Height-adjustable's canned motor pump mount pad
Technical Field
The utility model relates to a canned motor pump mount pad technical field specifically is a canned motor pump mount pad of height-adjustable.
Background
The canned motor pump connects the pump and the motor together, the rotor of the motor and impeller of the pump are fixed on the same shaft, the rotor and stator of the motor are separated by the canned motor, the rotor operates in the medium to be conveyed, the power of the rotor is transmitted to the rotor through the magnetic field of the stator, moreover, the canned motor pump is not complex to manufacture, and the hydraulic end of the canned motor pump can be designed and manufactured according to the structure type commonly adopted by the centrifugal pump and related standard specifications.
The existing shielding pump mounting seat is usually fixed with a shielding pump by bolts, the height of the shielding pump needs to be manually adjusted, the shielding pump vibrates greatly during working, noise can be generated, the service life is easy to reduce, and therefore the shielding pump mounting seat with the adjustable height is provided.
Disclosure of utility model
The utility model aims at overcoming the defects of the prior art, and provides a high adjustable shielding pump mounting seat.
The technical scheme adopted by the utility model is as follows:
the utility model provides a high adjustable canned motor pump mount pad, includes bottom plate, mounting panel and body, the equal fixedly connected with curb plate in both sides of bottom plate, a set of symmetrical spout has all been seted up to the opposite side of curb plate, mounting panel swing joint is in the opposite side of curb plate, the lifter of the equal fixedly connected with a set of symmetrical in both sides of mounting panel, lifter swing joint is in the inside of spout respectively, the top swing joint of mounting panel has the backup pad, the top of backup pad passes through the bottom fixed connection of bolt and body, the top fixedly connected with elevating system of bottom, and the bottom fixed connection of elevating system and lifter, the inside swing joint of mounting panel has damper, and damper and the bottom fixed connection of backup pad.
Above-mentioned, elevating system includes connecting rod, telescopic link, worm wheel and worm, connecting rod and worm wheel all are the symmetry setting, the connecting rod runs through the worm wheel respectively, and connecting rod and worm wheel fixed connection, the worm is located the opposite side of worm wheel, and the worm all meshes with the worm wheel mutually, the equal fixedly connected with telescopic link in both ends of connecting rod, and the flexible end of telescopic link respectively with the bottom fixed connection of telescopic link.
Above-mentioned, the inside fixedly connected with servo motor of bottom plate, and servo motor's output and the bottom fixed connection of worm, the top fixedly connected with support frame one of bottom plate, the worm wheel is all through pivot swing joint in the inboard of support frame one.
The top end of the bottom plate is fixedly connected with a group of symmetrical support frames II, the support frames I are located on the opposite sides of the support frames II, the connecting rods sequentially penetrate through the support frames I and the support frames II, and the support frames I and the support frames II are movably connected with the connecting rods.
Above-mentioned, damper includes cam, movable strip, slider and guide arm are a set of, and every group slider is the symmetry setting, the cross-section of movable strip is the arc, the both ends of movable strip respectively with slider fixed connection, the guide arm runs through the slider, and guide arm and slider swing joint, the cam is located the opposite side of movable strip, and the outside of cam is laminated mutually with the surface of movable strip.
Above-mentioned, movable strip and slider all swing joint are in the inside of mounting panel, guide arm fixed connection is in the inside of mounting panel, the top fixedly connected with synchronizing lever of cam, and the top fixedly connected with of synchronizing lever in the bottom of backup pad, the bottom of cam is through pivot swing joint in the inside of mounting panel.
Above-mentioned, the outside of guide arm all overlaps and is equipped with a set of symmetrical reset spring, reset spring's one end is all fixed connection in the inside of mounting panel, and reset spring's the other end is fixed connection in the slider respectively.
The technical effect who this practicality obtained is:
the utility model discloses a high adjustable canned motor pump mount pad, through the elevating system of the height-adjustable who sets up, start servo motor, drive the worm and rotate to drive the inboard rotation of worm wheel at support frame one, the connecting rod rotates simultaneously, under the effect of connecting rod, drive the telescopic link and rotate round the worm wheel, thereby jack-up the lifter along the spout upwards, the flexible end of telescopic link is flexible along with the lift of lifter, make the mounting panel rise in step, with this highly adjusting the canned motor pump, be favorable to adjusting the height of mount pad.
The utility model discloses a high adjustable canned motor pump mount pad drives the backup pad vibrations through the highly adjustable damper who sets up, and the cam shakes in the inside of mounting panel simultaneously, and when the cam rocked, it is out of shape to drive movable strip extrusion to drive the slider and remove along the guide arm, make reset spring take place to deform, thereby absorb the produced impact force of cam, keep the stability of canned motor pump during operation.
Drawings
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a schematic view of a partial cross-sectional structure of the present utility model;
FIG. 3 is a schematic view of a lifting mechanism according to the present utility model;
Fig. 4 is a schematic structural view of a shock absorbing mechanism according to the present utility model.
In the drawings, the list of components represented by the various numbers is as follows:
1. A bottom plate; 2. a mounting plate; 3. a body; 4. a side plate; 5. a chute; 6. a lifting rod; 7. a support plate; 8. a lifting mechanism; 801. a connecting rod; 802. a telescopic rod; 803. a worm wheel; 804. a worm; 9. a damping mechanism; 901. a cam; 902. a movable bar; 903. a slide block; 904. a guide rod; 10. a servo motor; 11. a first supporting frame; 12. a second supporting frame; 13. a synchronizing lever; 14. a return spring;
Detailed Description
In order to make the objects and advantages of the present invention more apparent, the present invention will be described in detail with reference to the following examples. It should be understood that the following text is used to describe only one or more specific embodiments of the present invention and does not strictly limit the scope of protection of the specific claims.
Referring to fig. 1-4, in an embodiment of the utility model, a height-adjustable shield pump mounting seat comprises a bottom plate 1, a mounting plate 2 and a body 3, wherein two sides of the bottom plate 1 are fixedly connected with side plates 4, a group of symmetrical sliding grooves 5 are formed in opposite sides of the side plates 4, the mounting plate 2 is movably connected to opposite sides of the side plates 4, a group of symmetrical lifting rods 6 are fixedly connected to two sides of the mounting plate 2, the lifting rods 6 are respectively and movably connected to the inside of the sliding grooves 5, a supporting plate 7 is movably connected to the top end of the mounting plate 2, the top end of the supporting plate 7 is fixedly connected with the bottom end of the body 3 through bolts, a lifting mechanism 8 is fixedly connected to the top end of the bottom plate 1, the lifting mechanism 8 is fixedly connected with the bottom end of the lifting rod 6, a damping mechanism 9 is movably connected to the inside of the mounting plate 2, and the damping mechanism 9 is fixedly connected with the bottom end of the supporting plate 7.
Firstly, the lifting mechanism 8 is utilized to drive the mounting plate 2 to lift, which is beneficial to adjusting the height of the mounting seat; when the cam 901 is rocked, the shock absorbing mechanism 9 absorbs the impact force generated by the cam 901, and the stability of the canned motor pump during operation is maintained.
As shown in fig. 1 and 3, the lifting mechanism 8 includes a connecting rod 801, a telescopic rod 802, a worm gear 803 and a worm 804, the connecting rod 801 and the worm gear 803 are all symmetrically arranged, the connecting rod 801 respectively penetrates through the worm gear 803, the connecting rod 801 is fixedly connected with the worm gear 803, the worm 804 is located on the opposite side of the worm gear 803, the worm 804 is meshed with the worm gear 803, both ends of the connecting rod 801 are fixedly connected with the telescopic rod 802, the telescopic ends of the telescopic rod 802 are respectively fixedly connected with the bottom end of the lifting rod 6, the servo motor 10 is fixedly connected with the inside of the bottom plate 1, the output end of the servo motor 10 is fixedly connected with the bottom end of the worm 804, the top end of the bottom plate 1 is fixedly connected with the first support frame 11, the worm gear 803 is movably connected with the inside of the first support frame 11 through a rotating shaft, the top end of the bottom plate 1 is fixedly connected with a set of symmetrical second support frame 12, the first support frame 11 is located on the opposite side of the second support frame 12, the connecting rod 801 sequentially penetrates through the first support frame 11 and the second support frame 12, and both the first support frame 11 and the second support frame 12 are movably connected with the connecting rod 801.
Starting the servo motor 10, driving the worm 804 to rotate, driving the worm gear 803 to rotate on the inner side of the first support frame 11, simultaneously synchronously rotating the connecting rod 801, driving the telescopic rod 802 to rotate around the worm gear 803 under the action of the connecting rod 801, thereby lifting the lifting rod 6 upwards along the sliding groove 5, enabling the telescopic end of the telescopic rod 802 to stretch out and draw back along with lifting of the lifting rod 6, enabling the mounting plate 2 to synchronously rise, adjusting the height of the shielding pump, and being beneficial to adjusting the height of the mounting seat.
As shown in fig. 1 and 4, the damping mechanism 9 includes a cam 901, a movable bar 902, a slider 903 and a guide rod 904, the movable bar 902, the slider 903 and the guide rod 904 are a group, and each group of sliders 903 are symmetrically arranged, the section of the movable bar 902 is arc-shaped, two ends of the movable bar 902 are respectively fixedly connected with the sliders 903, the guide rod 904 penetrates through the sliders 903, the guide rod 904 is movably connected with the sliders 903, the cam 901 is located at opposite sides of the movable bar 902, the outer sides of the cam 901 are attached to the outer surfaces of the movable bar 902, the movable bar 902 and the sliders 903 are movably connected in the inside of the mounting plate 2, the guide rod 904 is fixedly connected in the inside of the mounting plate 2, the top end of the cam 901 is fixedly connected with a synchronizing rod 13, the top end of the synchronizing rod 13 is fixedly connected to the bottom end of the supporting plate 7, the bottom end of the cam 901 is movably connected in the inside of the mounting plate 2 through a rotating shaft, a group of symmetrical reset springs 14 are respectively sleeved on the outer sides of the guide rod 904, one ends of the reset springs 14 are fixedly connected in the inside of the mounting plate 2, and the other ends of the reset springs 14 are respectively fixedly connected in the sliders 903.
The supporting plate 7 is driven to vibrate, meanwhile, the cam 901 vibrates in the mounting plate 2, when the cam 901 shakes, the movable strip 902 is driven to squeeze and deform, so that the sliding block 903 is driven to move along the guide rod 904, the reset spring 14 deforms, impact force generated by the cam 901 is absorbed, and stability of the shielding pump in operation is maintained.
Working principle: firstly, a servo motor 10 is started to drive a worm 804 to rotate, so that a worm gear 803 is driven to rotate on the inner side of a first support frame 11, meanwhile, a connecting rod 801 synchronously rotates, under the action of the connecting rod 801, a telescopic rod 802 is driven to rotate around the worm gear 803, so that a lifting rod 6 is lifted upwards along a sliding groove 5, the telescopic end of the telescopic rod 802 stretches and contracts along with the lifting of the lifting rod 6, a mounting plate 2 synchronously rises, and the height of a shielding pump is adjusted; when the canned motor pump works, the supporting plate 7 is driven to vibrate, meanwhile, the cam 901 vibrates in the mounting plate 2, when the cam 901 shakes, the movable strip 902 is driven to squeeze and deform, and accordingly the sliding block 903 is driven to move along the guide rod 904, the reset spring 14 deforms, impact force generated by the cam 901 is absorbed, and stability of the canned motor pump in working is maintained.
The foregoing is merely a preferred embodiment of the present invention and it should be noted that modifications and adaptations to those skilled in the art may be made without departing from the principles of the present invention, which are intended to be comprehended within the scope of the present invention. Structures, devices and methods of operation not specifically described and illustrated in the present application are all implemented by conventional means in the art unless specifically indicated and limited.