CN213434585U - Expansion link of control evaporation capacity - Google Patents

Expansion link of control evaporation capacity Download PDF

Info

Publication number
CN213434585U
CN213434585U CN202021286362.9U CN202021286362U CN213434585U CN 213434585 U CN213434585 U CN 213434585U CN 202021286362 U CN202021286362 U CN 202021286362U CN 213434585 U CN213434585 U CN 213434585U
Authority
CN
China
Prior art keywords
control
test tube
groove
plug
air
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.)
Active
Application number
CN202021286362.9U
Other languages
Chinese (zh)
Inventor
袁利军
杨明昊
陈权洪
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.)
Zhejiang Cohen Experimental Equipment Co ltd
Original Assignee
Zhejiang Cohen Experimental Equipment Co ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Zhejiang Cohen Experimental Equipment Co ltd filed Critical Zhejiang Cohen Experimental Equipment Co ltd
Priority to CN202021286362.9U priority Critical patent/CN213434585U/en
Application granted granted Critical
Publication of CN213434585U publication Critical patent/CN213434585U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Devices For Use In Laboratory Experiments (AREA)

Abstract

The utility model discloses a telescopic link of control evaporation capacity, including the shape of falling T test-tube rack supporter, there are wind room and drip chamber on the support frame, and it has a plurality of air outlets to open on the wind room, is equipped with the stay tube on the support frame, and stay tube one end is connected with the air outlet, and the stay tube other end is provided with the control stopper, and the control stopper can be according to the amount of wind size that the weight adjustment of test tube followed the control stopper and flowed. The utility model provides a can be according to the telescopic link of the control evaporation capacity of the flow of the dry wind of the big or small control dry test tube of test tube. The wind in the plenum blows into the stay tube through the air outlet, blows out from the control stopper, and the air output can be adjusted according to the weight of test tube to the control stopper, reaches the effect that little test tube blows a small amount of wind, and big test tube blows a large amount of wind, just so makes to realize the effect of adjusting the air output according to the test tube size.

Description

Expansion link of control evaporation capacity
Technical Field
The utility model belongs to the technical field of laboratory equipment technique and specifically relates to a telescopic link of control evaporation capacity is related to.
Background
The test-tube rack that uses on the market at present generally can not be according to the size regulation drying dynamics of test tube, all adopts same drying dynamics to big small test tube, leads to some problems like this, for example on taking air-dried test-tube rack, the intake of some little test tubes is too big, and little test tube just can be blown off, and unnecessary big amount of wind can arouse the incident in the laboratory moreover, if the intake is less, that big test tube just needs longer time to obtain the drying.
Chinese patent publication CN103170389A, published 2013 year 06 month 26 days, the name of utility model creation is the quick-drying type test-tube rack of modified, and this application includes the test-tube rack body, and the test-tube rack body includes support and bottom plate, its characterized in that: the upper end of the support is provided with an upper cover plate, the upper cover plate is provided with a plurality of rows of jacks, the jacks comprise large jacks and small jacks, small jacks are arranged between two adjacent rows of large jacks, the bottom plate is provided with stand columns corresponding to the jacks, each row of stand columns are provided with slots parallel to the bottom plate, the slots are internally provided with inserting plates, the bottom plate is internally provided with a drying device, and the inserting plates are internally provided with a water absorption device. In this application scheme, the inside water of test tube can not obtain quick drying, can not come the dry speed of control according to the size of test tube, leads to the drying process of big test tube to become slowly.
Disclosure of Invention
The utility model relates to an overcome prior art's the problem that can not be according to the flow of the dry wind of the big or small control dry test tube of test tube, provide a control evaporation capacity's telescopic link of the flow of the dry wind of the big or small control dry test tube of ability according to the test tube.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides a technical scheme that its technical problem adopted is: a telescopic rod for controlling evaporation capacity comprises a reversed T-shaped test tube rack support body, wherein an air chamber and a water collecting chamber are arranged on the support frame, a plurality of air outlets are formed in the air chamber, support tubes are arranged on two sides of the support frame, one end of each support tube is connected with the air outlets, a control plug capable of adjusting the air quantity flowing out of the control plug according to the weight of a test tube is arranged at the other end of each support tube, a guide groove for guiding is formed in a plug body, a sliding plate matched with the guide groove is arranged at one end of each support tube provided with the control plug, a T-shaped groove is formed in the side wall of the guide groove, a T-shaped sliding block matched with the T-shaped sliding block is arranged in the T-shaped groove, one end of an elastic body is fixedly connected with the other end face of the guide groove, an installation column is arranged on the right side of the T-shaped sliding, and a magnetic sheet corresponding to the T-shaped sliding block is arranged on the sliding plate. Wind in the plenum blows into the stay tube through the air outlet, blow off from the control stopper, the control stopper can be according to the weight regulation air output of test tube, it blows a small amount of wind to reach little test tube, big test tube blows the effect of a large amount of wind, just so make can realize the effect of adjusting the air output according to the test tube size, the air input of some little test tubes is too big, little test tube just can be blown off, and unnecessary big air output can arouse the incident in the laboratory, if the air input is less, that big test tube just needs longer time to obtain the drying.
Preferably, the control plug is provided with a plug body and a plug head, the plug body is provided with a guide groove for guiding and a control groove for controlling air volume, one end of the plug body, which is far away from the supporting tube, is connected with a movable rod, and the movable rod is movably connected with the plug head; a pressure sensor is arranged between the plug body and the plug head. Generally when the test tube is put on the test-tube rack, the test tube bottom can contact the chock plug to give a pressure of chock plug, race the head and will contact pressure sensor for the downstream of movable rod, and give a pressure signal of pressure sensor, pressure sensor just can obtain pressure signal, and the weight change of test tube just can be reflected to this pressure signal.
Preferably, the control groove comprises an inclined plane control groove and a guide control groove, the inclined plane control groove is connected with the guide control groove, and the inclined plane control groove is arranged at one end, far away from the plug head, of the control plug. The guide control groove is used when the control plug is installed.
Preferably, one end of the supporting tube provided with the control plug is provided with a sliding plate and a control plate which are matched with the guide groove, the sliding plate slides in the guide groove, and the control plate slides in the inclined plane control groove. The slide slides in the guide way, the shape of slide cooperatees with the cell type of guide way, make the gap between slide and the guide way can be under the condition of guaranteeing not too much air leakage, can slide in a flexible way again, because the oppression control stopper of test tube can retract to the stay tube in, under the guide of guide way, the control stopper can be followed the axle center motion of control stopper, can not deviate, and then can not block and die yet, and relative motion will take place for the control panel in the inclined plane control groove, thereby arouse the distance change of control panel and inclined plane control tank bottom surface, when the control stopper receives the pressure of test tube to slide in the stay tube, the distance grow gradually of control panel and inclined plane control tank bottom surface, the amount of wind that blows out from between control panel and inclined plane control tank bottom surface will increase gradually, this has just realized the effect of size adjustment air output according to test tube.
Preferably, a T-shaped groove is formed in the side wall of the guide groove, and a mounting hole is formed in the T-shaped groove. And a T-shaped sliding block matched with the T-shaped groove is arranged in the T-shaped groove, the T-shaped sliding block is fixedly connected with one end of an elastic body, and the other end of the elastic body is connected with the end face of the guide groove. The T-shaped sliding block slides in the T-shaped groove, and the T-shaped sliding block is placed into the T-shaped groove through the mounting hole.
Preferably, the T-shaped slider is a magnetic body, and a magnetic piece corresponding to the T-shaped slider is provided on the slide plate. The T-shaped sliding block can be connected with the magnetic sheet through magnetic force, so that the control plug is connected with the supporting pipe, the control plug is kept at the position in the supporting pipe and cannot fall off, and the installation is convenient.
Preferably, the air chamber is provided with an air inlet, and the water collecting chamber is provided with a water collecting opening. The air inlet is connected with an air pump, the air pump pumps air into the air chamber, so that the pressure in the air chamber is greater than that in the air chamber outdoors, air can enter the supporting tube through the air outlet, the test tube is dried, and the position of the water collecting port is the lowest point in the surrounding position, so that water can conveniently flow into the water collecting chamber.
Preferably, the test tube rack further comprises a controller, an electromagnetic valve is arranged in the supporting tube, the controlled end of the electromagnetic valve is connected with the electromagnetic valve control end of the controller, and the signal output end of the pressure sensor is connected with the pressure signal receiving end.
Therefore, the utility model discloses following beneficial effect has: (1) the air in the air chamber is blown into the supporting tube through the air outlet and blown out from the control plug, the control plug can adjust the air output according to the weight of the test tube, and the effects that a small amount of air is blown by the small test tube and a large amount of air is blown by the large test tube are achieved, so that the effect of adjusting the air output according to the size of the test tube can be realized;
(2) generally, when a test tube is placed on a test tube rack, the bottom of the test tube can contact a plug head, the plug head can give pressure to the plug head, the plug head can move downwards relative to a movable rod, the plug head can contact a pressure sensor, a pressure signal is given to the pressure sensor, the pressure sensor can obtain the pressure signal, the pressure signal can reflect the weight change of the test tube, the weight change of the test tube is further analyzed, and whether the test tube needs to be dried continuously or not is judged;
(3) the sliding plate slides in the guide groove, the shape of the sliding plate is matched with the groove shape of the guide groove, so that a gap between the sliding plate and the guide groove can flexibly slide under the condition of ensuring that excessive air leakage is avoided, the control plug can retract into the supporting pipe due to the compression of the test tube, the control plug can move along the axis of the control plug under the guide of the guide groove, the control plug cannot deviate and further cannot be clamped, the inclined plane control groove can relatively move relative to the control panel, the distance between the control panel and the bottom surface of the inclined plane control groove is changed, when the control plug slides in the supporting pipe under the pressure of the test tube, the distance between the control panel and the bottom surface of the inclined plane control groove is gradually increased, the air volume blown out from the space between the control panel and the bottom surface of the inclined plane control groove is gradually increased, and the effect of adjusting the air volume according;
(4) when the controller received pressure sensor's pressure signal change, it is described that there is the test tube by on the test-tube rack, at this moment need open the solenoid valve, make the air in the plenum get into the stay tube, dry the test tube, advance dry in-process at the test tube, the weight of test tube can constantly alleviate, because moisture on the test tube constantly is evaporated, when the controller received pressure sensor's pressure signal no longer changes, it explains that the moisture on the test tube is originally totally evaporated, at this moment the test tube just need not dry again, so the solenoid valve need close
Drawings
FIG. 1 is a schematic structural diagram of the present invention
FIG. 2 is a schematic view of a control slot structure of the present invention
FIG. 3 is a schematic view of the structure of a guide groove of the present invention
FIG. 4 is a schematic view of a control plug structure of the present invention
FIG. 5 is a schematic view of the end face structure of the supporting tube of the present invention
FIG. 6 is a schematic view of a local structure of a T-shaped groove of the present invention
FIG. 7 is a schematic view of a partial structure of a T-shaped slider of the present invention
FIG. 8 is a schematic view of a T-shaped slider structure of the present invention
FIG. 9 is a schematic view of the local connection of the movable rod of the present invention
Fig. 10 is a schematic view of a connection sleeve structure of the present invention
FIG. 11 is a connection block diagram of a controller according to the present invention
In the figure: 1. the test tube rack comprises a test tube rack support body, 11 parts of a water collecting chamber, 12 parts of an air chamber, 13 parts of a water collecting opening, 14 parts of an air inlet, 2 parts of a support tube, 21 parts of a sliding plate, 22 parts of a control panel, 3 parts of a control plug, 31 parts of a plug body, 311 parts of a guide groove, 3111 parts of a T-shaped groove, 3112 parts of a mounting hole, 312 parts of a control groove, 3121 parts of an inclined plane control groove, 3122 parts of a guide control groove, 32 parts of a plug head, 4 parts of an electromagnetic valve, 5 parts of a pressure sensor, 6 parts of a movable rod, 61 parts of a mounting cover, 7 parts of an elastic body, 8 parts of a T-shaped sliding block, 81 parts of a mounting column, 82 parts of a mounting head.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and the detailed description.
Example (b): the utility model provides a telescopic link of control evaporation capacity, as shown in figure 1, the package is including shape of falling T test-tube rack support body 1 futilely, and windy room 12 and header 11 are gone up to the support frame, and it has if the air outlet to open on the windy room, is equipped with stay tube 2 on the support frame, and stay tube one end is connected with the air outlet, and the stay tube other end is provided with control stopper 3, and control stopper can be according to the weight adjustment of test tube from the amount of wind size that the control. As shown in fig. 4, the control plug 3 is provided with a plug body 31 and a plug head 32, as shown in fig. 2 and 3, the plug body is provided with a guide groove 311 for guiding and a control groove 312 for controlling air volume, one end of the plug body, which is far away from the support tube 2, is connected with a movable rod 6, and the movable rod is movably connected with the plug head; a pressure sensor 5 is arranged between the plug body and the plug head. As shown in fig. 9, the left side of the movable rod is a cylindrical rod, the right side of the movable rod is a spherical head, the spherical head is arranged in the mounting cover, as shown in fig. 10, the mounting cover is in threaded connection with the plug head, the mounting cover is embedded in the plug head, and the left side of the movable rod is in threaded connection with the plug body.
As shown in fig. 2, the control groove 312 includes a slope control groove 3121 and a guide control groove 3122, the slope control groove is connected with the guide control groove, and the slope control groove is disposed at an end of the control plug 3 away from the plug head 32.
As shown in fig. 5, the support tube 2 provided with the control plug 3 is provided at one end thereof with a slide plate 21 and a control plate 22 which are fitted into the guide groove 311, the slide plate sliding in the guide groove, and the control plate sliding in the slope control groove 3121.
As shown in fig. 6, a T-shaped groove 3111 is formed on a side wall of the guide groove 311, a mounting hole 3112 is formed in the T-shaped groove, a T-shaped slider 8 adapted to the T-shaped groove is arranged in the T-shaped groove, the T-shaped slider is fixedly connected with one end of the elastic body 7, and the other end of the elastic body is connected with an end face of the guide groove. The elastic body is a spring, and as shown in fig. 8, a mounting column 81 is arranged on the right side of the T-shaped sliding block, and a mounting head 82 is arranged on the right side of the mounting column. The T-shaped slider 8 is a magnetic body, as shown in FIG. 7, an elastic block 9 is embedded in the sliding plate, the elastic block is provided with a moving cavity 93 corresponding to the mounting column, the right side of the moving cavity is provided with a mounting cavity 92, the sliding plate 21 is provided with a magnetic sheet 91 corresponding to the T-shaped slider, the mounting head can enter the mounting cavity through the moving cavity, and the force of the mounting head entering the mounting cavity is smaller than the force of the mounting head exiting from the mounting cavity because the right side of the mounting head is a spherical surface and the left side of the mounting head is a plane surface.
An air inlet 14 is arranged on the air chamber 12, and a water collecting opening 13 is arranged on the water collecting chamber 11.
As shown in fig. 11, the utility model discloses still include controller 15, set up solenoid valve 4 in the stay tube 2, solenoid valve controlled end connection director solenoid valve control end, 5 signal output parts connection control pressure signal receiving terminals of pressure sensor. The controller can be a single chip microcomputer PIC17C 43.
The utility model discloses a use method is as follows:
s1: when the controller receives the pressure signal change of the pressure sensor, the controller controls the control electromagnetic valve to open;
s2: and when the controller receives that the pressure signal of the pressure sensor does not change any more, the controller controls the control electromagnetic valve to close.
Wind in the plenum blows into the stay tube through the air outlet, blow off from the control stopper, the control stopper can be according to the weight regulation air output of test tube, it blows a small amount of wind to reach little test tube, big test tube blows the effect of a large amount of wind, just so make can realize the effect of adjusting the air output according to the test tube size, the air input of some little test tubes is too big, little test tube just can be blown off, and unnecessary big air output can arouse the incident in the laboratory, if the air input is less, that big test tube just needs longer time to obtain the drying.
Generally when the test tube is put on the test-tube rack, the test tube bottom can contact the chock plug to give a pressure of chock plug, race the head and will contact pressure sensor for the downstream of movable rod, and give a pressure signal of pressure sensor, pressure sensor just can obtain pressure signal, and the weight change of test tube just can be reflected to this pressure signal.
The guide control groove is used when the control plug is installed.
The slide slides in the guide way, the shape of slide cooperatees with the cell type of guide way, make the gap between slide and the guide way can be under the condition of guaranteeing not too much air leakage, can slide in a flexible way again, because the oppression control stopper of test tube can retract to the stay tube in, under the guide of guide way, the control stopper can be followed the axle center motion of control stopper, can not deviate, and then can not block and die yet, and relative motion will take place for the control panel in the inclined plane control groove, thereby arouse the distance change of control panel and inclined plane control tank bottom surface, when the control stopper receives the pressure of test tube to slide in the stay tube, the distance grow gradually of control panel and inclined plane control tank bottom surface, the amount of wind that blows out from between control panel and inclined plane control tank bottom surface will increase gradually, this has just realized the effect of size adjustment air output according to test tube.
The T-shaped sliding block slides in the T-shaped groove, and the T-shaped sliding block is placed into the T-shaped groove through the mounting hole.
The T-shaped sliding block can be connected with the magnetic sheet through magnetic force, so that the control plug is connected with the supporting pipe, the control plug is kept at the position in the supporting pipe and cannot fall off, and the installation is convenient.
The air inlet 14 is connected with an air pump, the air pump pumps air into the air chamber, the pressure in the air chamber is greater than that outdoors, air can enter the supporting tube through the air outlet, the test tube is dried, and the position of the water collecting opening is the lowest point in the surrounding positions, so that water can conveniently flow into the water collecting chamber.
When the controller received pressure sensor's pressure signal change, it has the test tube to be by on the test-tube rack to explain, at this moment need open the solenoid valve, in making the air admission stay tube in the plenum, dry the test tube, advance dry in-process at the test tube, the weight of test tube can constantly alleviate, because moisture on the test tube constantly is evaporated, when the controller received pressure sensor's pressure signal no longer changes, explain the moisture on the test tube originally evaporates completely, at this moment the test tube just need not dry again, so the solenoid valve need close.

Claims (8)

1. A telescopic rod for controlling evaporation capacity is characterized by comprising a reversed T-shaped test tube rack support body (1), wherein an air chamber (12) and a water collecting chamber (11) are arranged on the support frame, a plurality of air outlets (121) are formed in the air chamber, support tubes (2) are arranged on two sides of the support frame, one end of each support tube is connected with the corresponding air outlet, a control plug (3) capable of adjusting the air quantity flowing out of the control plug according to the weight of a test tube is arranged at the other end of each support tube, a guide groove (311) with a guiding effect is formed in a plug body, a sliding plate (21) matched with the guide groove is arranged at one end of each support tube with the control plug, a T-shaped groove (3111) is formed in the side wall of the guide groove, a T-shaped sliding block (8) matched with the T-shaped sliding block is arranged in the, the right side of the mounting column is provided with a mounting head (82), an elastic block (9) is embedded in the sliding plate, the elastic block is provided with a traveling cavity (93) relative to the mounting column, the right side of the traveling cavity is provided with a mounting cavity (92), and the sliding plate is provided with a magnetic sheet (91) corresponding to the T-shaped sliding block.
2. The telescopic rod for controlling evaporation capacity according to claim 1, wherein the plug body (31) is provided with a control groove (312) for controlling air volume, and a pressure sensor (5) is arranged between the plug body and the plug head.
3. A telescopic rod for controlling evaporation according to claim 1 or 2, wherein the control groove (312) comprises a slope control groove (3121) and a guide control groove (3122), the slope control groove is connected with the guide control groove, and the slope control groove is provided at the end of the control plug (3) far from the plug head (32).
4. A telescopic rod for controlling evaporation according to claim 1 or 2, wherein the support tube (2) provided with the control plug (3) is provided at one end with a slide plate (21) and a control plate (22) adapted to the guide groove (311), the slide plate (21) sliding in the guide groove (311), and the control plate (22) sliding in the slope control groove (3121).
5. A telescopic rod for controlling evaporation according to claim 1 or 2, wherein the side wall of the guide slot (311) is provided with a T-shaped slot (3111), and the T-shaped slot is provided with a mounting hole (3112).
6. A telescopic rod for controlling evaporation according to claim 5, wherein the T-shaped slider (8) is a magnetic body, and a magnetic sheet corresponding to the T-shaped slider is provided on the sliding plate (21).
7. The telescopic rod for controlling evaporation capacity of claim 1, wherein the air chamber (12) is provided with an air inlet (14), and the water collecting chamber (11) is provided with a water collecting opening (13).
8. The telescopic rod for controlling the evaporation capacity according to claim 1 or 2, further comprising a controller (15), wherein the support tube (2) is internally provided with the electromagnetic valve (4), the controlled end of the electromagnetic valve is connected with the control end of the electromagnetic valve of the controller, and the signal output end of the pressure sensor (5) is connected with the signal receiving end of the control pressure.
CN202021286362.9U 2020-07-03 2020-07-03 Expansion link of control evaporation capacity Active CN213434585U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021286362.9U CN213434585U (en) 2020-07-03 2020-07-03 Expansion link of control evaporation capacity

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021286362.9U CN213434585U (en) 2020-07-03 2020-07-03 Expansion link of control evaporation capacity

Publications (1)

Publication Number Publication Date
CN213434585U true CN213434585U (en) 2021-06-15

Family

ID=76371899

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021286362.9U Active CN213434585U (en) 2020-07-03 2020-07-03 Expansion link of control evaporation capacity

Country Status (1)

Country Link
CN (1) CN213434585U (en)

Similar Documents

Publication Publication Date Title
CN112007709B (en) Test-tube rack of dynamic control evaporation capacity
CN112310441B (en) Temperature and humidity control system for fuel cell reaction gas
CN213434585U (en) Expansion link of control evaporation capacity
CN215337164U (en) Temperature and humidity adjusting device of refrigeration equipment
CN211861778U (en) Tobacco leaf drying device
CN111329097A (en) Tobacco leaf drying device and control method thereof
CN213348973U (en) Adjustable stable test-tube rack
CN112923541B (en) Control method of device capable of simultaneously realizing energy conservation and high-precision temperature and humidity control
CN108741791B (en) Intelligent temperature and humidity adjusting wine cabinet
CN206334681U (en) A kind of constant temperature humidity chamber air channel structure
CN205156967U (en) Adopt novel intelligent grain depot remote supervisory and control equipment of solar energy power supply
CN208399343U (en) A kind of step type conditioning low-temperature test equipment
CN116358958A (en) A quick soil drying system for soil detection
CN2331943Y (en) Shell-and-tube heat exchanger with area adjustable device
CN202928318U (en) Air quantity control device for drying box
CN205935056U (en) Be applied to circulating water system's exhaust sewage collecting device who has a voltage stabilizing function
CN203980520U (en) A kind of constant temperature and humidity device
CN204852912U (en) Circulating cryogenic liquids gasification equipment
CN208012006U (en) A kind of dew-point temperature regulating device of air-conditioning
CN216977024U (en) Constant temperature and humidity device
CN220289147U (en) Positive pressure constant temperature type soil drying device for soil detection
CN219474883U (en) Bellows gas tightness test equipment
CN217209920U (en) Vertical high-efficient evaporimeter of built-in throttle mechanism
CN109442789A (en) Heat source tower heat pump combined air-conditioning system
CN220289146U (en) A big column type drying device in batches for soil detection

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
CP03 Change of name, title or address
CP03 Change of name, title or address

Address after: No. 8888, Jinxing street, Xinchang County, Shaoxing City, Zhejiang Province

Patentee after: Zhejiang Cohen Experimental Equipment Co.,Ltd.

Address before: No. 8888, Jinxing street, Xinchang County, Shaoxing City, Zhejiang Province

Patentee before: Zhejiang Cohen Experimental Equipment Co.,Ltd.