Abstract:
Described are stretchable and formable lighter than air balloons including a high barrier lamination. The stretchable and formable balloons stretch when overinflated instead of failing. The balloons are formed from a lamination including a polyester film with a total thickness of 4 μm to 12 μm including a biaxially oriented polyester core layer and at least one amorphous copolyester skin layer. The polyester film has an Elongation % in the transverse direction (TD) or machine direction (MD) of greater than 125%.
Abstract:
A reusable, ornamental air-filled balloon structure includes a large, elongate, unbalanced upper ornamental chamber. The chamber has a valve on its bottom for inflating for use and deflating for storage of the balloon structure. A lower base ornamental chamber, that is adapted to rest on a flat surface or plane, has a centralized pocket with an aperture for transversely receiving the bottom of the upper chamber. A hidden valve for inflating the lower chamber for use and deflating for storage is provided. The upper chamber air valve is capable of being passed through the aperture and anchored to the lower chamber to secure the two chambers together while the upper chamber stays in an upright condition ideal for display. Common household filled cans are placed in the hidden centralized pocket to weigh the balloon structure down and keep it in place. The height of the upper ornamental chamber is at least three times taller than the height of the lower base chamber.
Abstract:
A balloon formed from a lamination. The lamination includes a first layer, a second layer, a graphic design and a third layer. The first layer including from about 10 to about 90 wt. % crystalline polyester and from about 10 to about 90 wt. % of a formability enhancer to assist in increasing the polymeric chain flexibility. The formability enhancer has a melting point less than about 230° C. The first layer has a MD and a TD Young's Modulus of at least 10% lower than a crystalline polyester film in the absence of the formability enhancer. The second layer is a metallic barrier layer. The graphic design is printed onto a surface of the metallic barrier layer. The third layer is a sealant layer. The first layer is located between the second and third layers. The balloon contains a gas lighter than air.
Abstract:
A reusable, ornamental air-filled balloon structure includes a large, elongate, unbalanced upper ornamental chamber. The chamber has a valve on its bottom for inflating for use and deflating for storage of the balloon structure. A lower base ornamental chamber, that is adapted to rest on a flat surface or plane, has a centralized pocket with an aperture for transversely receiving the bottom of the upper chamber. A hidden valve for inflating the lower chamber for use and deflating for storage is provided. The upper chamber air valve is capable of being passed through the aperture and anchored to the lower chamber to secure the two chambers together while the upper chamber stays in an upright condition ideal for display. Common household filled cans are placed in the hidden centralized pocket to weigh the balloon structure down and keep it in place. The height of the upper ornamental chamber is at least three times taller than the height of the lower base chamber.
Abstract:
A celebratory balloon fabricated from polymeric films have a deposited insularly array of metal which may be further enhanced by polymer encapsulation of the metal. When the balloon is inflated with an admixture of helium and an electronegative gas, the balloon demonstrates to have high breakdown strength across the balloon surface and within the balloon through the inflation gas. The gas mixture further enhances the breakdown strength of the inflation gas by increasing the onset voltage of corona, streamers and spark breakdown. The admixture gas also enhances the breakdown strength of metal-free galloons such as non-metalized balloons, clear balloons, and latex balloons.
Abstract:
Described are stretchable and formable lighter than air balloons including a high barrier lamination. The stretchable and formable balloons stretch when overinflated instead of failing. The balloons are formed from a lamination including a polyester film with a total thickness of 4 μm to 12 μm including a biaxially oriented polyester core layer and at least one amorphous copolyester skin layer. The polyester film has an Elongation % in the transverse direction (TD) or machine direction (MD) of greater than 125%.
Abstract:
A balloon formed from a lamination. The lamination includes a first layer, a second layer, a graphic design and a third layer. The first layer including from about 10 to about 90 wt. % crystalline polyester and from about 10 to about 90 wt. % of a formability enhancer to assist in increasing the polymeric chain flexibility. The formability enhancer has a melting point less than about 230° C. The first layer has a MD and a TD Young's Modulus of at least 10% lower than a crystalline polyester film in the absence of the formability enhancer. The second layer is a metallic barrier layer. The graphic design is printed onto a surface of the metallic barrier layer. The third layer is a sealant layer. The first layer is located between the second and third layers. The balloon contains a gas lighter than air.