Good Stability Insulation Electrical Laminated Wood 0603

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Customization: Available
After-sales Service: One Year Insurance for Quality
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  • Good Stability Insulation Electrical Laminated Wood 0603
  • Good Stability Insulation Electrical Laminated Wood 0603
  • Good Stability Insulation Electrical Laminated Wood 0603
  • Good Stability Insulation Electrical Laminated Wood 0603
  • Good Stability Insulation Electrical Laminated Wood 0603
  • Good Stability Insulation Electrical Laminated Wood 0603
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  • Overview
  • Product Parameters
  • Product Description
  • Detailed Photos
  • Product Display
  • Company Profile
Overview

Basic Info.

Model NO.
Yamaz-0603
Material
Birch
Grain
Irregular Grain
Bonding Strength
I(NQF)
Plywood Type
Veneer Boards
Formaldehyde Emission Standards
E0
Place of Origins
China
Grade
Accepts
Usage
Indoor, Outdoor
Thickness
6-150 mm
Base Material
Wood Veneer
Matrix
Phenolic, Epoxy
Machines Parts
Coil Supporting Platforms, Rings and Segments.
Transport Package
Packaged in Wooden Crates, Wooden Framed Cases
Specification
3000*2000/1500 mm, 2400*1200 mm, 2000*2000 mm
Trademark
Yamazonhome
Origin
Weifang, China
HS Code
4413000000
Production Capacity
50000/Year

Packaging & Delivery

Package Size
100.00cm * 100.00cm * 10.00cm
Package Gross Weight
50.000kg

Product Description

Good Stability Insulation Electrical Laminated Wood 0603
Product Parameters
#Name Good Stability Insulation Electrical Laminated Wood 0603
#Model number Yamaz-0603
#Base Material Wood Veneer
#Matrix Phenolic, Epoxy
#Machines Parts Coil Supporting platforms, rings and segments.
#Thickness  6 to 150 mm
#Rectangular Boards Sheet Size 1220 x 2440 mm
1525 x 3050 mm
1860 x 3660 mm
#Square Boards Sheet Size 1220 x 1220 mm
1525 x 1525 mm
1830 x 1830 mm
#Long Beam Size 600 x 3750 mm
#Cut sizes parts to customer requirements.
1. Standard Specification(Unit mm)
Standard Specification Standard thickness
3000*2000(mm) 10~120(mm)
3000*1500(mm) 10~120(mm)
2400*2000(mm) 10~120(mm)
2400*1200(mm) 10~120(mm)
2000*2000(mm) 10~120(mm)
2. Boards Flatness(Unit mm)
Normal Thickness Distance of points on the veneer face from light weight straight ruler
500 straight ruler 1000 straight ruler
≤15 2.0 4.0
>15…≤25 1.5 3.0
>25…≤60 1.0 2.0
>60 1.0 1.0
3. Ring Flatness(Unit mm)
Normal Thickness Distance of points on the veneer face from light weight straight ruler
500 straight ruler 1000 straight ruler
≤15 2.5 6.0
>15…≤25 2.0 4.0
>25…≤60 1.5 2.0
>60 1.0 1.5
4. Surface Quality
Item Allowed Range
Swelling Not Allowed
Cracking
Dead knot
Foreign-body adhering
Insect hole
Rot
Contamination
Bruising A few allowed,not effect in usage
Impression
Color-odds and Splash
Patches per sq.m.on surtace ≤3
5. Electrical Laminated Wood Technique Target Table
Capability Unit Model

Veneers technique target

Rings technique target
P3B C1B C2B C3B C4B T2B T4B
Appearance Density g/cm³ 1.1-1.2 0.7-0.9 09-1.1 1.1-1.2 1.2-1.3 0.9-1.1 1.2-1.3
Moisture % ≤6 ≤6 ≤6 ≤6 ≤6 ≤6 ≤6
Vertical Layer
Direction Flexural Strength
Direction A




MPa





≥150





≥45





≥55





≥65





≥80
>1000mm
Diameter
>1000mm
≥100 ≥140
Direction B ≤1000mm
Diameter
≤1000mm
≥90 ≥125
Vertical Laver Direction Flexural Modulus of Elasticity Direction A


GPa
≥14


≥4.5



≥6



≥8



≥9



≥10



≥13
Direction B -
(20MPaCompressibility
(Below 20MPa)
c

%
≤3 ≤5 ≤4 ≤3 ≤2.5 ≤5 ≤4
Crev ≥70 ≥70 ≥70 ≥70 ≥70 ≥70 ≥70

()
Impact Strength
(Side Test)
Direction A

KJ/

≥35


≥6


≥10


≥13
 


≥15


≥25


≥35
Direction B -

Shear Strength
MPa ≥8 ≥5 ≥7 ≥8 ≥9 ≥7 ≥9

(90±2)ºC
Vertical Layer Direction Electric Strength
KV/
mm
≥11 ≥9 ≥10 ≥11 ≥2 ≥10 ≥10

(90±2)ºC
Parallel layer Direction Puncture Voltage
KV ≥50 ≥50 ≥50 ≥50 ≥50 ≥50 ≥50
Shrinkage After Dried Direction A


%
≤0.2
≤0.5
≤3
≤0.3
≤0.3
≤3
≤0.3
≤0.3
≤3
≤0.3
≤0.3
≤3
≤0.3
≤0.3
≤3
Girth ≤0.5 ≤0.5
Direction B Thickness ≤3 ≤3
Thickness
Oil Absorption % ≥8 ≥20 ≥15 ≥8 ≥5 ≥15 ≥5

(△tanδ)
Contamination to Liquid Dielectric
_ ≤0.1 ≤0.1 ≤0.1 ≤0.1 ≤0.1 ≤0.1 ≤0.1
6. Normal Thickness and Tolerance (Unit mm)
Normal Thickness Tolerance
≤10 ±1.4
>10…≤15 ±1.6
>15…≤20 ±1.8
>20…≤25 ±2.0
>25…≤30 ±2.2
>30…≤40 ±2.6
>40…≤60 ±3.0
>60…≤100 ±4.0
>100…≤150 ±4.0
7. Boards Normal Length and Width Tolerance (Unit mm)
Length and Width Tolerance
>100 ... ≤250 ±0.8
>250 ... ≤500 ±1.0
>500 ... ≤1000 ±2.0
>1000 ...≤2000 ±3.0
>2000 ±4.0
8. Rings Normal Diameter and Tolerance (Unit mm)
Normal Diameter Tolerance
>250 ... ≤500 ±1.0
>500 ... ≤1000 ±2.0
>1000 ...≤2000 ±3.0
>2000 ±4.0
9. Packing
Packaged in wooden crates, wooden framed cases or other strong enough materials covered with moisture-proof material outside.
Gross weight of each package not exceeds 3000kgs.

10. 
Storage
Products should be stored in a clean and dry room with temperature not exceeding 40'C and should be laid flat wise on a stepping-board which is at least 50mm from the ground,never close to fire source ,heat source and protected against moisture.
Product Description
Good Stability Insulation Electrical Laminated Wood 0603
The development and use of #laminated wood has increased benefits and reduced costs for the transformer manufacturing industry. Electrical #laminated wood is an insulating material with good mechanical properties and good electrical properties, which can replace or partially replace steel structural parts in transformers and mutual inductors, as well as insulating structural parts such as epoxy cloth board and epoxy cardboard. The use of electrical #laminated wood is used to reduce the volume of transformers and transformers and reduce their costs, so it is increasingly used by transformer manufacturers. 
Detailed Photos
Electrical #laminated board is a veneer made of high-quality birch wood, which is cooked, peeled and dried. After being coated with special insulating glue, it is made by high temperature and high pressure.
The specifications of the electrical #laminated wood can be customized according to the needs of customers. We carry out standard measurement and arbitrary zero cutting of the produced electrical #laminated wood to ensure that the produced electrical #laminated wood has a flat surface and a flat cut surface. 
Good Stability Insulation Electrical Laminated Wood 0603
Good Stability Insulation Electrical Laminated Wood 0603
#Laminated wood products are good insulators, so electrical #laminated wood has good electrical insulation. Therefore, electrical #laminated wood is widely used in the field of electrical engineering technology.
In addition, electrical #laminated wood is a veneer made of high temperature and high pressure, cooking, rotary cutting and drying. Electrical #laminated wood has good flame retardant properties. In the event of a system fire, the electrical #laminated wood used in the electrical engineering field will not burn and has good flame retardancy. 
The electrical #laminated wood produced by high pressure is made of special materials with good mechanical strength, and the #laminated wood is not easy to be crushed. During the heating process, the electrical #laminate can withstand high pressures in the range of 120-210 ºC electronic and 130-210 ºC mechanical due to its good stability. When making electrical #laminates, punching, drilling, machining, shearing and sanding can be done with ease.
Good Stability Insulation Electrical Laminated Wood 0603
Good Stability Insulation Electrical Laminated Wood 0603
Electrical #laminated wood has been widely used in oil-immersed transformers to manufacture upper and lower pressure plates, lead brackets, iron yoke pads and other parts, and is used to make clips in transformers. It replaces steel plates, insulating cardboard, epoxy cardboard, etc. The application of epoxy glass cloth board in these aspects reduces the self-weight and material cost of the transformer.
Electrical #laminated wood can be widely used in transformers and transformers as insulation and support materials. It has the advantages of moderate specific gravity, high mechanical strength, easy vacuum drying, good compatibility with transformer oil, and easy machining. Its dielectric constant is close to that of transformer oil, and its insulation coordination is reasonable. 
Good Stability Insulation Electrical Laminated Wood 0603
Good Stability Insulation Electrical Laminated Wood 0603
Densified laminated Wood Boards - DLW
Resin impregnated densified laminated wood - RIDL
DLW + Epoxy glass high strength boards - DLWG
Machines Parts :
Coil Supporting platforms, rings and segments.
Without joint upto 1950 mm outer dia x 150 mm thick
With joints in 180 upto 3300 mm outer dia x 150 mm thick
With epoxy glass matrerial on top and bottom or in between layers
We offer fasteners in BSW and UNC thread specifications.
Parts are made on CNC machines for accurate dimensions as per customer drawings and specifications.
Grades    :    DLW- C2R, C3R, C4R, P2R, P3R, P4R, T2R, T3R.
RIDL - RIDL - P, RIDL - C Glass Reinforced - C2RG, C3RG.
D - Densified, L - Laminated, W - Wood, C - Cross, P - Parallel, T - Tangential R - Beech Wood, 2 - Low Density, 3 - Medium Density, 4 - High Density, RI - Resin Impregnated, G - Giass Reinforcement. All grades as per IEC 61061 and Customers specification.
Good Stability Insulation Electrical Laminated Wood 0603
Good Stability Insulation Electrical Laminated Wood 0603
Good Stability Insulation Electrical Laminated Wood 0603

Good Stability Insulation Electrical Laminated Wood 0603Process method for producing high-strength electrical laminated wood: 
1. For log sorting, select southwestern birch, mountain cherry, or other neutral hard wood with a diameter of more than 40cm and cut it into sections according to the finished product specifications;
2. Steaming: Soak the wood segments in water for 48 hours, then peel and remove the mud and sand, heat and cook to 90--100ºC, the heating rate is 3-5ºC/hour, naturally cool to 80ºC, and keep warm for 24-36 hours;
3. Rotary cutting: cut into veneers according to the thickness of 0.5--1.8mm;
4. Drying and finishing, steam drying at 100-130ºC for 15-20 minutes to remove scars and decayed parts, repair and splice into veneers of a certain specification; it is characterized by using 410 epoxy phenolic resin as the adhesive, and then After the following process
5. Dry the glue on the veneer. After finishing the veneer, the long and short core boards are evenly glued with a glue coating amount of 220--300g/m2, and let it dry at a temperature of 60-80ºC for 15-20 minutes. Control the volatile matter content at 1-2% (weight percent). During this process, the drying temperature is too low or the drying time is too short, the amount of volatile matter will not be reduced much, and the dielectric loss of the finished product will increase, affecting the mechanical and electrical properties of the laminate. There may even be "blasting" delamination resulting in waste products. However, if the drying temperature is too high or the drying time is too long, it is easy to cause the adhesive to be pre-cured and bonding cannot be performed;
6. The diaphragm assembly is hot-pressed, and a high-temperature resistant film, such as polypropylene or polyester film, is used between the slab and the backing plate to separate the slab and the backing plate to prevent impurities on the backing plate from interfering with the layer. To prevent contamination on the surface of pressed wood, improve the appearance quality of the finished product, increase the creepage distance, and ensure the good insulation performance of the product, assemble the blank according to a compression rate of 20-25%, and conduct the preheating stage of the hot pressed laminate according to the following stages. The temperature is 70-70 80ºC unit pressure 25kg/cm2 time 1 minute/mm (finished product thickness) hot pressing stage temperature 120-130ºC unit pressure 60kg/cm2 time 3 minutes/mm (finished product thickness) cooling stage turn off the steam and cool down naturally for 1-2 hours. After cooling with cold water for 2-3 hours, slowly reduce the pressure and remove the board;
7. Final treatment: After the hot-pressed semi-finished product is naturally cooled and finalized for 36-48 hours, it is then subjected to sawing, filling, surface sanding and other treatments to obtain high-strength electrical laminated wood products.
Finished high-strength electrically laminated wood products undergo metal detection before being packaged and shipped. 
 

Product Display

Electrical laminated wood has the characteristics of easy removal of internal gas and moisture, high oil absorption rate, easy impregnation, easy processing, and low cost. Its dielectric constant is close to that of transformer oil and has good compatibility with transformer oil. Electrical laminated wood is suitable for manufacturing insulating structural parts and has great promotion value in the transformer industry.

Good Stability Insulation Electrical Laminated Wood 0603
Good Stability Insulation Electrical Laminated Wood 0603
Good Stability Insulation Electrical Laminated Wood 0603
Good Stability Insulation Electrical Laminated Wood 0603
Good Stability Insulation Electrical Laminated Wood 0603
Good Stability Insulation Electrical Laminated Wood 0603
Company Profile

Good Stability Insulation Electrical Laminated Wood 0603

Good Stability Insulation Electrical Laminated Wood 0603
Good Stability Insulation Electrical Laminated Wood 0603
Good Stability Insulation Electrical Laminated Wood 0603
Good Stability Insulation Electrical Laminated Wood 0603
Good Stability Insulation Electrical Laminated Wood 0603
Good Stability Insulation Electrical Laminated Wood 0603

 

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