CN211179784U - Water quality testing displacement device - Google Patents

Water quality testing displacement device Download PDF

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Publication number
CN211179784U
CN211179784U CN201921753647.6U CN201921753647U CN211179784U CN 211179784 U CN211179784 U CN 211179784U CN 201921753647 U CN201921753647 U CN 201921753647U CN 211179784 U CN211179784 U CN 211179784U
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CN
China
Prior art keywords
rotating
power
shaft
conveying belt
conveyer belt
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Active
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CN201921753647.6U
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Chinese (zh)
Inventor
谢思思
沈梦霞
徐健
戚伟华
冯杰
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Huzhou Lisheng Testing Co ltd
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Huzhou Lisheng Testing Co ltd
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Priority to CN201921753647.6U priority Critical patent/CN211179784U/en
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Abstract

The utility model provides a water quality testing displacement device, it is including the base, the base top is fixed with the test rack, the detection head is installed at the test rack top, install the conveyer belt mounting bracket on the base of detection head below, be equipped with the conveyer belt on the conveyer belt mounting bracket, conveyer belt one end is installed on the conveyer belt mounting bracket through rotatory roller, install the swing pinion through the rotation axis on the conveyer belt mounting bracket of the conveyer belt other end, conveyer belt both sides edge is equipped with a plurality of tooth holes along length direction, swing pinion and corresponding tooth hole meshing, power component is installed at the base top, the rotation axis passes through power component and drives rotatoryly. This scheme can make quality of water carry out continuous many times through the conveyer belt and detect, its convenient operation, excellent in use effect.

Description

Water quality testing displacement device
Technical Field
The utility model belongs to the technical field of the check out test set technique and specifically relates to indicate a water quality testing displacement device.
Background
When having now to quality of water and examining, will detect the cup through the manual work and put under corresponding detection head, take out after having detected and put into another detection head again under, this kind of mode detection efficiency is low, and the check-out time is difficult accurate to master moreover.
Disclosure of Invention
The utility model aims to overcome the defects of the prior art and provide a water quality detection displacement device with convenient operation and good use effect.
In order to achieve the above object, the present invention provides a technical solution: a water quality detection displacement device comprises a base, wherein a detection frame is fixed at the top of the base, a rectangular detection head mounting plate is fixed at the top of the detection frame, detection heads with the number larger than 2 are mounted at the bottom of the detection head mounting plate along the length direction, a conveyor belt mounting frame is mounted on the base below the detection heads, a conveyor belt is arranged on the conveyor belt mounting frame, one end of the conveyor belt is mounted on the conveyor belt mounting frame through a rotating roller, rotating gears are mounted on the conveyor belt mounting frame at the other end of the conveyor belt through rotating shafts, the two rotating gears are respectively located at two sides of the conveyor belt, a plurality of tooth holes are formed in the edges of two sides of the conveyor belt along the length direction, the rotating gears are meshed with the corresponding tooth holes, the conveying direction of the mounted conveyor belt is consistent with the length direction of; the power assembly comprises a power motor and a power shaft, the power disc, wherein, motor power installs on the base of conveyer belt direction of delivery one side, the power shaft is horizontal installation on the motor power of conveyer belt one side, the power shaft after the installation parallels with the rotation axis, power shaft one end is connected with motor power, the power shaft other end is connected with the power disc, the rotation axis that is located motor power one end is the level and extends to the power shaft top and form the rotation end, install the rotary disk on the rotation end, it has 4 grooves of stirring to distribute according to the equal portion on the rotary disk, the power disc edge department that is located rotary disk one side is fixed with the stirring axle, the stirring axle after the installation uses with stirring the groove cooperation, the rotary disk edge between the adjacent stirring groove is equipped with the spacing groove that the indent formed, install spacing dish on the power shaft of rotary disk below, be equipped with the transition groove that the indent formed on the spacing.
The transition groove is arc-shaped, and the circle center of the transition groove and the axis of the shifting shaft are positioned on the same straight line.
The limiting groove is arc-shaped, the inner arc surface of the limiting groove faces outwards, and the radian of the limiting groove is consistent with that of the limiting disc.
After the scheme is adopted, the convex surface of the limiting disc is contacted with the limiting groove, two shifting grooves are respectively positioned at two sides of the upper part of the limiting disc, one or more positioning rings are fixed on the surface of the conveying belt, water to be detected is contained in the detection cup, the detection cup is placed on the positioning rings of the conveying belt, the power motor is controlled by an external positioner, the power motor drives the power shaft to rotate, the power shaft synchronously drives the limiting disc and the shifting shaft to synchronously rotate through the power disc, the shifting shaft enters the shifting grooves when rotating to the oblique upper part of the limiting disc, the power shaft continuously rotates, the rotating disc rotates along with the shifting shaft through the embedding of the shifting grooves and the shifting shaft, the rotating discs at two sides of the shifting grooves enter the aqueduct areas after the embedding, the power shaft continuously rotates, when the shifting shaft exits from the shifting grooves, the rotating disc rotates by 90 degrees, the rotating disc drives the rotating shaft to synchronously rotate when rotating, the rotating, this scheme can make quality of water carry out continuous many times through the conveyer belt and detect, its convenient operation, excellent in use effect.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
Fig. 2 is a schematic structural diagram of the power assembly.
Fig. 3 is a schematic view of a tooth aperture.
Fig. 4 is a schematic view of the installation of the conveyor belt.
Detailed Description
The present invention will be further explained with reference to the drawings, and the preferred embodiment of the present invention is: referring to the attached drawings 1 to 4, the water quality detection displacement device of the embodiment comprises a base 1, a detection frame 2 is fixed on the top of the base 1, a rectangular detection head mounting plate 3 is fixed on the top of the detection frame 2, detection heads 4 with the number larger than 2 are installed on the bottom of the detection head mounting plate 3 along the length direction, a conveyer belt mounting frame 5 is installed on the base 1 below the detection heads 4, a conveyer belt 6 is arranged on the conveyer belt mounting frame 5, one end of the conveyer belt 6 is installed on the conveyer belt mounting frame 5 through a rotating roller, rotating gears 11 are installed on the conveyer belt mounting frame 5 at the other end of the conveyer belt 6 through a rotating shaft 9, the rotating gears 11 are respectively located on two sides of the conveyer belt 6, a plurality of tooth holes 12 are arranged on the edges of two sides of the conveyer belt 6 along the length direction, the rotating gears 11 are engaged with the corresponding tooth holes 12, the top of the base 1 is provided with a power assembly, and the rotating shaft 9 is driven to rotate by the power assembly; the power assembly comprises a power motor 7, a power shaft 8 and a power disc 13, wherein the power motor 7 is arranged on the base 1 at one side of the conveying direction of the conveying belt 6, the power shaft 8 is horizontally arranged on the power motor 7 at one side of the conveying belt 6, the installed power shaft 8 is parallel to a rotating shaft 9, one end of the power shaft 8 is connected with the power motor 7, the other end of the power shaft 8 is connected with the power disc 13, the rotating shaft 9 at one end of the power motor 7 horizontally extends to the upper part of the power shaft 8 to form a rotating end, a rotating disc 14 is arranged on the rotating end, 4 shifting grooves 16 are distributed on the rotating disc 14 according to equal parts, a shifting shaft 17 is fixed at the edge of the power disc 13 at one side of the rotating disc 14, the installed shifting shaft 17 is matched with the shifting grooves 16 for use, and limiting grooves 18 formed by inner concave are arranged at the edge of the, the power shaft 8 below the rotating disk 14 is provided with a limiting disk 10, a limiting groove 18 is arc-shaped, the inner arc surface of the limiting groove is outward, the radian of the limiting groove 18 is consistent with that of the limiting disk 10, a transition groove 15 formed by inward concave is arranged on the limiting disk 10 on one side of the shifting shaft 17, the transition groove 15 is arc-shaped, and the circle center of the transition groove and the axis of the shifting shaft 17 are positioned on the same straight line. After the embodiment is adopted, the convex surface of the limiting disc is contacted with the limiting groove, two shifting grooves are respectively positioned at two sides of the upper part of the limiting disc, one or more positioning rings are fixed on the surface of the conveying belt, water to be detected is contained in a detection cup, the detection cup is placed on the positioning rings of the conveying belt, a power motor is controlled by an external positioner, the power motor drives a power shaft to rotate, the power shaft synchronously drives the limiting disc and the shifting shaft to synchronously rotate through the power disc, the shifting shaft enters the shifting grooves when rotating to the oblique upper part of the limiting disc, the power shaft continuously rotates, the rotating disc rotates along with the shifting grooves and the shifting shaft through the embedding of the shifting grooves, the rotating discs at two sides of the shifting grooves enter a transition groove area after the embedding, the power shaft continuously rotates, when the shifting shaft exits from the shifting grooves, the rotating disc rotates by 90 degrees, the rotating disc drives the rotating shaft to synchronously rotate, this scheme can make quality of water carry out continuous many times through the conveyer belt and detect, its convenient operation, excellent in use effect.
The above-mentioned embodiments are only preferred embodiments of the present invention, and the scope of the present invention is not limited thereto, so that all the changes made according to the shape and principle of the present invention should be covered within the protection scope of the present invention.

Claims (3)

1. The utility model provides a water quality testing displacement device, it is including base (1), and base (1) top is fixed with test rack (2), and test rack (2) top is fixed with rectangular first mounting panel (3) of detection, detects first mounting panel (3) bottom and installs detection head (4) that quantity is greater than 2 along length direction, installs conveyer belt mounting bracket (5), its characterized in that on base (1) of detection head (4) below: the conveying belt (6) is arranged on the conveying belt mounting frame (5), one end of the conveying belt (6) is mounted on the conveying belt mounting frame (5) through a rotating roller, rotating gears (11) are mounted on the conveying belt mounting frame (5) at the other end of the conveying belt (6) through rotating shafts (9), the two rotating gears (11) are respectively located on two sides of the conveying belt (6), a plurality of tooth holes (12) are formed in the edges of two sides of the conveying belt (6) along the length direction, the rotating gears (11) are meshed with the corresponding tooth holes (12), the conveying direction of the mounted conveying belt (6) is consistent with the length direction of the detection head mounting plate (3), a power assembly is mounted at the top of the base (1), and the rotating shafts (9) are driven to rotate; the power assembly comprises a power motor (7), a power shaft (8) and a power disc (13), wherein the power motor (7) is arranged on a base (1) on one side of the conveying direction of a conveying belt (6), the power shaft (8) is horizontally arranged on the power motor (7) on one side of the conveying belt (6), the installed power shaft (8) is parallel to a rotating shaft (9), one end of the power shaft (8) is connected with the power motor (7), the other end of the power shaft (8) is connected with the power disc (13), the rotating shaft (9) on one end of the power motor (7) horizontally extends to the upper part of the power shaft (8) to form a rotating end, a rotating disc (14) is arranged on the rotating end, 4 shifting grooves (16) are distributed on the rotating disc (14) according to equal intervals, a shifting shaft (17) is fixed at the edge of the power disc (13) on one side of the rotating disc (14), the installed shifting shaft (17) is matched with the shifting grooves (16) for use, limiting grooves (18) formed by inward concave portions are formed in the edges of the rotating disks (14) between the adjacent shifting grooves (16), limiting disks (10) are installed on the power shafts (8) below the rotating disks (14), and transition grooves (15) formed by inward concave portions are formed in the limiting disks (10) located on one side of the shifting shaft (17).
2. The water quality detection displacement device according to claim 1, characterized in that: the transition groove (15) is arc-shaped, and the circle center of the transition groove and the axis of the shifting shaft (17) are positioned on the same straight line.
3. The water quality detection displacement device according to claim 1, characterized in that: the limiting groove (18) is arc-shaped, the inner arc surface of the limiting groove faces outwards, and the radian of the limiting groove (18) is consistent with that of the limiting disc (10).
CN201921753647.6U 2019-10-18 2019-10-18 Water quality testing displacement device Active CN211179784U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921753647.6U CN211179784U (en) 2019-10-18 2019-10-18 Water quality testing displacement device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921753647.6U CN211179784U (en) 2019-10-18 2019-10-18 Water quality testing displacement device

Publications (1)

Publication Number Publication Date
CN211179784U true CN211179784U (en) 2020-08-04

Family

ID=71799093

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921753647.6U Active CN211179784U (en) 2019-10-18 2019-10-18 Water quality testing displacement device

Country Status (1)

Country Link
CN (1) CN211179784U (en)

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