CN207019807U - The big arch surface temperature measurement device of glass melter - Google Patents
The big arch surface temperature measurement device of glass melter Download PDFInfo
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- CN207019807U CN207019807U CN201720906943.XU CN201720906943U CN207019807U CN 207019807 U CN207019807 U CN 207019807U CN 201720906943 U CN201720906943 U CN 201720906943U CN 207019807 U CN207019807 U CN 207019807U
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- support member
- big arch
- annular support
- arch surface
- connecting plate
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Abstract
It the utility model is related to field of glass production technology, a kind of more particularly to big arch surface temperature measurement device of glass melter, including fixed support, annular support member, counterweight, temperature probe and elastic parts, annular support member is in horizontal positioned and is connected with support bracket fastened lower end, counterweight is placed on annular support member, temperature probe is suspended on fixed support by elastic parts and inside annular support member, and horizontal plane where temperature probe is less than horizontal plane where annular support member.It can ensure that temperature probe keeps being in close contact with big arch surface, greatly reduce measurement error, realize the accurate measurement of big arch surface temperature, while not need tester to be operated for a long time at big arch, improve the security and comfortableness of operation.
Description
Technical field
It the utility model is related to field of glass production technology, more particularly to a kind of big arch surface temperature measurement dress of glass melter
Put.
Background technology
With sustainable development and the requirement of energy-saving and emission-reduction policy, requirement of the glass production line for reducing energy consumption is also more next
It is higher.In actual production process, the producer is calculated by counting the energy-output ratio in certain time with glass throughput
The actual consumption of glass production line.Wherein glass melter is temperature highest in whole glass production line, the portion of energy consumption accounting maximum
Divide, it is necessary to be further analyzed to it, and thermal balance detection is exactly an effective conventional means.
, it is necessary to be measured to each portion faces temperature of glass melter, conventional method is by heat in thermal balance detection
Galvanic couple is fixed on the top of stock, and thermocouple then is withstood on into surface of wall using stock is measured.But this method is difficult to
(it is also known as big arch) at the top of melting furnaces to be operated, reason is as follows:It is that big arch surface temperature is too high first, usually 100 DEG C of left sides
The right side, it is unfavorable for people and works long hours, and the testing time too short can not obtains stablizing data;Next to that this method can not ensure heat
Galvanic couple is contacted with big arch surface closely, so as to produce larger error.
Utility model content
The technical problems to be solved in the utility model is to provide a kind of big arch surface temperature measurement device of glass melter, can
Realize and accurate measurement is carried out to big arch surface temperature, to overcome the drawbacks described above of prior art.
In order to solve the above-mentioned technical problem, the utility model adopts the following technical scheme that:A kind of big arch surface of glass melter
Temperature measuring equipment, including fixed support, annular support member, counterweight, temperature probe and elastic parts, annular support member are in water
Placing flat is simultaneously connected with support bracket fastened lower end, and counterweight is placed on annular support member, and temperature probe is hung by elastic parts
On fixed support and inside annular support member, and horizontal plane where temperature probe is horizontal less than where annular support member
Face.
Preferably, fixed support include a vertical rod placed vertically, be arranged symmetrically on the excircle of vertical rod at least one
Connecting rod and the horizontal connecting plate for being located at vertical rod lower end, one end of connecting rod are connected with vertical rod, and the other end props up with annular
Support member is connected, and connecting plate is connected with elastic parts.
Preferably, the through hole of up/down perforation is offered on connecting plate, elastic parts includes bolt, nut and spring, bolt
Screw rod through hole be upward through below connecting plate be connected with nut, and bolt can be suspended on connecting plate up and downly,
Spring is set on bolt and positioned at the lower section of connecting plate, the head connection of temperature probe and bolt.
Preferably, multiple through holes are offered on connecting plate, each through hole is provided with one group of elastic parts.
Preferably, the lower end of vertical rod is connected at the center of connecting plate with connecting plate.
Preferably, horizontal plane where temperature probe is lower 5-10mm than horizontal plane where annular support member.
Preferably, counterweight is provided with two, and two counterweights are arranged symmetrically on the circumference of annular support member.
Preferably, counterweight is refractory metal or refractory brick.
Preferably, counterweight is silica brick.
Compared with prior art, the utility model has significant progressive:
The big arch surface temperature measurement device of glass melter of the present utility model is placed on the surface of the big arch of glass melter
When, can make temperature probe and big arch surface treats that temperature measurement location contacts, and annular support member and fixed support are then in the pressure of counterweight
The lower integral sinking of power effect, while annular support member and fixed support are fixed on into big arch surface, also downward elasticity of compression group
Part, make elastic parts compressed and produce elastic force, so as to which temperature probe is pressed on big arch surface, therefore thermometric can be ensured
Probe keeps being in close contact with big arch surface, greatly reduces measurement error, realizes the accurate measurement of big arch surface temperature, simultaneously
Do not need tester to be operated for a long time at big arch, improve the security and comfortableness of operation.
Brief description of the drawings
Fig. 1 is the dimensional structure diagram of the big arch surface temperature measurement device of glass melter of the utility model embodiment.
Fig. 2 is the schematic front view of the big arch surface temperature measurement device of glass melter of the utility model embodiment.
In figure:
1st, fixed support 11, vertical rod 12, connecting rod
13rd, connecting plate 2, annular support member 3, counterweight
4th, temperature probe 41, connection sheet 5, elastic parts
51st, bolt 52, nut 53, spring
Embodiment
Specific embodiment of the present utility model is described in further detail below in conjunction with the accompanying drawings.These embodiments are only
For illustrating the utility model, and it is not limitation of the utility model.
, it is necessary to explanation in description of the present utility model, term " " center ", " on ", " under ", " vertical ", " level ",
The orientation or position relationship of the instructions such as " interior ", " outer " are based on orientation shown in the drawings or position relationship, are for only for ease of and retouch
State the utility model and simplify and describe, rather than instruction or imply signified device or element must have specific orientation, with
Specific azimuth configuration and operation, therefore it is not intended that to limitation of the present utility model.Term " installation ", " connected ", " company
Connect " it should be interpreted broadly, for example, it may be being fixedly connected or being detachably connected, or it is integrally connected;It can be machine
Tool connects or electrical connection;Can be joined directly together, can also be indirectly connected by intermediary, can be two members
Connection inside part.For the ordinary skill in the art, above-mentioned term can be understood in this reality as the case may be
With the concrete meaning in new.In addition, " multiple " are meant that two or more.
As depicted in figs. 1 and 2, a kind of embodiment of the big arch surface temperature measurement device of glass melter of the present utility model.
As shown in figure 1, the big arch surface temperature measurement device of the glass melter of the present embodiment includes fixed support 1, annular support member 2, matched somebody with somebody
Heavy mail 3, temperature probe 4 and elastic parts 5.
Wherein, annular support member 2 is in horizontal positioned, and annular support member 2 is connected with the lower end of fixed support 1, annular branch
The inside of support member 2 is the hollow region of up/down perforation.Preferably, the annular support member 2 in the present embodiment is an annulus part.Certainly,
The shape of annular support member 2 of the present utility model is not limited to the annular shape of the present embodiment, or other shapes, such as
Fang Huanzhuan or polygonal ring shape.
Temperature probe 4 is suspended on fixed support 1 by elastic parts 5, and upper end and the fixed support 1 of elastic parts 5 connect
Connect, the lower end of elastic parts 5 is connected with temperature probe 4, and elastic change can occur along the vertical direction under external force for elastic parts 5
Shape.Temperature probe 4 is located inside annular support member 2, also, as shown in Fig. 2 the place horizontal plane of temperature probe 4 props up less than annular
The place horizontal plane of support member 2.Temperature probe 4 is used to contact with treating thermometric surface and measure its temperature, it is preferable that in the present embodiment
Temperature probe 4 is thermocouple.
Counterweight 3 is placed on annular support member 2, can be to annular support member 2 and fixed branch by the deadweight of counterweight 3
Frame 1 applies pressure.In the present embodiment, for convenience of dismantling, counterweight 3 is placed only on annular support member 2, without with annular brace
Part 2 is fixedly connected, in order to picking and placeing for counterweight 3.Preferably, counterweight 3 is provided with two, and two counterweights 3 are in annular brace
It is arranged symmetrically on the circumference of part 2, so that annular support member 2 and the uniform force of fixed support 1.Counterweight 3 can be high temperature resistant gold
Category or refractory brick, it is preferable that counterweight 3 is silica brick.
The big arch surface temperature measurement device of glass melter of the present embodiment when in use, can by portable fixed support 1,
The device is placed on the surface of the big arch of glass melter, make temperature probe 4 and big arch surface treats that temperature measurement location contacts.Then
Counterweight 3 is placed on annular support member 2, the pressure effect for making annular support member 2 and fixed support 1 conduct oneself with dignity in counterweight 3
Lower integral sinking, while annular support member 2 and fixed support 1 are fixed on into big arch surface, elastic parts 5 is also compressed downwards,
Make elastic parts 5 compressed and produce elastic force, so as to which temperature probe 4 is pressed on big arch surface.Therefore, the glass of the present embodiment
The big arch surface temperature measurement device of glass melting furnaces can ensure that temperature probe 4 keeps being in close contact with big arch surface, greatly reduce
Measurement error, the accurate measurement of big arch surface temperature is realized, while does not need tester to be operated for a long time at big arch,
Improve the security and comfortableness of operation.
Preferably, to ensure that temperature probe 4 treats that thermometric surface effectively contacts with big arch, in the present embodiment, the institute of temperature probe 4
It is lower 5-10mm than the place horizontal plane of annular support member 2 in horizontal plane.
Further, in the present embodiment, fixed support 1 includes a vertical rod 11 placed vertically, on the excircle of vertical rod 11
At least one pair of connecting rod 12 and the horizontal connecting plate for being located at the lower end of vertical rod 11, connecting plate 13 and elastic parts 5 being arranged symmetrically
Connection 13.One end of connecting rod 12 is connected with vertical rod 11, and the other end of connecting rod 12 is connected with annular support member 2.Preferably, originally
In embodiment, vertical rod 11 is located at the surface at the middle part of annular support member 2, and the lower end of vertical rod 11 is in the center of connecting plate 13 and connection
Plate 13 is connected, and vertical rod 11 can be bolted with connecting plate 13.Connecting rod 12 is angularly obliquely installed with vertical rod 11, even
Welded on the top of vertical rod 11 and vertical rod 11 upper end of extension bar 12.
Further, in the present embodiment, offer the through hole of up/down perforation on connecting plate 13, elastic parts 5 include bolt 51,
Nut 52 and spring 53, the screw rod of bolt 51 connect from the through hole that the lower section of connecting plate 13 is upward through on connecting plate 13 and nut 52
Connect, and bolt 51 can be suspended on connecting plate 13 up and downly.That is, nut 52 is located at the top of connecting plate 13,51, bolt
Screw rod in the lower section of connecting plate 13, and bolt 51 can be up and downly through the through hole on connecting plate 13, nut 52 and bolt
Bolt 51, is thus suspended on connecting plate 13, also, bolt 51 can be in the through hole on connecting plate 13 by the upper end connection of 51 screw rods
It is interior up and down.Spring 53 is set on bolt 51 and connected positioned at the lower section of connecting plate 13, the head of temperature probe 4 and bolt 51
Connect.In the present embodiment, temperature probe 4 is connected by connection sheet 41 with the head of bolt 51.When fixed support 1 is in the work of counterweight 3
During with sinking, connecting plate 13 moves downward and compression spring 53, the compressed generation elastic force of spring 53, and the head of bolt 51 is tight
It is pressed in and treats on thermometric surface, so that temperature probe 4 is with treating that thermometric surface keeps being in close contact.
Effect effectively is pushed to ensure that elastic parts 5 plays to temperature probe 4, can be opened up on connecting plate 13 multiple logical
Hole, each through hole are respectively provided with one group of elastic parts 5.Preferably, in the present embodiment, connecting plate 13 is a rectangular slab, is being connected
A through hole is respectively offered at the corner of plate 13, each through hole is equipped with one group of bolt 51, nut 52 and spring 53, and thermometric is visited
First 4 positioned at the underface at the middle part of connecting plate 13, and temperature probe 4 is provided with four connection sheets 41, the head difference of four bolts 51
It is connected with four connection sheets 41.
In summary, the big arch surface temperature measurement device of the glass melter of the present embodiment can ensure temperature probe 4 with it is big
Arch surface keeps being in close contact, and greatly reduces measurement error, realizes the accurate measurement of big arch surface temperature, while need not survey
Examination personnel are operated at big arch for a long time, improve the security and comfortableness of operation.
Described above is only preferred embodiment of the present utility model, it is noted that for the common skill of the art
For art personnel, on the premise of the utility model technical principle is not departed from, some improvement and replacement can also be made, these change
Enter and replace and also should be regarded as the scope of protection of the utility model.
Claims (9)
1. a kind of big arch surface temperature measurement device of glass melter, it is characterised in that including fixed support (1), annular support member
(2), counterweight (3), temperature probe (4) and elastic parts (5), the annular support member (2) in it is horizontal positioned and with it is described solid
The lower end connection of fixed rack (1), the counterweight (3) are placed on the annular support member (2), and the temperature probe (4) passes through
The elastic parts (5) is suspended on the fixed support (1) and is located at the annular support member (2) inside, and the thermometric
Horizontal plane where (4) pop one's head in less than horizontal plane where the annular support member (2).
2. the big arch surface temperature measurement device of glass melter according to claim 1, it is characterised in that the fixed support
(1) at least one pair of connecting rod for include a vertical rod placed vertically (11), being arranged symmetrically on the excircle of the vertical rod (11)
(12) and level is located at the connecting plate (13) of the vertical rod (11) lower end, one end and the vertical rod of the connecting rod (12)
(11) connect, and the other end is connected with the annular support member (2), the connecting plate (13) is connected with the elastic parts (5).
3. the big arch surface temperature measurement device of glass melter according to claim 2, it is characterised in that the connecting plate
(13) through hole of up/down perforation is offered on, the elastic parts (5) includes bolt (51), nut (52) and spring (53), institute
The screw rod for stating bolt (51) is upward through the through hole below the connecting plate (13) and is connected with the nut (52), and institute
Stating bolt (51) can be suspended on the connecting plate (13) up and downly, and the spring (53) is set on the bolt (51)
And it is connected positioned at the lower section of the connecting plate (13), the temperature probe (4) with the head of the bolt (51).
4. the big arch surface temperature measurement device of glass melter according to claim 3, it is characterised in that the connecting plate
(13) multiple through holes are offered on, each through hole is provided with elastic parts (5) described in one group.
5. the big arch surface temperature measurement device of glass melter according to claim 2, it is characterised in that the vertical rod (11)
Lower end be connected at the center of the connecting plate (13) with the connecting plate (13).
6. the big arch surface temperature measurement device of glass melter according to claim 1, it is characterised in that the temperature probe
(4) horizontal plane where is lower 5-10mm than horizontal plane where the annular support member (2).
7. the big arch surface temperature measurement device of glass melter according to claim 1, it is characterised in that the counterweight
(3) two are provided with, two counterweights (3) are arranged symmetrically on the circumference of the annular support member (2).
8. the big arch surface temperature measurement device of glass melter according to claim 1, it is characterised in that the counterweight
(3) it is refractory metal or refractory brick.
9. the big arch surface temperature measurement device of glass melter according to claim 8, it is characterised in that the counterweight
(3) it is silica brick.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201720906943.XU CN207019807U (en) | 2017-07-25 | 2017-07-25 | The big arch surface temperature measurement device of glass melter |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201720906943.XU CN207019807U (en) | 2017-07-25 | 2017-07-25 | The big arch surface temperature measurement device of glass melter |
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Publication Number | Publication Date |
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CN207019807U true CN207019807U (en) | 2018-02-16 |
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ID=61481982
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CN201720906943.XU Active CN207019807U (en) | 2017-07-25 | 2017-07-25 | The big arch surface temperature measurement device of glass melter |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN116183029A (en) * | 2022-12-28 | 2023-05-30 | 北京中科科仪股份有限公司 | Infrared temperature calibration device for molecular pump |
-
2017
- 2017-07-25 CN CN201720906943.XU patent/CN207019807U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN116183029A (en) * | 2022-12-28 | 2023-05-30 | 北京中科科仪股份有限公司 | Infrared temperature calibration device for molecular pump |
CN116183029B (en) * | 2022-12-28 | 2023-11-28 | 北京中科科仪股份有限公司 | Infrared temperature calibration device for molecular pump |
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