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Airtight design of houses prevents indoor air from leaking outdoors and at the same time shuts outdoor air off, increasing the effectiveness of air conditioning, contributing to energy saving. Furthermore, airtight sheets prevent vapor generated indoors from entering heat-ray intercepting material, eliminating internal condensation and by maintaining performance of heat-insulating material and assists in the prevention of wood corrosion, improves the durability of houses.

Made form high quality polypropylene (PP), our wide range of filtering materials for filter press machines include lightweight filter plates with excellent chemical resistance and high impact strength, plastic membranes with superb thermal and chemical resistance, and filter-press-plate unit combined with anticorrosive plastic membrane.

Designing comfort and safety of diversifying exterior applications

Our polycarbonate sheets for exterior use are an easy-to-use transparent material with excellent weather and shock resistance. For this reason, it can be bent for installation to fit sashes at room temperature, responding to sophisticated design needs. It also increases the flexibility of future structures as flame resistant roof material to direct sunlight into a house.

The HISHI-NAMI series is applied in such diverse applications as skylights of houses, terrace, balconies, carports, and factories.

HISHIMETAL is a composites material that is produced by laminating PVC film on a base material such as galvanized steel sheets, stainless steel sheets and aluminum sheets. PVC film is a general purpose film and we have employed it as a laminating film for many years.
This material is used in many different industries because it has metal strength and workability in addition to the design qualities and functional properties of plastic film.

AIRLINER is a duct material with the strength of a steel sheet with the properties of a PVC film.
With functionality only possible in composite materials, this product is used to create more comfortable living environments.

HISHIMETAL PO incorporates galvanized steel sheets, stainless steel sheets, and aluminum alloy sheets as a base material.

HISHIMETAL PO is a composite material produced by laminating a polyolefin-based film onto the base material.

This material is used for interior and door etc.

EXUM incorporates galvanized steel sheets, stainless steel sheets, and aluminum alloy sheets as a base material. EXUM is a polyester-based plastic film-laminated steel sheet manufactured by our multi-layer extrusion technology.

This material is primarily used in interior applications due to the combination of metal strength, workability, and design qualities.

HISHIMETAL EX is a highly functional material produced by laminating various high-performance films on a metal sheet using the HISHIMETAL manufacturing techniques. It has new functionalities including reflectivity, insulation and sliding properties.

ALPOLIC is Aluminum Composite Material (ACM) composed of two sheets of aluminum and the thermoplastic core.
ALPOLIC has been global leading ACM since 1970s and has been used worldwide in more than 130 countries.
We have a variety of product lineups with design and function using different types of materials on surface and core materials including ALPOLIC A1 which passed European fire classification A1 as the first ACM in the world, ALPOLIC/fr series which passed fire regulations around the world, and ALPOLIC/fr SCM with stainless steel on its surface.
For the details of products, visit ALPOLIC dedicated website.

Structural Repair and Strengthening Carbon Fiber Fabric

Carbon fiber boasts many advantageous features:
It has a specific gravity just 1/4 that of iron, yet approximately 10 times the strength of steel, and it is highly chemically stable, making it resistant to salt damage.

Replark™ is a repair and reinforcement material made of unidirectional carbon fiber for steel and concrete structures. As a fabric, Replark™ can be applied to structures of various shapes and offers excellent workability.

The grade of Replark™ made with PAN-based carbon fibers can be used to enhance the load bearing capacity of such structures as bridge columns, while the high-elastic-modulus grade made with pitch-based carbon fibers can greatly reduce rebar stress.