CN105255138B - Fluorescent lamp - Google Patents

Fluorescent lamp Download PDF

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Publication number
CN105255138B
CN105255138B CN201510728033.2A CN201510728033A CN105255138B CN 105255138 B CN105255138 B CN 105255138B CN 201510728033 A CN201510728033 A CN 201510728033A CN 105255138 B CN105255138 B CN 105255138B
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China
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add
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Expired - Fee Related
Application number
CN201510728033.2A
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Chinese (zh)
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CN105255138A (en
Inventor
林锡雄
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.)
Shenzhen Winunion Electronics Co., Ltd.
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Shenzhen Winunion Electronics Co Ltd
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Priority to CN201510728033.2A priority Critical patent/CN105255138B/en
Publication of CN105255138A publication Critical patent/CN105255138A/en
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Expired - Fee Related legal-status Critical Current
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S8/00Lighting devices intended for fixed installation
    • F21S8/08Lighting devices intended for fixed installation with a standard
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S8/00Lighting devices intended for fixed installation
    • F21S8/08Lighting devices intended for fixed installation with a standard
    • F21S8/081Lighting devices intended for fixed installation with a standard of low-built type, e.g. landscape light
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S8/00Lighting devices intended for fixed installation
    • F21S8/04Lighting devices intended for fixed installation intended only for mounting on a ceiling or the like overhead structures
    • F21S8/06Lighting devices intended for fixed installation intended only for mounting on a ceiling or the like overhead structures by suspension
    • F21S8/061Lighting devices intended for fixed installation intended only for mounting on a ceiling or the like overhead structures by suspension with a non-rigid pendant, i.e. a cable, wire or chain
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V17/00Fastening of component parts of lighting devices, e.g. shades, globes, refractors, reflectors, filters, screens, grids or protective cages
    • F21V17/10Fastening of component parts of lighting devices, e.g. shades, globes, refractors, reflectors, filters, screens, grids or protective cages characterised by specific fastening means or way of fastening
    • F21V17/16Fastening of component parts of lighting devices, e.g. shades, globes, refractors, reflectors, filters, screens, grids or protective cages characterised by specific fastening means or way of fastening by deformation of parts; Snap action mounting
    • F21V17/164Fastening of component parts of lighting devices, e.g. shades, globes, refractors, reflectors, filters, screens, grids or protective cages characterised by specific fastening means or way of fastening by deformation of parts; Snap action mounting the parts being subjected to bending, e.g. snap joints
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S6/00Lighting devices intended to be free-standing
    • F21S6/004Lighting devices intended to be free-standing with a lamp housing in direct contact with the floor or ground
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S6/00Lighting devices intended to be free-standing
    • F21S6/005Lighting devices intended to be free-standing with a lamp housing maintained at a distance from the floor or ground via a support, e.g. standing lamp for ambient lighting
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S8/00Lighting devices intended for fixed installation
    • F21S8/04Lighting devices intended for fixed installation intended only for mounting on a ceiling or the like overhead structures
    • F21S8/06Lighting devices intended for fixed installation intended only for mounting on a ceiling or the like overhead structures by suspension
    • F21S8/065Lighting devices intended for fixed installation intended only for mounting on a ceiling or the like overhead structures by suspension multi-branched, e.g. a chandelier
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S2/00Systems of lighting devices, not provided for in main groups F21S4/00 - F21S10/00 or F21S19/00, e.g. of modular construction
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
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    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S8/00Lighting devices intended for fixed installation
    • F21S8/04Lighting devices intended for fixed installation intended only for mounting on a ceiling or the like overhead structures
    • F21S8/06Lighting devices intended for fixed installation intended only for mounting on a ceiling or the like overhead structures by suspension
    • F21S8/063Lighting devices intended for fixed installation intended only for mounting on a ceiling or the like overhead structures by suspension with a rigid pendant, i.e. a pipe or rod
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S8/00Lighting devices intended for fixed installation
    • F21S8/03Lighting devices intended for fixed installation of surface-mounted type
    • F21S8/033Lighting devices intended for fixed installation of surface-mounted type the surface being a wall or like vertical structure, e.g. building facade
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C48/00Extrusion moulding, i.e. expressing the moulding material through a die or nozzle which imparts the desired form; Apparatus therefor
    • B29C48/25Component parts, details or accessories; Auxiliary operations
    • B29C48/92Measuring, controlling or regulating
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    • C08G18/06Polymeric products of isocyanates or isothiocyanates with compounds having active hydrogen
    • C08G18/08Processes
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    • C08G18/0819Manufacture of polymers containing ionic or ionogenic groups containing anionic or anionogenic groups
    • C08G18/0823Manufacture of polymers containing ionic or ionogenic groups containing anionic or anionogenic groups containing carboxylate salt groups or groups forming them
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    • C08G18/28Polymeric products of isocyanates or isothiocyanates with compounds having active hydrogen characterised by the compounds used containing active hydrogen
    • C08G18/30Low-molecular-weight compounds
    • C08G18/32Polyhydroxy compounds; Polyamines; Hydroxyamines
    • C08G18/3203Polyhydroxy compounds
    • C08G18/3206Polyhydroxy compounds aliphatic
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    • C08G18/06Polymeric products of isocyanates or isothiocyanates with compounds having active hydrogen
    • C08G18/28Polymeric products of isocyanates or isothiocyanates with compounds having active hydrogen characterised by the compounds used containing active hydrogen
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    • C08G18/65Low-molecular-weight compounds having active hydrogen with high-molecular-weight compounds having active hydrogen
    • C08G18/66Compounds of groups C08G18/42, C08G18/48, or C08G18/52
    • C08G18/6633Compounds of group C08G18/42
    • C08G18/6637Compounds of group C08G18/42 with compounds of group C08G18/32 or polyamines of C08G18/38
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    • C08G18/72Polyisocyanates or polyisothiocyanates
    • C08G18/721Two or more polyisocyanates not provided for in one single group C08G18/73 - C08G18/80
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    • C08G18/755Polyisocyanates or polyisothiocyanates cyclic cycloaliphatic containing only one cycloaliphatic ring containing at least one isocyanate or isothiocyanate group linked to the cycloaliphatic ring by means of an aliphatic group containing one isocyanate or isothiocyanate group linked to the cycloaliphatic ring by means of an aliphatic group having a primary carbon atom next to the isocyanate or isothiocyanate group and at least one isocyanate or isothiocyanate group linked to a secondary carbon atom of the cycloaliphatic ring, e.g. isophorone diisocyanate
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    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V15/00Protecting lighting devices from damage
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
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    • F21V17/104Fastening of component parts of lighting devices, e.g. shades, globes, refractors, reflectors, filters, screens, grids or protective cages characterised by specific fastening means or way of fastening using feather joints, e.g. tongues and grooves, with or without friction
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
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    • F21V17/00Fastening of component parts of lighting devices, e.g. shades, globes, refractors, reflectors, filters, screens, grids or protective cages
    • F21V17/10Fastening of component parts of lighting devices, e.g. shades, globes, refractors, reflectors, filters, screens, grids or protective cages characterised by specific fastening means or way of fastening
    • F21V17/12Fastening of component parts of lighting devices, e.g. shades, globes, refractors, reflectors, filters, screens, grids or protective cages characterised by specific fastening means or way of fastening by screwing
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V17/00Fastening of component parts of lighting devices, e.g. shades, globes, refractors, reflectors, filters, screens, grids or protective cages
    • F21V17/10Fastening of component parts of lighting devices, e.g. shades, globes, refractors, reflectors, filters, screens, grids or protective cages characterised by specific fastening means or way of fastening
    • F21V17/16Fastening of component parts of lighting devices, e.g. shades, globes, refractors, reflectors, filters, screens, grids or protective cages characterised by specific fastening means or way of fastening by deformation of parts; Snap action mounting
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V19/00Fastening of light sources or lamp holders
    • F21V19/001Fastening of light sources or lamp holders the light sources being semiconductors devices, e.g. LEDs
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V19/00Fastening of light sources or lamp holders
    • F21V19/001Fastening of light sources or lamp holders the light sources being semiconductors devices, e.g. LEDs
    • F21V19/0015Fastening arrangements intended to retain light sources
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V19/00Fastening of light sources or lamp holders
    • F21V19/001Fastening of light sources or lamp holders the light sources being semiconductors devices, e.g. LEDs
    • F21V19/0015Fastening arrangements intended to retain light sources
    • F21V19/0025Fastening arrangements intended to retain light sources the fastening means engaging the conductors of the light source, i.e. providing simultaneous fastening of the light sources and their electric connections
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V21/00Supporting, suspending, or attaching arrangements for lighting devices; Hand grips
    • F21V21/10Pendants, arms, or standards; Fixing lighting devices to pendants, arms, or standards
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V21/00Supporting, suspending, or attaching arrangements for lighting devices; Hand grips
    • F21V21/10Pendants, arms, or standards; Fixing lighting devices to pendants, arms, or standards
    • F21V21/104Pendants
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V3/00Globes; Bowls; Cover glasses
    • F21V3/04Globes; Bowls; Cover glasses characterised by materials, surface treatments or coatings
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V3/00Globes; Bowls; Cover glasses
    • F21V3/04Globes; Bowls; Cover glasses characterised by materials, surface treatments or coatings
    • F21V3/06Globes; Bowls; Cover glasses characterised by materials, surface treatments or coatings characterised by the material
    • F21V3/062Globes; Bowls; Cover glasses characterised by materials, surface treatments or coatings characterised by the material the material being plastics
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V33/00Structural combinations of lighting devices with other articles, not otherwise provided for
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C2948/00Indexing scheme relating to extrusion moulding
    • B29C2948/92Measuring, controlling or regulating
    • B29C2948/92009Measured parameter
    • B29C2948/92209Temperature
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08KUse of inorganic or non-macromolecular organic substances as compounding ingredients
    • C08K2201/00Specific properties of additives
    • C08K2201/011Nanostructured additives
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08KUse of inorganic or non-macromolecular organic substances as compounding ingredients
    • C08K2201/00Specific properties of additives
    • C08K2201/014Additives containing two or more different additives of the same subgroup in C08K
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08LCOMPOSITIONS OF MACROMOLECULAR COMPOUNDS
    • C08L2203/00Applications
    • C08L2203/20Applications use in electrical or conductive gadgets
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08LCOMPOSITIONS OF MACROMOLECULAR COMPOUNDS
    • C08L2205/00Polymer mixtures characterised by other features
    • C08L2205/02Polymer mixtures characterised by other features containing two or more polymers of the same C08L -group
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08LCOMPOSITIONS OF MACROMOLECULAR COMPOUNDS
    • C08L2205/00Polymer mixtures characterised by other features
    • C08L2205/03Polymer mixtures characterised by other features containing three or more polymers in a blend
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08LCOMPOSITIONS OF MACROMOLECULAR COMPOUNDS
    • C08L2205/00Polymer mixtures characterised by other features
    • C08L2205/03Polymer mixtures characterised by other features containing three or more polymers in a blend
    • C08L2205/035Polymer mixtures characterised by other features containing three or more polymers in a blend containing four or more polymers in a blend

Abstract

The invention discloses a fluorescent lamp. The fluorescent lamp comprises an aluminum-base cooling base, wherein an installation position is set in the aluminum-base cooling base, a through hole which penetrates through the whole aluminum-base cooling base is formed between the installation position and the aluminum-base cooling base along the length direction, a cooling coating is applied to the inner wall of the through hole, an LED (Light Emitting Diode) assembly is arranged in the installation position, a lampshade is arranged on the aluminum-base cooling base, connecting parts are respectively formed on both sides of the upper end of the aluminum-base cooling base, chutes are formed in the connecting parts, connecting sliding blocks are arranged in positions, which correspond to the chutes, of the lower end of the lampshade, the connecting sliding blocks are inserted into the chutes, long grooves are formed in the outer walls of the connecting parts along the length direction, cooling holes are formed in the long grooves, mosquito screens are arranged in the cooling holes, and the lampshade is made of impact resistant polycarbonate. The fluorescent lamp has the advantages of good cooling effect, long service life and strong impact resistant capability of the lampshade.

Description

A kind of daylight lamp
Technical field
The present invention relates to a kind of daylight lamp.
Background technology
Existing led daylight lamp, the heat that its luminous body produces cannot be realized in small space Forced convertion is radiated, so the radiating effect of existing led daylight lamp is relatively poor, thus seriously Impact led daylight lamp service life, existing its lampshade of led daylight lamp typically adopt glass or The material of person's acrylic etc makes, and its impact resistance is relatively poor, is transporting or was using It is easily damaged in journey.
Content of the invention
The invention aims to overcoming weak point of the prior art, provide a kind of proportioning Rationally, good heat dissipation effect long service life, the led daylight lamp of lampshade strong shock resistance.
In order to achieve the above object, the present invention adopts below scheme:
A kind of daylight lamp, includes aluminium base heat dissipation base, is provided with described aluminium base heat dissipation base Installation position, is provided between described installation position and aluminium base heat dissipation base and runs through whole aluminum along its length The through hole of base heat dissipation base, is provided with thermal dispersant coatings in described through-hole wall, on described installation position It is provided with led assembly, described aluminium base heat dissipation base is provided with lampshade, in the radiating of described aluminium base Base upper end is respectively equipped with connecting portion on both sides, is provided with chute, described on described connecting portion Lampshade lower end position corresponding with chute is provided with connection sliding block, and described connection sliding block is plugged on In chute, it is provided with elongated grooves along its length in described connecting portion outer wall, recessed in described elongated It is provided with louvre in groove, be provided with Anti-mosquito mesh in described radiating in the hole, described lampshade is by impact-resistant Makrolon material is made, and described impact-resistant makrolon material is made by the following method Standby:
Step a, the preparation of precast body: by weight, take fatty acid calcium 20-30 part, heating To 150-170 DEG C, it is subsequently adding silica powder 20-30 part, glass fibre 0.5-1 part, stirs Mix uniformly, after cooling, obtain modified powder;Again modified powder and polyethylene 10-20 part are existed Just mixed in mixer, add ethylene bis stearamide 5-10 part, chlorinated polyethylene 5-10 part, Mix homogeneously after intensification, is cooled to room temperature, obtains precast body;
Step b, by the precast body in step a and Merlon 40-60 part, the double propylene of butanediol Acid esters 3-5 part, antioxidant 0.5-1 part, silane coupler 0.5-1 part, lubricant 0.5-1 part, Mix homogeneously, obtains mixture;
Step c, by mixture send into double screw extruder in extruding pelletization, you can.
A kind of daylight lamp is it is characterised in that described thermal dispersant coatings wrap by weight as above Include following components:
A kind of daylight lamp is it is characterised in that described polycarbonate waterborne polyurethane as above It is prepared by the following method:
The PCDL of 1000 weight portions is added in the container of belt stirrer, is warmed up to 100-120 DEG C, vacuum distillation 0.5-1 hour, it is cooled to 75-85 DEG C, add 300 weight portions 2,4 toluene diisocyanate, vacuum dehydration 0.5-1 hour, it is passed through nitrogen, plus 450 weights Amount part enters reaction 2-3 hour at isophorone diisocyanate, 70-90 DEG C, adds 80-120 The acetone of weight portion, is cooled to 25-40 DEG C, adds in the triethylamine of 90-100 weight portion and anti- Answer 10-20 minute, add 30-50 weight portion n- methyl pyrrolidone, anti-at 60-65 DEG C Answer 0.5 hour, add 100 weight portion butanone and 156 weight portion BDOs, reaction 1-2 hour, adds 800-900 parts by weight of deionized water and 70-80 weight portion trifluoroacetic acid, Dispersed with stirring is uniform, you can.
A kind of daylight lamp is it is characterised in that also include the three of 0.5-1 weight portion as above Al 2 O, the zirconium oxide of 0.1-1 weight portion, described firming agent is isocyanates.
A kind of daylight lamp is it is characterised in that on described aluminium base heat dissipation base outer wall as above It is provided with some fin.
A kind of daylight lamp is it is characterised in that described led assembly includes as above Pcb plate, is provided with led chip on described pcb plate.
In sum, the present invention with respect to prior art its advantage is:
The good heat dissipation effect of thermal dispersant coatings in the present invention, so that the heat that led assembly sends Amount can greatly improve heat exchanger effectiveness in small space, improves running environment.Effectively extend The service life of led daylight lamp.
Carbon nanotube chemical stable performance in the present invention, has very strong stability, corrosion resistance, Coated article can be protected, increase its service life.
In the present invention polycarbonate waterborne polyurethane latex film have excellent tensile strength and Elongation at break, has excellent hydrolytic stability.
Led fluorescent structure of the present invention is simple, easy for installation, good heat dissipation effect, service life Long.
Brief description
Fig. 1 is the generalized section of the present invention.
Specific embodiment
With reference to specific embodiment, the invention will be further described:
As shown in figure 1, a kind of daylight lamp, include aluminium base heat dissipation base, dissipate in described aluminium base Hot base is provided with installation position 2, is provided with along length between described installation position 2 and aluminium base heat dissipation base The through hole 3 of whole aluminium base heat dissipation base is run through in degree direction, is provided with radiating in described through hole 3 inwall Coating 4, is provided with led assembly 5 on described installation position 2, on described aluminium base heat dissipation base It is provided with lampshade 6, described aluminium base heat dissipation base upper end both sides are respectively equipped with connecting portion, in institute State connecting portion and be provided with chute 12, on the position corresponding with chute 12 of described lampshade 6 lower end It is provided with connection sliding block 61, described connection sliding block 61 is plugged in chute 12, in described company Socket part outer wall is provided with elongated grooves 110 along its length, is provided with described elongated grooves 110 Louvre 111, is provided with Anti-mosquito mesh 112 in described louvre 111, and described lampshade 6 is by resistance to The makrolon material of impact is made, and described impact-resistant makrolon material passes through with lower section Prepared by method:
Step a, the preparation of precast body: by weight, take fatty acid calcium 20-30 part, plus Heat, to 150-170 DEG C, is subsequently adding silica powder 20-30 part, glass fibre 0.5-1 part, Stir, after cooling, obtain modified powder;Again by modified powder and polyethylene 10-20 part Just mixed in mixer, add ethylene bis stearamide 5-10 part, chlorinated polyethylene 5-10 Part, mix homogeneously after intensification, it is cooled to room temperature, obtain precast body;
Step b, by the precast body in step a and Merlon 40-60 part, the double propylene of butanediol Acid esters 3-5 part, antioxidant 0.5-1 part, silane coupler 0.5-1 part, lubricant 0.5-1 part, Mix homogeneously, obtains mixture;
Step c, by mixture send into double screw extruder in extruding pelletization, you can.
Thermal dispersant coatings 4 of the present invention include following components by weight:
Polycarbonate waterborne polyurethane of the present invention is prepared by the following method:
The PCDL of 1000 weight portions is added in the container of belt stirrer, is warmed up to 100-120 DEG C, vacuum distillation 0.5-1 hour, it is cooled to 75-85 DEG C, add 300 weight portions 2,4 toluene diisocyanate, vacuum dehydration 0.5-1 hour, it is passed through nitrogen, plus 450 weights Amount part enters reaction 2-3 hour at isophorone diisocyanate, 70-90 DEG C, adds 80-120 The acetone of weight portion, is cooled to 25-40 DEG C, adds in the triethylamine of 90-100 weight portion and anti- Answer 10-20 minute, add 30-50 weight portion n- methyl pyrrolidone, anti-at 60-65 DEG C Answer 0.5 hour, add 100 weight portion butanone and 156 weight portion BDOs, reaction 1-2 hour, adds 800-900 parts by weight of deionized water and 70-80 weight portion trifluoroacetic acid, Dispersed with stirring is uniform, you can.
Present invention additionally comprises there being the aluminium sesquioxide of 0.5-1 weight portion, the oxygen of 0.1-1 weight portion Change zirconium, described firming agent is isocyanates.
The present invention is provided with some fin on described aluminium base heat dissipation base outer wall.
Led assembly 5 of the present invention includes pcb plate, sets on described pcb plate There is led chip.
Embodiment 1
The preparation method of the impact-resistant Merlon of the present invention, comprises the steps:
1st step, the preparation of precast body: take fatty acid calcium 20kg, be heated to 150 DEG C, then Add silica powder 20kg, glass fibre 0.5kg, stir, after cooling, obtain Modified powder;Again that modified powder is just mixed in mixer with polyethylene 10kg, add second Support bis-stearamides 5kg, chlorinated polyethylene 5kg, mix homogeneously after intensification, it is cooled to room temperature, Obtain precast body, the length of described glass fibre is 10~500 microns;
2nd step, by precast body, Merlon 40kg, butanediol double methacrylate 3kg, anti- Oxygen agent 0.5kg, silane coupler kh-570 0.5kg, lubricant 0.5kg, mix homogeneously, obtain To mixture;Described antioxidant is antioxidant 1010;
3rd step, by mixture send into double screw extruder in extruding pelletization, you can, twin screw 190 DEG C of extruder extrusion temperature one area's temperature, 200 DEG C of two area's temperature, 220 DEG C of three area's temperature, Four 210 DEG C of area's temperature, 230 DEG C of five area's temperature, screw speed is 180rpm.
Embodiment 2
The preparation method of the impact-resistant Merlon of the present invention, comprises the steps:
1st step, the preparation of precast body: take fatty acid calcium 30kg, be heated to 170 DEG C, then Add silica powder 30kg, glass fibre 1kg, stir, after cooling, changed Property powder body;Again that modified powder is just mixed in mixer with polyethylene 20kg, add ethylene Bis-stearamides 10kg, chlorinated polyethylene 10kg, mix homogeneously after intensification, it is cooled to room temperature, Obtain precast body, the length of described glass fibre is 10~500 microns;
2nd step, by precast body, Merlon 60kg, butanediol double methacrylate 5kg, anti- Oxygen agent 1kg, silane coupler kh-570 1kg, lubricant 1kg, mix homogeneously, mixed Thing;Described antioxidant is antioxidant 1010;
3rd step, by mixture send into double screw extruder in extruding pelletization, you can, twin screw 190 DEG C of extruder extrusion temperature one area's temperature, 200 DEG C of two area's temperature, 220 DEG C of three area's temperature, Four 210 DEG C of area's temperature, 230 DEG C of five area's temperature, screw speed is 180rpm.
Embodiment 3
The preparation method of the impact-resistant Merlon of the present invention, comprises the steps:
1st step, the preparation of precast body: take fatty acid calcium 25kg, be heated to 160 DEG C, then Add silica powder 25kg, glass fibre 0.8kg, stir, after cooling, obtain Modified powder;Again that modified powder is just mixed in mixer with polyethylene 15kg, add second Support bis-stearamides 8kg, chlorinated polyethylene 7kg, mix homogeneously after intensification, it is cooled to room temperature, Obtain precast body, the length of described glass fibre is 10~500 microns;
2nd step, by precast body, Merlon 50kg, butanediol double methacrylate 4kg, antioxidant 0.6kg, silane coupler kh-570 0.8kg, lubricant 0.6kg, mix homogeneously, is mixed Compound;Described antioxidant is antioxidant 1010;
3rd step, by mixture send into double screw extruder in extruding pelletization, you can, twin screw 195 DEG C of extruder extrusion temperature one area's temperature, 205 DEG C of two area's temperature, 225 DEG C of three area's temperature, Four 220 DEG C of area's temperature, 235 DEG C of five area's temperature, screw speed is 200rpm.
Reference examples 1
Difference with embodiment 3 is: does not carry out the preparation of precast body, glass fibre is the 2nd Add in step.
1st step, by Merlon 50kg, butanediol double methacrylate 4kg, antioxidant 0.6kg, Silane coupler kh-570 0.8kg, lubricant 0.6kg, glass fibre 15kg, mix homogeneously, Obtain mixture;Described antioxidant is antioxidant 1010, and the length of described glass fibre is 10~500 microns;
2nd step, by mixture send into double screw extruder in extruding pelletization, you can, twin screw 195 DEG C of extruder extrusion temperature one area's temperature, 205 DEG C of two area's temperature, 225 DEG C of three area's temperature, Four 220 DEG C of area's temperature, 235 DEG C of five area's temperature, screw speed is 200rpm.
Reference examples 2
Difference with embodiment 3 is: glass fibre adds in the 2nd step.
1st step, the preparation of precast body: take fatty acid calcium 25kg, be heated to 160 DEG C, then Add silica powder 25kg, stir, after cooling, obtain modified powder;Again by modification Powder body and polyethylene 15kg are just mixed in mixer, add ethylene bis stearamide 8kg, Chlorinated polyethylene 7kg, mix homogeneously after intensification, it is cooled to room temperature, obtain precast body;
2nd step, by precast body, Merlon 50kg, butanediol double methacrylate 4kg, anti- Oxygen agent 0.6kg, silane coupler kh-570 0.8kg, lubricant 0.6kg, glass fibre 0.8kg, Mix homogeneously, obtains mixture;Described antioxidant is antioxidant 1010, described glass fibers The length of dimension is 10~500 microns;
3rd step, by mixture send into double screw extruder in extruding pelletization, you can, twin screw 195 DEG C of extruder extrusion temperature one area's temperature, 205 DEG C of two area's temperature, 225 DEG C of three area's temperature, Four 220 DEG C of area's temperature, 235 DEG C of five area's temperature, screw speed is 200rpm.
Reference examples 3
Difference with embodiment 3 is: does not add chlorinated polyethylene in the 1st step.
The preparation method of impact-resistant Merlon, comprises the steps:
1st step, the preparation of precast body: take fatty acid calcium 25kg, be heated to 160 DEG C, then Add silica powder 25kg, glass fibre 0.8kg, stir, after cooling, obtain Modified powder;Again that modified powder is just mixed in mixer with polyethylene 15kg, add second Support bis-stearamides 8kg, mix homogeneously after intensification, it is cooled to room temperature, obtain precast body, institute The length of the glass fibre stated is 10~500 microns;
2nd step, by precast body, Merlon 50kg, butanediol double methacrylate 4kg, anti- Oxygen agent 0.6kg, silane coupler kh-570 0.8kg, lubricant 0.6kg, mix homogeneously, obtain To mixture;Described antioxidant is antioxidant 1010;
3rd step, by mixture send into double screw extruder in extruding pelletization, you can, twin screw 195 DEG C of extruder extrusion temperature one area's temperature, 205 DEG C of two area's temperature, 225 DEG C of three area's temperature, Four 220 DEG C of area's temperature, 235 DEG C of five area's temperature, screw speed is 200rpm.
Performance test table 1
From table 1 it follows that Merlon provided by the present invention has good machinery by force Degree.Be can be seen that with reference examples 1 contrast by embodiment can be notable by introducing precast body Ground improves tensile strength;By embodiment and reference examples 2 as can be seen that passing through glass fibre It is prepared in the resistance to notch impact strength that can preferably improve polyester in precast body.By embodiment With reference examples 3 as can be seen that heat change can be improved by introducing chlorinated polyethylene in precast body Shape temperature.
Embodiment 4
Thermal dispersant coatings of the present invention, include following components by weight:
Wherein said polycarbonate waterborne polyurethane is prepared by the following method:
The PCDL of 1000 weight portions is added in the container of belt stirrer, is warmed up to 100 DEG C, vacuum distillation 0.5 hour, it is cooled to 75 DEG C, add 300 weight portions 2,4- Toluene di-isocyanate(TDI), vacuum dehydration 0.5 hour, it is passed through nitrogen, plus 450 weight portions enter Isophorone diisocyanate, reacts 2-3 hour, adds the acetone of 80 weight portions at 70 DEG C, It is cooled to 25 DEG C, the triethylamine neutralization reaction of addition 90 weight portions 10 minutes, add 30 weights Amount part n- methyl pyrrolidone, reacts 0.5 hour at 60-65 DEG C, adds 100 weight portions Butanone and 156 weight portion BDOs, react 1-2 hour, add 800 weight portions to go Ionized water and 70 weight portion trifluoroacetic acids, dispersed with stirring is uniform, you can.
The preparation method of described aqueouss CNT heat radiation coating, comprises the following steps:
A, by CNT add appropriate volume than the dense h for 3: 12so4With dense hno3Mixed In acid, 60 DEG C of acidifying 1h, clean after reaction to neutrality and are vacuum dried;
B, will the CNT in step a and dispersant tnwdis add ultrasonic in acrylic acid Dispersion 20 minutes, forms dispersion;
C, by polycarbonate waterborne polyurethane, epoxy resin modified acrylic resin, poly- carbon Acid esters, carborundum, are heated to 60 DEG C, and 900r/min stirs 0.5 hour, resulting dispersion system;
D, by the dispersion mix and blend in the dispersion and step c in step b Uniformly, then it is ground to 30 μm, be subsequently adding firming agent ultrasonic disperse uniformly.
Embodiment 5
Thermal dispersant coatings of the present invention, include following components by weight:
Wherein said polycarbonate waterborne polyurethane is prepared by the following method:
The PCDL of 1000 weight portions is added in the container of belt stirrer, is warmed up to 120 DEG C, vacuum distillation 0.5-1 hour, it is cooled to 85 DEG C, add 300 weight portions 2,4- Toluene di-isocyanate(TDI), vacuum dehydration 1 hour, it is passed through nitrogen, plus 450 weight portions enter Isophorone diisocyanate, reacts 3 hours at 90 DEG C, adds the third of 120 weight portions Ketone, is cooled to 40 DEG C, the triethylamine neutralization reaction of addition 100 weight portions 20 minutes, plus Enter 50 weight portion n- methyl pyrrolidones, react 0.5 hour at 60-65 DEG C, add 100 Weight portion butanone and 156 weight portion BDOs, react 1-2 hour, add 900 weights Amount part deionized water and 80 weight portion trifluoroacetic acids, dispersed with stirring is uniform, you can.
The preparation method of described aqueouss CNT heat radiation coating, comprises the following steps:
A, by CNT add appropriate volume than the dense h for 3: 12so4With dense hno3Mixed In acid, 60 DEG C of acidifying 4h, clean after reaction to neutrality and are vacuum dried;
B, will the CNT in step a and dispersant tnwdis add ultrasonic in acrylic acid Dispersion 60 minutes, forms dispersion;
C, by polycarbonate waterborne polyurethane, epoxy resin modified acrylic resin, poly- carbon Acid esters, carborundum, are heated to 75 DEG C, and 900-1200r/min stirs 2 hours, resulting dispersion System;
D, by the dispersion mix and blend in the dispersion and step c in step b Uniformly, then it is ground to 50 μm, be subsequently adding firming agent ultrasonic disperse uniformly.
Embodiment 6
Thermal dispersant coatings of the present invention, include following components by weight:
Wherein said polycarbonate waterborne polyurethane is prepared by the following method:
The PCDL of 1000 weight portions is added in the container of belt stirrer, is warmed up to 120 DEG C, vacuum distillation 0.6 hour, it is cooled to 75-85 DEG C, add 300 weight portions 2,4- Toluene di-isocyanate(TDI), vacuum dehydration 0.5-1 hour, it is passed through nitrogen, plus 450 weight portions Enter isophorone diisocyanate, react 2.5 hours at 80 DEG C, add the third of 100 weight portions Ketone, is cooled to 30 DEG C, the triethylamine neutralization reaction of addition 95 weight portions 15 minutes, adds 40 weight portion n- methyl pyrrolidones, react 0.5 hour at 62 DEG C, add 100 weight Part butanone and 156 weight portion BDOs, react 1.5 hours, add 850 weight portions Deionized water and 75 weight portion trifluoroacetic acids, dispersed with stirring is uniform, you can.
The preparation method of described aqueouss CNT heat radiation coating, comprises the following steps:
A, by CNT add appropriate volume than the dense h for 3: 12so4With dense hno3Mixed In acid, 60 DEG C of acidifying 2h, clean after reaction to neutrality and are vacuum dried;
B, will the CNT in step a and dispersant tnwdis add ultrasonic in acrylic acid Dispersion 40 minutes, forms dispersion;
C, by polycarbonate waterborne polyurethane, epoxy resin modified acrylic resin, poly- carbon Acid esters, carborundum, are heated to 70 DEG C, and 1200r/min stirs 1 hour, resulting dispersion system;
D, by the dispersion mix and blend in the dispersion and step c in step b Uniformly, then it is ground to 40 μm, be subsequently adding firming agent ultrasonic disperse uniformly.
Embodiment 7
Thermal dispersant coatings of the present invention, include following components by weight:
Wherein said polycarbonate waterborne polyurethane is prepared by the following method:
The PCDL of 1000 weight portions is added in the container of belt stirrer, is warmed up to 100 DEG C, vacuum distillation 0.5 hour, it is cooled to 80 DEG C, add 300 weight portions 2,4- Toluene di-isocyanate(TDI), vacuum dehydration 0.5 hour, it is passed through nitrogen, plus 450 weight portions enter Isophorone diisocyanate, reacts 2 hours at 80 DEG C, adds the acetone of 100 weight portions, It is cooled to 40 DEG C, the triethylamine neutralization reaction of addition 95 weight portions 20 minutes, add 50 Weight portion n- methyl pyrrolidone, reacts 0.5 hour at 60 DEG C, adds 100 weight portions Butanone and 156 weight portion BDOs, react 1-2 hour, add 900 weight portions to go Ionized water and 70 weight portion trifluoroacetic acids, dispersed with stirring is uniform, you can.
The preparation method of described aqueouss CNT heat radiation coating, comprises the following steps:
A, by CNT add appropriate volume than the dense h for 3: 12so4With dense hno3Mixed In acid, 60 DEG C of acidifying 1-4h, clean after reaction to neutrality and are vacuum dried;
B, will the CNT in step a and dispersant tnwdis add ultrasonic in acrylic acid Dispersion 60 minutes, forms dispersion;
C, by polycarbonate waterborne polyurethane, epoxy resin modified acrylic resin, poly- carbon Acid esters, carborundum, are heated to 60 DEG C, and 1200r/min stirs 1 hour, resulting dispersion system ⅱ;
D, by the dispersion mix and blend in the dispersion and step c in step b Uniformly, then it is ground to 30-50 μm, be subsequently adding firming agent ultrasonic disperse uniformly. Embodiment 8
Thermal dispersant coatings of the present invention, include following components by weight:
Wherein said polycarbonate waterborne polyurethane is prepared by the following method:
The PCDL of 1000 weight portions is added in the container of belt stirrer, is warmed up to 120 DEG C, vacuum distillation 1 hour, it is cooled to 85 DEG C, add 300 weight portions 2,4- first Phenylene diisocyanate, vacuum dehydration 0.5 hour, be passed through nitrogen, plus 450 weight portions enter different Isophorone diisocyanate, reacts 2-3 hour, adds the acetone of 120 weight portions at 70 DEG C, It is cooled to 25 DEG C, the triethylamine neutralization reaction of addition 100 weight portions 20 minutes, add 30 weight portion n- methyl pyrrolidones, react 0.5 hour at 65 DEG C, add 100 weights Amount part butanone and 156 weight portion BDOs, react 1 hour, add 900 weight Part deionized water and 70 weight portion trifluoroacetic acids, dispersed with stirring is uniform, you can.
The preparation method of described aqueouss CNT heat radiation coating, comprises the following steps:
A, by CNT add appropriate volume than the dense h for 3: 12so4With dense hno3Mixed In acid, 60 DEG C of acidifying 2h, clean after reaction to neutrality and are vacuum dried;
B, will the CNT in step a and dispersant tnwdis add ultrasonic in acrylic acid Dispersion 30 minutes, forms dispersion;
C, by polycarbonate waterborne polyurethane, epoxy resin modified acrylic resin, poly- carbon Acid esters, carborundum, are heated to 65 DEG C, and 900-1200r/min stirs 1 hour, resulting dispersion System;
D, by the dispersion mix and blend in the dispersion and step c in step b Uniformly, then it is ground to 30 μm, be subsequently adding firming agent ultrasonic disperse uniformly.
Embodiment 9
Thermal dispersant coatings of the present invention, include following components by weight:
Wherein said polycarbonate waterborne polyurethane is prepared by the following method:
The PCDL of 1000 weight portions is added in the container of belt stirrer, is warmed up to 120 DEG C, vacuum distillation 0.6 hour, it is cooled to 75-85 DEG C, add 300 weight portions 2,4- Toluene di-isocyanate(TDI), vacuum dehydration 0.5-1 hour, it is passed through nitrogen, plus 450 weight portions Enter isophorone diisocyanate, react 2.5 hours at 80 DEG C, add the third of 100 weight portions Ketone, is cooled to 30 DEG C, the triethylamine neutralization reaction of addition 95 weight portions 15 minutes, adds 40 weight portion n- methyl pyrrolidones, react 0.5 hour at 62 DEG C, add 100 weight Part butanone and 156 weight portion BDOs, react 1.5 hours, add 850 weight portions Deionized water and 75 weight portion trifluoroacetic acids, dispersed with stirring is uniform, you can.
The preparation method of described aqueouss CNT heat radiation coating, comprises the following steps:
A, by CNT add appropriate volume than the dense h for 3: 12so4With dense hno3Mixed In acid, 60 DEG C of acidifying 2h, clean after reaction to neutrality and are vacuum dried;
B, will the CNT in step a and dispersant tnwdis add ultrasonic in acrylic acid Dispersion 40 minutes, forms dispersion;
C, by polycarbonate waterborne polyurethane, epoxy resin modified acrylic resin, poly- carbon Acid esters, carborundum, are heated to 70 DEG C, and 1200r/min stirs 1 hour, resulting dispersion system;
D, by the dispersion mix and blend in the dispersion and step c in step b Uniformly, then it is ground to 40 μm, be subsequently adding firming agent ultrasonic disperse uniformly.
Embodiment 10
Thermal dispersant coatings of the present invention, include following components by weight:
The PCDL of 1000 weight portions is added in the container of belt stirrer, is warmed up to 120 DEG C, vacuum distillation 0.5-1 hour, it is cooled to 85 DEG C, add 300 weight portions 2,4- Toluene di-isocyanate(TDI), vacuum dehydration 1 hour, it is passed through nitrogen, plus 450 weight portions enter Isophorone diisocyanate, reacts 3 hours at 90 DEG C, adds the third of 120 weight portions Ketone, is cooled to 40 DEG C, the triethylamine neutralization reaction of addition 100 weight portions 20 minutes, plus Enter 50 weight portion n- methyl pyrrolidones, react 0.5 hour at 60-65 DEG C, add 100 Weight portion butanone and 156 weight portion BDOs, react 1-2 hour, add 900 weights Amount part deionized water and 80 weight portion trifluoroacetic acids, dispersed with stirring is uniform, you can.
The preparation method of described aqueouss CNT heat radiation coating, comprises the following steps:
A, by CNT add appropriate volume than the dense h for 3: 12so4With dense hno3Mixed In acid, 60 DEG C of acidifying 4h, clean after reaction to neutrality and are vacuum dried;
B, will the CNT in step a and dispersant tnwdis add ultrasonic in acrylic acid Dispersion 60 minutes, forms dispersion;
C, by polycarbonate waterborne polyurethane, epoxy resin modified acrylic resin, poly- carbon Acid esters, carborundum, are heated to 75 DEG C, and 900-1200r/min stirs 2 hours, resulting dispersion System;
D, by the dispersion mix and blend in the dispersion and step c in step b Uniformly, then it is ground to 50 μm, be subsequently adding firming agent ultrasonic disperse uniformly.
Verify the heat dispersion of heat radiation coating of the present invention by tests below further:
Take 8 pieces of aluminium bases to mark respectively, plate 1, plate 2, plate 3, plate 4, plate 5, plate 6, plate 7, Plate 8;Wherein plate 1 is not coated with heat radiation coating, and plate 2-8 surface applies embodiment of the present invention 4-10 respectively successively In heat radiation coating, after solidification, its performance is detected;Plate 1 is positioned over heating plate to plate 8 On, be sequentially adjusted in temperature 50 C, 80 DEG C, 100 DEG C, 150 DEG C, 200 DEG C, 250 DEG C, 300 DEG C, Every time after homoiothermic, balance is further continued for being heated to next temperature, using temperature measurer record for 60 minutes Temperature, result is as shown in table 2,25 DEG C of room temperature.
Table 2
Initial temperature DEG C 50 80 100 150 200 250 300
After plate 1 balances 60 minutes 38 69 78 121 155 198 243
After plate 2 balances 60 minutes 28 53 61 86 116 164 207
After plate 3 balances 60 minutes 26 51 59 83 110 152 195
After plate 4 balances 60 minutes 25 50 55 83 105 148 193
After plate 5 balances 60 minutes 27 53 52 86 108 143 200
After plate 6 balances 60 minutes 24 47 50 80 105 138 189
After plate 7 balances 60 minutes 23 45 49 78 102 135 189
After plate 8 balances 60 minutes 24 47 52 81 107 144 194
Can clearly show that from table 2 the aluminium base plate temperature scribbling heat radiation coating of the present invention is all far low In the aluminium base being not coated with thermal dispersant coatings, illustrate that thermal dispersant coatings of the present invention have good radiating effect Really.
The ultimate principle of the present invention and principal character and the present invention have been shown and described above Advantage.It should be understood by those skilled in the art that, the present invention is not restricted to the described embodiments, Merely illustrating the principles of the invention described in above-described embodiment and description, without departing from this On the premise of bright spirit and scope, the present invention also has various changes and modifications, these change and Improvement both falls within scope of the claimed invention.Claimed scope is by appended Claims and its equivalent thereof.

Claims (5)

1. a kind of daylight lamp,Include aluminium base heat dissipation base,Installation position (2) is provided with described aluminium base heat dissipation base,It is provided with the through hole (3) running through whole aluminium base heat dissipation base along its length between described installation position (2) and aluminium base heat dissipation base,It is provided with thermal dispersant coatings (4) in described through hole (3) inwall,Led assembly (5) is provided with described installation position (2),Lampshade (6) is provided with described aluminium base heat dissipation base,Described aluminium base heat dissipation base upper end both sides are respectively equipped with connecting portion,Chute (12) is provided with described connecting portion,Described lampshade (6) lower end position corresponding with chute (12) is provided with connection sliding block (61),Described connection sliding block (61) is plugged in chute (12),It is provided with elongated grooves (110) in described connecting portion outer wall along its length,It is provided with louvre (111) in described elongated grooves (110),It is provided with Anti-mosquito mesh (112) in described louvre (111),Described lampshade (6) is made up of impact-resistant makrolon material,Described impact-resistant makrolon material is prepared by the following method:
Step a, the preparation of precast body: by weight, take fatty acid calcium 20-30 part, be heated to 150-170 DEG C, be subsequently adding silica powder 20-30 part, glass fibre 0.5-1 part, stir, after cooling, obtain modified powder;Again that modified powder is just mixed in mixer with polyethylene 10-20 part, add ethylene bis stearamide 5-10 part, chlorinated polyethylene 5-10 part, mix homogeneously after intensification, be cooled to room temperature, obtain precast body;
Step b, by the precast body in step a and Merlon 40-60 part, butanediol double methacrylate 3-5 part, antioxidant 0.5-1 part, silane coupler 0.5-1 part, lubricant 0.5-1 part, mix homogeneously, obtain mixture;
Step c, by mixture send into double screw extruder in extruding pelletization, you can;
Described thermal dispersant coatings (4) include following components by weight:
2. a kind of daylight lamp according to claim 1 is it is characterised in that described polycarbonate waterborne polyurethane is prepared by the following method:
The PCDL of 1000 weight portions is added in the container of belt stirrer,It is warmed up to 100-120 DEG C,Vacuum distillation 0.5-1 hour,It is cooled to 75-85 DEG C,Add 300 weight portions 2,4- toluene di-isocyanate(TDI),Vacuum dehydration 0.5-1 hour,It is passed through nitrogen,Add 450 weight portion isophorone diisocyanate,2-3 hour is reacted at 70-90 DEG C,Add the acetone of 80-120 weight portion,It is cooled to 25-40 DEG C,Add the triethylamine neutralization reaction 10-20 minute of 90-100 weight portion,Add 30-50 weight portion n- methyl pyrrolidone,React 0.5 hour at 60-65 DEG C,Add 100 weight portion butanone and 156 weight portions 1,4- butanediol,Reaction 1-2 hour,Add 800-900 parts by weight of deionized water and 70-80 weight portion trifluoroacetic acid,Dispersed with stirring is uniform,?.
3. a kind of daylight lamp according to claim 1 is it is characterised in that also include the aluminium sesquioxide of 0.5-1 weight portion, the zirconium oxide of 0.1-1 weight portion, and described firming agent is isocyanates.
4. a kind of daylight lamp according to claim 1 is it is characterised in that be provided with some fin on described aluminium base heat dissipation base outer wall.
5. a kind of daylight lamp according to claim 1, it is characterised in that described led assembly (5) includes pcb plate, is provided with led chip on described pcb plate.
CN201510728033.2A 2014-10-29 2015-10-29 Fluorescent lamp Expired - Fee Related CN105255138B (en)

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CN201410590799.4A CN104292795A (en) 2014-10-29 2014-10-29 Preparation method of impact resistant polycarbonate
CN2014105907994 2014-10-29
CN201510728033.2A CN105255138B (en) 2014-10-29 2015-10-29 Fluorescent lamp

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CN201410590799.4A Pending CN104292795A (en) 2014-10-29 2014-10-29 Preparation method of impact resistant polycarbonate
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CN201510733105.2A Pending CN105240725A (en) 2014-10-29 2015-10-29 Three-layer multi-head LED ceiling lamp
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CN201510732640.6A Pending CN105240722A (en) 2014-10-29 2015-10-29 American type vintga floor lamp
CN201510728167.4A Pending CN105255141A (en) 2014-10-29 2015-10-29 LED (Light Emitting Diode) lamp with good cooling effect
CN201510728108.7A Pending CN105255140A (en) 2014-10-29 2015-10-29 European style multilayer LED living room pendant lamp device
CN201510728654.0A Active CN105258004B (en) 2014-10-29 2015-10-29 A kind of LED daylight lamp of good heat dissipation effect
CN201510728518.1A Pending CN105295330A (en) 2014-10-29 2015-10-29 Simple LED (light emitting diode) wall lamp with good radiating effects
CN201510728428.2A Pending CN105295328A (en) 2014-10-29 2015-10-29 Retro European-style wall lamp with good radiating effects
CN201510732639.3A Pending CN105237991A (en) 2014-10-29 2015-10-29 European-style LED (light-emitting diode) ceiling lamp
CN201510733551.3A Pending CN105240727A (en) 2014-10-29 2015-10-29 Ancient European floor lamp
CN201510728448.XA Pending CN105295329A (en) 2014-10-29 2015-10-29 Duplex floor candle lamp
CN201510729659.5A Pending CN105295333A (en) 2014-10-29 2015-10-29 Simple American-style LED (light emitting diode) floor lamp
CN201510733529.9A Pending CN105237992A (en) 2014-10-29 2015-10-29 European aisle wall lamp
CN201510728515.8A Expired - Fee Related CN105237986B (en) 2014-10-29 2015-10-29 European pendant lamp with good radiating property
CN201510728611.2A Pending CN105237987A (en) 2014-10-29 2015-10-29 Retro European LED wall lamp with good radiating effect
CN201510733016.8A Active CN105385135B (en) 2014-10-29 2015-10-29 European type wall lamp
CN201510728074.1A Pending CN105258043A (en) 2014-10-29 2015-10-29 European-style antique LED floor lamp used in drawing room
CN201510728764.7A Pending CN105258047A (en) 2014-10-29 2015-10-29 Compound-type multi-holder LED pendant lamp
CN201510733046.9A Pending CN105240724A (en) 2014-10-29 2015-10-29 European type floor lamp
CN201510728331.1A Pending CN105419284A (en) 2014-10-29 2015-10-29 European LED aisle wall light with good heat dissipation effect
CN201510728391.3A Pending CN105276464A (en) 2014-10-29 2015-10-29 Ceiling lamp device with good heat dissipation
CN201510728334.5A Pending CN105257993A (en) 2014-10-29 2015-10-29 LED fluorescent lamp with lampshade capable of being opened

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