Process and machinery for integration of discrete parts into composite containers
A process of manual, semi-automatic and fully-automated integration of discrete components into a container that results in fast, reliable, cost-effective, and scalable production of composite containers is disclosed. The process can be embodied in manufacturing equipment that has a series of stations and may be called an assembly device. The equipment can produce containers, tubs, canisters, cartridges, etc. which are easily separated into different bio-degradable or compostable parts. Other container types are possible and are contemplated.
1. A method of integrating a liner into a bio-degradable or compostable container shell to create a container comprising:
applying a connection facilitator to a first surface of a first part and a second surface of a second part of a container shell;
placing the container shell in an open position;
aligning the container shell perimeter in a desired dimension and shape;
presenting a liner to be included in the container shell;
securing the liner to a holding device to assist in placing the liner in the container shell;
placing the liner and a fitment into the container shell;
registering the fitment into the container shell;
aligning and mating the fitment to the container shell;
closing an assembly unit so as to place the first surface of the first part and the second surface of the second part in communication with each other;
introducing in pulses an expanding agent into the liner through the fitment; and
applying an outside label to the container.
2. The method of claim 1 , wherein the holding device comprises a wand and wherein the liner is manipulated with the wand to be placed in the container shell.
3. The method of claim 2 , wherein the pulses of the expanding agent are delivered through the wand.
4. The method of claim 3 , wherein introduction of the expanding agent comprises a pulse of 100 milliseconds of expanding agent, followed by a break of 200 milliseconds.
5. The method of claim 1 , further comprising:
separating the container shell from a stacked state;
inspecting the container shell;
modifying the container shell when the container shelf requires removal of material prior to assembly.
6. The method of claim 1 , further comprising:
placing an extra item in the shell to facilitate creating containers having alternative shapes.
7. The method of claim 1 , further comprising:
inspecting the container;
trimming excess material from the container when excess material is discovered during inspection; and
removing the container when the container fails inspection.
8. The method of claim 1 , further comprising:
installing a locking collar onto the receiving feature of the fitment after the container shell is closed so as to lock the liner and the fitment to the container shell.
9. The method of claim 1 , further comprising:
creating a solid connection between the fitment and the container shell by ultrasonic welding.
10. The method of claim 1 , further comprising actuating an adjustable ejection device in the assembly unit to remove the container from the assembly unit.