installed in described mobile motor (910), described screw rod (911) coordinates installation with described screwed hole (923), on described pedestal (9), be provided with and can distinguish middle two the slip fixture blocks (7) that slide of lower symmetrically arranged two vertical slideways (91) thereon, described two slip fixture blocks (7) are oppositely arranged and each hold assembly (6) that is all rotatably mounted with side end face place outside and is offered clamping circular cone recess (60) by bearing (71), by means of being resisted against described pedestal (9) thus the pushing force of the upper clamping elastomeric element (8) that described two slip fixture blocks (7) are biased toward one another, axial workpiece (5) between the hold assembly (6) of described two slip fixture blocks (7) is held, on each described hold assembly (6), be provided with driven wheel (63), in order to can be respectively be symmetricly set on up and down in described pedestal (9) and vertical with described two vertical slideways (91) two before and after two rack member (4) of sliding in slideways (92) thus engage described axial workpiece (5) rotation that drives described hold assembly (6) and be held, each spacing junction surface (41) that is provided with at front end place in described two rack member (4), the leading flank at described spacing junction surface (41) can make the trailing flank at described spacing junction surface (41) be resisted against on the rear end limiting section (921) of described front and back slideways (92) with being pressed on the bias voltage elastomeric element (93) on described pedestal (9) thereby engaging, each rearward end in described two rack member (4) is free end, in order to engage location with the rear wall (302) of the support (3) of described detection part (200), the side that sidewall (301) is extended in the front and back of described support (3) is provided with the multiple detection means (31,32,33) that distribute along fore-and-aft direction, in order to detect described axial workpiece (5), described rear wall (302) is provided with groove (35) near on the end face of described clamp member (100), contact plate (34) is installed in described groove (35), described contact plate is in order to contact with one of them of described two rack member (4), described groove (35) is also provided with and described multiple detection means (31, 32, 33) the first feeler (36) being connected and the second feeler (37) being connected with described mobile motor (910), when one of them of described two rack member (4) contacts with described contact plate (34), activation signal is passed to respectively described multiple detection means (31 by described the first feeler (36) and the second feeler (37), 32, 33) and mobile motor (910), described multiple detection means (31, 32, 33) and after mobile motor (910) reception signal just bring into operation, so that described axial workpiece (5) is detected.
2. a kind of smart machine for detection of axial workpiece as claimed in claim 1, wherein, described multiple detection means (31,32,33) are different types of detection means.
3. a kind of smart machine for detection of axial workpiece as claimed in claim 2, wherein, described multiple detection means (31,32,33) are respectively ultrasound detection device, vision-based detection device and X-ray check device.
4. the using method of the smart machine for detection of axial workpiece as described in the claims any one, wherein, first, there is the described clamp member (100) of axial workpiece to move to the surveyed area of described detection part (200) clamping and make the free end at the each rearward end place in described two rack member (4) against the rear wall (302) of described support (3), afterwards, described mobile motor (910) drives described pedestal (9) to move backward, described driven wheel (63) is by driving described axial workpiece (5) to rotate with engaging of described rack member (4), described axial workpiece (5) is with described pedestal (9) translational motion simultaneously, thereby pass through successively described multiple detection means (31 in rotating, 32, 33), can carry out multi-angle detection for each described detection means thus.
CN201610150163.7A 2016-03-16 2016-03-16 Intelligent device for detecting shaft part and use method of intelligent device Pending CN105598882A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201610150163.7A CN105598882A (en) 2016-03-16 2016-03-16 Intelligent device for detecting shaft part and use method of intelligent device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201610150163.7A CN105598882A (en) 2016-03-16 2016-03-16 Intelligent device for detecting shaft part and use method of intelligent device

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109655190A (en) * 2019-01-28 2019-04-19 合肥工业大学 A kind of device detecting coating structure stress sonoelastic coefficient

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Publication number Priority date Publication date Assignee Title
JP2000275122A (en) * 1999-03-23 2000-10-06 Nsk Ltd Method and device for detecting amount of pre-load of rolling bearing
DE20107884U1 (en) * 2001-05-10 2001-07-19 Fev Motorentech Gmbh Test bench for the investigation of torsional vibrations on components
CN101704113A (en) * 2009-10-12 2010-05-12 大连科德数控有限公司 Numerical control lathe for automatically machining cylindrical roller for bearing
CN201573133U (en) * 2009-09-17 2010-09-08 施耐德(北京)中低压电器有限公司 Plug-in type positioning tooling for assembling base terminals
CN101995333A (en) * 2009-08-25 2011-03-30 上海诚测电子科技发展有限公司 Method for testing key performance of drive shaft assembly of constant velocity universal joint

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2000275122A (en) * 1999-03-23 2000-10-06 Nsk Ltd Method and device for detecting amount of pre-load of rolling bearing
DE20107884U1 (en) * 2001-05-10 2001-07-19 Fev Motorentech Gmbh Test bench for the investigation of torsional vibrations on components
CN101995333A (en) * 2009-08-25 2011-03-30 上海诚测电子科技发展有限公司 Method for testing key performance of drive shaft assembly of constant velocity universal joint
CN201573133U (en) * 2009-09-17 2010-09-08 施耐德(北京)中低压电器有限公司 Plug-in type positioning tooling for assembling base terminals
CN101704113A (en) * 2009-10-12 2010-05-12 大连科德数控有限公司 Numerical control lathe for automatically machining cylindrical roller for bearing

Non-Patent Citations (1)

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Title
元哲: "轴类工件直线度在线检测系统的开发", 《现代经济信息》 *

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109655190A (en) * 2019-01-28 2019-04-19 合肥工业大学 A kind of device detecting coating structure stress sonoelastic coefficient
CN109655190B (en) * 2019-01-28 2020-08-07 合肥工业大学 Device for detecting stress acoustic elastic coefficient of coating structure

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