Door hinge and storage unit including such a door hinge
A hinge for a door of a storage unit and a method of repairing a storage unit that includes a pivotable door. The hinge including a first bracket and a second bracket. The hinge further including a linking mechanism for coupling the second bracket to the first bracket so that the second bracket is able to translate and rotate relative to the first bracket, wherein a maximum amount of rotation of the second bracket relative to the first bracket is not determined solely by operation of the linking mechanism.
1. A hinge for a door of a storage unit, said hinge comprising:
a first bracket;
a second bracket;
a linking mechanism for coupling said second bracket to said first bracket so that said second bracket is able to translate and rotate relative to said first bracket, wherein a maximum amount of rotation of said second bracket relative to said first bracket is not determined solely by operation of said linking mechanism, wherein said linking mechanism comprises:
a load bearing arm comprising:
a first end rotatably connected to said first bracket; and
a second end rotatably connected to said second bracket; and
a return arm comprising:
a third end rotatably connected to said first bracket; and
a fourth end rotatably connected to said second bracket, wherein during any instant of time of operation of said linking mechanism, said load bearing arm defines a first path of movement, and said return arm defines a second path of movement that does not intersect said first path of movement, wherein said first path of movement is parallel to said second path of movement.
2. A hinge for a door of a storage unit, said hinge comprising:
a first bracket;
a second bracket;
a linking mechanism for coupling said second bracket to said first bracket so that said second bracket is able to translate and rotate relative to said first bracket, wherein a maximum amount of rotation of said second bracket relative to said first bracket is not determined solely by operation of said linking mechanism; and
a stop mechanism that interacts with said linking mechanism so as to determine said maximum amount of rotation of said second bracket relative to said first bracket, wherein said stop mechanism moves relative to said first bracket and said second bracket.
3. The hinge of claim 2 , wherein said stop mechanism is rotatable relative to said first bracket and said second bracket.
4. A hinge for a door of a storage unit, said hinge comprising:
a first bracket;
a second bracket;
a linking mechanism for coupling said second bracket to said first bracket so that said second bracket is able to translate and rotate relative to said first bracket, wherein a maximum amount of rotation of said second bracket relative to said first bracket is not determined solely by operation of said linking mechanism, wherein said linking mechanism comprises:
a load bearing arm comprising:
a first end rotatably connected to said first bracket; and
a second end rotatably connected to said second bracket; and
a return arm comprising:
a third end rotatably connected to said first bracket; and
a fourth end rotatably connected to said second bracket, wherein during any instant of time of operation of said linking mechanism, said load bearing arm defines a first path of movement, and said return arm defines a second path of movement that does not intersect said first path of movement; and
a stop mechanism that interacts with said linking mechanism so as to determine said maximum amount of rotation of said second bracket relative to said first bracket, wherein said stop mechanism moves relative to said first bracket and said second bracket.
5. The hinge of claim 4 , further comprising a spring that is coupled to said return arm so as to bias said return arm to rotate in a return direction toward a closed position.
6. The hinge of claim 4 , wherein said stop mechanism is rotatable relative to said first bracket and said second bracket.
7. A hinge for a door of a storage unit, said hinge comprising:
a first bracket;
a second bracket;
a linking mechanism for coupling said second bracket to said first bracket so that said second bracket is able to translate and rotate relative to said first bracket, wherein a maximum amount of rotation of said second bracket relative to said first bracket is not determined solely by operation of said linking mechanism, wherein said linking mechanism comprises:
a load bearing arm comprising:
a first end rotatably connected to said first bracket; and
a second end rotatably connected to said second bracket; and
a return arm comprising:
a third end rotatably connected to said first bracket; and
a fourth end rotatably connected to said second bracket, wherein during any instant of time of operation of said linking mechanism, said load bearing arm defines a first path of movement, and said return arm defines a second path of movement that does not intersect said first path of movement
a stop mechanism that interacts with said linking mechanism so as to determine said maximum amount of rotation of said second bracket relative to said first bracket, wherein said stop mechanism comprises:
a first lever, wherein a first end of said first lever is rotatably attached to said return arm and a second end of said first lever comprises a stop surface;
a second lever, wherein a first end of said second lever is rotatably attached to said second bracket and a second end of said second lever is rotatably coupled to said second end of said first lever, wherein when said maximum amount of rotation of said second bracket relative to said first bracket is achieved said stop surface engages with a surface of said second lever.
8. The hinge of claim 7 , wherein said stop mechanism comprises a first pin that is attached to either said first lever and said return arm or said second lever and said second bracket, wherein should said stop mechanism encounter an overload, said first pin can be removed.
9. The hinge of claim 7 , wherein said stop mechanism comprises a pin that is attached to said first lever and said second lever, wherein said pin indicates when said stop mechanism encounters an overload.
10. The hinge of claim 9 , wherein said pin indicates an overload by breaking.
11. A hinge for a door of a storage unit, said hinge comprising:
a first bracket;
a second bracket;
a linking mechanism for coupling said second bracket to said first bracket so that said second bracket is able to translate and rotate relative to said first bracket, wherein said linking mechanism comprises:
a load bearing arm comprising:
a first end rotatably connected to said first bracket; and
a second end rotatably connected to said second bracket; and
a return arm comprising:
a third end rotatably connected to said first bracket; and
a fourth end rotatably connected to said second bracket, wherein said fourth end rotates about an axis relative to said second bracket; and
an adjustable biasing mechanism that is coupled to said linking mechanism and which adjusts a load applied to said linking mechanism so as to move said first bracket in a particular direction, wherein said adjustable biasing mechanism comprises:
a spring that is attached to said return arm and engages said second bracket, wherein said spring is coiled and wound around said axis; and
a movable element that adjusts an amount of compression of said spring by engaging and moving a free end of said spring so that said load is adjusted.
12. The hinge of claim 11 , wherein during any instant of time of operation of said linking mechanism, said load bearing arm defines a first path of movement, and said return arm defines a second path of movement that does not intersect said first path of movement.