Nova Patents
CA2215801C

On-demand fast cycle mold

Abstract

An on-demand fast cycle mold for producinginjection molded products such as polypropyleneblister package bases. The on-demand fast cycle moldhas a heated and cooled hot runner system whichprovides a short response time and optimal temperaturecontrol. On-demand injection molding is made possibleby a pulse modulated closed loop mold cooling system,the cooling design of brazed gate inserts, and aneffective layout of the cooling channels. Theprogramming of the software for a computer controlsystem has also been designed to achieve on-demandinjection molding. The design of the closed loop moldcooling system incorporates an advanced coolingcircuit layout, and provides for easy maintenance andbetter quality control of the coolant whichsignificantly reduces corrosion and scale buildup. Mold cooling is controlled by sensors installed insidethe mold which are used in feedback control loops. The brazed gate inserts provide precise moldtemperature control and improved cosmetic appearanceof the molded packages. The use of a needle-valveinjection nozzle results in reduced cycle time andimproved moldability.

CA2215801C, drawing sheet 1
Sheet 1 of 15

Term

Term ended

Expired 18 September 2017, 9 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

18 claims: 9 independent, 9 dependent

  1. 1
    CA 02215801 2005-02-18 -221. An on-demand high speed cycle mold system for producing injection molded products such as blister package bases, comprising :at least one mold;at least one injection nozzle;a hot runner system for supplying molten plastic to said at least one injection nozzle;a pulse modulated cooling system for cooling the mold system includes a microprocessor based controller which analyzes the thermal profile of the mold/melt temperature/volume relationship and controls the injection of a measured pulse of cooling medium into mold cooling channels;an electric heating system for heating the mold system including : a high voltage electrical heater operated by 208-220 V for heating the hot runner system;and a plurality of temperature sensors installed inside the mold system, wherein: the mold system is both heated and cooled to provide a rapid response time and optimal temperature control;in operation of the pulse modulated cooling system, during each molding cycle, after the mold is filled with molten plastic, the heat input of the molten plastic is matched by a timed pulse of coolant, after which the mold is allowed to dissipate heat gradients and seek equilibrium such that the molten plastic is cooled with greater uniformity, which CA 02215801 2005-02-18 -23results in a molded product with reduced stress, dimensional consistency and better surface appearance;the plurality of temperature sensors is used in control loops to control the flow of coolant through the pulse modulated cooling system, which results in reduced cycle time and improved moldability for the products;and the high voltage electrical heater provides: a rapid response time;optimal temperature control;and a cycle time of below seven seconds.
  2. 5
    An on-demand mold system as claimed in any one of claims 1 to 4, wherein the mold includes at least one optical quality insert formed of an alloy which is approximately 96.4% Cu, 02.5% Ni, 00.7% Si and 00.4% Cr, which is nickel plated and then diamond turned to produce a mold insert having an optical quality finish.
  3. 6
    An on-demand mold system as claimed in any one of claims 1 to 5, wherein the mold includes an upper bowl insert defining an CA 02215801 2005-02-18 -24upper surface of a bowl being molded and a lower bowl insert defining a lower surface of a bowl being molded.
  4. 9
    An on-demand mold system as claimed in any one of claims 6 to 8, wherein the lower bowl insert includes an annular coolant flow passage which surrounds the lower bowl insert for cooling the lower bowl insert.
  5. 10
    An on-demand mold system as claimed in any one of claims 1 to 9, wherein the mold system produces injection molded polypropylene blister package bases each of which defines a bowl portion which is adapted to package a product, and a tail portion.
  6. 12
    An on-demand mold system as claimed in any one of claims 1 to 11, wherein the mold comprises a sixteen cavity, ] manifold mold which includes a stationary mold side and moveable mold side which are clamped together during CA 02215801 2005-02-18 -25injection molding process and, after setting of the molded product the movable mold side is released and displaced away from the stationary mold side to enable the injection molded products to be ejected from the mold cavities.
  7. 14
    An on-demand mold system as claimed in any one of claims 1 to 13, wherein the molded product is injection molded from polypropylene and the polypropylene melt temperature is controlled to within a narrow temperature range to avoid polypropylene melt freeze off or drooling during injection mold operations.
  8. 15
    An on-demand mold system as claimed in any one of claims 1 to 14, wherein the pulse modulated cooling system includes a coolant pump for supplying coolant to a plurality of solenoid operated mold supply valves for a plurality of cooling zones and the coolant flows from the plurality of supply valves to a plurality of supply in-line manifolds, each having a plurality of coolant flow passages.
  9. 18
    An on-demand mold system as claimed in any one of claims 15 to 17, wherein the coolant flows through a shell and tube heat exchanger where it is cooled to s. selected temperature by a chiller solution supplied and returned through a temperature controller valve, which is controlled by a temperature sensor.