CN204771890U - Automatic grinding machine of calibration a little in anti -oxidation dartlike weapon target location - Google Patents

Automatic grinding machine of calibration a little in anti -oxidation dartlike weapon target location Download PDF

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Publication number
CN204771890U
CN204771890U CN201520375709.XU CN201520375709U CN204771890U CN 204771890 U CN204771890 U CN 204771890U CN 201520375709 U CN201520375709 U CN 201520375709U CN 204771890 U CN204771890 U CN 204771890U
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CN
China
Prior art keywords
numerical control
axis numerical
control slide
calibration
oxidation
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201520375709.XU
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Chinese (zh)
Inventor
徐静
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.)
Suzhou Rui Qi Electronics Co Ltd
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Suzhou Rui Qi Electronics Co Ltd
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Publication date
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Priority to CN201520375709.XU priority Critical patent/CN204771890U/en
Application granted granted Critical
Publication of CN204771890U publication Critical patent/CN204771890U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides an automatic grinding machine of calibration a little in anti -oxidation dartlike weapon target location, relates to the grinding machine field. The utility model provides a present grinding device when polishing the part inner wall, fix a position not accurately, the deviation easily appears, the problem of irreversible injury is led to the fact the part. An automatic grinding machine of calibration a little in anti -oxidation dartlike weapon target location, includes operation panel and emery wheel board, the operation panel both sides are equipped with rotatable pin, and the top is spaned there is the X axle, Y axle and Z axle slide rail parallel connection have the clamping jaw, the abrasive machine bench is equipped with abrasive machine slider and emery wheel slide bar, even there are precise grinding abrasion wheel, rough grinding wheel and infrared ray dash receiver in the right side of emery wheel slide bar, precise grinding abrasion wheel is equipped with dirty tank and micropore, be equipped with the location lid on the work piece right -hand member, be equipped with the infrared ray dart of tying up hair in the location lid. The utility model discloses a tie up hair locate mode of the dartlike weapon target of dart and infrared ray dash receiver of infrared ray, it carries out little calibration to judge the center of part hole automatically, keeps the high accuracy at the in -process of polishing, and not oxidation has improved the quality that the part was polished.

Description

The grinding machine of the anti-oxidation dartboard automatic micro-calibration in location
Technical field
The utility model relates to grinding machine field, particularly relates to the grinding machine of a kind of anti-oxidation dartboard automatic micro-calibration in location.
Background technology
In industrial processes, some have the part of the part of endoporus or the tubulose of square-outside and round-inside, need to polish to its inwall in application process, and existing sanding apparatus, in whole bruting process, can not locate accurately, easily there is deviation in polishing, this just causes irreversible injury to part, makes the size of part not accurate, even causes part rejection.
Summary of the invention
For solving the problems of the technologies described above, the utility model provides the grinding machine of a kind of anti-oxidation dartboard automatic micro-calibration in location.
The utility model solves the technical scheme that its technical problem adopts: a kind of grinding machine of the anti-oxidation dartboard automatic micro-calibration in location, and it comprises operating desk and is arranged on the emery wheel board under operating desk; Described operating desk is streamline; The both sides of described operating desk are provided with rotatable pin; The each erection on emery wheel board of described operating desk both sides has two Z axis numerical control slide rails; The X-axis numerical control slide rail across operating desk is provided with between two Z axis numerical control slide rails that operating desk both sides are corresponding; Between two X-axis numerical control slide rails, erection has two Y-axis numerical control slide rails; Described Y-axis numerical control slide rail wears jaw slide block; The jaw for fixation workpiece is fixed with under described jaw slide block; Described emery wheel board is also fixed with abrasive machine slide block; Described abrasive machine slide block is equipped with emery wheel slide bar from left to right; The right side of described emery wheel slide bar is connected with finishing wheel, rough grinding wheel and infrared receiver plate in turn; Described finishing wheel is also provided with reject chute and is arranged on the multiple micro-pore bottom reject chute; The right-hand member of workpiece is also provided with locating cover; Described locating cover by the fixed block for fixing with workpiece, be arranged on forming for the infrared beams transmitter coordinating infrared receiver plate to use of center on the left of fixed block.
Described X-axis numerical control slide rail can move along Z axis numerical control slide rail; Described Y-axis numerical control slide rail can move along X-axis numerical control slide rail; Described jaw slide block can move along Y-axis numerical control slide rail.
Described reject chute is that shape of threads is looped around on finishing wheel.
The stepped formation cascaded surface in outside of described fixed block; Described cascaded surface contacts with the right side of workpiece.
Operation principle: part moves to treats burnishing part, blocks part by rotatable pin and makes the axis of inner bore of part parallel with emery wheel slide bar; Part is fixed by jaw, is then covered by locating cover on the endoporus that will polish; Open the infrared beams transmitter in locating cover, certain on infrared receiver plate a bit receives infrared ray, and then judge the deviation of central point of this point and infrared receiver plate, then, adjusted jaw slide block according to this deviation by Y-axis numerical control slide rail, X-axis numerical control slide rail and Z axis numerical control slide rail, the infrared ray launched to infrared beams transmitter is aimed on the central point of infrared receiver plate; Now, start rough grinding wheel and finishing wheel, startup emery wheel slide bar, emery wheel slide bar is advanced into the right in part with emery wheel, polish, first carry out roughly grinding rear horse back and refine, lead to cold inert gas by micro-pore to the position of finishing wheel and contact internal walls, make in the process of fine grinding, while reducing temperature, also completely cut off oxygen, made the inwall fast cooling of fine grinding; During finishing wheel mill inwall, the sand grains under dropping and waste material are collected by reject chute; It is in order to waste material can be discharged from finishing wheel at any time that reject chute is designed to shape of threads; When emery wheel to be ground is brought to part right hand edge, locating cover is ejected part by infrared receiver plate, and then, stop emery wheel rotating, emery wheel slide bar is to left movement, and emery wheel slide bar is extracted out from part with emery wheel; Finally, rotatable pin rotates laterally, and decontrol part, the part of having polished taken away by streamline, continues the polishing operation of next part.
Advantage of the present utility model: the grinding machine of a kind of anti-oxidation dartboard automatic micro-calibration in location of the present utility model adopts the locate mode of the dartboard of infrared beams transmitter and infrared receiver plate, micro-calibration is carried out in the center of automatic decision inner bore of part, make part in the process of polishing, keep high accuracy, there is not deviation, improve the quality of part polishing.
Accompanying drawing explanation
Fig. 1 is the schematic diagram of the grinding machine of the anti-oxidation dartboard automatic micro-calibration in location of the present embodiment;
Fig. 2 is the schematic diagram of the finishing wheel of the grinding machine of the anti-oxidation dartboard automatic micro-calibration in location of the present embodiment;
Fig. 3 is the schematic diagram of the locating cover of the grinding machine of the anti-oxidation dartboard automatic micro-calibration in location of the present embodiment.
Wherein, 1, operating desk; 11, Y-axis numerical control slide rail; 12, jaw slide block; 13, jaw; 2, emery wheel board; 21, Z axis numerical control slide rail; 22, X-axis numerical control slide rail; 23, abrasive machine slide block; 24, emery wheel slide bar; 25, finishing wheel; 251, reject chute; 252, micro-pore; 26, rough grinding wheel; 27, infrared receiver plate; 3, rotatable pin; 4, locating cover; 41, fixed block; 42, infrared beams transmitter; 43, cascaded surface.
Detailed description of the invention
In order to deepen, to understanding of the present utility model, to be described in further detail the utility model below in conjunction with drawings and Examples, this embodiment, only for explaining the utility model, not forming protection domain of the present utility model and limiting.
Embodiment
As shown in Figure 1 to Figure 3, a kind of grinding machine of the anti-oxidation dartboard automatic micro-calibration in location, the emery wheel board 2 that it comprises operating desk 1 and is arranged under operating desk 1; Described operating desk 1 is streamline; The both sides of described operating desk 1 are provided with rotatable pin 3; The each erection on emery wheel board 2 of described operating desk 1 both sides has two Z axis numerical control slide rails 21; The X-axis numerical control slide rail 22 across operating desk 1 is provided with between two Z axis numerical control slide rails 21 that operating desk 1 both sides are corresponding; Between two X-axis numerical control slide rails 22, erection has two Y-axis numerical control slide rails 11; Described Y-axis numerical control slide rail 11 wears jaw slide block 12; Described jaw slide block is fixed with the jaw 13 for fixation workpiece for 12 times; Described emery wheel board 2 is also fixed with abrasive machine slide block 23; Described abrasive machine slide block 23 is equipped with emery wheel slide bar 24 from left to right; The right side of described emery wheel slide bar 24 is connected with finishing wheel 25, rough grinding wheel 26 and infrared receiver plate 27 in turn; The multiple micro-pore 252 described finishing wheel 25 being also provided with reject chute 251 and being arranged on bottom reject chute 251; The right-hand member of workpiece is also provided with locating cover 4; Described locating cover 4 by the fixed block 41 for fixing with workpiece, be arranged on forming for the infrared beams transmitter 42 coordinating infrared receiver plate 27 to use of center on the left of fixed block 41; Described X-axis numerical control slide rail 22 can move along Z axis numerical control slide rail 21; Described Y-axis numerical control slide rail 11 can move along X-axis numerical control slide rail 22; Described jaw slide block 12 can move along Y-axis numerical control slide rail 11; Described reject chute 251 is looped around on finishing wheel 25 in shape of threads; The stepped formation cascaded surface 43 in outside of described fixed block 41; Described cascaded surface 43 contacts with the right side of workpiece.
The operation principle of the grinding machine of a kind of anti-oxidation dartboard automatic micro-calibration in location of the present embodiment: part moves to treats burnishing part, blocks part and make the axis of inner bore of part parallel with emery wheel slide bar 24 by rotatable pin 3; Part is fixed by jaw 13, then covers on the endoporus that will polish by locating cover 4; Open the infrared beams transmitter 42 in locating cover 4, certain on infrared receiver plate 27 a bit receives infrared ray, and then judge the deviation of central point of this point and infrared receiver plate 27, then, adjusted jaw slide block 12 according to this deviation by Y-axis numerical control slide rail 11, X-axis numerical control slide rail 22 and Z axis numerical control slide rail 21, the infrared ray launched to infrared beams transmitter 42 is aimed on the central point of infrared receiver plate 27; Now, start rough grinding wheel 26 and finishing wheel 25, start emery wheel slide bar 24, emery wheel slide bar 24 is advanced into the right in part with emery wheel, polish, first carry out roughly grinding rear horse back and refine, lead to cold inert gas by micro-pore 252 to finishing wheel 25 and the position of contact internal walls, make in the process of fine grinding, while reducing temperature, also completely cut off oxygen, made the inwall fast cooling of fine grinding; When finishing wheel 25 grinds inwall, the sand grains under dropping and waste material are collected by reject chute 251; It is in order to waste material can be discharged from finishing wheel 25 at any time that reject chute 251 is designed to shape of threads; When emery wheel 25 to be ground is brought to part right hand edge, locating cover 4 is ejected part by infrared receiver plate 27, and then, stop emery wheel rotating, emery wheel slide bar 24 is to left movement, and emery wheel slide bar 24 is extracted out from part with emery wheel; Finally, rotatable pin 3 rotates laterally, and decontrol part, the part of having polished taken away by streamline, continues the polishing operation of next part.
Above-described embodiment should not limit the utility model by any way, and the technical scheme that the mode that all employings are equal to replacement or equivalency transform obtains all drops in protection domain of the present utility model.

Claims (4)

1. a grinding machine for the anti-oxidation dartboard automatic micro-calibration in location, is characterized in that: it comprises operating desk and is arranged on the emery wheel board under operating desk; Described operating desk is streamline; The both sides of described operating desk are provided with rotatable pin; The each erection on emery wheel board of described operating desk both sides has two Z axis numerical control slide rails; The X-axis numerical control slide rail across operating desk is provided with between two Z axis numerical control slide rails that operating desk both sides are corresponding; Between two X-axis numerical control slide rails, erection has two Y-axis numerical control slide rails; Described Y-axis numerical control slide rail wears jaw slide block; The jaw for fixation workpiece is fixed with under described jaw slide block; Described emery wheel board is also fixed with abrasive machine slide block; Described abrasive machine slide block is equipped with emery wheel slide bar from left to right; The right side of described emery wheel slide bar is connected with finishing wheel, rough grinding wheel and infrared receiver plate in turn; Described finishing wheel is also provided with reject chute and is arranged on the multiple micro-pore bottom reject chute; The right-hand member of workpiece is also provided with locating cover; Described locating cover by the fixed block for fixing with workpiece, be arranged on forming for the infrared beams transmitter coordinating infrared receiver plate to use of center on the left of fixed block.
2. the grinding machine of a kind of anti-oxidation dartboard automatic micro-calibration in location according to claim 1, is characterized in that: described X-axis numerical control slide rail can move along Z axis numerical control slide rail; Described Y-axis numerical control slide rail can move along X-axis numerical control slide rail; Described jaw slide block can move along Y-axis numerical control slide rail.
3. the grinding machine of a kind of anti-oxidation dartboard automatic micro-calibration in location according to claim 1, is characterized in that: described reject chute is that shape of threads is looped around on finishing wheel.
4. the grinding machine of a kind of anti-oxidation dartboard automatic micro-calibration in location according to claim 1, is characterized in that: the stepped formation cascaded surface in outside of described fixed block; Described cascaded surface contacts with the right side of workpiece.
CN201520375709.XU 2015-06-03 2015-06-03 Automatic grinding machine of calibration a little in anti -oxidation dartlike weapon target location Expired - Fee Related CN204771890U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520375709.XU CN204771890U (en) 2015-06-03 2015-06-03 Automatic grinding machine of calibration a little in anti -oxidation dartlike weapon target location

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520375709.XU CN204771890U (en) 2015-06-03 2015-06-03 Automatic grinding machine of calibration a little in anti -oxidation dartlike weapon target location

Publications (1)

Publication Number Publication Date
CN204771890U true CN204771890U (en) 2015-11-18

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105033792A (en) * 2015-06-03 2015-11-11 苏州睿绮电子有限公司 Anti-oxidation grinding machine with target locating and automatic fine correcting function

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105033792A (en) * 2015-06-03 2015-11-11 苏州睿绮电子有限公司 Anti-oxidation grinding machine with target locating and automatic fine correcting function

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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: 20151118

Termination date: 20160603