IP Library Granted Patent US 9,758,420
Granted Patent B2
US 9,758,420 · App. 14/893,783 · Granted Sep 12, 2017

Method for manufacturing glass containers for pharmaceutical use

Inventor: José de Jesús Delgado Carranza (Qro, MX)
Assignee: DALWICK CONTINENTAL CORP
C03B23/04B65B23/22B65B55/06B65B55/14C03B21/02C03B23/09C03B23/097C03B23/11C03B32/00A61J1/065A61J1/1468
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Quick Facts
Patent No.
US 9,758,420
App. No.
14/893,783
Granted
Sep 12, 2017
Kind
B2
Abstract

The present invention relates to a method for manufacturing glass containers for pharmaceutical use. This method allows obtaining containers with a low degree of alkalinity. In some preferred embodiments the process allows the manufacture of sterile containers and substantially free of particles ready to be used by the pharmaceutical industry.

Claims (49)

1. Method for manufacturing tubular glass containers for pharmaceutical use, comprising:

1) a step of providing a glass tube with a closed lower end and a closed upper end;

2) a step of opening the lower end of the glass tube;

3) a step of cutting a first length of tube by heating so as to seal a portion of the glass tube above a position where cutting is performed, such that the glass tube is closed at its lower end;

4) a step of discarding the first length of tube;

5) a step in which an explosion is caused inside a glass tube closed at both ends by heating the tube, wherein a magnitude of the explosion is enough to open the lower end of the tube;

6) a step of forming a mouth of the glass container;

7) a step of separating the glass container from the glass tube by heating such that the lower end of the tube is closed, and

8) a step in which air is injected into the mouth of a glass container while the container is heated at its base to form the bottom of the container and to obtain a produced container, wherein the mouth of the glass container is the opened lower end of the tube;

9) a step of transporting the produced containers to an electric furnace through a path that includes protective air curtains that protect the container from possible particles, the furnace is in a class “C” area, according to Mexican standard NOM-059-SSA1-2006, and, before introducing the containers in this class “C” area, an internal sweep is performed to the container with clean filtered air and with clean steam;

10) a step of sterilizing the containers in the electric furnace;

11) a step of sterilizing a packaging for the containers in a class “C” area;

12) a step of transporting the containers out of the furnace to a class “A” area, according to Mexican standard NOM-059-SSA1-2006, that is protected with a class “B” area, according to Mexican standard NOM-059-SSA1-2006; and

13) a step of packing the containers in the packaging in the class “A” area.

2. Method according to claim 1 , wherein after step b), steps a), 5), 6) and b) are repeated until the length of the glass tube after the separating the glass container from the glass tube is less than the length of a container.

3. Method according to claim 1 , wherein the air injection of step b) is performed by a mechanical injector, which injects air under pressure whose trajectory forms an angle between 20° and 80° with a wall of the container.

4. Method according to claim 3 , wherein the angle is between 30° and 60°.

5. Method according to claim 4 , wherein the angle is 45°.

6. Method according to claim 1 , wherein the sterilization of the containers is performed at a temperature higher than 5000 C.

7. Method according to claim 1 , wherein the containers are packed with double sterile bag.

8. The method of claim 1 , wherein the internal sweep is performed to an untreated container with clean filtered air and with clean steam.

9. Method for manufacturing tubular glass containers for pharmaceutical use, comprising:

i) providing a glass tube with a closed lower end and a closed upper end;

ii) opening the lower end of the tube;

iii) cutting a first length of tube by heating so as to seal a portion of the glass tube above a position where cutting is performed, such that the glass tube remains closed at its lower end;

iv) discarding the first length of tube;

v) causing an explosion inside the glass tube by heating the tube, wherein a magnitude of the explosion is enough to open the lower end of the tube;

vi) forming a mouth of a glass container;

vii) separating the glass container from the glass tube by heating such that the lower end of the tube remains closed, and

viii) injecting air into the mouth of the glass container while the container is heated at its base to form the bottom of the container and to obtain a produced container, wherein the mouth of the glass container is the opened lower end of the tube,

ix) transporting the produced containers to an electric furnace through a path that includes protective air curtains that protect the container from possible particles, wherein the furnace is in a class “C” area, according to Mexican standard NOM-059-SSA1-2006, and before introducing the containers in this class “C” area, an internal sweep is performed to the container with clean filtered air, and a blast with clean steam,

x) sterilizing the containers in the electric furnace;

xi) sterilizing a packaging for the containers in the class “C” area;

xii) transporting the containers out of the furnace to a class “A” area, according to Mexican standard NOM-059-SSA1-2006, that is protected with a class “B” area, according to Mexican standard NOM-059-SSA1-2006;

xiii) packing the containers in the packaging in the class “A” area.

10. A method of manufacturing tubular glass containers for pharmaceutical use, comprising:

a) removing an end portion of a glass tube in such a manner as to seal a lower end of the glass tube, comprising:

opening the lower end of the tube, and

cutting off the end portion of the tube by heating in such a manner that a portion of the glass tube above the end portion of the tube is sealed;

b) heating the tube, such that an explosion is caused within the tube that opens the lower end of the tube;

c) forming a mouth of a glass container at the lower end of the tube;

d) heating an upper part of the tube so as to remove the glass container from the tube and seal a new lower end of the tube;

e) injecting air into the mouth of the glass container while the container is heated at its base in such a manner that a bottom of the container is formed and in such a manner as to yield a produced container, the mouth of the glass container being the mouth previously formed at the opened lower end of the tube;

f) transporting the produced containers to an electric furnace through a path that includes protective air curtains that protect the container from possible particles, wherein the furnace is in a class “C” area, according to Mexican standard NOM-059-SSA1-2006;

g) performing an internal sweep of the container with clean filtered air and blasting the internal portion of the container with clean steam;

h) introducing the containers into the class “C” area and sterilizing the containers in the electric furnace;

i) sterilizing a packaging for the containers in the class “C” area;

j) transporting the containers out of the furnace to a class “A” area, according to Mexican standard NOM-059-SSA1-2006, that is protected with a class “B” area, according to Mexican standard NOM-059-SSA1-2006;

k) packing the containers in the packaging in the class “A” area.

Assignments (2)
CHANGE OF NAME Recorded Oct 29, 2024
From: DALWICK CONTINENTAL CORP
To: DALWICK CONTINENTAL, S.A. DE C.V.
Reel/Frame 070692/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 25, 2015
From: DELGADO CARRANZA, JOSE DE JESUS
To: DALWICK CONTINENTAL CORP
Reel/Frame 037138/0981 →
Priority Claims (2)
MX MX/a/2013/006088 · May 30, 2013 · national
MX MX/a/2013/007896 · Jul 5, 2013 · national
Continuity (1)
Related Publication 20160107918A1 · Apr 21, 2016