Heat seal die and system and method for portion control sized packaging
View Patent ↗This invention encompasses a heat seal die incorporating heat tube technology for controlling the variation of temperature across a heat seal die. The invention also encompasses a system and method for portion control size packaging of flowable liquid-containing condiments in a portion size in the range from 1 to 5 ounces using such a heat seal die.
1. A system for making portion control sized packaged flowable liquid-containing condiments in a portion size in the range from 1 to 5 ounces comprising:
a heat sealable material feeder;
a flowable material feeder for feeding a flowable liquid-containing condiment; and
a form/fill/seal apparatus structured and arranged for receiving the heat sealable material, forming a portion control sized package with the heat sealable material, filling the portion control sized package with the flowable liquid-containing condiment in a portion size in the range from 1 to 5 ounces, and sealing the portion control sized package so that the portion control sized package has a portion size in the range from 1 to 5 ounces, the form/fill/seal apparatus including a heat seal die comprising:
a first die member having a longitudinal axis and a die face;
a second die member having a longitudinal axis and a die face;
a first heating element engaged with the first die member for heating the first die member;
a second heating element engaged with the second die member for heating the second die member;
a first longitudinal heat tube tightly disposed in a first longitudinal bore in the first die member between the first heating element and the die face of the first die member for maintaining a substantially uniform heat seal temperature along the die face of the first die member; and
a second longitudinal heat tube tightly disposed in a first longitudinal bore in the second die member between the second heating element and the die face of the second die member for maintaining a substantially uniform heat seal temperature along the die face of the second die member.
2. A system as in claim 1 wherein the die face of the first die member has at least one longitudinal land and the second die member has at least one longitudinal groove for receiving the at least one longitudinal land in a mating arrangement.
3. A system as in claim 1 wherein the die face of the first die member has a plurality of alternating lands and grooves and the die face of the second die member has a plurality of alternating lands and grooves, the lands and grooves of the first die member and the lands and grooves of the second die member structured and arranged for selective mating arrangement.
4. A system as in claim 1 wherein:
the first die member extends along the longitudinal axis of the first die member from a first end to a second end and the first longitudinal heat tube extends from the first end of the first die member to the second end of the first die member; and
the second die member extends along the longitudinal axis of the second die member from a first end to a second end and the second longitudinal heat tube extends from the first end of the second die member to the second end of the second die member.
5. A system as in claim 1 wherein:
the first die member has first and second longitudinal sides and a raised portion extending from between the first and second longitudinal sides, the raised portion of the first die member including the die face of the first die member and sloping walls extending from respective first and second sides to the die face of the first die member; and
the second die member has first and second longitudinal sides and a raised portion extending from between the first and second longitudinal sides, the raised portion of the second die member including the die face of the second die member and sloping walls extending from respective first and second sides to the die face of the second die member.
6. A system as in claim 1 wherein:
the first die member has an upwardly facing first longitudinal side, a downwardly facing second longitudinal side, and a temperature sensor disposed in the downwardly facing second longitudinal side; and
second first die member has an upwardly facing first longitudinal side, a downwardly facing second longitudinal side, and a temperature sensor disposed in the downwardly facing second longitudinal side.
7. A system as in claim 1 wherein the first heating element is a heating cartridge disposed in a second longitudinal bore in the first die member and the second heating element is a heating cartridge disposed in a second longitudinal bore in the second die member.
8. A method for making portion control sized packaged flowable liquid-containing condiments in a portion size in the range from 1 to 5 ounces comprising:
feeding heat sealable material and a flowable liquid-containing condiment to a form/fill/seal apparatus structured and arranged for making portion control sized packages of the condiment in a portion size in the range from 1 to 5 ounces and comprising a heat seal die;
forming a portion control sized package with the heat sealable material;
filling the portion control sized package with the flowable liquid-containing condiment in a portion size in the range from 1 to 5 ounces; and
sealing the portion control sized package with the heat seal die so that the portion control sized package has a portion size in the range from 1 to 5 ounces,
the heat seal die comprising:
a first die member having a longitudinal axis and a die face;
a second die member having a longitudinal axis and a die face;
a first heating element engaged with the first die member for heating the first die member;
a second heating element engaged with the second die member for heating the second die member;
a first longitudinal heat tube tightly disposed in a first longitudinal bore in the first die member between the first heating element and the die face of the first die member for maintaining a substantially uniform heat seal temperature along the die face of the first die member; and
a second longitudinal heat tube tightly disposed in a first longitudinal bore in the second die member between the second heating element and the die face of the second die member for maintaining a substantially uniform heat seal temperature along the die face of the second die member.
9. A method as in claim 8 wherein the die face of the first die member has a plurality of alternating lands and grooves and the die face of the second die member has a plurality of alternating lands and grooves, the lands and grooves of the first die member and the lands and grooves of the second die member structured and arranged for selective mating arrangement.
10. A method as in claim 8 wherein the die face of the first die member has at least one longitudinal land and the second die member has at least one longitudinal groove for receiving the at least one longitudinal land in a mating arrangement.
11. A method as in claim 8 wherein:
the first die member extends along the longitudinal axis of the first die member from a first end to a second end and the first longitudinal heat tube extends from the first end of the first die member to the second end of the first die member; and
the second die member extends along the longitudinal axis of the second die member from a first end to a second end and the second longitudinal heat tube extends from the first end of the second die member to the second end of the second die member.
12. A method as in claim 8 wherein:
the first die member has first and second longitudinal sides and a raised portion extending from between the first and second longitudinal sides, the raised portion of the first die member including the die face of the first die member and sloping walls extending from respective first and second sides to the die face of the first die member; and
the second die member has first and second longitudinal sides and a raised portion extending from between the first and second longitudinal sides, the raised portion of the second die member including the die face of the second die member and sloping walls extending from respective first and second sides to the die face of the second die member.
13. A method as in claim 8 wherein:
the first die member has an upwardly facing first longitudinal side, a downwardly facing second longitudinal side, and a temperature sensor disposed in the downwardly facing second longitudinal side; and
second first die member has an upwardly facing first longitudinal side, a downwardly facing second longitudinal side, and a temperature sensor disposed in the downwardly facing second longitudinal side.
14. A method as in claim 8 wherein the first heating element is a heating cartridge disposed in a second longitudinal bore in the first die member and the second heating element is a heating cartridge disposed in a second longitudinal bore in the second die member.