Your Professional Energy Storage Thermal Conductive Parts Supplier!

 

Suzhou Hanming Electronic Materials Co., Ltd. was established in March 2010, having over 13 years of professional experience in electronic material manufacturing. The company is mainly engaged in the research and development, as well as post-processing, of branded industrial tapes, EMI shielding materials, insulation materials, foam materials, thermal management materials, etc. These products are applied to consumer electronics such as computers, mobile phones, Netcom devices, and security products; as well as new energy electronics industries such as new energy photovoltaics, energy storage systems, and power batteries.

 
  • Thermally Conductive Gel
    Thermal conductive adhesive, also known as thermal conductive silicone. It is mainly composed of organic silicone gel, with the addition of fillers, thermal conductive materials and other polymer
    read more
  • Battery Thermal Pad
    The design scheme of using gaps to transfer heat is produced, which can fill gaps, open up heat channels between heating and cooling parts, effectively improve heat transfer efficiency, and also play
    read more
 
Why Choose Us

Advanced Equipment

We are equipped with advanced production equipment, including multi-station rolling cutters, die-cutters, sleeve cutters, asynchronous die-cutters, engraving machines, and laser engraving machines, which fully meet the needs of high-precision processing.

Patents

We have applied for over 20 patents and obtained multiple certifications, including ISO 9001 Quality Management System, ISO 14001 Environmental Management System, and IATF 16949 Automotive Quality Management System.

R&D Capabilities

We specialize in the research and development (R&D) as well as manufacturing of materials for the electronics industry. We currently independently develop and produce core raw materials such as silicone foam, PU polyurethane foam, thermal conductive film, and thermal conductive gel. We possess integrated capabilities across the entire supply chain from raw material R&D to processing and die-cutting molding.

24-Hour Online Service

We have a professional R&D and technical support team that provides customers with comprehensive services for raw material production and application. If you encounter any problems during product use, we will respond promptly and provide efficient professional support along with solutions.

 

 

Our Best-Selling Energy Storage Thermal Conductive Parts

 

Thermally Conductive Gel

Thermal conductive adhesive, also known as thermal conductive silicone. It is mainly composed of organic silicone gel, with the addition of fillers, thermal conductive materials and other polymer materials, and is blended to form silicone gel. It has good thermal conductivity and electrical insulation properties and is widely used in electronic components.

Battery Thermal Pad

The design scheme of using gaps to transfer heat is produced, which can fill gaps, open up heat channels between heating and cooling parts, effectively improve heat transfer efficiency, and also play a role in insulation, shock absorption, sealing, etc. It can meet the design requirements of equipment miniaturization and ultra-thin, is highly technical and practical, and has a wide range of thickness applications. It is an excellent thermal conductive filling material.

Thermally Conductive Gel

 

Thermally Conductive Gel Specification

 

Viscosity @25℃ 14#rotor

20*10^4 cps

15*10^4 cps

90*10^4 cps

85*10^4 cps

Density

2.0 g/cc

2.0 g/cc

3.5 g/cc

3.5 g/cc

After Curing

Thermal Conductive

2.0 W/m*K

8.0 W/m*K

Size

50ml

400ml

Density

2.0 g/cc

3.5 g/cc

Hardness

60 Shore00

60 Shore00

Flame Retardant Rating

V0

V0

Surface Dry Time @25℃

90 min

90 min

Curing Time @ 25℃

24 h

24 h

Tensile Strength

0.1 MPa

0.1 MPa

Elongation at Break

30%

30%

Breakdown Voltage

8 kV/mm

8 kV/mm

Volume Resistivity

>1012 Ohm*cm

>1012 Ohm*cm

D4~D10 Content

<100 ppm

<100 ppm

Recommended using temperature range

-40 ~ +150 ℃

-40 ~ +150 ℃

 

Characteristics of Thermally Conductive Gel
 
 

Thermally conductive gel has almost no hardness, is soft and has a strong surface affinity. It can be compressed into a very thin variety of shapes and spread on the surface of various types of non-smooth electronic components, significantly improving the heat transfer efficiency of electronic components.

 
 
 

Thermally conductive gel has viscosity and adhesion, will not be oily and dry, and has very superior reliability.

 
 
 

Thermal gel has a weak adhesion to the surface of the substrate and can be peeled off from the substrate. The electronic components filled with it are reworkable.

 

 

Applications of Thermally Conductive Gel

 

 

Electronics and Computing Devices:

In electronics, our thermally conductive gel helps CPUs, GPUs, and more dissipate heat efficiently. This boosts device performance and lifespan.

 

LED and Communication Equipment:

Thermally conductive gel is key in LED lighting, transferring heat from chips to sinks. It's also vital in communication gear, ensuring thermal management.

 

Automotive and Industrial Applications:

The auto industry uses thermally conductive gel in control units and batteries. We've also made specialized gels for industrial electronics, like power systems.

 

 

Instructions for Use of Thermally Conductive Gel

 

 

When using thermally conductive gel,you need to unscrew the mouth cover, connect the threaded mixing head, then clamp the hose into the bayonet of the AB glue gun, and apply glue hard. The AB glue is extruded from the glue gun to the mixing head, and guided by the thread. Complete the uniform mixing (the two colors A/B are mixed into a uniform color), and finally apply the uniformly mixed thermal conductive glue to the heating position according to the heat dissipation structure design. For the dispensing type, follow the instructions for use of the dispensing machine.

 

Battery Thermal Pad Specification

 

Specific Gravity

3.2g/cc

Thickness

0.012"(0.30mm)~0.200"(5.00mm)

Hardness (thickness<1.0mm)

45(Shore 00)

Continuos Use Temp

-45 to 200℃

Dielectric Breakdown Voltage

≥5500 VAC

Dielectric Constant

6.0MHz

Volume Resistivity

≥1.0X10¹²Ohm-meter

Fire rating

94 V0

Thermal conductivity

5.0W/m-K

 

Battery Thermal Pad Benefits

 

Thermally Conductive Gel

Enhanced Battery Safety:

Effective thermal management is critical for battery safety. By improving heat transfer and mitigating thermal expansion, battery thermal pads help prevent overheating and potential battery malfunctions.

Battery Thermal Pad

Improved Battery Performance:

Maintaining optimal battery temperature allows for better battery performance and efficiency. Battery thermal pads contribute to this by facilitating efficient heat dissipation.

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Extended Battery Lifespan:

Excessive heat can degrade battery performance and lifespan. Battery thermal pads help prevent this by keeping batteries within a safe operating temperature range.

 

Battery Thermal Pad Standard Thicknesses

 0.020" (0.51mm) 0.030" (0.76mm)

0.040" (1.02mm) 0.050" (1.27mm) 0.060" (1.52mm)

0.070" (1.78mm) 0.080" (2.03mm) 0.090" (2.29mm)

0.100" (2.54mm) 0.110" (2.79mm) 0.120" (3.05mm)

0.130" (3.30mm) 0.140" (3.56mm) 0.150" (3.81mm)

0.160" (4.06mm) 0.170" (4.32mm) 0.180" (4.57mm)

0.190" (4.83mm) 0.200" (5.08mm)

 

Application of Battery Thermal Pad

New energy:

EV BTMS, energy storage system battery cooling.

Electronic products:

Smartphones, laptops, LED lighting.

Industrial field:

Automotive, telecom, power electronics.

5G communication:

High-frequency equipment thermal management.

 

Packaging and Shipping

 

Packaging

Plastic bags, cartons

Transportation methods

Road transport, rail transport, sea transport, air transport

 

Our Certificate

 

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FAQ

Q: What are the properties of battery thermal pads?

A: Good thermal conductivity in the vertical z-plane (up to 15 W/m-K)
Environmentally friendly, does not contain any toxic ingredients.
Heat resistant up to 200°C.

Q: How to choose battery thermal pad size?

A: Battery thermal pads offer better heat transfer but might not fill gaps as effectively. Using a thicker pad is recommended when mechanical tolerances are high.

Q: How to check battery thermal pad ?

A: The battery thermal pad is placed in the chamber or oven, and the temperature is raised to a certain level and maintained for a period of time. The thermal stability of the thermal pad can be evaluated by measuring the change in it's thermal conductivity and physical properties before and after the test.

Q: What is thermally conductive gel used for?

A: Thermally conductive gell, also known as thermal paste or thermal compound, is a type of thermally conductive material used to enhance the thermal interface between heat-generating components, such as CPUs, GPUs, power transistors, and their respective heat sinks or cooling solutions.

We're well-known as one of the leading energy storage thermal conductive parts manufacturers and suppliers in China. If you're going to buy high quality energy storage thermal conductive parts made in China, welcome to get more information from our factory. Also, customized service is available.

heat transfer elements for solid-state energy storage projects, energy storage solid-state battery heat dissipation components, heat transfer components for energy storage units
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