CN204867464U - Cutter grinder decreases from detection device numerical control lathe - Google Patents

Cutter grinder decreases from detection device numerical control lathe Download PDF

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Publication number
CN204867464U
CN204867464U CN201520490080.3U CN201520490080U CN204867464U CN 204867464 U CN204867464 U CN 204867464U CN 201520490080 U CN201520490080 U CN 201520490080U CN 204867464 U CN204867464 U CN 204867464U
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CN
China
Prior art keywords
numerically controlled
controlled lathe
test device
tool wear
workpiece
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Expired - Fee Related
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CN201520490080.3U
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Chinese (zh)
Inventor
傅天翼
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Zhejiang Zixia Precision Machinery Co Ltd
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Zhejiang Zixia Precision Machinery Co Ltd
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Priority to CN201520490080.3U priority Critical patent/CN204867464U/en
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Abstract

The utility model provides a cutter grinder decreases from detection device numerical control lathe, numerical control lathe includes an automobile body, as numerical control lathe's support, numerical control lathe still includes a detection device, detection device installs on the automobile body for detect by the processing condition of processing work piece. Cutter grinder decreases from detection device numerical control lathe comparing between through work piece to after the processing and default, determine the cutter that whether needs to be changed, the deterministic process is simple and convenient, easy to operate also makes moreover numerical control lathe simple structure, to numerical control lathe's change itself is little, and easy the realization is standardized.

Description

A kind of tool wear self-test device numerically controlled lathe
Technical field
The utility model relates to a kind of numerically controlled lathe, particularly a kind of tool wear self-test device numerically controlled lathe.
Background technology
Existing numerically controlled lathe, when Vehicle Processing workpiece, because operator's self-inspection is not in place, often can cause after tool wear, makes that workpiece size is overproof does not have Timeliness coverage, causes workpiece needs do over again or scrap, adds production cost, reduce production efficiency.
Consult Chinese patent " a kind of tool wear self-test device numerically controlled lathe ", application number: 201420640355.2, a kind of tool wear self-test device numerically controlled lathe that the utility model relates to, comprise control device, chuck, workpiece, stage property, set bolt, blade row, radial base, guide rail and electronic induction chi, described radial base is above track, and described blade row is arranged in radial base, described cutter is fixed on blade row by set bolt, and described electronic induction chi is in one end of radial base.In the utility model, monitored by the timely wearing and tearing to cutter, decrease the scrappage of product, improve the quality of product, also reduce labour intensity simultaneously.
But self-checking unit described above be before being used by cutter with use after length compares, more whether according to the workpiece that processes in error range, judge whether to need to change cutter, the self test mode of this self-checking unit is comparatively loaded down with trivial details.
In view of above-mentioned defect, the utility model creator obtains the utility model finally through long research and practice.
Utility model content
The purpose of this utility model is, provides a kind of tool wear self-test device numerically controlled lathe, in order to overcome above-mentioned technological deficiency.
For achieving the above object, the technical solution adopted in the utility model is, a kind of tool wear self-test device numerically controlled lathe is provided, described numerically controlled lathe comprises a vehicle body, as the support of described numerically controlled lathe, described numerically controlled lathe also comprises a checkout gear, and described checkout gear is arranged on described vehicle body, in order to detect the processing situation of workpiece to be machined.
Tool wear self-test device numerically controlled lathe described in the utility model passes through the comparison between the workpiece after to processing and preset value, judge whether to need to change cutter, deterministic process is simple and convenient, and easily operate, also make described numerically controlled lathe structure simple, change for described numerically controlled lathe itself is little, easily realizes standardization.
Preferably, described checkout gear comprises a detect aperture and an expansion link, described detect aperture is positioned at the top of described checkout gear, described expansion link is positioned at the bottom of described checkout gear, and described detect aperture is connected with described expansion link, by the lifting of described expansion link, change the position of described detect aperture.
Preferably, described vehicle body is provided with a display, in order to the comparison result showing workpiece to be machined situation after processing and between presetting.
Preferably, described numerically controlled lathe also comprises a fixture, and described fixture is arranged on described vehicle body, in order to fixing workpiece to be machined.
Preferably, described fixture adopts the mode of three-jaw location to fix described workpiece to be machined, and described three-jaw is adjusted by the standing screw on described fixture, is applicable to the workpiece to be machined of different size size.
Preferably, described vehicle body is also provided with a slide rail, described checkout gear can move on described slide rail.
Preferably, the hole wall of described detect aperture is provided with multiple sensor, described sensor is uniformly distributed on the hole wall of described detect aperture, in order to calculating processing workpiece situation after processing and the difference between presetting.
Preferably, described slide rail is also provided with a radial base, described radial base can move on described slide rail.
Preferably, described radial base is provided with a toolframe, described toolframe is provided with a draw-in groove, in order to mounting cutter.
Preferably, described toolframe is provided with four locating holes, and described locating hole is symmetrically distributed on described toolframe.
The beneficial effects of the utility model are compared with the prior art: tool wear self-test device numerically controlled lathe described in the utility model passes through the comparison between the workpiece after to processing and preset value, judge whether to need to change cutter, deterministic process is simple and convenient, and easily operate, also make described numerically controlled lathe structure simple, change for described numerically controlled lathe itself is little, easily realizes standardization.
Accompanying drawing explanation
Fig. 1 is the structural representation of the utility model tool wear self-test device numerically controlled lathe.
Detailed description of the invention
Below in conjunction with accompanying drawing, to above-mentioned being described in more detail with other technical characteristic and advantage of the utility model.
Refer to shown in Fig. 1, it is the structural representation of the utility model tool wear self-test device numerically controlled lathe; Described numerically controlled lathe comprises a vehicle body 1, as the support of described numerically controlled lathe, described vehicle body 1 is provided with a display 2, in order to the comparison result showing workpiece to be machined situation after processing and between presetting; Described numerically controlled lathe also comprises a fixture 3, and described fixture 3 is arranged on described vehicle body 1, in order to fixing workpiece to be machined; The mode that described fixture 3 adopts three-jaw to locate fixes described workpiece to be machined, and described three-jaw adjusts by the standing screw on described fixture 3, is applicable to the workpiece to be machined of different size size; Described vehicle body 1 is also provided with a slide rail 4, described slide rail 4 is provided with a checkout gear 5, described checkout gear 5 can move on described slide rail 4, in order to detect the processing situation of workpiece to be machined; Described checkout gear 5 comprises detect aperture 51 and an expansion link 52, described detect aperture 51 is positioned at the top of described checkout gear 5, described expansion link 52 is positioned at the bottom of described checkout gear 5, and described detect aperture 51 is connected with described expansion link 52, by the lifting of described expansion link 52, change the position of described detect aperture 51; The hole wall of described detect aperture 51 is provided with multiple sensor, and described sensor is uniformly distributed on the hole wall of described detect aperture 51, in order to calculating processing workpiece situation after processing and the difference between presetting; Described slide rail 4 is also provided with a radial base 6, described radial base 6 can move on described slide rail 4, described radial base 6 is provided with a toolframe 7, described toolframe 7 is provided with a draw-in groove, in order to mounting cutter 8, described toolframe 7 is provided with four locating holes, and described locating hole is symmetrically distributed on described toolframe 7, make described cutter 8 when fixing, stressed more even, fastness is better, and facilitates the replacing of described cutter 8.
During use, first workpiece to be machined is fixed on described fixture 3, regulate the position of described cutter, open described numerically controlled lathe, workpiece is processed, after processing, regulate the height of described checkout gear 5, adapt with the height of described workpiece to be machined, and mobile described checkout gear 5, make the workpiece after processing stretch in described detect aperture 51, judge the workpiece after processing by the sensor of described detect aperture 51 and situation between presetting, show comparison result finally by described display 2, and provide the need of replacing cutter.
Tool wear self-test device 5 numerically controlled lathe described in the utility model passes through the comparison between the workpiece after to processing and preset value, judge whether to need to change cutter, deterministic process is simple and convenient, and easily operate, also make described numerically controlled lathe structure simple, change for described numerically controlled lathe itself is little, easily realizes standardization.
The foregoing is only preferred embodiment of the present utility model, is only illustrative for the utility model, and nonrestrictive.Those skilled in the art is understood, and can carry out many changes in the spirit and scope that the utility model claim limits to it, amendment, even equivalence, but all will fall in protection domain of the present utility model.

Claims (10)

1. a tool wear self-test device numerically controlled lathe, is characterized in that, described numerically controlled lathe comprises a vehicle body, as the support of described numerically controlled lathe, described numerically controlled lathe also comprises a checkout gear, and described checkout gear is arranged on described vehicle body, in order to detect the processing situation of workpiece to be machined.
2. a kind of tool wear self-test device numerically controlled lathe according to claim 1, it is characterized in that, described checkout gear comprises a detect aperture and an expansion link, described detect aperture is positioned at the top of described checkout gear, described expansion link is positioned at the bottom of described checkout gear, and described detect aperture is connected with described expansion link, by the lifting of described expansion link, change the position of described detect aperture.
3. a kind of tool wear self-test device numerically controlled lathe according to claim 2, is characterized in that, described vehicle body is provided with a display, in order to the comparison result showing workpiece to be machined situation after processing and between presetting.
4. a kind of tool wear self-test device numerically controlled lathe according to claim 3, it is characterized in that, described numerically controlled lathe also comprises a fixture, and described fixture is arranged on described vehicle body, in order to fixing workpiece to be machined.
5. a kind of tool wear self-test device numerically controlled lathe according to claim 4, it is characterized in that, described fixture adopts the mode of three-jaw location to fix described workpiece to be machined, and described three-jaw is adjusted by the standing screw on described fixture, be applicable to the workpiece to be machined of different size size.
6. a kind of tool wear self-test device numerically controlled lathe according to claim 5, it is characterized in that, described vehicle body is also provided with a slide rail, described checkout gear can move on described slide rail.
7. a kind of tool wear self-test device numerically controlled lathe according to claim 6, it is characterized in that, the hole wall of described detect aperture is provided with multiple sensor, described sensor is uniformly distributed on the hole wall of described detect aperture, in order to calculating processing workpiece situation after processing and the difference between presetting.
8. a kind of tool wear self-test device numerically controlled lathe according to claim 7, it is characterized in that, described slide rail is also provided with a radial base, described radial base can move on described slide rail.
9. a kind of tool wear self-test device numerically controlled lathe according to claim 8, is characterized in that, described radial base is provided with a toolframe, described toolframe is provided with a draw-in groove, in order to mounting cutter.
10. a kind of tool wear self-test device numerically controlled lathe according to claim 9, is characterized in that, described toolframe is provided with four locating holes, and described locating hole is symmetrically distributed on described toolframe.
CN201520490080.3U 2015-07-03 2015-07-03 Cutter grinder decreases from detection device numerical control lathe Expired - Fee Related CN204867464U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520490080.3U CN204867464U (en) 2015-07-03 2015-07-03 Cutter grinder decreases from detection device numerical control lathe

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Application Number Priority Date Filing Date Title
CN201520490080.3U CN204867464U (en) 2015-07-03 2015-07-03 Cutter grinder decreases from detection device numerical control lathe

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110006384A (en) * 2019-04-18 2019-07-12 中铁隧道局集团有限公司 A kind of cutter head of shield machine abrasion On-line Measuring Method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110006384A (en) * 2019-04-18 2019-07-12 中铁隧道局集团有限公司 A kind of cutter head of shield machine abrasion On-line Measuring Method
CN110006384B (en) * 2019-04-18 2020-09-11 中铁隧道局集团有限公司 Shield tunneling machine cutter head abrasion online measurement method

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

Granted publication date: 20151216

Termination date: 20160703

CF01 Termination of patent right due to non-payment of annual fee