CN205497215U - A grind square position for optic fibre pottery lock pin - Google Patents

A grind square position for optic fibre pottery lock pin Download PDF

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Publication number
CN205497215U
CN205497215U CN201620183411.3U CN201620183411U CN205497215U CN 205497215 U CN205497215 U CN 205497215U CN 201620183411 U CN201620183411 U CN 201620183411U CN 205497215 U CN205497215 U CN 205497215U
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CN
China
Prior art keywords
lock pin
optical fiber
fiber ceramic
ceramic lock
square position
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Active
Application number
CN201620183411.3U
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Chinese (zh)
Inventor
余新文
毕延文
孙兴元
魏军杰
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Suzhou Jialanzhiyuan Electronic Technology Co Ltd
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Suzhou Jialanzhiyuan Electronic Technology Co Ltd
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Priority to CN201620183411.3U priority Critical patent/CN205497215U/en
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Publication of CN205497215U publication Critical patent/CN205497215U/en
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  • Grinding And Polishing Of Tertiary Curved Surfaces And Surfaces With Complex Shapes (AREA)

Abstract

The utility model discloses a grind square position for optic fibre pottery lock pin, including grinding the flat underside and grinding the square position body, the inside bending type in both sides who grinds the flat underside becomes to be used for to place the continuous strip who grinds the square position body, it places on continuous strip to grind the square position body, the surface of grinding the flat underside is equipped with if interval distribution's such as a row anti -skidding bump, grind be equipped with on the body of square position if interval distribution such as rows be used for pegging graft the spliced eye of the ceramic lock pin of optic fibre, every spliced eye is located every anti -skidding bump directly over, the four corners of grinding the square position body still sets up the bolt fastening hole respectively. The utility model discloses can place a plurality of waiting simultaneously and grind flat optic fibre pottery lock pins, carry on follow -uply once only polishing, improve optic fibre pottery lock pin greatly and ground flat efficiency, simple structure realizes having good application prospect easily.

Description

A kind of polish dish for optical fiber ceramic lock pin
Technical field
This utility model relates to a kind of polishing dish for optical fiber ceramic lock pin, belongs to lens lens technical field of measurement and test.
Background technology
Optical fiber ceramic lock pin, is the parts that need in a large number of fiber optic data communication interface.Along with the fast development of fiber optic communication, the demand of optical fiber ceramic lock pin is also with being multiplied.At present, the colloid of the existence residual that the optical fiber ceramic lock pin end of production has, need to carry out polishing and remove, traditional mode is to be polished optical fiber ceramic lock pin end by the most single, inefficiency, and, waste time and energy.
Utility model content
This utility model purpose is to be to be polished optical fiber ceramic lock pin end by the most single to overcome traditional mode, inefficiency, the problem wasted time and energy.Of the present utility model polish dish for optical fiber ceramic lock pin, it is possible to place multiple optical fiber ceramic lock pin to be polished simultaneously, carry out follow-up disposable polishing, substantially increase optical fiber ceramic lock pin and polish efficiency, simple in construction, easily realizes, and has a good application prospect.
In order to achieve the above object, this utility model be the technical scheme is that
A kind of polish dish for optical fiber ceramic lock pin, it is characterized in that: include polishing base plate and polishing disk body, described mill flat-floored both sides bend inwards and are formed for placing the placement bar polishing disk body, the described disk body that polishes is placed on placement bar, if described mill flat-floored surface is provided with the anti-skidding salient point that individual row is spacedly distributed, if the described disk body that polishes is provided with the spliced eye for grafting optical fiber ceramic lock pin that individual row is spacedly distributed, each spliced eye is positioned at the surface of each anti-skidding salient point, described in polish the corner of disk body and be also respectively provided with bolt fixing hole.
Be previously described for optical fiber ceramic lock pin polishes dish, it is characterised in that the corner polishing disk body described in: is round-corner transition.
Be previously described for optical fiber ceramic lock pin polishes dish, it is characterised in that: the diameter of described spliced eye is identical with the diameter of optical fiber ceramic lock pin.
Be previously described for optical fiber ceramic lock pin polishes dish, it is characterised in that: the base of described placement bar is 3mm with the height polishing backplate surface.
Be previously described for optical fiber ceramic lock pin polishes dish, it is characterised in that: the end of described placement bar is equipped with baffle plate.
Be previously described for optical fiber ceramic lock pin polishes dish, it is characterised in that: described anti-skidding salient point is identical with the quantity of spliced eye.
The beneficial effects of the utility model are: of the present utility model polish dish for optical fiber ceramic lock pin, multiple optical fiber ceramic lock pin to be polished can be placed simultaneously, carry out follow-up disposable polishing, substantially increase optical fiber ceramic lock pin and polish efficiency, simple in construction, easily realize, have a good application prospect.
Accompanying drawing explanation
Fig. 1 is of the present utility model to polish mill flat-floored structural representation for optical fiber ceramic lock pin.
Fig. 2 is the structural representation polishing mill square position body for optical fiber ceramic lock pin of the present utility model.
Detailed description of the invention
Below in conjunction with Figure of description, this utility model is described further.Following example are only used for clearly illustrating the technical solution of the utility model, and can not limit protection domain of the present utility model with this.
nullAs shown in Figures 1 and 2,Of the present utility model polish dish for optical fiber ceramic lock pin,Including polishing base plate 1 and polishing disk body 2,The described both sides polishing base plate 1 bend inwards and are formed for placing the placement bar 3 polishing disk body 2,The described disk body 2 that polishes is placed on placement bar 3,If the described surface polishing base plate 1 is provided with the anti-skidding salient point that individual row is spacedly distributed,If the described disk body 2 that polishes is provided with the spliced eye 4 for grafting optical fiber ceramic lock pin that individual row is spacedly distributed,Each spliced eye 4 is positioned at the surface of each anti-skidding salient point,Anti-skidding salient point is identical with the quantity of spliced eye 4,During use, optical fiber ceramic lock pin to be polished is inserted in spliced eye 4,The bottom of optical fiber ceramic lock pin props up and polishes base plate 1,And be socketed on the anti-skidding salient point of correspondence,Anti-skidding salient point is prevented from optical fiber ceramic lock pin to be polished and occurs position to offset during polishing,Impact polishes effect.
The described corner polishing disk body 2 is also respectively provided with bolt fixing hole 5, when grafting optical fiber ceramic lock pin, polishes disk body 2 for fixing, it is simple to grafting.
The described corner polishing disk body 2 is round-corner transition, prevents corner the sharpest, scratch staff.
The diameter of described spliced eye 4 is identical with the diameter of optical fiber ceramic lock pin, prevents the optical fiber ceramic lock pin of grafting from occurring to loosen.
The base of described placement bar 3 is 3mm with the height polishing base plate 1 surface.
The end of described placement bar 3 is equipped with baffle plate 6, for propping up the edge polishing disk body 2, prevents from rocking.
In sum, of the present utility model polish dish for optical fiber ceramic lock pin, it is possible to place multiple optical fiber ceramic lock pin to be polished simultaneously, carry out follow-up disposable polishing, substantially increase optical fiber ceramic lock pin and polish efficiency, simple in construction, easily realize, have a good application prospect.
Of the present utility model ultimate principle, principal character and advantage have more than been shown and described.Skilled person will appreciate that of the industry; this utility model is not restricted to the described embodiments; described in above-described embodiment and description, principle of the present utility model is simply described; on the premise of without departing from this utility model spirit and scope; this utility model also has various changes and modifications, in the range of these changes and improvements both fall within claimed this utility model.This utility model claims scope and is defined by appending claims and equivalent thereof.

Claims (6)

1. one kind for optical fiber ceramic lock pin polish dish, it is characterized in that: include polishing base plate (1) and polishing disk body (2), the described both sides polishing base plate (1) bend inwards and are formed for placing the placement bar (3) polishing disk body (2), the described disk body (2) that polishes is placed in placement bar (3), described polish base plate (1) if surface be provided with the anti-skidding salient point that individual row is spacedly distributed, described polish disk body (2) if being provided with the spliced eye for grafting optical fiber ceramic lock pin (4) that individual row is spacedly distributed, each spliced eye (4) is positioned at the surface of each anti-skidding salient point, the described corner polishing disk body (2) is also respectively provided with bolt fixing hole (5).
The most according to claim 1 polish dish for optical fiber ceramic lock pin, it is characterised in that the corner polishing disk body (2) described in: is round-corner transition.
The most according to claim 1 polish dish for optical fiber ceramic lock pin, it is characterised in that: the diameter of described spliced eye (4) is identical with the diameter of optical fiber ceramic lock pin.
The most according to claim 1 polish dish for optical fiber ceramic lock pin, it is characterised in that: the base of described placement bar (3) is 3mm with the height polishing base plate (1) surface.
The most according to claim 1 polish dish for optical fiber ceramic lock pin, it is characterised in that: the end of described placement bar (3) is equipped with baffle plate (6).
The most according to claim 1 polish dish for optical fiber ceramic lock pin, it is characterised in that: described anti-skidding salient point is identical with the quantity of spliced eye (4).
CN201620183411.3U 2016-03-10 2016-03-10 A grind square position for optic fibre pottery lock pin Active CN205497215U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620183411.3U CN205497215U (en) 2016-03-10 2016-03-10 A grind square position for optic fibre pottery lock pin

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620183411.3U CN205497215U (en) 2016-03-10 2016-03-10 A grind square position for optic fibre pottery lock pin

Publications (1)

Publication Number Publication Date
CN205497215U true CN205497215U (en) 2016-08-24

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Family Applications (1)

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CN201620183411.3U Active CN205497215U (en) 2016-03-10 2016-03-10 A grind square position for optic fibre pottery lock pin

Country Status (1)

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CN (1) CN205497215U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105643456A (en) * 2016-03-10 2016-06-08 苏州伽蓝致远电子科技股份有限公司 Polishing disc for optical fiber ceramic ferrules

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105643456A (en) * 2016-03-10 2016-06-08 苏州伽蓝致远电子科技股份有限公司 Polishing disc for optical fiber ceramic ferrules

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