CN211317832U - Integrated layered water sampler - Google Patents

Integrated layered water sampler Download PDF

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Publication number
CN211317832U
CN211317832U CN201921986022.4U CN201921986022U CN211317832U CN 211317832 U CN211317832 U CN 211317832U CN 201921986022 U CN201921986022 U CN 201921986022U CN 211317832 U CN211317832 U CN 211317832U
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China
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lifting
transverse
mounting
groove
rigidly
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CN201921986022.4U
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Chinese (zh)
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闫萧骃
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Qingdao Haohai Instrument Co ltd
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Qingdao Haohai Instrument Co ltd
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Abstract

The utility model discloses an integrated form layering hydrophore relates to marine instrument equipment trade field, including the mounting disc, the lug, the connecting rod, rings, the water sampling bottle, the construction bolt, outer lane installation screw, inner circle installation screw, the spout, the lift mounting groove, elevator motor, the lifting reduction gear support, the screw thread slider, the lift post, well recess, the screw rod, the support column, the lift mounting groove, the transposition motor, the carousel, the bearing, the assembly piece, flange, the transverse groove, horizontal fixed arm, horizontal driving motor, horizontal reduction gear, horizontal drive screw rod, horizontal screw thread slider, the sliding arm, the screw rod seat, horizontal spout, the installation piece, the screw thread bottle lid, the inlet opening, seal ring, drive chute post. The utility model relates to a scheme is applicable to the sampling work of adopting the hydrophone, and the integrated form design through installation screw and water sampling bottle makes the sampling work accomplish through the process that once dive promoted, has promoted continuous sampling work efficiency by a wide margin.

Description

Integrated layered water sampler
Technical Field
The utility model belongs to the technical field of the marine instrument equipment trade and specifically relates to an integrated form layering hydrophore.
Background
At the present stage, the water sampler is widely introduced in marine environment research and sampling work, but the current water sampler is generally used for single sampling, can not collect multiple layers of water samples through one-time submergence and lifting processes, and has single working mode and lower working efficiency.
SUMMERY OF THE UTILITY MODEL
In order to overcome the above-mentioned defect that exists among the prior art, the utility model provides an integrated form layering hydrophore.
The utility model provides a technical scheme that its technical problem adopted is: an integrated layered water sampler comprises a mounting disc, lifting lugs, connecting rods, lifting rings, a water sampling bottle, mounting bolts, outer ring mounting screw holes, inner ring mounting screw holes, a sliding groove, a lifting mounting groove, a lifting motor, a lifting reducer support, a threaded slider, a lifting column, a hollow groove, a screw, a support column, a lifting mounting groove, a transposition motor, a turntable, a bearing, an assembly block, a connecting flange, a transverse groove, a transverse fixing arm, a transverse driving motor, a transverse reducer, a transverse driving screw, a transverse threaded slider, a sliding arm, a screw seat, a transverse sliding groove, a mounting block, a threaded bottle cap, a water inlet hole, a sealing gasket, a driving sliding groove column, a driving sliding column, a driving shaft, a torque sensor, a tail end reducer, a tail end motor, a tail end mounting groove and a tail end reducer support, wherein the lifting lugs are rigidly mounted, the tail end of the connecting rod is installed on a lifting ring through bolt connection, the water sampling bottle is installed on an outer ring installation screw hole and an inner ring installation screw hole through an installation bolt, the outer ring installation screw hole and the inner ring installation screw hole are arranged on the upper end surface of an installation disc and close to the side edge position, the sliding grooves are symmetrically arranged on the inner wall of the lifting installation groove in groups of 2, the lifting installation groove is arranged in the hollow part in the central position of the installation disc, the lifting motor is rigidly installed on the bottom surface of the lifting installation groove, the lifting speed reducer is fixedly installed on a lifting motor shell through a lifting speed reducer support, the power input end of the lifting speed reducer is rigidly connected to the power output shaft of the lifting motor, the screw rod is rigidly installed on the power output end of the lifting speed, the sliding block is installed in the sliding groove in a matched mode, the hollow groove is formed in the position of an axis of the lifting column, the supporting column is rigidly installed on the upper end face of the installing disc, the lifting column is installed inside the supporting column in a matched mode, the lifting installing groove is formed in the central position of the top end of the lifting column, the transposition motor is rigidly installed on the bottom face of the lifting installing groove, the rotary disc is installed on the top end of the lifting column in a matched mode through the bearing and the assembling block, the connecting flange is installed between the power output shaft of the transposition motor and the lower end face of the rotary disc in a connected mode, the transverse groove is arranged in the hollow position in the transverse fixing arm, the transverse fixing arm is rigidly installed on the upper end face of the rotary disc, the transverse driving motor is rigidly installed on the, the head end of the transverse driving screw is rigidly mounted at the power output end of the transverse speed reducer, the tail end of the transverse driving screw is mounted on a screw seat, the screw seat is mounted at the bottom surface of the tail end of the transverse groove, the transverse thread slider is rigidly mounted at the head end of a sliding arm, the transverse thread slider is fittingly mounted on the transverse driving screw, the sliding arm is fittingly mounted on a transverse fixing arm through a transverse sliding groove, the mounting block is rigidly mounted at the tail end of the sliding arm, a thread bottle cap is fittingly mounted at the position of a bottle mouth of a water collection bottle, a water inlet hole is formed in the outer wall of a thread part of the thread bottle cap, a sealing gasket is mounted between the outer ring of the lower end face of the thread bottle cap and the upper end face of the bottle mouth of the water collection bottle, the driving sliding groove columns, the drive shaft rigid mounting is in terminal reduction gear power take off end, torque sensor cooperation is installed between drive shaft and terminal reduction gear, terminal motor rigid mounting is in terminal mounting groove bottom surface, terminal mounting groove sets up in mounting block cavity, terminal reduction gear passes through terminal reduction gear support rigid mounting in terminal motor casing, terminal reduction gear power take off end rigid connection is in terminal motor power input shaft.
In the integrated layered water sampler, the lifting lugs are uniformly distributed in 4 groups of annular arrays on the side wall of the mounting disc.
In the integrated layered water sampler, the outer ring mounting screw holes and the inner ring mounting screw holes are respectively divided into 4-10 groups of annular arrays and are uniformly distributed on the upper end surface of the mounting disc.
In the integrated layered water sampler, the water inlet holes are divided into 4 groups and are uniformly distributed on the outer wall of the threaded part of the threaded bottle cap in an annular manner.
In the integrated layered water sampler, the torque for opening and closing the bottle cap by the driving shaft is smaller than the assembling torque of the mounting bolt.
The beneficial effects of the utility model are that, the utility model relates to a scheme is applicable to the sampling work of adopting the hydrophone, and the integrated form design through installation screw and water sampling bottle makes the sampling work accomplish through the process that once dives the promotion, has promoted continuous sampling work efficiency by a wide margin.
Drawings
The present invention will be further explained with reference to the drawings and examples.
Fig. 1 is a schematic view of the overall structure of the present invention;
fig. 2 is a partially enlarged view of the area a of the present invention.
In the figure, 1, a mounting disc, 2, a lifting lug, 3, a connecting rod, 4, a lifting ring, 5, a water collection bottle, 6, a mounting bolt, 7, an outer ring mounting screw hole, 8, an inner ring mounting screw hole, 9, a sliding chute, 10, a lifting mounting groove, 11, a lifting motor, 12, a lifting reducer, 13, a lifting reducer bracket, 14, a threaded slider, 15, a slider, 16, a lifting column, 17, a hollow groove, 18, a screw rod, 19, a support column, 20, a lifting mounting groove, 21, an indexing motor, 22, a rotating disc, 23, a bearing, 24, an assembly block, 25, a connecting flange, 26, a transverse groove, 27, a transverse fixing arm, 28, a transverse driving motor, 29, a transverse reducer, 30, a transverse driving screw rod, 31, a transverse threaded slider, 32, a sliding arm, 33, a screw rod seat, 34, a transverse sliding chute, 35, a mounting block, 36, a threaded bottle cap, 37, a, 39. drive strut 40, drive strut 41, drive shaft 42, torque sensor 43, end reducer 44, end motor 45, end mounting slot 46, end reducer bracket.
Detailed Description
In order to more clearly illustrate the technical solution of the present invention, the following provides a further description of the present invention with reference to the accompanying drawings, and obviously, the following described drawings are only one embodiment of the present invention, and for those skilled in the art, other embodiments can be obtained according to the drawings and the embodiment without any creative work, and all belong to the protection scope of the present invention.
An integrated layered water sampler comprises a mounting disc 1, lifting lugs 2, a connecting rod 3, a lifting ring 4, a water sampling bottle 5, a mounting bolt 6, an outer ring mounting screw hole 7, an inner ring mounting screw hole 8, a sliding groove 9, a lifting mounting groove 10, a lifting motor 11, a lifting reducer 12, a lifting reducer bracket 13, a threaded slider 14, a slider 15, a lifting column 16, a hollow groove 17, a screw 18, a supporting column 19, a lifting mounting groove 20, a transposition motor 21, a turntable 22, a bearing 23, an assembly block 24, a connecting flange 25, a transverse groove 26, a transverse fixing arm 27, a transverse driving motor 28, a transverse reducer 29, a transverse driving screw 30, a transverse threaded slider 31, a sliding arm 32, a screw seat 33, a transverse sliding groove 34, a mounting block 35, a threaded bottle cap 36, a water inlet hole 37, a sealing gasket 38, a driving sliding groove column 39, a driving sliding column 40, a driving shaft 41, the lifting device comprises a tail end speed reducer 43, a tail end motor 44, a tail end mounting groove 45 and a tail end speed reducer support 46, wherein the lifting lug 2 is rigidly mounted on the side wall of the mounting disc 1, the head end of the connecting rod 3 is mounted on the lifting lug 2 through bolts, the tail end of the connecting rod 3 is mounted on the lifting ring 4 through bolts, the water sampling bottle 5 is mounted on an outer ring mounting screw hole 7 and an inner ring mounting screw hole 8 through a mounting bolt 6, the outer ring mounting screw hole 7 and the inner ring mounting screw hole 8 are arranged on the upper end surface of the mounting disc 1 and are close to the side edge position, the sliding grooves 9 are symmetrically arranged on the inner wall of the lifting mounting groove 10 in a 2-group mode, the lifting mounting groove 10 is arranged in the hollow part in the central position of the mounting disc 1, the lifting motor 11 is rigidly mounted on the bottom surface of, the screw 18 is rigidly installed at the power output end of the lifting reducer 12, the threaded slider 14 is rigidly installed at the bottom of the hollow groove 17, the threaded slider 14 is installed at the screw 18 in a matching manner, the sliders 15 are symmetrically installed at the bottom of the lifting column 16 in 2 groups, the sliders 15 are installed at the sliding grooves 9 in a matching manner, the hollow groove 17 is arranged at the axial position of the lifting column 16, the supporting column 19 is rigidly installed at the upper end surface of the installation disc 1, the lifting column 16 is installed inside the supporting column 19 in a matching manner, the lifting installation groove 20 is arranged at the central position of the top end of the lifting column 16, the indexing motor 21 is rigidly installed at the bottom surface of the lifting installation groove 20, the turntable 22 is installed at the top end of the lifting column 16 in a matching manner through a bearing 23 and an assembly block 24, the connecting flange 25 is connected and installed between the power output shaft, the transverse fixing arm 27 is rigidly mounted on the upper end surface of the rotary table 22, the transverse driving motor 28 is rigidly mounted on the bottom surface of the head end of the transverse groove 26, the transverse speed reducer 29 is rigidly mounted on the bottom surface of the transverse groove 26 close to the head end, the power input end of the transverse speed reducer 29 is rigidly connected to the power output shaft of the transverse driving motor 28, the head end of the transverse driving screw 30 is rigidly mounted on the power output end of the transverse speed reducer 29, the tail end of the transverse driving screw 30 is mounted on a screw seat 33, the screw seat 33 is mounted on the bottom surface of the tail end of the transverse groove 26, the transverse threaded slider 31 is rigidly mounted on the head end of the sliding arm 32, the transverse threaded slider 31 is mounted on the transverse driving screw 30 in a matching manner, the sliding arm 32 is mounted on the transverse fixing arm 27 in a matching, the water inlet hole 37 is arranged on the outer wall of the thread part of the thread bottle cap 36, the sealing washer 38 is arranged between the outer ring of the lower end face of the thread bottle cap 36 and the upper end face of the bottle mouth of the water sampling bottle 5, the driving sliding groove column 39 is rigidly arranged on the upper end surface of the threaded bottle cap 36, the driving sliding columns 40 are symmetrically arranged at the bottom of the driving shaft 41 in 2 groups, the driving sliding column 40 is arranged in the sliding groove of the driving sliding groove column 39 in a matching way at the working position, the driving shaft 41 is rigidly arranged at the power output end of the tail end speed reducer 43, the torque sensor 42 is fitted between the driving shaft 41 and the end reducer 43, the end motor 44 is rigidly mounted to the bottom surface of the end mounting groove 45, the end mounting groove 45 is provided in the hollow inside of the mounting block 35, the end reducer 43 is rigidly mounted to the housing of the end motor 44 by an end reducer bracket 46, the power input end of the end speed reducer 43 is rigidly connected with the power input shaft of the end motor 44.
In detail, the lifting lugs 2 are uniformly distributed on the side wall of the mounting disc 1 in groups of 4 annular arrays, the outer ring mounting screw holes 7 and the inner ring mounting screw holes 8 are uniformly distributed on the upper end surface of the mounting disc 1 in groups of 4 annular arrays, the water inlet holes 37 are uniformly distributed on the outer wall of the threaded part of the threaded bottle cap 36 in groups of 4 annular arrays, and the torque for opening and closing the bottle cap by the driving shaft 41 is smaller than the assembly torque of the mounting bolt 6.
The above embodiments are only exemplary embodiments of the present invention, and are not intended to limit the present invention, and the protection scope of the present invention is defined by the claims. Various modifications and equivalents of the invention can be made by those skilled in the art within the spirit and scope of the invention, and such modifications and equivalents should also be considered as falling within the scope of the invention.

Claims (5)

1. An integrated layered water sampler comprises a mounting disc (1), lifting lugs (2), a connecting rod (3), lifting rings (4), a water sampling bottle (5), mounting bolts (6), outer ring mounting screw holes (7), inner ring mounting screw holes (8), sliding grooves (9), lifting mounting grooves (10), a lifting motor (11), a lifting reducer (12), a lifting reducer support (13), threaded sliding blocks (14), sliding blocks (15), lifting columns (16), hollow grooves (17), screw rods (18), supporting columns (19), lifting mounting grooves (20), a transposition motor (21), a turntable (22), bearings (23), assembly blocks (24), connecting flanges (25), transverse grooves (26), transverse fixing arms (27), transverse driving motors (28), transverse reducers (29), transverse driving screw rods (30), transverse threaded sliding blocks (31), Slide arm (32), screw rod seat (33), horizontal spout (34), installation piece (35), screw thread bottle lid (36), inlet opening (37), seal ring (38), drive spout post (39), drive slide post (40), drive shaft (41), torque sensor (42), terminal reduction gear (43), terminal motor (44), terminal mounting groove (45), terminal reduction gear support (46), its characterized in that: the lifting lugs (2) are rigidly mounted on the side wall of the mounting disc (1), the head ends of the connecting rods (3) are mounted on the lifting lugs (2) through bolts, the tail ends of the connecting rods (3) are mounted on the lifting rings (4) through bolt connection, the water sampling bottles (5) are mounted on outer ring mounting screw holes (7) and inner ring mounting screw holes (8) through mounting bolts (6), the outer ring mounting screw holes (7) and the inner ring mounting screw holes (8) are arranged on the upper end face of the mounting disc (1) and close to the side edge positions, the sliding grooves (9) are symmetrically arranged on the inner wall of a lifting mounting groove (10) in a divided-2 manner, the lifting mounting groove (10) is arranged in the hollow part in the central position of the mounting disc (1), the lifting motor (11) is rigidly mounted on the bottom face of the lifting mounting groove (10), and the lifting speed reducer (, the power input end of the lifting speed reducer (12) is rigidly connected to a power output shaft of the lifting motor (11), the screw (18) is rigidly installed at the power output end of the lifting speed reducer (12), the threaded sliding block (14) is rigidly installed at the bottom of the hollow groove (17), the threaded sliding block (14) is installed on the screw (18) in a matched mode, the sliding block (15) is symmetrically installed at the bottom of the lifting column (16) in a divided-2 mode, the sliding block (15) is installed at the sliding groove (9) in a matched mode, the hollow groove (17) is arranged at the axial position of the lifting column (16), the supporting column (19) is rigidly installed at the upper end face of the installing disc (1), the lifting column (16) is installed inside the supporting column (19) in a matched mode, the lifting installing groove (20) is arranged at the central position of the top end of the lifting column (16, the rotary table (22) is installed at the top end of the lifting column (16) through the matching of a bearing (23) and an assembling block (24), a connecting flange (25) is connected and installed between the power output shaft of the indexing motor (21) and the lower end face of the rotary table (22), a transverse groove (26) is arranged in the hollow part of the inner part of the transverse fixing arm (27), the transverse fixing arm (27) is rigidly installed on the upper end face of the rotary table (22), a transverse driving motor (28) is rigidly installed on the bottom face of the head end of the transverse groove (26), a transverse speed reducer (29) is rigidly installed on the bottom face of the head end of the transverse groove (26) close to the bottom face of the head end position, the power input end of the transverse speed reducer (29) is rigidly connected to the power output shaft of the transverse driving motor (28), the head end of the transverse driving screw (30) is rigidly installed, the screw rod seat (33) is arranged on the bottom surface of the tail end of the transverse groove (26), the transverse threaded slider (31) is rigidly arranged at the head end of the sliding arm (32), the transverse threaded slider (31) is arranged on the transverse driving screw rod (30) in a matched mode, the sliding arm (32) is arranged on the transverse fixing arm (27) in a matched mode through the transverse sliding groove (34), the mounting block (35) is rigidly arranged at the tail end of the sliding arm (32), the threaded bottle cap (36) is arranged at the position of the bottle opening of the water sampling bottle (5) in a matched mode, the water inlet hole (37) is formed in the outer wall of the threaded part of the threaded bottle cap (36), the sealing washer (38) is arranged between the outer ring of the lower end face of the threaded bottle cap (36) and the upper end face of the bottle opening of the water sampling bottle (5), the driving sliding groove column (39) is rigidly arranged on, drive traveller (40) are installed inside drive chute post (39) spout in the operating position cooperation, drive shaft (41) rigid mount is in terminal reduction gear (43) power take off end, torque sensor (42) cooperation is installed between drive shaft (41) and terminal reduction gear (43), terminal motor (44) rigid mount is in terminal mounting groove (45) bottom surface, terminal mounting groove (45) set up in installation piece (35) inside hollow, terminal reduction gear (43) are through terminal reduction gear support (46) rigid mount in terminal motor (44) casing, terminal reduction gear (43) power take off end rigid connection is in terminal motor (44) power input axle.
2. The integrated layered water sampler as claimed in claim 1, wherein the lifting lugs (2) are uniformly arranged on the side wall of the mounting plate (1) in 4 groups in an annular array.
3. An integrated layered water sampler as claimed in claim 1, wherein the outer ring mounting screw holes (7) and the inner ring mounting screw holes (8) are uniformly distributed in 4-10 groups of annular arrays on the upper end surface of the mounting plate (1).
4. The integrated layered water sampler as claimed in claim 1, wherein the water inlet holes (37) are distributed annularly and uniformly in 4 groups on the outer wall of the threaded part of the threaded bottle cap (36).
5. An integrated stratified water sampler as claimed in claim 1 wherein the torque required to open and close the closure by the drive shaft (41) is less than the assembly torque of the mounting bolts (6).
CN201921986022.4U 2019-11-18 2019-11-18 Integrated layered water sampler Active CN211317832U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921986022.4U CN211317832U (en) 2019-11-18 2019-11-18 Integrated layered water sampler

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921986022.4U CN211317832U (en) 2019-11-18 2019-11-18 Integrated layered water sampler

Publications (1)

Publication Number Publication Date
CN211317832U true CN211317832U (en) 2020-08-21

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921986022.4U Active CN211317832U (en) 2019-11-18 2019-11-18 Integrated layered water sampler

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CN (1) CN211317832U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114371033A (en) * 2022-01-11 2022-04-19 福建师范大学 Layered water sampler device with strong controllability and high precision

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114371033A (en) * 2022-01-11 2022-04-19 福建师范大学 Layered water sampler device with strong controllability and high precision

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