CN205482794U - Neodymium iron boron magnetically hard material size automatic checkout device - Google Patents
Neodymium iron boron magnetically hard material size automatic checkout device Download PDFInfo
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- CN205482794U CN205482794U CN201620069717.6U CN201620069717U CN205482794U CN 205482794 U CN205482794 U CN 205482794U CN 201620069717 U CN201620069717 U CN 201620069717U CN 205482794 U CN205482794 U CN 205482794U
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- whippletree
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Abstract
The utility model discloses a neodymium iron boron magnetically hard material size automatic checkout device, including slide rail, right slider, measure whippletree, measuring device, the youzhu body, the right side detect whippletree, right gauge head, left gauge head, left slider, a left side detect whippletree, left main part, measuring basis seat right side slider and left slider setting are on the slide rail, the youzhu body sets up on right slider, left side main part setting is on left slider, it connects respectively on the side of the youzhu body with the one end that the whippletree was detected on the right side to measure the one end of whippletree, a left side is detected the whippletree and is located benchmark whippletree top, left side gauge head setting detects the other end of whippletree on a left side, left side gauge head is mutually supported with right gauge head, measuring device sets up on measuring the whippletree, the measuring basis seat sets up on the benchmark whippletree, measuring device and the cooperation of measuring basis seat. The utility model discloses a neodymium iron boron magnetically hard material size automatic checkout device's simple structure, convenient and practical, completion that can be accurate quick is measured.
Description
Technical field
This utility model belongs to Nd-Fe-B permanent magnet material detection apparatus field, is specifically related to a kind of Nd-Fe-B permanent magnet material dimension automatic detection device.
Background technology
When Nd-Fe-B permanent magnet material is processed into finished product, its size need to be detected, generally use the mode of sampling observation, but some product requirement is higher when needing certain size or production to go wrong, it is necessary to carry out workpiece is examined entirely.Traditional approach detection typically carries out desk checking by the measurer such as slide calliper rule and micrometer, and shortcoming is checkability lowly, and to the measurer working specification of reviewer and the requirement of measurement proficiency level.Bulk article examines inefficiency entirely.
Utility model content
Technical problem to be solved in the utility model is to provide a kind of Nd-Fe-B permanent magnet material dimension automatic detection device, and the simple in construction of this automatic detection device is convenient and practical, it is possible to complete quickly and accurately to measure.
A kind of Nd-Fe-B permanent magnet material dimension automatic detection device, including slide rail, right slide block, measuring whippletree, measurement apparatus, spring, right main body, right detection whippletree, right gauge head, left gauge head, left slider, left detection whippletree, left main body, measuring basis seat, benchmark whippletree, described right slide block and left slider are arranged on slide rail;Described right main body is arranged on right slide block, and described left main body is arranged on left slider;One end of described measurement whippletree and one end of right detection whippletree are connected on the side of right main body, and described right detection whippletree is positioned at above measurement whippletree, and described right gauge head is arranged on the other end of right detection whippletree;Described one end of left detection whippletree and one end of benchmark whippletree are connected on the side of left main body, and described left detection whippletree is positioned at above benchmark whippletree;Described left gauge head is arranged on the other end of left detection whippletree;Described measurement apparatus is arranged on measurement whippletree, described measuring basis seat is arranged on benchmark whippletree, described measurement apparatus coordinates with measuring basis seat, being connected between measurement whippletree and right detection whippletree in described right main body and have one end of spring, the other end of described spring is connected in left main body between left detection whippletree and benchmark whippletree.
Preferably, described right gauge head is bolted on right detection whippletree, and described left gauge head is bolted on left detection whippletree.
Preferably, described measurement apparatus is optical ruler.
Preferably, also include that cylinder, described cylinder two ends are connected in benchmark whippletree and right main body.
Preferably, described left gauge head and right gauge head are provided with inductive probe.
Beneficial effect:
(1) simple in construction of a kind of Nd-Fe-B permanent magnet material dimension automatic detection device of the present utility model, convenient and practical, it is possible to completes quickly and accurately to measure.
(2) a kind of Nd-Fe-B permanent magnet material dimension automatic detection device of the present utility model is measured automatically by inductive probe sensing workpiece.
Accompanying drawing explanation
Fig. 1 is the structural representation of automatic detection device;
1-slide rail, the right slide block of 2-, 3-measures whippletree, 4-measurement apparatus, 5-spring, the right main body of 6-, 7-right detection whippletree, the right gauge head of 8-, the left gauge head of 9-, 10-left slider, 11-left detection whippletree, the left main body of 12-, 13-measuring basis seat, 14-benchmark whippletree, 15-cylinder.
Detailed description of the invention
Further illustrate embodiment of the present utility model below in conjunction with the accompanying drawings.
Embodiment 1
A kind of Nd-Fe-B permanent magnet material dimension automatic detection device, including slide rail 1, right slide block 2, measuring whippletree 3, measurement apparatus 4, spring 5, right main body 6, right detection whippletree 7, right gauge head 8, left gauge head 9, left slider 10, left detection whippletree 11, left main body 12, measuring basis seat 13, benchmark whippletree 14, described right slide block 2 and left slider 10 are arranged on slide rail 1;Described right main body 6 is arranged on right slide block 2, and described left main body 12 is arranged on left slider 10;One end of described measurement whippletree 3 and one end of right detection whippletree 7 are connected on the side of right main body 6, and described right detection whippletree 7 is positioned at above measurement whippletree 3, and described right gauge head 8 is arranged on the other end of right detection whippletree 7;Described one end of left detection whippletree 11 and one end of benchmark whippletree 14 are connected on the side of left main body 12, and described left detection whippletree 11 is positioned at above benchmark whippletree 14;Described left gauge head 9 is arranged on the other end of left detection whippletree 11;Described measurement apparatus 4 is arranged on measurement whippletree 3, described measuring basis seat 13 is arranged on benchmark whippletree 14, described measurement apparatus 4 coordinates with measuring basis seat 13, it is connected between measurement whippletree 3 and right detection whippletree 7 in described right main body 6 and has one end of spring 5, the other end of described spring 5 is connected in left main body 12 between left detection whippletree 11 and benchmark whippletree 14, described right gauge head 8 is bolted on right detection whippletree 7, described left gauge head 9 is bolted on left detection whippletree 11, described measurement apparatus 4 is optical ruler, also include cylinder 15, described cylinder 15 two ends are connected in benchmark whippletree 14 and right main body 6, described left gauge head 9 is provided with inductive probe on right gauge head 8.
First pull open right main body 6 and left main body 12, Nd-Fe-B permanent magnet material is put between right gauge head 8 and left gauge head 9, spring pulls right main body 6 and left main body 12, right main body 6 and left main body 12 drive right gauge head 8 and left gauge head 9 to clamp Nd-Fe-B permanent magnet material, and measurement apparatus 4 and measuring basis seat 13 conjunction measuring go out the size of Nd-Fe-B permanent magnet material.
Embodiment 2
Open cylinder 15, cylinder 15 backs down right main body 6 and left main body 12, Nd-Fe-B permanent magnet material is put between right gauge head 8 and left gauge head 9, inductive probe senses Nd-Fe-B permanent magnet material, controller cuts out cylinder 15, spring pulls right main body 6 and left main body 12, right main body 6 and left main body 12 to drive right gauge head 8 and left gauge head 9 to clamp Nd-Fe-B permanent magnet material, and measurement apparatus 4 and measuring basis seat 13 conjunction measuring go out the size of Nd-Fe-B permanent magnet material.
Being described in detail specific embodiment of the utility model above, but it is intended only as example, this utility model is not restricted to above description specific embodiment.To those skilled in the art, any equivalent modifications carrying out this utility model and replacement are the most all among category of the present utility model.Therefore, the impartial conversion made under without departing from spirit and scope of the present utility model and amendment, all contain in the range of this utility model.
Claims (5)
1. a Nd-Fe-B permanent magnet material dimension automatic detection device, it is characterized in that, including slide rail (1), right slide block (2), measuring whippletree (3), measurement apparatus (4), spring (5), right main body (6), right detection whippletree (7), right gauge head (8), left gauge head (9), left slider (10), left detection whippletree (11), left main body (12), measuring basis seat (13), benchmark whippletree (14), described right slide block (2) and left slider (10) are arranged on slide rail (1);Described right main body (6) is arranged on right slide block (2), and described left main body (12) is arranged on left slider (10);One end of described measurement whippletree (3) and one end of right detection whippletree (7) are connected on the side of right main body (6), described right detection whippletree (7) is positioned at measurement whippletree (3) top, and described right gauge head (8) is arranged on the other end of right detection whippletree (7);Described one end of left detection whippletree (11) and one end of benchmark whippletree (14) are connected on the side of left main body (12), and described left detection whippletree (11) is positioned at benchmark whippletree (14) top;Described left gauge head (9) is arranged on the other end of left detection whippletree (11);Described measurement apparatus (4) is arranged in measurement whippletree (3), described measuring basis seat (13) is arranged on benchmark whippletree (14), described measurement apparatus (4) coordinates with measuring basis seat (13), being positioned on described right main body (6) between measurement whippletree (3) and right detection whippletree (7) to be connected and have one end of spring (5), the other end of described spring (5) is connected in left main body (12) be positioned between left detection whippletree (11) and benchmark whippletree (14).
2. a kind of Nd-Fe-B permanent magnet material dimension automatic detection device as claimed in claim 1, it is characterized in that, described right gauge head (8) is bolted on right detection whippletree (7), and described left gauge head (9) is bolted on left detection whippletree (11).
3. a kind of Nd-Fe-B permanent magnet material dimension automatic detection device as claimed in claim 1, it is characterised in that described measurement apparatus (4) is optical ruler.
4. a kind of Nd-Fe-B permanent magnet material dimension automatic detection device as claimed in claim 1, it is characterized in that, also include that cylinder (15), described cylinder (15) two ends are connected in benchmark whippletree (14) and right main body (6).
5. a kind of Nd-Fe-B permanent magnet material dimension automatic detection device as claimed in claim 1, it is characterised in that be provided with inductive probe on described left gauge head (9) and right gauge head (8).
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CN201620069717.6U CN205482794U (en) | 2016-01-22 | 2016-01-22 | Neodymium iron boron magnetically hard material size automatic checkout device |
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CN201620069717.6U CN205482794U (en) | 2016-01-22 | 2016-01-22 | Neodymium iron boron magnetically hard material size automatic checkout device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108750673A (en) * | 2018-05-19 | 2018-11-06 | 芜湖新利德玻璃制品有限公司 | A kind of automation glass storing unit |
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2016
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108750673A (en) * | 2018-05-19 | 2018-11-06 | 芜湖新利德玻璃制品有限公司 | A kind of automation glass storing unit |
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