Capsules and other containers with optimized recycling attributes and methods for making same
A process is provided for making a beverage capsule for use in a beverage preparing machine. The process includes the steps of: sealing a filter to an interior surface of a body for the beverage capsule to define an ingredients chamber; depositing a desired volume of desired ingredients into the ingredients chamber; and sealing a cover to the body to cover the opening. The cover is sealed to the body to define a hinge zone and a peel zone, wherein the hinge zone has a stronger seal than the peel zone.
1. A process for making a beverage capsule for use in a beverage preparing machine, the process comprising the steps of:
sealing a filter to an interior surface of a body for the beverage capsule to define an ingredients chamber;
depositing a desired volume of desired ingredients into said ingredients chamber;
sealing a cover to said body to cover said opening, said cover is sealed to said body to define a hinge zone and a peel zone, wherein said hinge zone has a stronger seal than said peel zone.
2. The process of claim 1 wherein said filter has a basis weight of less than 40 gsm.
3. The process of claim 1 wherein said filter is pre-cut to a desired diameter that is larger than the diameter of said interior space.
4. The process of claim 1 further comprising the steps of (i) sealing a portion of said cover to said body and (ii) replacing air in said capsule with an inert gas and (iii) sealing the remainder of said cover to said body.
5. The process of claim 1 wherein said peel zone is formed by sealing a portion of said cover to said body at a first temperature T 1 and said hinge zone is formed by sealing the remaining portion of said cover to said body at a second temperature T 2 , where T 2 is a higher temperature than T 1 .
6. The process of claim 1 wherein said peel zone is formed by sealing a portion of said cover to said body using a first sealing technique that forms a peelable seal and said hinge zone is formed by sealing the remaining portion of said cover to said body using a second sealing technique that is different from the first sealing technique and forms a stronger seal than the peelable seal.
7. The process of claim 1 wherein said cover sealing step includes a two-stage process with one stage for forming said hinge zone and another stage for forming said peel zone.
8. The process of claim 1 wherein said cover sealing step includes a single-stage process with two different sealing heads where one of said sealing heads is adapted for forming said hinge zone and the other of said sealing heads is adapted for forming said peel zone.
9. The process of claim 8 wherein said sealing head that is adapted for forming said peel zone operates at a first temperature T 1 and said sealing head that is adapted for forming said hinge zone operates at a second temperature T 2 , where T 2 is a higher temperature than T 1 .
10. The process of claim 8 wherein said sealing head that is adapted for forming said peel zone uses a first sealing technique and said sealing head that is adapted for forming said hinge zone uses a second sealing technique that is different from the first sealing technique in order to form a stronger seal.
11. The process of claim 1 wherein said body and said filter are each formed entirely of a substantially pure polymer material.
12. The process of claim 11 wherein said cover is formed entirely of the same substantially pure polymer material as said body and said filter.
13. The process of claim 11 wherein said substantially pure polymer material is selected from one of PP, PET or PLA.
14. The process as claimed in claim 11 wherein said substantially pure polymer material is at least 90% pure by weight.
15. The process as claimed in claim 11 wherein said substantially pure polymer material for said body includes a barrier material that provides an oxygen barrier between an exterior of said capsule and said interior space.
16. The process of claim 1 wherein said filter is formed of bi-component fibers.
17. The process of claim 1 wherein the filter is sealed to said body within said interior space.
18. The process of claim 1 wherein said body includes a sidewall and an end wall that define said interior space.
19. The process of claim 18 wherein said filter is sealed to said sidewall within said interior space at a location that is in the middle one-third of the distance between said opening and said end wall.
20. The process of claim 18 wherein said filter, at its lowest point, is spaced a minimum distance D from said end wall to avoid said filter being contacted by a dispensing system during use of capsule in the machine.