[go: up one dir, main page]

CN203498511U - Sheath gas heatable type focusing electric-spinning direct-writing nozzle device - Google Patents

Sheath gas heatable type focusing electric-spinning direct-writing nozzle device Download PDF

Info

Publication number
CN203498511U
CN203498511U CN201320642150.3U CN201320642150U CN203498511U CN 203498511 U CN203498511 U CN 203498511U CN 201320642150 U CN201320642150 U CN 201320642150U CN 203498511 U CN203498511 U CN 203498511U
Authority
CN
China
Prior art keywords
air intake
intake box
liquid inlet
hole
nozzle seat
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.)
Expired - Fee Related
Application number
CN201320642150.3U
Other languages
Chinese (zh)
Inventor
郑高峰
何广奇
黄伟伟
王伟
庄明凤
余兆杰
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.)
Xiamen University
Original Assignee
Xiamen University
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 Xiamen University filed Critical Xiamen University
Priority to CN201320642150.3U priority Critical patent/CN203498511U/en
Application granted granted Critical
Publication of CN203498511U publication Critical patent/CN203498511U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Landscapes

  • Spinning Methods And Devices For Manufacturing Artificial Fibers (AREA)

Abstract

一种鞘层气体可加热式聚焦电纺直写喷头装置,涉及一种电纺直写喷印装置。设有进液喷头座、进气箱体、接线柱、电热元件、继电器、数控温度单元、测温元件;进液喷头座与进气箱体的中心连接,进液喷头座固于进气箱体上端面,进液喷头座下部伸入进气箱体的中心通孔中,接线柱设于进液喷头座上,进液喷头座设径向进液孔,进液喷头座下端设有轴向喷嘴部;进气箱体设有至少2个轴向连接通孔,进气箱体设有径向进气口,进气箱体下端设有轴向出气孔,进气箱体设有支撑架,进气箱体设有2个轴向中空连线孔;进气孔内设有电热元件,进气孔内表面设有测温元件;测温元件与数控温度单元连接,数控温度单元再与继电器相连,继电器连接电热元件。

Figure 201320642150

A sheath gas heatable focusing electrospinning direct-writing nozzle device relates to an electrospinning direct-writing jet printing device. It is equipped with a liquid inlet nozzle seat, an air intake box, a terminal, an electric heating element, a relay, a numerical control temperature unit, and a temperature measuring element; the liquid inlet nozzle seat is connected to the center of the air intake box, and the liquid inlet nozzle seat is fixed on the air intake box The upper end surface of the body, the lower part of the inlet nozzle seat extends into the central through hole of the air intake box, the terminal post is set on the liquid inlet nozzle seat, the liquid inlet nozzle seat is provided with a radial inlet hole, and the lower end of the liquid inlet nozzle seat is provided with a shaft To the nozzle part; the air intake box is provided with at least 2 axial connection through holes, the air intake box is provided with radial air inlets, the lower end of the air intake box is provided with axial air outlet holes, and the air intake box is provided with supports The air intake box is provided with two axial hollow connection holes; the air intake hole is equipped with an electric heating element, and the inner surface of the air intake hole is equipped with a temperature measuring element; the temperature measuring element is connected with the numerical control temperature unit, and the numerical control temperature unit is then It is connected with the relay, and the relay is connected with the heating element.

Figure 201320642150

Description

A kind of sheath layer gas can focus on electrospinning direct-writing nozzle device by heating type
Technical field
The utility model relates to a kind of electrospinning direct-writing jet printing appts, and especially relating to a kind of sheath layer gas can focus on electrospinning direct-writing nozzle device by heating type.
Background technology
Electrospinning direct-writing based on electrohydraulic dynamic coupling is to utilize External Electrical Field in viscoelastic solution, and under the effect of electric field force, viscoelastic solution distortion obtains taylor cone; When electric field force continues to strengthen over solution surface tension, just there is jet to penetrate from taylor cone point; Utilize stability line jet to carry out the orderly spray printing preparation of micro-nano structure.Electrospinning direct-writing has overcome traditional electrical liquid coupling spray printing process jet spiral, crooked unsteady motion, and that utilizes that stability line jet carries out orderly micro-nano structure directly writes preparation.Directly write jet and carry electric charge from the ejaculation of taylor cone point, be subject to electrical charge rejection power, the effect of non-uniform electric field power will produce whip moving unstable, thereby affected the positioning precision of directly writing micro-nano structure.
Sheath layer gas focusing is that jet spray printing is controlled the new development trend of research, and starts to obtain application.Merging gas focusing and electric liquid coupling spray printing has become a kind of new mode of charged jet spray printing, has attracted researcher's extensive concern.Electrospinning direct-writing technology is introduced gas focusing, mainly utilize under Near Field in laminar condition around gas, reduce the relative velocity of spray printing process spinning jet and space medium, promote the stability that jet moves; The introducing of sheath gas simultaneously, the tensile force of gas flowfield has superposeed on the basis of electric field force, reduced and maintained the needed voltage magnitude that applies of jet injection, reduced the interference of jet destabilizing factor, for the accurate spray printing of jet, controlled a kind of new technological approaches is provided.
In order to carry out experimental study, make designing and developing of sheath layer gas focusing electrospinning direct-writing nozzle become a study hotspot, different gas focusing electrospinning nozzle structures has been proposed in Chinese patent 201210037687.7, but all parts of shower nozzle described in patent is still independent dispersion, gas liquid outlet face relative position is fixed, solution channel is capillary, internal diameter is non-adjustable, can not regulator solution passage and the axiality of aperture, be not easy to simplification and integrated the controlling of shower nozzle.The structure proposing in Chinese patent 201310020810.9, in use procedure, need all parts to carry out dismounting frequently, adjustment, although can adjust the axiality of solution channel and aperture, but centering is bad and adjust loaded down with trivial details, sheath temperature degree is uncontrollable, can not effectively control diameter and the morphosis of solvent evaporates and fiber.
Summary of the invention
The purpose of this utility model be to provide can make sheath layer around gas uniform be ejected in surrounding air, promote the stability of jet motion, can quick centring and a kind of sheath layer gas of effectively controlling solvent evaporates can focus on electrospinning direct-writing nozzle device by heating type.
The utility model is provided with feed liquor nozzle boss, air inlet casing, binding post, heating, relay, numerical control temperature unit, temperature element; Described feed liquor nozzle boss and air inlet casing are equipped with central through hole, and coaxially arrange; Feed liquor nozzle boss is threaded with the central through hole of air inlet casing, feed liquor nozzle boss is fixed in the upper end of air inlet casing, feed liquor nozzle boss bottom is stretched in the central through hole of air inlet casing, binding post is located on feed liquor nozzle boss, feed liquor nozzle boss is provided with radially inlet opening, and the lower end of feed liquor nozzle boss is provided with axial spray nozzle part; Air inlet casing is provided with at least 2 for the axial connecting through hole with outside installation, air inlet casing is provided with radial air inlet mouth, the lower end of air inlet casing is provided with Axial-running Out pore, air inlet casing is provided with the bracing frame for fixed number controlling temperature unit and relay, air inlet casing is provided with 2 axial hollow line holes, for the conductor part length being connected with heating with temperature element, wears; In air admission hole, be provided with heating, air admission hole inner surface is provided with temperature element; Temperature element is connected with numerical control temperature unit, and numerical control temperature unit is connected with relay again, and relay connects heating, forms temperature control unit.
The best outer surface of described spray nozzle part is provided with the tapering of 10 °~30 °.
The endoporus of the air outlet of described air inlet casing can be circular hole.
Described spray nozzle part and air outlet adopt conical surface centering, when the circular hole of the complete dieback air outlet of spray nozzle part outer surface, keep centering, during use, need the slight counter screw thread of backing out feed liquor nozzle boss make air outlet unimpeded, can realize quick centring.
Described temperature control unit comprises heating, temperature element, numerical control temperature unit, relay.Attemperating unit utilizes heating to do heater, thereby temperature element is delivered to the temperature signal on air admission hole inner surface, numerical control temperature unit is analyzed and carry make-and-break signal to control the duty of heating to relay.
When the utility model is used, binding post is connected with power supply, inlet opening connects external liquid supplying device, and air admission hole connects outside feeder, by outside collecting board and power cathode ground connection.And by collecting board be positioned over nozzle under.The solution tank of the liquid feed device that described inlet opening connects is equipped with Electrospun solution, the feeding rate of adjustable liquid feed device, and the feeder that described air admission hole connects is used for regulating admission pressure.The utility model can be realized the integrated fixing of sheath gas focusing electrospinning direct-writing nozzle and control, can heat sheath gas by temperature control unit and effectively control solvent evaporates, thereby use the good sheath layer that makes of the conical surface and circular hole centering around being ejected in surrounding air of gas uniform, promote the stability that jet moves.The unsteady motion of sheath layer air-flow constraint electrospinning direct-writing jet is stablized in the utility model utilization, utilize the effect of contraction of sheath layer gas to improve jet stability, at spinning Around Jet, form stable laminar flow structure, lower the relative velocity of jet and surrounding medium, suppressed the generation of jet unsteady motion.Sheath layer air-flow has stretching action to spinning jet, reduced the needed starting resistor of electrospinning direct-writing and injection and maintained voltage, reduced the interference that high voltage, large charge density causes and improved the stability that jet sprays; And the refinement that slightly jet has been accelerated in the stretching of layer air-flow has improved ejection efficiency.Meanwhile, the temperature of sheath layer air-flow is controlled, thereby can control diameter and morphosis and the mechanical property thereof of the volatilization of solution solvent and the refinement of jet control fiber.
Accompanying drawing explanation
Fig. 1 is the structural representation of the utility model embodiment.
Fig. 2 is the spray nozzle part of the utility model embodiment and the structural representation of the complete dieback centering of air outlet.
Fig. 3 is the anti-structural representation being screwed into after liquid nozzle boss makes air outlet unimpeded of the utility model embodiment.
In Fig. 1~3, be respectively labeled as: 1, feed liquor nozzle boss; 2, air inlet casing; 3, connecting through hole; 4, binding post; 5, inlet opening; 6, air admission hole; 7, heating; 8, relay; 9, bracing frame; 10, numerical control temperature unit; 11, line hole; 12, temperature element; 13, spray nozzle part; 14, air outlet.
The specific embodiment
Referring to Fig. 1~3, the utility model embodiment comprises feed liquor nozzle boss 1, air inlet casing 2, binding post 4, heating 7, relay 8, numerical control temperature unit 10, temperature element 12.Feed liquor nozzle boss 1 and air inlet casing 2 are equipped with central through hole, and coaxially arrange; Feed liquor nozzle boss 1 is threaded with the central through hole of air inlet casing 2, feed liquor nozzle boss 1 is fixed in the upper end of air inlet casing 2, feed liquor nozzle boss 1 bottom is stretched in the central through hole of air inlet casing 2, binding post 4 is located on feed liquor nozzle boss 1, feed liquor nozzle boss 1 is provided with radially inlet opening 5, and the lower end of feed liquor nozzle boss 1 is provided with axial spray nozzle part 13; Air inlet casing 2 is provided with at least 2 for the axial connecting through hole 3 with outside installation, air inlet casing 2 is provided with radial air inlet mouth 6, the lower end of air inlet casing 2 is provided with Axial-running Out pore 14, air inlet casing 2 is provided with the bracing frame 9 for fixed number controlling temperature unit 10 and relay 8, air inlet casing 2 is provided with 2 axial hollow line holes 11, for the conductor part length being connected with heating 7 with temperature element 12, wears; In air admission hole 6, be provided with heating 7, air admission hole 6 inner surfaces are provided with temperature element 12; Temperature element 12 is connected with numerical control temperature unit 10, and numerical control temperature unit 10 is connected with relay 8 again, and relay 8 connects heating 7, forms temperature control unit.Described spray nozzle part 13 adopts conical surface centering with air outlet 14, when the circular hole of the complete dieback air outlet 14 of spray nozzle part 13 outer surface, keep centering, during use, need the slightly anti-screw thread of backing out to make air outlet 14 unimpeded, thereby obtain more uniform gas flowfield to keep the stability of jet and the accuracy of spray printing location.
The operation principle of the utility model embodiment is as follows:
When the utility model is used, binding post is connected with power supply (not drawing in the drawings), inlet opening connects external liquid supplying device (not drawing in the drawings), and air admission hole connects outside feeder (not drawing in the drawings), by outside collecting board (not drawing in the drawings) and power cathode ground connection.And by collecting board be positioned over nozzle under.The solution tank of the liquid feed device that described inlet opening connects is equipped with Electrospun solution, the feeding rate of adjustable liquid feed device, and the feeder that described air admission hole connects is used for regulating admission pressure.
Feed liquor nozzle boss 1 is threaded connection with air inlet casing 2; Spray nozzle part 13 adopts conical surface centering with air outlet 14, and during use, after first complete dieback air outlet, slightly the anti-screw thread of backing out makes air outlet 14 unimpeded, thereby obtains more uniform gas flowfield to keep the stability of jet and the accuracy of spray printing location; Through hole 3 is for fixing whole ejecting device; Binding post 4 is threaded fixing with feed liquor nozzle boss 1, as extraction electrode; Inlet opening 5 connects external liquid supplying device, liquid supply speed while regulating experiment by liquid feed device, and air admission hole 6 connects outside feeder, gas pressure while regulating experiment by feeder; Heating 7 is placed in air admission hole 6, temperature element 12 is placed in air admission hole 6 inner surfaces, temperature element 12 is connected with numerical control temperature unit 10 wires by hollow line hole 11, numerical control temperature unit 10 is connected with relay 8 again, relay 8 connects heating 7, form temperature control unit, sheath temperature degree while regulating experiment by temperature control unit.
The utility model adopts conical surface centering to adjust the axiality of shower nozzle by spray nozzle part 13 and air outlet 14, liquid supply speed when the outside liquid feed device connecting of inlet opening 5 regulates electrospinning, air feed gas pressure when the feeder that air admission hole 6 connects regulates experiment, sheath temperature degree when the temperature control unit that the heating 7 in air admission hole 6 forms with the outside controlling temperature unit being connected 10 of temperature element 12 and relay 8 regulates experiment, the voltage when high voltage source that binding post 8 connects regulates electrospinning.

Claims (3)

1.一种鞘层气体可加热式聚焦电纺直写喷头装置,其特征在于设有进液喷头座、进气箱体、接线柱、电热元件、继电器、数控温度单元、测温元件;所述进液喷头座和进气箱体均设有中心通孔,且同轴设置;进液喷头座与进气箱体的中心通孔螺纹连接,进液喷头座固于进气箱体的上端面,进液喷头座下部伸入进气箱体的中心通孔中,接线柱设于进液喷头座上,进液喷头座设有径向进液孔,进液喷头座的下端设有轴向喷嘴部;进气箱体设有至少2个用于与外部安装的轴向连接通孔,进气箱体设有径向进气口,进气箱体的下端设有轴向出气孔,进气箱体设有用于固定数控温度单元和继电器的支撑架,进气箱体设有2个轴向中空连线孔,以供与测温元件和电热元件连接的导线部分长度穿设;进气孔内设有电热元件,进气孔内表面设有测温元件;测温元件与数控温度单元连接,数控温度单元再与继电器相连,继电器连接电热元件,构成温度控制部件。1. A sheath gas heatable focusing electrospinning direct writing nozzle device, characterized in that it is provided with a liquid inlet nozzle seat, an air intake box, a terminal post, an electric heating element, a relay, a numerically controlled temperature unit, and a temperature measuring element; Both the liquid inlet nozzle seat and the air intake box body are provided with a central through hole, and are coaxially arranged; the liquid inlet nozzle seat is threadedly connected with the central through hole of the air intake box body, and the liquid inlet nozzle seat is fixed on the upper surface of the air intake box body. On the end face, the lower part of the liquid inlet nozzle seat extends into the central through hole of the air intake box, the terminal is arranged on the liquid inlet nozzle seat, the liquid inlet nozzle seat is provided with a radial liquid inlet hole, and the lower end of the liquid inlet nozzle seat is provided with a shaft To the nozzle part; the air intake box is provided with at least 2 axial connection through holes for external installation, the air intake box is provided with a radial air inlet, and the lower end of the air intake box is provided with an axial air outlet. The air intake box is equipped with a support frame for fixing the numerical control temperature unit and the relay, and the air intake box is provided with two axial hollow connection holes for the length of the wire connected to the temperature measuring element and the heating element to pass through; the air intake An electric heating element is arranged in the hole, and a temperature measuring element is arranged on the inner surface of the air intake hole; the temperature measuring element is connected with a numerical control temperature unit, and the numerical control temperature unit is connected with a relay, and the relay is connected with the electric heating element to form a temperature control component. 2.如权利要求1所述一种鞘层气体可加热式聚焦电纺直写喷头装置,其特征在于所述喷嘴部外表面设有10°~30°的锥度。2. A sheath gas-heatable focusing electrospinning direct-writing nozzle device as claimed in claim 1, characterized in that the outer surface of the nozzle part is provided with a taper of 10°-30°. 3.如权利要求1所述一种鞘层气体可加热式聚焦电纺直写喷头装置,其特征在于所述进气箱体的出气孔的内孔为圆孔。3. A sheath gas heatable focusing electrospinning direct writing nozzle device as claimed in claim 1, characterized in that the inner hole of the air outlet hole of the air inlet box is a round hole.
CN201320642150.3U 2013-10-17 2013-10-17 Sheath gas heatable type focusing electric-spinning direct-writing nozzle device Expired - Fee Related CN203498511U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320642150.3U CN203498511U (en) 2013-10-17 2013-10-17 Sheath gas heatable type focusing electric-spinning direct-writing nozzle device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320642150.3U CN203498511U (en) 2013-10-17 2013-10-17 Sheath gas heatable type focusing electric-spinning direct-writing nozzle device

Publications (1)

Publication Number Publication Date
CN203498511U true CN203498511U (en) 2014-03-26

Family

ID=50329506

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201320642150.3U Expired - Fee Related CN203498511U (en) 2013-10-17 2013-10-17 Sheath gas heatable type focusing electric-spinning direct-writing nozzle device

Country Status (1)

Country Link
CN (1) CN203498511U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103484952A (en) * 2013-10-17 2014-01-01 厦门大学 Sheath gas heatable focus electrospinning direct-writing nozzle device
CN107345318A (en) * 2017-08-29 2017-11-14 中鸿纳米纤维技术丹阳有限公司 A kind of shower head mechanism for the production of dissolvant type nanofiber

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103484952A (en) * 2013-10-17 2014-01-01 厦门大学 Sheath gas heatable focus electrospinning direct-writing nozzle device
CN103484952B (en) * 2013-10-17 2016-05-04 厦门大学 Sheath layer gas can focus on electrospinning direct-writing nozzle device by heated type
CN107345318A (en) * 2017-08-29 2017-11-14 中鸿纳米纤维技术丹阳有限公司 A kind of shower head mechanism for the production of dissolvant type nanofiber
CN107345318B (en) * 2017-08-29 2023-04-28 湖北省鄂龙工贸有限公司 A nozzle mechanism for solvent-based nanofiber production

Similar Documents

Publication Publication Date Title
CN103484952A (en) Sheath gas heatable focus electrospinning direct-writing nozzle device
CN103147138B (en) An electrospinning direct-writing jet printing device with enhanced focusing function by means of double-layer gas
CN103014885B (en) A kind of electrospinning direct-writing nozzle device of integrated stable sheath layer gas confined focusing function
CN103911678B (en) A kind of coaxial nozzle for electrofluid spray printing
CN102275386B (en) An Electrohydrodynamic Jet Printing Coaxial Nozzle and Its Application
CN103628150A (en) Multi-spray-head electrostatic spinning device
CN103231516B (en) Electro-hydrodynamic coupling self-adapting spray head with ring electrode
CN203498511U (en) Sheath gas heatable type focusing electric-spinning direct-writing nozzle device
Xu et al. Pulse gas-assisted multi-needle electrospinning of nanofibers
CN109371479A (en) A solution melt co-spinning multi-nozzle electrospinning integrated device
CN105113028A (en) Portable handheld spinning device
CN104611775B (en) A kind of valve-type micro-fluidic bi-component electrostatic spinning nozzle
CN103060932A (en) Drum electrostatic spinning device
CN106917147A (en) A kind of electrostatic spinning apparatus
CN211194944U (en) A 3D printer wire fast drying device
CN203639618U (en) Multi-micropore electrostatic spinning spinneret
CN104928768A (en) Internal and external circular air assisted electrospinning nozzle unit
CN107201559A (en) A kind of pearl head nozzle electrospinning device
CN103361746B (en) Molten electrostatic spinning device
CN205856663U (en) Electrostatic spinning nozzle device
CN109267159A (en) Electrospinning nozzle capable of rapid multi-needle positioning
CN203625534U (en) Electrostatic spinning device capable of adjusting viscosity of polymer solution
US20150158230A1 (en) Simple device for economically producing electrospun fibers at moderate rates
CN104831371A (en) Multitube bubble spinning device
CN103556238B (en) The electrostatic spinning apparatus of adjustable polymer solution viscosity

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140326

Termination date: 20161017

CF01 Termination of patent right due to non-payment of annual fee