Heating oxygen therapy device for microbial cultivation experimentTechnical Field
The invention relates to the field of microbial culture, in particular to a heating oxygen delivery device for a microbial culture experiment.
Background
The microbial culture refers to the rapid growth and propagation of microorganisms by means of artificially prepared culture media and artificially created culture conditions, and is called microbial culture. The microbial culture can be divided into pure culture and mixed culture, wherein the pure culture refers to the culture and utilization of a single purified strain; the latter means that microorganisms in mixed strains or natural samples (such as soil) are cultured, and then the diversity and the quantity of the microorganisms in the soil can be estimated to a certain extent according to the types and the quantity of the microorganisms growing on the culture medium.
In the prior art, the heating oxygen delivery device in the microbial culture experiment has insufficient functions, does not have an oxygen heating function when supplying oxygen, and needs to be heated subsequently, so that the functionality of the heating oxygen delivery device is not high; and the oxygen hose on the experimental heating oxygen therapy device of current microbial cultivation uses and does not have the rolling function, twines easily when the oxygen hose uses, leads to it to use inconvenient.
Disclosure of Invention
The invention aims to provide a heating oxygen delivery device for a microorganism culture experiment, which aims to solve the problems in the background technology.
In order to achieve the purpose, the invention provides the following technical scheme:
a heating oxygen therapy device for microbial cultivation experiments comprises a tank body and a protective cover, wherein a frame is installed at the bottom end of the tank body, a plurality of moving wheels are installed at the lower end of the frame, an installation shaft is arranged at the upper end of each moving wheel, installation rods are installed at two ends of the tank body, installation seats are installed at the lower ends of the two installation rods, limiting rods are installed at the middle parts of the two installation rods, arc-shaped rings are installed at the middle parts of the upper parts of the two installation rods, handles are installed at the top ends of the two installation rods, winding discs are installed on two end walls of the upper part of the tank body, oxygen pipes are wound on the two winding discs, inserting connectors are installed at the lower ends of the oxygen pipes, heaters are communicated with the upper ends of the two oxygen pipes, installation blocks are arranged on the two heaters, purifiers are installed on the outer sides of the two heaters, and connectors are arranged at the upper ends of the two purifiers, two the connecting piece is all installed to the connector upper end, two the pipe is all passed through in connecting piece the inner, two the fixing base is all installed at the pipe middle part, two the manometer is all installed to the fixing base upper end, two sealed axle is installed to the pipe connection department, the ooff valve is installed to sealed epaxial end, the protection casing is installed in the ooff valve outside.
As a further scheme of the invention: the frame passes through fixing bolt to be installed at jar body lower extreme, and is a plurality of remove the wheel and all install at the frame lower extreme through the installation axle, during the use, jar body accessible frame and the cooperation that removes the wheel shift position at will, convenient and practical.
As a still further scheme of the invention: two the installation pole is all installed in jar body lower part both sides through the mount pad, just the installation pole passes through mount pad and jar body swing joint, and during the use, the manual installation pole can be with jar body pull line.
As a still further scheme of the invention: the arc ring is made of stainless steel, the size of an inner opening of the arc ring is matched with the size of the tank body, and the mounting rod can be vertically stored after the position of the tank body is limited, so that the occupied space of the mounting rod is reduced.
As a still further scheme of the invention: two the pipe all communicates with jar internal portion through sealed axle, and two the manometer all communicates through fixing base and pipe are inside, during the use, shows two inside oxygen flow pressure of pipe through two manometers, and the suggestion staff of being convenient for knows the oxygen surplus.
As a still further scheme of the invention: two the clarifier all communicates with the pipe through the connecting piece, and during the use, oxygen passes through the pipe and gets into the clarifier inside and purifies the back and leads it to send through the oxygen hose.
As a still further scheme of the invention: the heater is installed on the clarifier through the installation piece, and oxygen hose and the inside intercommunication of heater, and after oxygen purified through the clarifier, get into the inside heating that heats of heater, and the rethread oxygen hose is with its leading-in microorganism incubator in use.
As a still further scheme of the invention: the winding disc is installed at two end walls of the tank body through the rotating shaft, the winding disc is rotatably connected with the two end walls of the tank body through the rotating shaft, and when the winding disc is used, the winding disc is used for winding the oxygen pipe, so that the oxygen pipe can be prevented from being wound when in use, and the maintenance of the oxygen pipe is facilitated.
Compared with the prior art, the invention has the beneficial effects that:
according to the invention, the heater is arranged on the purifier through the mounting block, the oxygen pipe is communicated with the interior of the heater, when oxygen is purified by the purifier, the oxygen enters the interior of the heater to be heated, and then is guided into the microorganism incubator through the oxygen pipe for use, so that subsequent heating is not required, and the functionality of the oxygen is effectively improved; and the rolling disc is installed at two end walls of the tank body through the rotating shaft, and the rolling disc is rotatably connected with the two end walls of the tank body through the rotating shaft, so that when the oxygen hose winding device is used, the oxygen hose can be prevented from being wound during use, the oxygen hose can be maintained conveniently, the use is convenient, and the practicability and the functionality of the oxygen hose winding device can be improved.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view showing the construction of an on-off valve according to the present invention;
FIG. 3 is a schematic view showing the structure of the purifier according to the present invention;
FIG. 4 is a schematic view of the structure of the frame of the present invention
FIG. 5 is an enlarged view of the invention at B in FIG. 2.
In the figure: 1. a tank body; 2. a frame; 21. a moving wheel; 22. installing a shaft; 3. mounting a rod; 31. a mounting seat; 32. an arc-shaped ring; 33. a handle; 34. a limiting rod; 4. a winding disc; 5. an oxygen tube; 51. a plug-in connector; 6. a purifier; 61. a connecting member; 62. a connector; 7. a conduit; 8. a heater; 81. mounting blocks; 9. an on-off valve; 91. a seal shaft; 92. a pressure gauge; 94. a fixed seat; 10. a shield.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1 to 5, in the embodiment of the invention, a heating oxygen therapy device for a microorganism culture experiment comprises atank body 1, aframe 2 is installed at the bottom end of thetank body 1, a plurality of movingwheels 21 are installed at the lower end of theframe 2, aninstallation shaft 22 is arranged at the upper end of each movingwheel 21,installation rods 3 are installed at two ends of thetank body 1,installation seats 31 are installed at the lower ends of the twoinstallation rods 3,limit rods 34 are installed at the middle parts of the twoinstallation rods 3, arc-shaped rings 32 are installed at the middle parts above the twoinstallation rods 3, handles 33 are installed at the top ends of the twoinstallation rods 3, winding disks 4 are installed at two end walls at the upper part of thetank body 1,oxygen pipes 5 are wound on the two winding disks 4, plug-inconnectors 51 are installed at the lower ends of the plurality ofoxygen pipes 5,heaters 8 are communicated with the upper ends of the twooxygen pipes 5,installation blocks 81 are installed on the twoheaters 8,purifiers 6 are installed outside the twoheaters 8, two 6 upper ends of clarifier all are equipped withconnector 62, and connectingpiece 61 is all installed to two 62 upper ends of connector, andpipe 7 has all been communicated in two connectingpiece 61 the inner, andfixing base 94 is all installed at two 7 middle parts of pipe, andmanometer 92 is all installed to twofixing base 94 upper ends, and sealedaxle 91 is installed to two 7 junctions of pipe, andooff valve 9 is installed to sealedaxle 91 upper end, andprotection casing 10 is installed in theooff valve 9 outside.
Wherein,frame 2 passes through fixing bolt and installs atjar body 1 lower extreme, and a plurality ofremoval wheel 21 all install atframe 2 lower extreme throughinstallation axle 22, and during the use,jar body 1accessible frame 2 and the random shift position of the cooperation of removingwheel 21, convenient and practical.
Twoinstallation poles 3 are all installed injar body 1 lower part both sides throughmount pad 31, andinstallation pole 3 passes throughmount pad 31 andjar body 1 swing joint, and during the use,manual installation pole 3 can be withjar body 1 pull line.
Thearc ring 32 is stainless steel, and the size of the inner opening of thearc ring 32 is matched with the size of thetank body 1, and after thetank body 1 is limited in position, themounting rod 3 can be vertically stored, so that the occupied space is reduced.
Twopipes 7 all communicate with thejar body 1 inside through sealedaxle 91, and twomanometer 92 all communicate withpipe 7 inside throughfixing base 94, during the use, show twopipe 7 inside oxygen flow pressure through twomanometer 92, are convenient for indicate the staff and know the oxygen surplus.
Bothpurifiers 6 are all communicated with theconduit 7 through the connectingpiece 61, and when in use, oxygen enters the interior of thepurifier 6 through theconduit 7 for purification and then is guided through theoxygen pipe 5.
Theheater 8 is installed on thepurifier 6 through theinstallation block 81, theoxygen pipe 5 is communicated with the inside of theheater 8, when the oxygen is purified by thepurifier 6, the oxygen enters the inside of theheater 8 to be heated, and then is guided into the microorganism incubator through theoxygen pipe 5 for use.
The winding disc 4 is installed on the two end walls of thetank body 1 through a rotating shaft, the winding disc 4 is rotatably connected with the two end walls of thetank body 1 through the rotating shaft, during use, the winding disc 4 is used for winding theoxygen tube 5, winding of theoxygen tube 5 during use can be avoided, and maintenance of theoxygen tube 5 is facilitated.
The working principle of the invention is as follows: theframe 2 is arranged at the lower end of thetank body 1 through a fixing bolt, and a plurality of movingwheels 21 are all arranged at the lower end of theframe 2 through aninstallation shaft 22, when in use, thetank body 1 can be moved randomly through the matching of theframe 2 and the movingwheels 21, the tank is convenient and practical, twoinstallation rods 3 are all arranged at two sides of the lower part of thetank body 1 throughinstallation seats 31, and theinstallation rods 3 are movably connected with thetank body 1 through theinstallation seats 31, when in use, thetank body 1 can be pulled by manually installing therods 3, the arc-shaped ring 32 is made of stainless steel, the size of the inner opening of the arc-shaped ring 32 is matched with the size of thetank body 1, after the position of thetank body 1 is limited, theinstallation rods 3 can be vertically accommodated to reduce the occupied space, twoguide pipes 7 are both communicated with the inside of thetank body 1 through asealing shaft 91, and twopressure meters 92 are both communicated with the inside of theguide pipes 7 through afixing seat 94, when in use, the oxygen flowing pressure inside the twoguide pipes 7 is displayed through the twopressure meters 92, be convenient for indicate the staff and know the oxygen surplus, twoclarifier 6 all communicate withpipe 7 through connectingpiece 61, during the use, oxygen gets into 6 inside purification backs of clarifier throughpipe 7 and leads it and send,heater 8 is installed onclarifier 6 throughinstallation piece 81, andoxygen pipe 5 and the inside intercommunication ofheater 8, after oxygen purifies through 6 purifiers, get into 8 inside heating of heater, use in rethreadoxygen pipe 5 is with its leading-in microorganism incubator, wind-up dish 4 is installed at 1 both ends wall of jar body through the pivot, and wind-up dish 4 rotates through pivot and 1 both ends wall of jar body to be connected, during the use, wind-up dish 4 is used for wind-upoxygen pipe 5, can avoid winding whenoxygen pipe 5 uses, be favorable to the maintenance tooxygen pipe 5.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered to be within the technical scope of the present invention, and the technical solutions and the inventive concepts thereof according to the present invention should be equivalent or changed within the scope of the present invention.