CN205909942U - Thermocouple temperature probe afterbody draws line knot to be constructed - Google Patents

Thermocouple temperature probe afterbody draws line knot to be constructed Download PDF

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Publication number
CN205909942U
CN205909942U CN201620730872.8U CN201620730872U CN205909942U CN 205909942 U CN205909942 U CN 205909942U CN 201620730872 U CN201620730872 U CN 201620730872U CN 205909942 U CN205909942 U CN 205909942U
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CN
China
Prior art keywords
shrink tube
temperature probe
glass fiber
pipe
sleeve pipe
Prior art date
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Active
Application number
CN201620730872.8U
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Chinese (zh)
Inventor
耿欣
王晓良
刘忠奎
袁帅
刘岩
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.)
Shenyang Hangfa Technology Industrial Co ltd
AECC Shenyang Engine Research Institute
Original Assignee
AVIC Shenyang Engine Design and Research Institute
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Priority to CN201620730872.8U priority Critical patent/CN205909942U/en
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Publication of CN205909942U publication Critical patent/CN205909942U/en
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Abstract

The utility model relates to a thermocouple temperature probe afterbody draws line knot to be constructed, thermocouple temperature probe afterbody draws line knot to be constructed includes nut, spring hose, prevents the ripples cover, sequence number hoop, first thin pyrocondensation pipe, the thin pyrocondensation pipe of second, self -adhesion sticky tape, a glass silk braid pipe, the 2nd glass silk braid pipe and pyrocondensation pipe. The utility model discloses a thermocouple temperature probe afterbody draws line knot to be constructed wiring with maintain conveniently, the fault rate is showing and is reducing, the ability of strengthened the anti high temperature of probe afterbody, wearing and tearing and buckling, can show lands reduces the afterbody lead wire and damages the probability, between section end tied in a bundle section and wiring end, the thermo wires share split is drawn forth and is convenient for work a telephone switchboard in a flexible way and maintain, improvement assembly efficiency has great economy and social value.

Description

A kind of electric thermo-couple temperature probe tails pin configuration
Technical field
This utility model belongs to Thermocouples Technology field, more particularly, to a kind of electric thermo-couple temperature probe tails pin configuration.
Background technology
In existing thermocouple, temperature probe tail leads adopt thermo wires cladding shielding line structure, are working in hot operation During environment, particularly in aircraft industry, probe tails lead is easily subject to high temperature and effect of attrition damaged, exposes thermo wires and causes short circuit. Meanwhile, thermo wires, impact assembling quality are also easily snapped off when bending tail leads.For conventional thermocouples temperature probe product, temperature Degree measure-point amount is fixed, and probe tails terminals adopt electric connector.
Utility model content
The purpose of this utility model is to provide a kind of electric thermo-couple temperature probe tails pin configuration, solves high-temperature work environment In, thermo wires short circuit and lead that electric thermo-couple temperature probe tails lead breakage leads to distort the problem that thermo wires fractures.
For reaching above-mentioned purpose, the technical solution adopted in the utility model is: a kind of electric thermo-couple temperature probe tails lead Structure, described electric thermo-couple temperature probe tails pin configuration includes nut, spring hose, wave prevention sleeve, sequence number hoop, the first thin pyrocondensation Pipe, the second thin heat-shrink tube, single-coated foam, the first glass fiber sleeve pipe, the second glass fiber sleeve pipe and heat-shrink tube;
Electric thermo-couple temperature probe uses in pairs, and temperature probe thermo wires is cased with the second glass fiber sleeve pipe, the second glass fiber sleeve pipe One end outside be cased with the first thin heat-shrink tube or the second thin heat-shrink tube, the thin heat-shrink tube of each pair first and the second thin heat-shrink tube pass through sequence Number hoop is fixed, and the other end of the second glass fiber sleeve pipe is located inside the first glass fiber sleeve pipe by single-coated foam, and wave prevention sleeve is enclosed within On the outside of the first glass fiber sleeve pipe, it is used for making wave prevention sleeve two ends neat, difference connecting spring flexible pipe outside the two ends of wave prevention sleeve And heat-shrink tube, spring hose is connected with nut, and nut changeover section fills electric insulating sealant.
Further, the diameter with diameter greater than described second glass fiber sleeve pipe of described first glass fiber sleeve pipe.
Further, described first thin heat-shrink tube and the second thin heat-shrink tube different-diameter are distinguished.
A kind of electric thermo-couple temperature probe tails pin configuration wiring of the present utility model and easy to maintenance, fault rate significantly drops Low, enhance the ability of probe tails high temperature resistance, abrasion and bending, tail leads damage probability can be significantly decreased, in collection Between bundle section latter end and terminals, thermo wires share split is drawn and is easy to neatly wiring and maintenance, improves efficiency of assembling, has larger Economy and social value.
Brief description
Accompanying drawing herein is merged in description and constitutes the part of this specification, show meet of the present utility model Embodiment, and be used for explaining principle of the present utility model together with description.
Fig. 1 is the electric thermo-couple temperature probe tails pin configuration schematic diagram of this utility model one embodiment.
Fig. 2 is the thermocouple tail leads d-d cross-sectional view of this utility model one embodiment.
Wherein, 1- nut, 2- spring hose, 3- wave prevention sleeve, 4- sequence number hoop, the thin heat-shrink tube of 5- first, the thin pyrocondensation of 6- second Pipe, 7- single-coated foam, 8- the first glass fiber sleeve pipe, 9- the second glass fiber sleeve pipe, 10- heat-shrink tube.
Specific embodiment
For making purpose, technical scheme and advantage that this utility model is implemented clearer, below in conjunction with this utility model Accompanying drawing in embodiment, is further described in more detail to the technical scheme in this utility model embodiment.In the accompanying drawings, ad initio To the element that same or similar label represents same or similar element or has same or like function eventually.Described reality Applying example is a part of embodiment of this utility model, rather than whole embodiments.Embodiment below with reference to Description of Drawings It is exemplary type it is intended to be used for explaining this utility model, and it is not intended that to restriction of the present utility model.New based on this practicality Embodiment in type, the every other enforcement that those of ordinary skill in the art are obtained under the premise of not making the work of creation type Example, broadly falls into the scope of this utility model protection.Below in conjunction with the accompanying drawings embodiment of the present utility model is described in detail.
In description of the present utility model it is to be understood that term " " center ", " longitudinal ", " horizontal ", "front", "rear", The orientation of instruction such as "left", "right", " vertical ", " level ", " top ", " bottom ", " interior ", " outward " or position relationship are based on accompanying drawing institute The orientation showing or position relationship, are for only for ease of description this utility model and simplify description, rather than instruction or hint indication Device or element must have specific orientation, with specific azimuth configuration and operation, therefore it is not intended that to this practicality The restriction of novel protected scope.
As shown in Figures 1 and 2, electric thermo-couple temperature probe tails pin configuration of the present utility model includes: nut 1, spring Flexible pipe 2, wave prevention sleeve 3, sequence number hoop 4, the first thin heat-shrink tube 5, the second thin heat-shrink tube 6, single-coated foam 7, the first glass fiber sleeve pipe 8, Second glass fiber sleeve pipe 9 and heat-shrink tube 10.Wherein, the diameter with diameter greater than the second heat-shrink tube 6 of the first heat-shrink tube 5, so the One glass fiber sleeve pipe 5 is raw glass silk braid pipe again, and the second glass fiber sleeve pipe 6 is thin glass yarn sleeve pipe again;First thin heat-shrink tube 5 He Second thin heat-shrink tube 6 is distinguished with different-diameter, but is more preferably distinguish between with different colours, in the present embodiment, the One heat-shrink tube 5 is that extra heavy pipe is more preferably red thin heat-shrink tube, and the second heat-shrink tube 6 is tubule more preferably thin heat-shrink tube in vain.
Distinguished with preferred color below and be illustrated by, every temperature probe thermo wires is cased with thin glass yarn sleeve pipe, thin glass It is cased with red thin heat-shrink tube or thin heat-shrink tube in vain, red thin heat-shrink tube and carefully the color of heat-shrink tube is not in vain outside one end of glass silk braid pipe With length intercepts on request, using the difference of heat-shrink tube color, distinguishes thermo wires positive-negative polarity, sequence number hoop 4 is enclosed within the red thin heat of each pair To distinguish measuring point sequence number on the draw and in vain thin heat-shrink tube, the other end of thin glass yarn sleeve pipe is located at raw glass by single-coated foam 7 Inside silk braid pipe, the length of single-coated foam 7 is l2=10mm~1mm, and wave prevention sleeve 3 is enclosed within the outside of raw glass silk braid pipe, draws Tightly make wave prevention sleeve 3 two ends neat, connecting spring flexible pipe 2 and heat-shrink tube 10 respectively outside the two ends of wave prevention sleeve 3, spring hose 2 with Nut 1 is connected, and fastens wave prevention sleeve 3 with nut 1, simultaneously plus sleeve spring flexible pipe 2, to strengthen the bend resistance energy of probe tails lead Power.Nut 1 changeover section fills electric insulating sealant, and length l1=1mm~30mm, in end tightening nuts 1 to compress wave prevention sleeve 3, prevent its vibration.
A kind of electric thermo-couple temperature probe tails pin configuration wiring of the present utility model and easy to maintenance, fault rate significantly drops Low, enhance the ability of probe tails high temperature resistance, abrasion and bending, tail leads damage probability can be significantly decreased, in collection Between bundle section latter end and terminals, thermo wires share split is drawn and is easy to neatly wiring and maintenance, improves efficiency of assembling, has larger Economy and social value.
The above, optimum specific embodiment only of the present utility model, but protection domain of the present utility model is not It is confined to this, any those familiar with the art, in the technical scope that this utility model discloses, can readily occur in Change or replacement, all should cover within protection domain of the present utility model.Therefore, protection domain of the present utility model should be with Described scope of the claims is defined.

Claims (3)

1. a kind of electric thermo-couple temperature probe tails pin configuration is it is characterised in that described electric thermo-couple temperature probe tails lead is tied Structure includes nut (1), spring hose (2), wave prevention sleeve (3), sequence number hoop (4), the first thin heat-shrink tube (5), the second thin heat-shrink tube (6), single-coated foam (7), the first glass fiber sleeve pipe (8), the second glass fiber sleeve pipe (9) and heat-shrink tube (10);
Electric thermo-couple temperature probe uses in pairs, and temperature probe thermo wires is cased with the second glass fiber sleeve pipe (9), the second glass fiber sleeve pipe (9) it is cased with the first thin heat-shrink tube (5) or the second thin heat-shrink tube (6) outside one end, the thin heat-shrink tube of each pair first (5) and second thin Heat-shrink tube (6) passes through sequence number hoop (4) to be fixed, and the other end of the second glass fiber sleeve pipe (9) is located at the first glass by single-coated foam (7) Inside glass silk braid pipe (8), wave prevention sleeve (3) is enclosed within the outside of the first glass fiber sleeve pipe (8), is used for making wave prevention sleeve (3) two ends whole Together, difference connecting spring flexible pipe (2) and heat-shrink tube (10), spring hose (2) and nut (1) phase outside the two ends of wave prevention sleeve (3) Even, nut (1) changeover section fills electric insulating sealant.
2. electric thermo-couple temperature probe tails pin configuration according to claim 1 is it is characterised in that described first glass fiber The diameter with diameter greater than described second glass fiber sleeve pipe (9) of sleeve pipe (8).
3. electric thermo-couple temperature probe tails pin configuration according to claim 1 is it is characterised in that described first thin pyrocondensation Pipe (5) and the second thin heat-shrink tube (6) are distinguished with different-diameter.
CN201620730872.8U 2016-07-12 2016-07-12 Thermocouple temperature probe afterbody draws line knot to be constructed Active CN205909942U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620730872.8U CN205909942U (en) 2016-07-12 2016-07-12 Thermocouple temperature probe afterbody draws line knot to be constructed

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620730872.8U CN205909942U (en) 2016-07-12 2016-07-12 Thermocouple temperature probe afterbody draws line knot to be constructed

Publications (1)

Publication Number Publication Date
CN205909942U true CN205909942U (en) 2017-01-25

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109211425A (en) * 2018-10-12 2019-01-15 中国航发沈阳发动机研究所 A kind of attached component of air cooling total temperature detector probe tail

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109211425A (en) * 2018-10-12 2019-01-15 中国航发沈阳发动机研究所 A kind of attached component of air cooling total temperature detector probe tail
CN109211425B (en) * 2018-10-12 2020-04-21 中国航发沈阳发动机研究所 Air-cooled total temperature sensing part tail attachment assembly

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C14 Grant of patent or utility model
GR01 Patent grant
CP03 Change of name, title or address

Address after: Shenhe District of Shenyang City, 110015 Wan Lin Road No. 1 in Liaoning Province

Patentee after: AECC SHENYANG ENGINE Research Institute

Country or region after: China

Address before: Shenhe District of Shenyang City, 110015 Wan Lin Road No. 1 in Liaoning Province

Patentee before: AVIC SHENYANG ENGINE DESIGN & Research Institute

Country or region before: China

TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20240522

Address after: Shenhe District of Shenyang City, 110015 Wan Lin Road No. 1 in Liaoning Province

Patentee after: SHENYANG HANGFA TECHNOLOGY INDUSTRIAL Co.,Ltd.

Country or region after: China

Address before: Shenhe District of Shenyang City, 110015 Wan Lin Road No. 1 in Liaoning Province

Patentee before: AECC SHENYANG ENGINE Research Institute

Country or region before: China