CN205978991U - Nanometer micropore heat -insulating shield production line - Google Patents

Nanometer micropore heat -insulating shield production line Download PDF

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Publication number
CN205978991U
CN205978991U CN201620644701.3U CN201620644701U CN205978991U CN 205978991 U CN205978991 U CN 205978991U CN 201620644701 U CN201620644701 U CN 201620644701U CN 205978991 U CN205978991 U CN 205978991U
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CN
China
Prior art keywords
station
production line
oven
nanometer micropore
preliminary drying
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Withdrawn - After Issue
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CN201620644701.3U
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Chinese (zh)
Inventor
彭义业
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Changzhou Teng Tuo Machinery Equipment Co Ltd
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Changzhou Teng Tuo Machinery Equipment Co Ltd
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Priority to CN201620644701.3U priority Critical patent/CN205978991U/en
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Withdrawn - After Issue legal-status Critical Current
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Abstract

The utility model belongs to the technical field of insulation board production line technique and specifically relates to a nanometer micropore heat -insulating shield production line, the right side of second prliminary drying oven is connected with thickness setting device, the faller is connected on thickness setting device's right side, the right side of faller is connected with main oven, the right side of main oven is connected with spraying mechanism, spraying mechanism's right side is connected with spraying rubberizing oven, the right side of spraying rubberizing oven is connected with rubberizing mechanism, the right side of rubberizing mechanism is connected with the fourth and unreels the station, the right side that the fourth unreeled the station is connected with the slitter structure, the right side that slitter constructs is connected with trailing type transverse cutting mechanism. This nanometer micropore heat -insulating shield production line, collect four station, two die heads, prliminary drying oven, main oven, spraying mechanism, spraying rubberizing oven unreel, slitter constructs and trailing type transverse cutting mechanism are as an organic whole, once only makes the nanometer micropore heat -insulating shield, the time of having practiced thrift, has improved production efficiency.

Description

A kind of nanometer micropore HEAT-INSULATING PLATE PRODUCTION LINE
Technical field
The utility model is related to insulation board production line technology field, specially a kind of nanometer micropore HEAT-INSULATING PLATE PRODUCTION LINE.
Background technology
Nano material has the unusual or unusual Wuli-Shili-Renli system approach not available for traditional material, as script is conductive Negative pressure transmitter is just no longer conductive to a certain nanoscale boundary, originally the silica of insulation, crystal etc., in a certain nanoscale circle Start conduction in limited time.This is that have that clever particle size is little, specific surface area is big, surface energy is high due to nano material, shared by surface atom The features such as ratio is big, and its distinctive effect.There are a lot of alloys and ironwork, these products need through raw material in our lives Melt-casting forms, and what fusing was conventional is exactly smelting furnace, but the general temperature of smelting furnace is very high, easily scalds people, occurs unexpected, this is just Need to be enclosed with heat-insulating material outside smelting furnace, nano-pore heat-insulating shield just has adiabatic effect well, but, currently on the market The operation of nano-pore heat-insulating shield is much separate production, and an operation terminates to take the processing of another operation, relatively time-consuming, efficiency Lowly, for this reason, we design a kind of nanometer micropore HEAT-INSULATING PLATE PRODUCTION LINE.
Utility model content
The technical problem that the utility model solves is to overcome the defect of prior art, provides a kind of nanometer micropore heat-insulating shield Production line.Described nanometer micropore HEAT-INSULATING PLATE PRODUCTION LINE have production efficiency high the features such as.
For achieving the above object, the utility model provides following technical scheme:A kind of nanometer micropore HEAT-INSULATING PLATE PRODUCTION LINE, bag Include first and unreel station, described first right side unreeling station is provided with gripper shoe, and described gripper shoe is provided with the first die head, described The right-hand member of gripper shoe is provided with second and unreels station, and described second right-hand member unreeling station is connected with the first preliminary drying baking box, and described The right side of one preliminary drying baking box is connected with the 3rd and unreels station, and described 3rd right side unreeling station is connected with multi-procedure, described The right side of multi-procedure is provided with the second die head, and the right side of described second die head is provided with the second preliminary drying baking box, described second preliminary drying The right side of baking box is connected with thickness shaping equipment, and the right side of described thickness shaping equipment connects needle plate, and the right side of described needle plate connects It is connected to main baking oven, the right side of described main baking oven is connected with spray body, and the right side of described spray body is connected with spraying gluing and dries Case, the right side of described spraying gluing baking oven is connected with gumming mechanism, and the right side of described gumming mechanism is connected with the 4th and unreels station, Described 4th right side unreeling station is connected with rip cutting mechanism, and the right side of described rip cutting mechanism is connected with trailing type transverse cutting mechanism.
Preferably, described first preliminary drying baking box is provided with multistage.
Preferably, the right side of described trailing type transverse cutting mechanism is provided with material-receiving device.
Compared with prior art, the beneficial effects of the utility model are:This nanometer micropore HEAT-INSULATING PLATE PRODUCTION LINE, collection four is put Volume station, two die heads, preliminary drying baking box, main baking oven, spray body, spraying gluing baking oven, rip cutting mechanism and trailing type transverse cutting unit Structure is integrated, and disposably makes nanometer micropore heat-insulating shield, has saved the time, improves production efficiency.
Brief description
Fig. 1 is the utility model structural representation;
Fig. 2 is A schematic enlarged-scale view of the present utility model;
Fig. 3 is B structure enlarged drawing of the present utility model;
Fig. 4 is C-structure enlarged drawing of the present utility model;
Fig. 5 is D schematic enlarged-scale view of the present utility model;
Fig. 6 is E schematic enlarged-scale view of the present utility model.
In figure:1 first unreel station, 2 gripper shoes, 3 first die heads, 4 second unreel station, 5 first preliminary drying baking boxs, 6 Three unreel station, 7 multi-procedures, 8 second die heads, 9 second preliminary drying baking boxs, 10 thickness shaping equipments, 11 needle plates, 12 main baking ovens, 13 spray bodies, 14 spraying gluing baking ovens, 15 gumming mechanisms, 16 the 4th unreel station, 17 rip cutting mechanisms, 18 trailing type transverse cutting units Structure.
Specific embodiment
Below in conjunction with the accompanying drawing in the utility model embodiment, the technical scheme in the utility model embodiment is carried out Clearly and completely description is it is clear that described embodiment is only a part of embodiment of the utility model rather than whole Embodiment.Based on the embodiment in the utility model, those of ordinary skill in the art are not under the premise of making creative work The every other embodiment being obtained, broadly falls into the scope of the utility model protection.
Refer to Fig. 1-6, the utility model provides a kind of technical scheme:A kind of nanometer micropore HEAT-INSULATING PLATE PRODUCTION LINE, including First unreels station 1, and described first right side unreeling station 1 is provided with gripper shoe 2, and described gripper shoe 2 is provided with the first die head 3, The right-hand member of described gripper shoe 2 is provided with second and unreels station 4, and described second right-hand member unreeling station 4 is connected with the first preliminary drying baking box 5, described first preliminary drying baking box 5 is provided with multistage, and the right side of described first preliminary drying baking box 5 is connected with the 3rd and unreels station 6, and described Three right sides unreeling station 6 are connected with multi-procedure 7, and the right side of described multi-procedure 7 is provided with the second die head 8, and described second The right side of die head 8 is provided with the second preliminary drying baking box 9.
The right side of described second preliminary drying baking box 9 is connected with thickness shaping equipment 10, the right side of described thickness shaping equipment 10 Connect needle plate 11, the right side of described needle plate 11 is connected with main baking oven 12, and the right side of described main baking oven 12 is connected with spray body 13, The right side of described spray body 13 is connected with spraying gluing baking oven 14, and the right side of described spraying gluing baking oven 14 is connected with gluing machine Structure 15, the right side of described gumming mechanism 15 is connected with the 4th and unreels station 16, and described 4th right side unreeling station 16 is connected with Rip cutting mechanism 17, the right side of described rip cutting mechanism 17 is connected with trailing type transverse cutting mechanism 18, described trailing type transverse cutting mechanism 18 Right side is provided with material-receiving device.
This nanometer micropore HEAT-INSULATING PLATE PRODUCTION LINE, collection four unreels station, two die heads, preliminary drying baking box, main baking oven 12, sprayings Mechanism 13, spraying gluing baking oven 14, rip cutting mechanism 17 and trailing type transverse cutting mechanism 18 are integrated, disposably that nanometer micropore is adiabatic Plate is made, and has saved the time, improves production efficiency.
While there has been shown and described that embodiment of the present utility model, for the ordinary skill in the art, It is appreciated that these embodiments can be carried out with multiple changes in the case of without departing from principle of the present utility model and spirit, repair Change, replace and modification, scope of the present utility model is defined by the appended claims and the equivalents thereof.

Claims (3)

1. a kind of nanometer micropore HEAT-INSULATING PLATE PRODUCTION LINE, unreel station (1) including first it is characterised in that:Described first unreels work The right side of position (1) is provided with gripper shoe (2), and described gripper shoe (2) is provided with the first die head (3), and the right-hand member of described gripper shoe (2) sets Second is had to unreel station (4), the described second right-hand member unreeling station (4) is connected with the first preliminary drying baking box (5), described first preliminary drying The right side of baking box (5) is connected with the 3rd and unreels station (6), and described 3rd right side unreeling station (6) is connected with multi-procedure (7), the right side of described multi-procedure (7) is provided with the second die head (8), and the right side of described second die head (8) is provided with the second preliminary drying Baking box (9), the right side of described second preliminary drying baking box (9) is connected with thickness shaping equipment (10), described thickness shaping equipment (10) Right side connect needle plate (11), the right side of described needle plate (11) is connected with main baking oven (12), and the right side of described main baking oven (12) connects It is connected to spray body (13), the right side of described spray body (13) is connected with spraying gluing baking oven (14), and described spraying gluing is dried The right side of case (14) is connected with gumming mechanism (15), and the right side of described gumming mechanism (15) is connected with the 4th and unreels station (16), Described 4th right side unreeling station (16) is connected with rip cutting mechanism (17), and the right side of described rip cutting mechanism (17) is connected with servo-actuated Formula transverse cutting mechanism (18).
2. a kind of nanometer micropore HEAT-INSULATING PLATE PRODUCTION LINE according to claim 1 it is characterised in that:Described first preliminary drying baking box (5) it is provided with multistage.
3. a kind of nanometer micropore HEAT-INSULATING PLATE PRODUCTION LINE according to claim 1 it is characterised in that:Described trailing type transverse cutting unit The right side of structure (18) is provided with material-receiving device.
CN201620644701.3U 2016-06-25 2016-06-25 Nanometer micropore heat -insulating shield production line Withdrawn - After Issue CN205978991U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620644701.3U CN205978991U (en) 2016-06-25 2016-06-25 Nanometer micropore heat -insulating shield production line

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620644701.3U CN205978991U (en) 2016-06-25 2016-06-25 Nanometer micropore heat -insulating shield production line

Publications (1)

Publication Number Publication Date
CN205978991U true CN205978991U (en) 2017-02-22

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105972388A (en) * 2016-06-25 2016-09-28 常州腾拓机械设备有限公司 Nano micropore insulation board production line

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105972388A (en) * 2016-06-25 2016-09-28 常州腾拓机械设备有限公司 Nano micropore insulation board production line

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GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20170222

Effective date of abandoning: 20190101

AV01 Patent right actively abandoned