CN214777401U - Storage device for optical element production - Google Patents

Storage device for optical element production Download PDF

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Publication number
CN214777401U
CN214777401U CN202023189342.2U CN202023189342U CN214777401U CN 214777401 U CN214777401 U CN 214777401U CN 202023189342 U CN202023189342 U CN 202023189342U CN 214777401 U CN214777401 U CN 214777401U
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China
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damping
plate
shell
storage device
cavity
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CN202023189342.2U
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Chinese (zh)
Inventor
郑日堋
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Fujian Tengheng Photoelectric Co ltd
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Fujian Tengheng Photoelectric Co ltd
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Abstract

The utility model discloses a storage device for producing optical elements, which comprises a shell, a door body, a damping device and a storage plate, the damping device comprises a first damping plate, a second damping plate, a rotating shaft, a first damping spring and a second damping spring which are hinged at the bottom of the object placing plate, two symmetrically distributed sliding blocks are arranged on the side surface of the object placing plate, a sliding groove matched with the sliding blocks for use is arranged on the inner wall of the shell, a cavity is arranged on the top surface of the outer part of the shell, a fixing device is arranged in the cavity, two connecting rods which are symmetrically distributed are arranged on the fixing device, the top surface of the shell is provided with two rectangular through holes which are symmetrically distributed, the bottom of the connecting rod extends into the shell through the rectangular through holes, the bottom of connecting rod is equipped with fixed plate and baffle, the inside damping spring three that is equipped with a plurality of evenly distributed that is located the top of slider of casing. Compared with the prior art, the utility model the advantage lie in: high stability and good damping effect.

Description

Storage device for optical element production
Technical Field
The utility model relates to an optical element technical field specifically indicates a storage device is used in optical element production.
Background
The optical element is a basic constituent unit of the optical system. Most optical elements, such as lenses, prisms, mirrors, etc., function as imaging. There are also some parts which play special roles (such as light splitting, image transmission, filtering, etc.) in optical systems, such as reticles, filters, gratings, for optical fiber elements, etc. The optical elements need to be stored during the production process and therefore a storage device is needed. Storage device among the prior art is when using, and not only stability is low, can not fix the box that is equipped with optical element, and the shock attenuation effect is not good moreover, can not provide vertical and horizontal buffer power for the box that is equipped with optical element, leads to optical element to acutely rock, and easy damage has shortened optical element's life, has wasted a large amount of resources, is not convenient for use.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to overcome above technical defect, provide a high, effectual storage device is used in optical element production of shock attenuation of stability.
In order to solve the technical problem, the utility model provides a technical scheme does: a storage device for optical element production comprises a shell with a forward opening, wherein a door body matched with the shell for use is hinged to the shell, a plurality of damping devices which are uniformly distributed are arranged on the inner bottom surface of the shell, the upper ends of the damping devices are connected through a storage plate, each damping device comprises a damping plate I and a damping plate II which are hinged to the bottom of the storage plate, a V-shaped structure is formed between the damping plates I and the damping plates II, the bottoms of the damping plates I and the damping plates II are hinged through a rotating shaft, the damping plates I and the damping plates II are connected above the rotating shaft through damping springs I, the other sides of the damping plates I and the damping plates II are connected with the inner bottom surface of the shell through the damping springs II, two sliding blocks which are symmetrically distributed are arranged on the side surface of the storage plate, sliding chutes matched with the sliding blocks for use are arranged on the inner wall of the shell, the slider is arranged in the sliding groove, a cavity is formed in the top surface of the outer portion of the shell, a fixing device is arranged in the cavity, two symmetrically-distributed connecting rods are arranged on the fixing device, two symmetrically-distributed rectangular through holes are formed in the top surface of the shell, the bottom of each connecting rod extends to the inside of the shell through the corresponding rectangular through hole, a fixing plate is arranged at the bottom of each connecting rod, baffles are arranged at the front end and the rear end of one adjacent side of the two fixing plates, and a plurality of uniformly-distributed damping springs are arranged above the slider inside the shell.
Compared with the prior art, the utility model the advantage lie in: the storage device for producing the optical element of the utility model utilizes the fixing device, not only can fix the box body provided with the optical element, thereby improving the stability, but also has simple operation, time and labor saving and improved use effect; utilize damping device and damping spring three's cooperation, can provide vertical buffer power and horizontal buffer power for the box that is equipped with optical element respectively to can prevent effectively that it from acutely rocking, can not make optical element damage, prolong its life, improve the result of use.
As the improvement, fixing device is including setting up the bearing in the middle of the inside one side of cavity, fixed the grafting has the dwang in the inner circle of bearing, the other end of dwang extends to the cavity outside and is equipped with the swivel head, be equipped with two screw thread district opposite in direction in the position that lies in the cavity inside on the dwang, cup jointed the nut rather than threaded connection in the screw thread district, be equipped with the connecting rod in the middle of the bottom of nut, can fix the box that is equipped with optical element like this, not only improved stability, easy operation, labour saving and time saving has improved the result of use moreover.
As an improvement, the damping cushions are arranged on the top surface of the interior of the shell and the upper end part of the object placing plate, so that vertical damping force can be provided for the box body provided with the optical element.
As an improvement, the door body is provided with a handle matched with the door body, so that the door body is convenient to open and close.
As the improvement, be equipped with the screw thread rubber pad that cooperates its use on the outside bottom surface of casing, not only can prevent like this that storage device from taking place to sideslip, can provide the cushion effect for it moreover, improved stability.
Drawings
Fig. 1 is a schematic structural diagram of a storage device for producing optical elements according to the present invention.
As shown in the figure: 1. the damping device comprises a shell, 2, a baffle, 3, a storage plate, 4, a sliding groove, 5, a threaded rubber pad, 6, a damping plate II, 7, a damping spring I, 8, a damping device, 9, a damping plate I, 10, a damping spring II, 11, a rotating shaft, 12, a sliding block, 13, a damping pad, 14, a damping spring III, 15, a handle, 16, a door body, 17, a bearing, 18, a connecting rod, 19, a threaded area, 20, a rotating rod, 21, a cavity, 22, a nut, 23, a fixing device, 24, a rotating head, 25, a rectangular through hole, 26 and a fixing plate.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
A storage device for optical element production comprises a shell 1 with a forward opening, a door body 16 used in cooperation with the shell 1 is hinged to the shell 1, a plurality of damping devices 8 are uniformly distributed on the inner bottom surface of the shell 1, the upper ends of the damping devices 8 are connected through a storage plate 3, each damping device 8 comprises a damping plate I9 and a damping plate II 6 which are hinged to the bottom of the storage plate 3, each damping plate I9 and each damping plate II 6 are of a V-shaped structure, the bottoms of the damping plates I9 and each damping plate II 6 are hinged through a rotating shaft 11, the damping plates I9 and each damping plate II 6 are connected above the rotating shaft 11 through a damping spring I7, the other sides of the damping plates I9 and each damping plate II 6 are connected with the inner bottom surface of the shell 1 through a damping spring II 10, two sliding blocks 12 which are symmetrically distributed are arranged on the side surface of the storage plate 3, be equipped with spout 4 that cooperation slider 12 used on the inner wall of casing 1, slider 12 is located spout 4, be equipped with cavity 21 on the outside top surface of casing 1, be equipped with fixing device 23 in the cavity 21, the connecting rod 18 that is equipped with two symmetric distributions on fixing device 23, be equipped with the rectangle through-hole 25 of two symmetric distributions on the top surface of casing 1, the bottom of connecting rod 18 extends to inside the casing 1 through rectangle through-hole 25, the bottom of connecting rod 18 is equipped with fixed plate 26, and both ends all are equipped with baffle 2 around two adjacent one sides of fixed plate 26, the inside three 14 of damping spring that are located slider 12 of top that is equipped with a plurality of evenly distributed of casing 1.
Fixing device 23 is including setting up the bearing 17 in the middle of the inside one side of cavity 21, fixed the pegging graft has dwang 20 in the inner circle of bearing 17, the other end of dwang 20 extends to the outside of cavity 21 and is equipped with and rotates head 24, be equipped with two screw thread district 19 that screw thread opposite direction in the position that lies in cavity 21 inside on the dwang 20, cup jointed the nut 22 rather than threaded connection on screw thread district 19, be equipped with connecting rod 18 in the middle of the bottom of nut 22.
The top surface of the inside of the shell 1 and the upper end part of the object placing plate 3 are both provided with shock absorbing pads 13.
The door body 16 is provided with a handle 15 matched with the door body.
And a threaded rubber pad 5 matched with the shell 1 is arranged on the bottom surface of the outer part of the shell 1.
The utility model discloses when concrete implementation, combine figure 1 an optical element to produce and use storage device's schematic structure drawing to know, the utility model discloses a storage device is used in optical element production when using, fixing device 23's initial condition is that the distance between two fixed plates 26 is the biggest. First, a box body containing optical elements is placed in the middle of the upper end of the object placing plate 3, and then the rotating head 24 is rotated manually. Along with the corotation and the reversal of rotating head 24, can drive dwang 20 corotation and reversal together, can make two nuts 22 with 19 threaded connection in two threaded area like this, move or move to the direction of keeping away from in the middle of dwang 20 simultaneously to the direction of being close to in the middle of dwang 20 simultaneously, thereby adjust the distance between two fixed plates 26, not only can fix the box that is equipped with optical element, and the stability is improved, moreover, the operation is simple, time saving and labor saving, and the use effect is improved. After the fixing of the case with the optical element is completed, the door 16 is closed by the handle 15. In the process of transportation and transport, damping device 8 can provide vertical cushion force for the box that is equipped with optical element, under the cooperation of shock pad 13, can prevent effectively that the box that is equipped with optical element from rocking from top to bottom violently. The third damping spring 14 can provide transverse damping force for the box body provided with the optical element, so that the box body provided with the optical element can be effectively prevented from shaking leftwards and rightwards violently, the third damping spring and the third damping spring are matched with each other, the optical element cannot be damaged, the service life of the box body is prolonged, and the damping effect is improved. So said the utility model discloses a storage device is used in optical element production not only stability is high, and the shock attenuation is effectual moreover.
The present invention and the embodiments thereof have been described above, but the description is not limited thereto, and the embodiment shown in the drawings is only one of the embodiments of the present invention, and the actual structure is not limited thereto. In summary, those skilled in the art should understand that they should not be limited to the embodiments described above, and that they can design the similar structure and embodiments without departing from the spirit of the invention.

Claims (5)

1. A storage device for optical element production comprises a shell (1) with a forward opening, wherein a door body (16) used with the shell (1) is hinged to the shell, and the storage device is characterized in that: the damping device is characterized in that a plurality of damping devices (8) which are uniformly distributed are arranged on the bottom surface inside the shell (1), the upper end portions of the damping devices (8) are connected through a storage plate (3), each damping device (8) comprises a damping plate I (9) and a damping plate II (6) which are hinged to the bottom of the storage plate (3), a V-shaped structure is formed between the damping plate I (9) and the damping plate II (6), the bottoms of the damping plate I (9) and the damping plate II (6) are hinged through a rotating shaft (11), the damping plate I (9) and the damping plate II (6) are connected through a damping spring I (7) above the rotating shaft (11), the other side of the damping plate I (9) and the damping plate II (6) and the bottom surface inside the shell (1) are connected through a damping spring II (10), two sliding blocks (12) which are symmetrically distributed are arranged on the side surface of the storage plate (3), be equipped with spout (4) that cooperation slider (12) used on the inner wall of casing (1), slider (12) are arranged in spout (4), be equipped with cavity (21) on the outside top surface of casing (1), be equipped with fixing device (23) in cavity (21), be equipped with two symmetric distribution's connecting rod (18) on fixing device (23), be equipped with two symmetric distribution's rectangle through-hole (25) on the top surface of casing (1), the bottom of connecting rod (18) is passed through rectangle through-hole (25) and is extended to casing (1) inside, the bottom of connecting rod (18) is equipped with fixed plate (26), and both ends all are equipped with baffle (2) around two adjacent one sides of fixed plate (26), casing (1) inside is equipped with a plurality of evenly distributed's damping spring three (14) in the top that is located slider (12).
2. A storage device for optical component production as claimed in claim 1, wherein: fixing device (23) is including setting up bearing (17) in the middle of cavity (21) inside one side, fixed grafting has dwang (20) in the inner circle of bearing (17), the other end of dwang (20) extends to cavity (21) outside and is equipped with swivel joint (24), be equipped with two screw thread district (19) that screw thread opposite direction in the position that lies in cavity (21) inside on dwang (20), cup jointed nut (22) rather than threaded connection on screw thread district (19), be equipped with connecting rod (18) in the middle of the bottom of nut (22).
3. A storage device for optical component production as claimed in claim 1, wherein: the top surface of the inside of the shell (1) and the upper end part of the object placing plate (3) are respectively provided with a shock pad (13).
4. A storage device for optical component production as claimed in claim 1, wherein: the door body (16) is provided with a handle (15) matched with the door body for use.
5. A storage device for optical component production as claimed in claim 1, wherein: and a threaded rubber pad (5) matched with the shell for use is arranged on the outer bottom surface of the shell (1).
CN202023189342.2U 2020-12-26 2020-12-26 Storage device for optical element production Active CN214777401U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023189342.2U CN214777401U (en) 2020-12-26 2020-12-26 Storage device for optical element production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023189342.2U CN214777401U (en) 2020-12-26 2020-12-26 Storage device for optical element production

Publications (1)

Publication Number Publication Date
CN214777401U true CN214777401U (en) 2021-11-19

Family

ID=78721668

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023189342.2U Active CN214777401U (en) 2020-12-26 2020-12-26 Storage device for optical element production

Country Status (1)

Country Link
CN (1) CN214777401U (en)

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