CN106706469A - In-container liquid information automatic measuring device - Google Patents

In-container liquid information automatic measuring device Download PDF

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Publication number
CN106706469A
CN106706469A CN201611165214.XA CN201611165214A CN106706469A CN 106706469 A CN106706469 A CN 106706469A CN 201611165214 A CN201611165214 A CN 201611165214A CN 106706469 A CN106706469 A CN 106706469A
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CN
China
Prior art keywords
slide block
baffle plate
dovetail slide
electric motors
linear electric
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201611165214.XA
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Chinese (zh)
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CN106706469B (en
Inventor
纪洪飞
宋湘春
王彩
王一彩
颜士琪
曲明亮
徐文昊
陈永鑫
丛树星
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Chongqing shitianmei Biotechnology Co., Ltd
Original Assignee
Qingdao Haizhiyuan Intelligent Technology Co Ltd
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Application filed by Qingdao Haizhiyuan Intelligent Technology Co Ltd filed Critical Qingdao Haizhiyuan Intelligent Technology Co Ltd
Priority to CN201611165214.XA priority Critical patent/CN106706469B/en
Publication of CN106706469A publication Critical patent/CN106706469A/en
Application granted granted Critical
Publication of CN106706469B publication Critical patent/CN106706469B/en
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N9/00Investigating density or specific gravity of materials; Analysing materials by determining density or specific gravity
    • G01N9/02Investigating density or specific gravity of materials; Analysing materials by determining density or specific gravity by measuring weight of a known volume
    • G01N9/04Investigating density or specific gravity of materials; Analysing materials by determining density or specific gravity by measuring weight of a known volume of fluids
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01DMEASURING NOT SPECIALLY ADAPTED FOR A SPECIFIC VARIABLE; ARRANGEMENTS FOR MEASURING TWO OR MORE VARIABLES NOT COVERED IN A SINGLE OTHER SUBCLASS; TARIFF METERING APPARATUS; MEASURING OR TESTING NOT OTHERWISE PROVIDED FOR
    • G01D21/00Measuring or testing not otherwise provided for
    • G01D21/02Measuring two or more variables by means not covered by a single other subclass

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Biochemistry (AREA)
  • General Health & Medical Sciences (AREA)
  • Immunology (AREA)
  • Pathology (AREA)
  • Details Of Rigid Or Semi-Rigid Containers (AREA)

Abstract

The invention relates to an in-container liquid information automatic measuring device, and belongs to the field of teaching instruments. The in-container liquid information automatic measuring device consists of a back baffle plate, a right baffle plate, a linear motor, a base, a catheter, a catheter port I, a numerical control module, a front baffle plate, a left baffle plate, a guide wave radar, a gravity meter and a catheter port II, wherein the linear motor consists of a linear motor hinge shaft, a linear motor hinge bracket, a linear motor telescopic rod and a linear motor outer casing; the base consists of a dovetail tank, a water containing tank and a base bracket; the numerical control module consists of a display screen, control press buttons and a control chip; the left baffle plate and the right baffle plate each consist of a baffle plate sheet, a baffle plate sealing gasket, a dovetail slide block and a dovetail slide block sealing gasket; the front baffle plate and the back baffle plate each consist of a dovetail slide block, a dovetail slide block sealing gasket and a baffle plate body. The in-container liquid information automatic measuring device has the advantages that when information of liquid in a container is measured, volume, mass and density data of liquid in the containers with various shapes can be easily obtained, and is displayed on the display screen; the good human-machine interaction property is realized.

Description

Fluid information self-operated measuring unit in a kind of container
Technical field
The present invention relates to fluid information self-operated measuring unit in a kind of container, the bottom of special construction is specifically employed Seat, it can be deduced that fluid information self-operated measuring unit in a kind of container of liquid volume, quality, density size in container, belongs to Instruments used for education field.
Background technology
With the development of manufacturing processing technic, variously-shaped container is innumerable, especially in chemistry teaching field, daily The various glass containers for filling reagent are faced, the shape of many containers is simultaneously irregular, reagent volume measuring method in conventional container It is to pour into the graduated cylinder or measuring cup that indicate range liquid in irregular container, liquid volume is obtained by reading reading, it is this Not only trouble is not easy to operate for method, but also there is the error on reading, particularly some hazardous agents, in transfer storing containers During, it is easy to cause reagent to spill burned skin, and more containers can be also taken during agent transfer, cause The increase of cleaning amount, expends the time.During traditional liquid information measurement, generally manual record data are manually entered Row is calculated, less efficient, and can not complete to be measured while liquid much information, is existed in terms of fluid information measurement larger Room for improvement.
The development of computer technology and the exploitation of various sensors provide great convenience for fluid information measurement, especially The application of single-chip microcomputer, it is not only simple to operate, and equipment cost is reduced, it is that design of the invention provides a great help.
The content of the invention
For above-mentioned deficiency, the invention provides fluid information self-operated measuring unit in a kind of container.
The present invention is achieved by the following technical solutions:Fluid information self-operated measuring unit in a kind of container, is by rear Baffle plate, right shell body, linear electric motors, base, conduit, conduit mouth I, numerical control module, front apron, right baffle-plate, guided wave radar, gravimeter With the composition of conduit mouth II, it is characterised in that:Described linear electric motors by linear electric motors jointed shaft, linear electric motors articulated stand, Linear electric motors expansion link and linear electric motors shell are constituted, and described base is made up of dovetail groove, Storage water tank and base support, described Numerical control module be made up of display screen, control button and control chip, described right baffle-plate and right shell body are all by baffle plate piece, baffle plate Sealing gasket, dovetail slide block and dovetail slide block sealing gasket composition, described front apron and backboard are all by dovetail slide block, dovetail slide block Sealing gasket and baffle plate body are constituted.
Described front apron, backboard, right baffle-plate and right shell body are respectively nested on base by the dovetail slide block of lower section In the dovetail groove of square front, rear, left and right four direction, distinguish in the outer surface of front apron, backboard, right baffle-plate and right shell body It is fixedly connected linear electric motors.
Described linear electric motors shell passes through two linear electric motors articulated stands and two linear electric motors jointed shafts with base It is articulated and connected, linear electric motors expansion link is wrapped in linear electric motors shell, both concentric placements.
In base of the described numerical control Module-embedding on the outside of front apron, display location is in the top of numerical control module, control Button be located at display screen lower left, control chip be located at display screen lower right, display screen, control button and control chip it Between by wire connect.
Described conduit, conduit mouth I and conduit mouth II have identical two, and tube at one end is stretched by conduit mouth I Enter in the Storage water tank of chassis interior, the other end is extend into by front apron, backboard, right baffle-plate, right shell body by conduit mouth II In the capless closure space constituted with base, conduit mouth II is symmetrically distributed in the dovetail slide block of front apron and backboard.
The intersecting lower face of two, the center dovetail groove of the base embedded in guided wave radar, in the lower section of guided wave radar Gravimeter is embedded in, is Storage water tank in the lower section of gravimeter, base top is uniform-distribution with 16 linear electric motors articulated stands, It is bolted connection.
Described front apron and backboard top are baffle plate body, and lower section is fixedly connected dovetail slide block, is opened in dovetail slide block There is a conduit mouth II, dovetail slide block sealing gasket is enclosed within both sides of dovetail slide block and symmetrical.
Described right baffle-plate is constituted with right shell body top for symmetrical four baffle plate pieces are nested, is slided between baffle plate piece Connection, lower section is fixedly connected dovetail slide block, and dovetail slide block sealing gasket is enclosed within both sides of dovetail slide block and symmetrical.
The usefulness of the invention is that when fluid information is measured in container, first, the present apparatus can easily draw respectively The data of liquid volume, quality and density in shaped containers are planted, and is shown on a display screen, with good man-machine interaction; Second, the drawbacks of toppling over reagent is needed present arrangement avoids reagent volume measuring method in conventional container, improve measurement efficiency; 3rd, the drawbacks of estimating reading is needed present arrangement avoids traditional measurement method, improve certainty of measurement;4th, the present apparatus is kept away Exempt from the risk that hazardous agents spill, improve safety coefficient;5th, the present apparatus reduces the use of graduated cylinder or measuring cup, clear Washing reduces workload in container processes.
Brief description of the drawings
Accompanying drawing 1 is the structural representation of the present invention, and accompanying drawing 2 is the top view of Fig. 1, and Fig. 3 is the profile of base, and Fig. 4 is right The front view of baffle plate, Fig. 5 is the front view of front apron.
In figure, 1, backboard, 2, right shell body, 201, baffle plate piece, 202, guard seal pad, 203, dovetail slide block, 204, swallow Tail sliding block sealing gasket, 3, linear electric motors, 301, linear electric motors jointed shaft, 302, linear electric motors articulated stand, 303, linear electric motors Expansion link, 304, linear electric motors shell, 4, base, 401, dovetail groove, 402, Storage water tank, 403, base support, 5, conduit, 6, lead The mouth of pipe I, 7, numerical control module, 701, display screen, 702, control button, 703, control chip, 8, front apron, 801, baffle plate body, 9, Right baffle-plate, 10, guided wave radar, 11, gravimeter, 12, conduit mouth II.
Specific embodiment
Fluid information self-operated measuring unit in a kind of container, is by backboard 1, right shell body 2, linear electric motors 3, base 4, leads Pipe 5, conduit mouth I 6, numerical control module 7, front apron 8, right baffle-plate 9, guided wave radar 10, gravimeter 11 and conduit mouth II 12 composition, Described linear electric motors 3 are by linear electric motors jointed shaft 301, linear electric motors articulated stand 302, linear electric motors expansion link 303 and straight Line motor housing 304 is constituted, and described base 4 is made up of dovetail groove 401, Storage water tank 402 and base support 403, described number Control module 7 is made up of display screen 701, control button 702 and control chip 703, and described right baffle-plate 9 and right shell body 2 are all by keeping off Plate 201, guard seal pad 202, dovetail slide block 203 and dovetail slide block sealing gasket 204 are constituted, described front apron 8 and rear gear Plate 1 is all made up of dovetail slide block 203, dovetail slide block sealing gasket 204 and baffle plate body 801.
Described front apron 8, backboard 1, right baffle-plate 9 are respectively nested in right shell body 2 by the dovetail slide block 203 of lower section In the dovetail groove 401 of the top front, rear, left and right four direction of base 4, in front apron 8, right shell body 2, right baffle-plate 9 and backboard 1 Outer surface be respectively fixedly connected with linear electric motors 3.
Described linear electric motors shell 304 passes through two linear electric motors articulated stands 302 and two linear electric motors with base 4 Jointed shaft 301 is articulated and connected, and linear electric motors expansion link 303 is wrapped in linear electric motors shell 304, both concentric placements.
Described numerical control module 7 is embedded in the base 4 in the outside of front apron 8, and display screen 701 is located at the upper of numerical control module 7 Side, control button 702 is located at the lower left of display screen 701, and control chip 703 is located at the lower right of display screen 701, display screen 701st, connected by wire between control button 702 and control chip 703.
Described conduit 5, conduit mouth I 6 and conduit mouth II 12 have identical two, and the one end of conduit 5 passes through conduit Mouthfuls I 6 extend into the Storage water tank 402 inside base 4, the other end by conduit mouth II 12 extend into by front apron 8, backboard 1, In the capless closure space that right baffle-plate 9, right shell body 2 are constituted with base 4, conduit mouth II 12 is symmetrically distributed in front apron 8 and rear gear In the dovetail slide block 203 of plate 1.
The intersecting lower face of two, the center dovetail groove 401 of the base 4 embedded in guided wave radar 10, in guided wave radar 10 lower section embedded in gravimeter 11, be Storage water tank 402 in the lower section of gravimeter 11, and the top of base 4 is uniform-distribution with 16 Linear electric motors articulated stand 302, is bolted connection.
Described front apron 8 and the top of backboard 1 is baffle plate body 801, and lower section is fixedly connected dovetail slide block 203, dovetail It is provided with conduit mouth II 12 on sliding block 203, dovetail slide block sealing gasket 204 is enclosed within both sides of dovetail slide block 203 and symmetrical.
Described right baffle-plate 9 is constituted with the top of right shell body 2 for symmetrical four baffle plate pieces 201 are nested, baffle plate piece 201 Between be slidably connected, lower section is fixedly connected dovetail slide block 203, and dovetail slide block sealing gasket 204 is enclosed within the both sides of dovetail slide block 203 And it is symmetrical.
The device is when mounted, nested by dovetail slide block 203 by front apron 8, right shell body 2, right baffle-plate 9 and backboard 1 In dovetail groove 401, then linear electric motors 3 are respectively fixedly connected with front apron 8, right shell body 2, right baffle-plate 9 and backboard 1, Start control button 702, just can normally use;Container is put into by front apron 8, backboard 1, right baffle-plate 9, right shell body when using In the 2 capless closure spaces constituted with base 4, mutually moved by front apron 8, backboard 1, right baffle-plate 9, right shell body 2 and base 4 A space for fitted vessel size is obtained, be transported to the water in Storage water tank 402 in this space by conduit 5, by guided wave radar 10 Judge the height of liquid in container, and the outer water surface of container is reached sustained height, obtain below capless closure space level face The volume of the water of volume and packing space, is processed by the data of 703 pairs of generations of control chip, is obtained shared by container bottle Volume, so as to obtain liquid volume in container, total weight is measured by gravimeter 11, and liquid in container is drawn by data processing Weight, tries to achieve density.
For the ordinary skill in the art, teaching of the invention, do not depart from principle of the invention with In the case of spirit, the changes, modifications that are carried out to implementation method, replace and modification still fall within protection scope of the present invention it It is interior.

Claims (2)

1. fluid information self-operated measuring unit in a kind of container, is by backboard, right shell body, linear electric motors, base, conduit, leads The mouth of pipe I, numerical control module, front apron, right baffle-plate, guided wave radar, gravimeter and conduit mouth II composition, it is characterised in that:It is described Linear electric motors be made up of linear electric motors jointed shaft, linear electric motors articulated stand, linear electric motors expansion link and linear electric motors shell, Described base is made up of dovetail groove, Storage water tank and base support, and described numerical control module is by display screen, control button and control Chip is constituted, and described right baffle-plate and right shell body are all by baffle plate piece, guard seal pad, dovetail slide block and dovetail slide block sealing gasket group Into described front apron and backboard are all made up of dovetail slide block, dovetail slide block sealing gasket and baffle plate body;
Before described front apron, backboard, right baffle-plate and right shell body are respectively nested in base top by the dovetail slide block of lower section, Afterwards, in the dovetail groove of left and right four direction, connect the outer surface of front apron, backboard, right baffle-plate and right shell body is fixed respectively Then linear electric motors;
Described linear electric motors shell is hinged with base by two linear electric motors articulated stands and two linear electric motors jointed shafts Connection, linear electric motors expansion link is wrapped in linear electric motors shell, both concentric placements;
In base of the described numerical control Module-embedding on the outside of front apron, display location is in the top of numerical control module, control button Positioned at display screen lower left, control chip is located at display screen lower right, leads between display screen, control button and control chip Cross wire connection;
Described conduit, conduit mouth I and conduit mouth II have identical two, and tube at one end is extend into by conduit mouth I In the Storage water tank of chassis interior, the other end is extend into by front apron, backboard, right baffle-plate, right shell body and bottom by conduit mouth II In the capless closure space of seat composition, conduit mouth II is symmetrically distributed in the dovetail slide block of front apron and backboard;
The intersecting lower face of two, the center dovetail groove of the base embedded in guided wave radar, is embedded in the lower section of guided wave radar Gravimeter, is Storage water tank in the lower section of gravimeter, and base top is uniform-distribution with 16 linear electric motors articulated stands, by spiral shell Bolt is fixedly connected;
Described front apron and backboard top are baffle plate body, and lower section is fixedly connected dovetail slide block, is provided with dovetail slide block and led The mouth of pipe II, dovetail slide block sealing gasket is enclosed within both sides of dovetail slide block and symmetrical.
2. fluid information self-operated measuring unit in a kind of container as claimed in claim 1, it is characterised in that:Described right baffle-plate Constituted for symmetrical four baffle plate pieces are nested with right shell body top, be slidably connected between baffle plate piece, lower section is fixedly connected Dovetail slide block, dovetail slide block sealing gasket is enclosed within both sides of dovetail slide block and symmetrical.
CN201611165214.XA 2016-12-16 2016-12-16 Fluid information self-operated measuring unit in a kind of container Active CN106706469B (en)

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Application Number Priority Date Filing Date Title
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CN106706469B CN106706469B (en) 2019-08-06

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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB595535A (en) * 1944-07-06 1947-12-08 Wilhelmus Michel Theonville Apparatus for weighing and determining the specific gravity of granular and other loose material
DE952135C (en) * 1955-01-21 1956-11-08 Hermann Clasen Dipl Chem Dr Re Device for measuring the density of substances in a liquid or gaseous state, which can also be used for temperature measurement
CN2593184Y (en) * 2002-12-19 2003-12-17 武汉市第十一中学 Liquid density measuring instument
CN2713461Y (en) * 2004-06-24 2005-07-27 温武才 On-line autocontrol detector for syrup brix
CN2921824Y (en) * 2005-10-25 2007-07-11 李鉴 On-line detecting liquid density digital sensing transmitter
CN101701840A (en) * 2009-11-30 2010-05-05 公安部第一研究所 Testing device used for metering trace liquid
CN101750515A (en) * 2008-12-03 2010-06-23 中国科学院理化技术研究所 Non-contact measurement method for measuring liquid parameter

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB595535A (en) * 1944-07-06 1947-12-08 Wilhelmus Michel Theonville Apparatus for weighing and determining the specific gravity of granular and other loose material
DE952135C (en) * 1955-01-21 1956-11-08 Hermann Clasen Dipl Chem Dr Re Device for measuring the density of substances in a liquid or gaseous state, which can also be used for temperature measurement
CN2593184Y (en) * 2002-12-19 2003-12-17 武汉市第十一中学 Liquid density measuring instument
CN2713461Y (en) * 2004-06-24 2005-07-27 温武才 On-line autocontrol detector for syrup brix
CN2921824Y (en) * 2005-10-25 2007-07-11 李鉴 On-line detecting liquid density digital sensing transmitter
CN101750515A (en) * 2008-12-03 2010-06-23 中国科学院理化技术研究所 Non-contact measurement method for measuring liquid parameter
CN101701840A (en) * 2009-11-30 2010-05-05 公安部第一研究所 Testing device used for metering trace liquid

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Effective date of registration: 20190712

Address after: 325000 No. 2, Lane 35, Xilan Road, Shuangyu Street, Lucheng District, Wenzhou City, Zhejiang Province

Applicant after: Zhan Xiadan

Address before: Office building No. 2 Guangzhou Road, unit 266300 in Jiaozhou City, Shandong province Qingdao City No. 167 Tong Garden District 5 layer

Applicant before: QINGDAO HAIZHIYUAN INTELLIGENT TECHNOLOGY CO., LTD.

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Effective date of registration: 20200720

Address after: 423, floor 4, block a, Xinhua future city building, No. 175, Litang Road, Changping District, Beijing 102200

Patentee after: Li Qiannan

Address before: 325000 No. 2, Lane 35, Xilan Road, Shuangyu Street, Lucheng District, Wenzhou City, Zhejiang Province

Patentee before: Zhan Xiadan

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Effective date of registration: 20201127

Address after: 408300 demonstration area of township industry in Guixi street, Dianjiang County, Chongqing

Patentee after: Chongqing shitianmei Biotechnology Co., Ltd

Address before: 423, floor 4, block a, Xinhua future city building, No. 175, Litang Road, Changping District, Beijing 102200

Patentee before: Li Qiannan

TR01 Transfer of patent right