CN206201578U - Anti-flaming thermal-insulation type polycarbonate composite material - Google Patents
Anti-flaming thermal-insulation type polycarbonate composite material Download PDFInfo
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- CN206201578U CN206201578U CN201621048269.8U CN201621048269U CN206201578U CN 206201578 U CN206201578 U CN 206201578U CN 201621048269 U CN201621048269 U CN 201621048269U CN 206201578 U CN206201578 U CN 206201578U
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- matrix
- ball recess
- flame
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- composite material
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Abstract
The utility model is related to field of plastic products.Anti-flaming thermal-insulation type polycarbonate composite material, including a matrix being made up of makrolon, the upper surface of matrix are connected with a flame-retardant layer, and the lower surface of matrix is connected with a thermal insulation layer;Matrix is provided with the first downward ball recess of an opening direction, and thermal insulation layer is provided with the first projection matched with the first ball recess;Matrix is additionally provided with the second upward ball recess of an opening direction, and flame-retardant layer is provided with the second projection matched with the second ball recess;First ball recess is consistent with the structure of the second ball recess;In a circle, the longitudinal section of ball recess is in the circular arc that a central angle is 220 °~270 ° for the cross section of the first ball recess.The utility model improves the fire-retardant and effect of heat insulation of conventional matrix, and the utility model is easy to implement being detachably connected for matrix and both flame-retardant layer, thermal insulation layer by ball recess and raised combination.
Description
Technical field
The utility model is related to field of plastic products, and in particular to polycarbonate article.
Background technology
Makrolon water white transparency, heat-resisting, shock resistance is fire-retardant BI grades, there is good machinery in commonly used temperature
Performance.
At present, on the market, such as water pipe, plastic front board are made of makrolon.If but should by makrolon
Under for harsh conditions, such as situations such as fire, makrolon can cause to damage, and not have a kind of composite construction protection at present poly-
While the heat-proof quality of carbonic ester, anti-flammability is realized.
Utility model content
The purpose of this utility model is to provide anti-flaming thermal-insulation type polycarbonate composite material, above-mentioned to solve at least one
Technical problem.
The technical problem that the utility model is solved can be realized using following technical scheme:
Anti-flaming thermal-insulation type polycarbonate composite material, including a matrix being made up of makrolon, it is characterised in that described
The upper surface of matrix is connected with a flame-retardant layer, and the lower surface of described matrix is connected with a thermal insulation layer;
Described matrix is provided with the first downward ball recess of an opening direction, and the thermal insulation layer is provided with and first ball
The first projection that connected in star matches;
Described matrix is additionally provided with the second upward ball recess of an opening direction, and the flame-retardant layer is provided with and described second
The second projection that ball recess matches;
First ball recess is consistent with the structure of second ball recess;The cross section of first ball recess
In a circle, the longitudinal section of the ball recess is in the circular arc that a central angle is 220 °~270 °.
The utility model by optimize tradition only using carbonic ester constitute matrix structure, increased flame-retardant layer with every
Thermosphere, improves the fire-retardant and effect of heat insulation of conventional matrix, and the utility model is easy to reality by the combination of ball recess and projection
Existing matrix is detachably connected with both flame-retardant layer, thermal insulation layer.Be easy to for the environment used needed for matrix, adjust it is different every
Thermosphere or flame-retardant layer, with suitable for different rugged environments.The utility model is easy to implement by optimizing the structure of ball recess
Matrix and the detachable situation of both flame-retardant layer, thermal insulation layer, are ensureing removably simultaneously, in turn ensure that both connections are strong
Degree.
As a kind of preferred scheme, a metal level being made up of nickel is coated with the upper surface of described matrix, it is described fire-retardant
The lower surface of layer is provided with the magnetic absorption layer being made up of magnet, and the described first raised lower surface positioned at the flame-retardant layer.
The utility model improves the connective stability of matrix and flame-retardant layer by the combination of metal level and magnetic absorption layer
While, the effect of electromagnetic shielding can also be realized, it is adaptable to which the utility model is applied to the situation of electronic equipment.
Used as another preferred scheme, upper surface and the lower surface of described matrix are coated with an adhesive layer.
The utility model is coated with an adhesive layer by the upper surface of matrix and lower surface, improve matrix with it is fire-retardant
Layer, the connective stability of thermal insulation layer.
The outward flange of the flame-retardant layer is provided with a draw ring.The utility model is easy to flame-retardant layer from matrix by draw ring
Peel off.
The flame-retardant layer is the flame-retardant layer being made up of glass fibre.The resistance that the utility model is made up of use glass fibre
Combustion layer, it is still different secondary to use after being easy to flame-retardant layer to be peeled off from matrix also with flexibility while realizing flame retardant effect.
The thermal insulation layer is the thermal insulation layer being made up of expandable polystyrene.It is easy to implement heat-insulated effect.
First ball recess is arranged in matrix form, and the spacing of adjacent first ball recess is not more than 10cm;
First projection is also arranged in matrix form, and the spacing of adjacent first projection is equal to adjacent first ball recess spacing
Integral multiple.
The utility model is by limiting the spacing of ball recess, it is ensured that matrix is steady with the connection of both flame-retardant layer, thermal insulation layer
It is qualitative.
A cross section is embedded with the flame-retardant layer in wavy sheet layers of copper.While realizing effectiveness,
Realize resistant to bending effect.
One is embedded with described matrix is used to convey the passage of cooling water, and the passage includes an import, an outlet, described
Import is respectively positioned on the side wall of described matrix with the outlet;
A temperature sensor, the temperature-sensitive face of the temperature sensor and the upper table of described matrix are also embedded with described matrix
Face flushes, and the temperature sensor connects a processor system, and the processor system connection one is used for cooling in control passage
Water conveys the pump housing of situation, and the outlet of the pump housing is turned on the import of the passage.
It is easy to the temperature conditions arrived according to temperature sensor monitors, and then the cooling water conveying situation in control passage, when
When temperature is too high, the temperature control to matrix is realized by passage, realize the effect from cooling.
Brief description of the drawings
Fig. 1 is a kind of structural representation of the present utility model;
Fig. 2 is another structural representation of the present utility model;
Fig. 3 is a kind of structural representation of matrix of the present utility model;
Fig. 4 is a kind of top view of matrix of the present utility model;
Fig. 5 is a kind of structural representation of matrix of the present utility model.
Specific embodiment
In order that technological means, creation characteristic, reached purpose and effect that the utility model is realized are easy to understand, under
Face combines and is specifically illustrating, and the utility model is expanded on further.
Referring to Fig. 1, Fig. 2, Fig. 3, Fig. 4, Fig. 5, anti-flaming thermal-insulation type polycarbonate composite material, including one by makrolon structure
Into matrix 1, the upper surface of matrix 1 is connected with a flame-retardant layer 2, and the lower surface of matrix 1 is connected with a thermal insulation layer 3;Matrix 1 is provided with
The first downward ball recess of one opening direction, thermal insulation layer 3 is provided with the first projection matched with the first ball recess;Matrix
1 is additionally provided with the second upward ball recess 12 of an opening direction, and flame-retardant layer 2 is provided with matched with the second ball recess 12
Two is raised;First ball recess is consistent with the structure of the second ball recess 12;The cross section of the first ball recess is spherical in a circle
The longitudinal section of groove is in the circular arc that a central angle is 220 °~270 °.The utility model only uses carbonic ester by optimizing tradition
The structure of the matrix 1 of composition, increased flame-retardant layer 2 and thermal insulation layer 3, improve the fire-retardant and effect of heat insulation of conventional matrix 1, this reality
With the new combination by ball recess and projection, it is easy to implement matrix 1 and connects with the detachable of both flame-retardant layer 2, thermal insulation layer 3
Connect.It is easy to the environment used needed for matrix 1, adjusts different thermal insulation layers 3 or flame-retardant layer 2, with severe suitable for difference
Environment.The utility model by optimizing the structure of ball recess, be easy to implement matrix 1 and flame-retardant layer 2, thermal insulation layer 3 both can
Dismounting situation, is ensureing removably simultaneously, in turn ensure that both bonding strengths.
The outward flange of flame-retardant layer is provided with a draw ring.The utility model is easy to peel off flame-retardant layer from matrix by draw ring.
Flame-retardant layer is the flame-retardant layer being made up of glass fibre.The utility model is fire-retardant by what is be made of glass fibre
Layer, it is still different secondary to use after being easy to flame-retardant layer to be peeled off from matrix also with flexibility while realizing flame retardant effect.
Thermal insulation layer is the thermal insulation layer being made up of expandable polystyrene.It is easy to implement heat-insulated effect.
First ball recess is arranged in matrix form, and the spacing of adjacent first ball recess is not more than 10cm;First projection
Arranged in matrix form, the spacing of adjacent first projection is equal to the integral multiple of adjacent first ball recess spacing.The utility model leads to
Cross the spacing for limiting ball recess, it is ensured that the connective stability of both matrix and flame-retardant layer, thermal insulation layer.
As a kind of preferred scheme, a metal level being made up of nickel is coated with the upper surface of matrix 1, under flame-retardant layer 2
Surface is provided with the magnetic absorption layer being made up of magnet, and the first raised lower surface positioned at flame-retardant layer 2.The utility model passes through
The combination of metal level and magnetic absorption layer, while improve the connective stability of matrix 1 and flame-retardant layer 2, can also realize electricity
The effect of magnetic screen, it is adaptable to which the utility model is applied to the situation of electronic equipment.
Used as another preferred scheme, referring to Fig. 2, Fig. 3, upper surface and the lower surface of matrix 1 are coated with an adhesive layer
11.The utility model is coated with an adhesive layer 11 by the upper surface of matrix 1 and lower surface, improves matrix 1 and flame-retardant layer
2nd, the connective stability of thermal insulation layer 3.
One is embedded with matrix for conveying the passage 13 of cooling water, passage 13 includes an import, an outlet, import with go out
Mouth is respectively positioned on the side wall of matrix;A temperature sensor 14, the temperature-sensitive face of temperature sensor 14 and matrix are also embedded with matrix
Upper surface flush, temperature sensor connect a processor system, processor system connection one be used for control passage in cooling water
The pump housing of conveying situation, the outlet of the pump housing is turned on the import of passage.It is easy to the temperature conditions arrived according to temperature sensor monitors,
And then the cooling water conveying situation in control passage, when temperature is too high, the temperature control to matrix is realized by passage, realize from drop
The effect of temperature.
General principle of the present utility model and principal character and advantage of the present utility model has been shown and described above.This
The technical staff of industry is retouched in above-described embodiment and specification it should be appreciated that the utility model is not restricted to the described embodiments
That states simply illustrates principle of the present utility model, on the premise of the utility model spirit and scope are not departed from, the utility model
Various changes and modifications are also had, these changes and improvements are both fallen within the range of claimed the utility model.This practicality is new
The claimed scope of type is by appending claims and its equivalent thereof.
Claims (6)
1. anti-flaming thermal-insulation type polycarbonate composite material, an including matrix being made up of makrolon, it is characterised in that the base
The upper surface of body is connected with a flame-retardant layer, and the lower surface of described matrix is connected with a thermal insulation layer;
Described matrix is provided with the first downward ball recess of an opening direction, and the thermal insulation layer is provided with and first spherical female
The first projection that groove matches;
Described matrix is additionally provided with the second upward ball recess of an opening direction, and the flame-retardant layer is provided with spherical with described second
The second of groove match is raised;
First ball recess is consistent with the structure of second ball recess;The cross section of first ball recess is in one
Circle, the longitudinal section of the ball recess is in the circular arc that a central angle is 220 °~270 °.
2. anti-flaming thermal-insulation type polycarbonate composite material according to claim 1, it is characterised in that:The upper table of described matrix
A metal level being made up of nickel is coated with face, the lower surface of the flame-retardant layer is provided with the magnetic absorption layer being made up of magnet,
And first projection is positioned at the lower surface of the flame-retardant layer.
3. anti-flaming thermal-insulation type polycarbonate composite material according to claim 1, it is characterised in that:The upper table of described matrix
Face is coated with an adhesive layer with lower surface.
4. anti-flaming thermal-insulation type polycarbonate composite material according to claim 1, it is characterised in that:Outside the flame-retardant layer
Edge is provided with a draw ring.
5. anti-flaming thermal-insulation type polycarbonate composite material according to claim 1, it is characterised in that:First spherical female
Groove is arranged in matrix form, and the spacing of adjacent first ball recess is not more than 10cm;
First projection is also arranged in matrix form, and the spacing of adjacent first projection is equal to the whole of adjacent first ball recess spacing
Several times.
6. anti-flaming thermal-insulation type polycarbonate composite material according to claim 1, it is characterised in that:The thermal insulation layer be by
The thermal insulation layer that expandable polystyrene is constituted.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201621048269.8U CN206201578U (en) | 2016-09-09 | 2016-09-09 | Anti-flaming thermal-insulation type polycarbonate composite material |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201621048269.8U CN206201578U (en) | 2016-09-09 | 2016-09-09 | Anti-flaming thermal-insulation type polycarbonate composite material |
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CN206201578U true CN206201578U (en) | 2017-05-31 |
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ID=58760288
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CN201621048269.8U Expired - Fee Related CN206201578U (en) | 2016-09-09 | 2016-09-09 | Anti-flaming thermal-insulation type polycarbonate composite material |
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111204090A (en) * | 2020-01-09 | 2020-05-29 | 吉林大学 | Gradient elastic layer |
CN111911506A (en) * | 2020-08-12 | 2020-11-10 | 安徽瑞联节能科技有限公司 | Grooved rock wool and marble combination method |
CN112822966A (en) * | 2018-10-12 | 2021-05-18 | Bsh家用电器有限公司 | Household electrical appliance |
CN112822965A (en) * | 2018-10-12 | 2021-05-18 | Bsh家用电器有限公司 | Household electrical appliance |
-
2016
- 2016-09-09 CN CN201621048269.8U patent/CN206201578U/en not_active Expired - Fee Related
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112822966A (en) * | 2018-10-12 | 2021-05-18 | Bsh家用电器有限公司 | Household electrical appliance |
CN112822965A (en) * | 2018-10-12 | 2021-05-18 | Bsh家用电器有限公司 | Household electrical appliance |
CN111204090A (en) * | 2020-01-09 | 2020-05-29 | 吉林大学 | Gradient elastic layer |
CN111911506A (en) * | 2020-08-12 | 2020-11-10 | 安徽瑞联节能科技有限公司 | Grooved rock wool and marble combination method |
CN111911506B (en) * | 2020-08-12 | 2022-03-29 | 安徽瑞联节能科技股份有限公司 | Grooved rock wool and marble combination method |
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20170531 Termination date: 20190909 |