Vibration experiment table for telescope anti-shake detection
Technical Field
The utility model relates to the technical field of vibration experiment tables, in particular to a vibration experiment table for telescope anti-shake detection.
Background
The device is used for simulating various environments encountered in manufacturing, assembling, transporting and using execution stages of products, is used for identifying whether the products bear the capability of environmental vibration, is suitable for research, development, product management and manufacturing of various industries such as electronics, electromechanics, photoelectricity, automobiles, toys and the like, and is a vibration experiment table for telescope anti-shake detection;
When the vibration experiment table is used, the position of the telescope lens is inconvenient to fix, and the detection is inconvenient, so that the vibration experiment table needs to be improved, and is more convenient to use.
Disclosure of utility model
The utility model aims to provide a vibration experiment table for telescope anti-shake detection, which aims to solve the problem that the vibration experiment table is inconvenient to fix a telescope lens in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a vibration laboratory bench that telescope anti-shake detected, includes base, shake platform and places the platform, the supporting pad is installed to the bottom of base, first connection platform is installed on the top of base, the spring is installed on the top of first connection platform, the second connection platform is installed on the top of spring, the rubber pad is all installed to the bottom of first connection platform top and second connection platform, shake the platform is installed on the top of second connection platform, the mount pad is installed to one side at shake platform top, anchor clamps platform is installed on the top of mount pad, the top of anchor clamps platform is fixed with the locating piece, the outside of locating piece is provided with the eccentric wheel, the handle is installed on the top of eccentric wheel, the connecting plate is installed to one side of connecting plate, the protection pad is installed to the bottom of clamp plate, place the platform is installed on the top of shake platform, the inside shake platform's of placing surface is provided with the detection hole, vibration motor is installed to the bottom of shaking the platform.
Preferably, the cross section of the eccentric wheel is larger than that of the positioning block, and the eccentric wheel and the positioning block form a rotating structure.
Preferably, the bottom inside the placing table is provided with a connecting groove, the inside of the connecting groove is provided with a connecting ring, and the top end of the connecting ring is fixed with a lifting table.
Preferably, the surface of the connecting ring is provided with external threads, the inside of the connecting groove is provided with internal threads, and the connecting ring and the connecting groove form a detachable structure.
Preferably, the cross section of the lifting platform is smaller than that of the placing platform, and the lifting platform and the placing platform form a telescopic structure.
Preferably, the bottom end of the vibration table is fixed with a connecting rod, the bottom end of the connecting rod is provided with a bottom frame, the center position of the bottom end of the bottom frame is provided with an adjusting hole, an adjusting bolt is arranged in the adjusting hole, and the top end of the adjusting bolt is movably provided with a bracket.
Preferably, the connecting rods are fixed with four groups at the bottom end of the vibration table, and the four groups of connecting rods are symmetrically distributed.
Preferably, the inner part of the adjusting hole is provided with an internal thread, the surface of the adjusting bolt is provided with an external thread, and the adjusting bolt is connected with the adjusting hole through threads.
Compared with the prior art, the utility model has the beneficial effects that: through being provided with the clamp plate, the lens can be placed on the inner side of the placing table during use, then the handle is moved upwards, the bottom side eccentric wheel is clamped on the surface of the clamp table along with the movement of the handle to the vertical state, at the moment, the clamp plate at the side end can be pressed above the placing table, and the position of the lens is fixed by virtue of the protection pad, so that convenience in fixing the lens of the vibration experiment table is realized;
The lifting table is arranged at the inner position of the placing table, the lifting table is rotated, the connecting ring at the bottom side can move upwards along the connecting groove, so that the height position of the lifting table in the placing table can be adjusted, the adjustment of the overall height position of the lens after being placed is realized, and the adaptability of the vibration experiment table in use is enhanced;
through being provided with the chassis, the bracket is located the detection hole below position, and during the use, can place detecting element such as visual detection camera on placing the bracket in, rotate the adjusting bolt, the accessible is with the screw-thread fit between the adjusting hole, upwards promotes the bracket to this adjustable detecting element's position uses detecting element centre gripping in the bottom position of base, has realized this vibrations laboratory bench to detecting element's spacing fixity.
Drawings
FIG. 1 is a schematic cross-sectional elevation view of the present utility model;
FIG. 2 is a schematic top view of the present utility model;
FIG. 3 is a schematic cross-sectional elevation view of the placement table of the present utility model;
fig. 4 is a schematic cross-sectional elevation view of the bracket of the present utility model.
In the figure: 1. a base; 2. a support pad; 3. a first connection station; 4. a spring; 5. a second connection station; 6. a rubber pad; 7. a vibrating table; 8. a mounting base; 9. a clamp table; 10. a positioning block; 11. an eccentric wheel; 12. a handle; 13. a connecting plate; 14. a pressing plate; 15. a protective pad; 16. a placement table; 17. a detection hole; 18. a vibration motor; 19. a connecting groove; 20. a connecting ring; 21. a lifting table; 22. a connecting rod; 23. a chassis; 24. an adjustment aperture; 25. an adjusting bolt; 26. and a bracket.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-4, an embodiment of the present utility model is provided: the utility model provides a vibration experiment table for telescope anti-shake detection, which comprises a base 1, the vibrations platform 7 and place the platform 16, the back-up pad 2 is installed to the bottom of base 1, first connection platform 3 is installed on the top of base 1, spring 4 is installed on the top of first connection platform 3, second connection platform 5 is installed on the top of spring 4, the rubber pad 6 is all installed to the bottom of first connection platform 3 top and second connection platform 5, vibrations platform 7 is installed on the top of second connection platform 5, mount pad 8 is installed to one side at vibrations platform 7 top, anchor clamps platform 9 is installed on the top of mount pad 8, the top of anchor clamps platform 9 is fixed with locating piece 10, the outside of locating piece 10 is provided with eccentric wheel 11, the cross section of eccentric wheel 11 is greater than the cross section of locating piece 10, eccentric wheel 11 constitutes rotating structure with locating piece 10, handle 12 is installed at the top of eccentric wheel 11, connecting plate 13 is installed to one side of eccentric wheel 11, clamp plate 14 is installed to one side of connecting plate 14, protection pad 15 is installed to the bottom of clamp plate 14, place platform 7 is installed on top, vibrations platform 16 is installed on the inside platform 16, the surface of placing platform 7 is provided with detection hole 17, vibration 18 is installed to the bottom of motor vibration platform 7;
Specifically, as shown in fig. 1 and 2, when the handle 12 is lifted upwards in use, when the handle 12 is vertical, the bottom of the eccentric wheel 11 contacts with the surface of the clamp table 9 for fixing, and at this time, the pressing plate 14 at the side end of the eccentric wheel 11 is positioned above the placing table 16;
The bottom end of the inside of the placement table 16 is provided with a connecting groove 19, the inside of the connecting groove 19 is provided with a connecting ring 20, the surface of the connecting ring 20 is provided with external threads, the inside of the connecting groove 19 is provided with internal threads, the connecting ring 20 and the connecting groove 19 form a detachable structure, the top end of the connecting ring 20 is fixedly provided with a lifting table 21, the cross section of the lifting table 21 is smaller than that of the placement table 16, and the lifting table 21 and the placement table 16 form a telescopic structure;
Specifically, as shown in fig. 1, 2 and 3, when in use, the lifting platform 21 on the inner side of the placement platform 16 is rotated, the lifting platform 21 can move up and down on the inner side of the placement platform 16 under the threaded cooperation of the lower connecting ring 20 and the connecting groove 19, and the depth position of the lens barrel placement can be adjusted in an auxiliary manner by means of the lifting platform 21;
The bottom end of the vibration table 7 is fixedly provided with connecting rods 22, four groups of connecting rods 22 are symmetrically distributed at the bottom end of the vibration table 7, the bottom end of each connecting rod 22 is provided with a bottom frame 23, the center position of the bottom end of each bottom frame 23 is provided with an adjusting hole 24, the inside of each adjusting hole 24 is provided with an adjusting bolt 25, the inside of each adjusting hole 24 is provided with an internal thread, the surface of each adjusting bolt 25 is provided with an external thread, each adjusting bolt 25 is connected with each adjusting hole 24 through threads, and the top end of each adjusting bolt 25 is movably provided with a bracket 26;
Specifically, as shown in fig. 1 and 4, in use, the detection unit may be placed on the bracket 26 at the bottom of the vibration table 7, and the adjusting bolt 25 may be rotated to push the bracket 26 upward, so that the detection unit may be clamped at the bottom of the vibration table 7 for fixing.
Working principle: when the telescopic lens is used, the lifting table 21 on the inner side of the placing table 16 is rotated according to the length of the telescopic lens, the height position of the lifting table 21 on the inner side is adjusted so that the lens is placed in the placing table 16 better, after the lens is placed, the handle 12 can be pushed upwards, the eccentric wheel 11 on the bottom side is in vertical contact with the table surface of the clamp table 9 along with the contact of the handle 12, the eccentric wheel is fixed through friction, at the moment, the pressing plate 14 on the side end presses the top of the lens to fix the lens, the protection pad 15 on the bottom of the pressing plate 14 is used for protecting the lens when being pressed down, then the detection unit can be placed on the bracket 26 below the detection hole 17, the adjusting bolt 25 is rotated, the bracket 26 can be moved upwards, the detection end member is fixed at the bottom position of the vibration table 7, the detection head can be placed in the detection hole 17, and the use condition of the lens above is detected through the detection hole 17 during vibration.
It will be evident to those skilled in the art that the utility model is not limited to the details of the foregoing illustrative embodiments, and that the present utility model may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are, therefore, to be considered in all respects as illustrative and not restrictive, the scope of the utility model being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.