Company profile
Suzhou Superstring Advanced Material↔☆ Co,Ltd.
Established in 2019, Suzh←↔₩ou Superstring is a high-tech entγ☆erprise focusing on th±♠'✘e development and production of "★☆Ω←magnetic, electrical and thermal"β γ functional powders. RelγΩ↑∏ying on its independent resea¶∏♠rch and development team, Suzhou≠♥ Superstring is committed to two-dimens✘¶ional soft magnetic alloy powders a®∑∏♥nd spherical suction wav"π☆ eguides. The formulation, technology,↔÷‍ production equipmen≤ t, and inspection and control system o☆‌δf thermal powder and hi×✘→≠gh-conductivity powder materi₽♠©als have been developed an✔₽d created, and more than 10 related ∑ ₩patents have been obt₽&ained, which can achieve an annua®£☆φl output of more than 1,​σ000 tons of functional powder produ‌• cts. The products are mainly$"γ£ used in microwave absorbing materials ®₩≥, millimeter wave absorbing materials, ★α<₩heat absorbing materials and↑₹ electromagnetic shiel∑α★ding products.

We develop new material pr&≥oducts based on customerλαγ needs, and the custom↓δ§★er's competitive advantag‌ ≠e is our top priority. We cε♦ombine material expertise with techni∑"∑↔cal know-how. We pay attentio×φn to your technological proces©Ωs and the challenges and m☆ ♥arket trends you face, and develop hiλ×≠≠gh-quality solutions and testing supp‍÷ort based on this, provide y $<↔ou with professional prodγ™"↑ucts and services, and strengthe★→n your long-term competitiveness. ↓♦
Technology R & D
Equipment Exhibition

Powder sorting equipment

Powder heat treatment equipment

Powder batch equipment

Product Exhibition
Two-dimensional soft Ω✔magnetic powder is made of gran±δular or spherical soft magneticγ¶₽≈ powder (mainly Fe, Ni, Co a•πlloys) through special fla'÷♣λke treatment. After the fla →ke treatment, the powde♥ ✘r breaks the Snoek limit and has the ch☆αaracteristics of high  £€saturation, magnetic induction,'< high permeability and low loss. σ&₽WAVE-VECTOR™-SFP is a unique two-dα↓♦imensional soft magnetic p≈≤owder that achieves optimal settings ∑©δ≤for the real and imaginar±≈₹y parts of complex p'↑ermeability. Reasonably designed p↓β¥₽owders will have domain wall resonan•© ↓ce and natural resonanc'←e at GHz, which is conducive to &₹≥the absorption of electromagnetic w∞∞δaves. Absorbing material$→₹±s made with such powders as a★™bsorbents can be used in the high¶©"-frequency field. &≈✔
Raw material p★γ₹owder with dual functions©♥£© of absorbing and condu σ÷cting heat. Independent researcσ¶™₽h and development of soft magnetic mate‍≠★€rials (the main components ar≈>↕e Fe, Ni, Co alloys) wave absorbi↑₽ng agent and good chemical resistance§λ thermal conductivity agent (the main cδ∑ ∏omponents are Al2O3, BN, AlN and othe∑σr materials), chemical comβ♥α₹position verified by experimental desig★₹£n , The combination of particle✔"÷ size distribution and powder morpholo•>gy realizes the optimal "magnetic↕£§≠", "electric" and "therm©★<al" management functi∑ ¥♥onal characteristics, and also ha ×±s the same filling and₽₹£✘ dispersibility as thermally c↓δ>≤onductive powder. Cust&¥σomized solutions for low→£-cost and high-volum‍↔&e production of wave-absorbing an≈ β♠d thermal conductive materials f∏♠or customers.
0512-3300 2839
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