Factory Supplier for Broke Rod to Muscat Factory

Factory Supplier for
 Broke Rod to Muscat Factory

Short Description:


Product Detail


 

Company Core Philosophy

The company is specialized in casting mould technology design, tooling development, mould   making,gravity casting aluminum alloy products, machining service as a whole, and has 36 seniorr&dengineers. 20 years experience in professional mould making.Strong technical team with certain research and development capabilities.Full machinery focus on quality and after-sales service.

Payment & Delivery

Payment Terms: 30% for deposit, 70% before shipment.

Package Details: usually use the standard 1200*800mm wood pallet, but can customized packaging according to the different products.

Delivery45 days after order confirmation.

jiaotong

Factory Equipment

There are 4 workshops in the company which including tooling workshop, casting workshop , machining workshop ,cleaning workshop and one full-equipped laboratory.

Factory Equipment

Our Certificate

zhengshu

Our Service

liuc

China Foundry Expo

Participate in China Foundry Expo every year.

zhanhui

FAQ

Q:Plant Maturity – Years in service?

A:24 hour

Q:Project Management is existed for new production?

A:Yes,We have

Q:Ownership – Main Share Holders?

A:Private Comp.

Q:Export License and/ or Experience?

A:Yes.

Q:Products Development time?

A:2 Month.

Q:Products Cycle time ?

A:2 Weeks.

 

Product Tags

continue to improve, to ensure product quality in line with market and customer standard requirements. Our company has a quality assurance system have been established for Factory Supplier for Broke Rod to Muscat Factory, We are sincerely welcome good friends from numerous circles at dwelling and abroad come to cooperate!


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  • Watch more Great Craft Ideas videos: http://www.howcast.com/videos/187983-How-to-Turn-a-Used-Vinyl-Record-into-a-Bowl

    Don’t toss that old LP! A few minutes in the oven and you can have a bowl that will be a real conversation piece.

    Step 1: Choose an album
    Choose an album. Then do a quick internet search of the title to make sure you don’t melt a rare LP that’s worth big bucks.

    Step 2: Preheat oven
    Preheat the oven to 200 degrees Fahrenheit.

    Warning
    Do not exceed 200 degrees Fahrenheit, or the record will release toxic fumes into your oven.

    Step 3: Heat the record
    Place the bowl upside-down on the cookie sheet, center the record on top of it, and put it in the oven.

    Step 4: Let it soften
    Let the LP soften until it begins to droop around the bowl, about five to eight minutes.

    Step 5: Remove from heat
    When the record feels pliable, use pot holders or oven mitts to lift the cookie sheet out of the oven and turn the bowl over. Place the record inside it.

    Tip
    Be careful! The bowl and the cookie sheet will be much hotter than the record.

    Step 6: Mold it
    Put on your gloves and begin molding the record into a bowl shape. The sides of the bowl will be wavy. Work fast: You only have about a minute before the record begins hardening.

    Tip
    If the record hardens before you’re finished shaping it, just stick it back in the oven for a minute or two.

    Step 7: Let it cool
    Let the record cool completely before removing it from the bowl — about 10 minutes.

    Warning
    Don’t leave the bowl out in direct sunlight or use it as serving dish; it could leach polyvinyl chloride into food. Plus, it has a hole in the bottom.

    Step 8: Show it off
    Fill it with wrapped candy, fruit you peel before eating, or potpourri. Or just display it as a work of art!

    Did You Know?
    The fifth copy ever made of the LP of The Beatles’ “White Album” sold for almost $29,000 in 2008.



    In recent decades, developments in software and hardware technologies have created dramatic shifts in design, manufacturing and research. Software technologies have facilitated automated process and new solutions for complex problems. Computation has also become a platform for creativity through generative art and design. New hardware platforms and digital fabrication technologies have similarly transformed manufacturing, offering more efficient production and mass customization. Such advances have helped catalyzed the maker-movement, democratizing design and maker culture. This influx of new capabilities to design, compute and fabricate like never before, has sparked a renewed interest in material performance.

    We are now witnessing significant advances in active matter, 3D/4D Printing, materials science, synthetic biology, DNA nanotechnology and soft robotics, which have led to the convergence of software, hardware and material technologies and the growing field of programmable materials.

    This conference was about the emerging field of active matter and programmable materials that bridges the worlds of art, science, engineering and design, demonstrating new perspectives for computation, transformation and dynamic material applications.

    If over the past few decades we have experienced a software revolution, and more recently, a hardware revolution, this conference aims to discuss the premises, challenges and innovations brought by today’s materials revolution. We can now sense, compute, and actuate with materials alone, just as we could with software and hardware platforms previously. How does this shift influence materials research, and how does it shape the future of design, arts, and industrial applications? What tools and design processes do we need to advance, augment and invent new materials today? What are the key roles that industry, government, academic and public institutions can play in catalyzing the field of programmable materials?

    This two-day conference consisted of a range of talks and lively discussion from leading researchers in materials science, art & design, synthetic biology and soft-robotics along with leaders from government, public institutions and industry.

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