Record making system
11479003 · 2022-10-25
Assignee
Inventors
- Chad W. T. Brown (Toronto, CA)
- Robert H. Brown (Ancaster, CA)
- James Hashmi (Toronto, CA)
- Michael Wybenga (Hamilton, CA)
Cpc classification
B29D17/00
PERFORMING OPERATIONS; TRANSPORTING
B65G57/04
PERFORMING OPERATIONS; TRANSPORTING
B29C69/001
PERFORMING OPERATIONS; TRANSPORTING
B29C43/02
PERFORMING OPERATIONS; TRANSPORTING
G11B3/70
PHYSICS
B29C43/36
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29D17/00
PERFORMING OPERATIONS; TRANSPORTING
B29C43/02
PERFORMING OPERATIONS; TRANSPORTING
B29C43/36
PERFORMING OPERATIONS; TRANSPORTING
B29C69/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention provides an improved record making system, the system having a puck former having an outlet, the puck former being movable between an automatic position and a semi-automatic position and adapted to periodically produce a puck and to deliver the puck to the outlet. The system further has a record former having a puck receiver, the record former adapted, upon delivery of the puck to the puck receiver, to automatically produce a record. The record former is positioned relative to the puck former and adapted such that, when the puck former is in the automatic position, the outlet of the puck former is coterminous with the puck receiver of the record former. When the puck former is in the semi-automatic position, the puck receiver is accessible by an operator to permit manual puck feeding.
Claims
1. A record making system comprising: a puck former movable between an automatic position and a semi-automatic position, the puck former having an outlet and adapted to periodically produce and deliver a puck to the outlet; a record former having a puck receiver and adapted, upon delivery of the puck to the puck receiver, to automatically produce a record, and the record former positioned relative to the puck former and adapted such that, when the puck former is in the automatic position, the outlet of the puck former is coterminous with the puck receiver of the record former, and when the puck former is in the semi-automatic position, the puck receiver is accessible by an operator to permit manual puck feeding; and the record former having a trimming subsystem and a press subsystem, wherein the trimming subsystem is pivotally connected to the press subsystem for pivotal movement between an active position, wherein the trimming subsystem is operatively connected to the press subsystem, and a mould-change position, wherein the trimming subsystem is spaced apart from the press subsystem in an inoperative position to permit access to moulds of the press subsystem.
2. The system according to claim 1, wherein when the puck former is in the semi-automatic position, the puck former is spaced apart from the record former.
3. The system according to claim 2, wherein the system further includes rails upon which the puck former is mounted for sliding movement of the puck former between the automatic and semi-automatic position and for maintaining relative alignment between the puck former and the record former.
4. The system according to claim 3, wherein in use, the puck former automatically forms the puck when the puck former is in the automatic position, and the puck former forms the puck on demand when the puck former is in the semi-automatic position.
5. The system according to claim 4, wherein the puck former comprises a hopper subsystem and a melting subsystem, the hopper subsystem having a hopper with a pellet outlet and a release port, the hopper moveable between a working position, wherein the hopper is vertically oriented and the pellet outlet is in communication with the melting system, and an emptying position, wherein the hopper is tilted away from its vertical orientation and the pellet outlet is in communication with the release port for emptying the hopper of resin pellets without the resin pellets going through the melting subsystem, wherein a latch releasably locks the hopper in the working position and the emptying position.
6. The system according to claim 4, wherein the record former comprises a label cartridge terminating at an open end and having a cavity adapted to hold a stack of labels, the label cartridge further having a platform within the cavity being moveable towards the open end, wherein in use with the stack of labels, the platform moves the stack of labels towards the open end.
7. The system according to claim 6, wherein the record maker and label cartridge each having a cartridge interengageable component which collectively define a cartridge quick release mechanism for releasably coupling the label cartridge to the record former without tools.
8. The system according to claim 1, wherein the mould has a stamper and mould locking components engageable with the record former, which define a quick release mechanism for releasably coupling the stamper to the record former.
9. The system according to claim 8, wherein the mould locking components comprise a clamp ring, a centre bushing, and a locking mechanism.
10. The system according to claim 4, wherein the record former further comprises a cooling subsystem operatively coupled to the trimming subsystem, the cooling subsystem comprising multiple collection spindles and a stacking mechanism adapted to lift the finished record from the trimming subsystem and to release a finished record onto any one of the multiple collection spindles.
11. A record making system, comprising: a puck former movable between an automatic position and a semi-automatic position, the puck former having an outlet and adapted to periodically produce and deliver a puck to the outlet; a record former having a puck receiver and adapted, upon delivery of the puck to the puck receiver, to automatically produce a record, and the record former positioned relative to the puck former and adapted such that, when the puck former is in the automatic position, the outlet of the puck former is coterminous with the puck receiver of the record former, and when the puck former is in the semi-automatic position, the puck receiver is accessible by an operator to permit manual puck feeding; and wherein the cooling subsystem has a linear stacking mode, wherein multiple finished records are consecutively stacked onto one of the multiple collection spindles, and a sequential stacking mode, wherein multiple finished records are stacked sequentially on the multiple collection spindles.
12. The system according to claim 11, wherein the cooling subsystem further comprises a stack of cooling plates, the stacking mechanism further adapted to lift a cooling plate from the stack of cooling plates and to release the cooling plate onto any one of the multiple collection spindles.
13. The system according to claim 12, wherein the stacking mechanism comprises a swing arm having a vacuum suction component for gripping and releasing the finished records or cooling plates.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(34) An exemplary embodiment of the invention 10 is shown in
(35) Along with outlet 16, puck former 12 further has a hopper subsystem 20, by which resin pellets are introduced to system 10, and a melting subsystem 22, which melts the resin pellets for extrusion into a puck at outlet 16. Hopper subsystem 20 includes a hopper 24 with a pellet outlet 26 and a release port 28 with a latch 30 pivotally fixed thereto.
(36) As seen in
(37) When resin pellets are fed into melting subsystem 22, they are directed into a barrel 32. The temperature within and along barrel 32 is controlled so as to melt the resin pellets into molten material. The molten material is then directed to outlet 16. As best seen in
(38) Puck former 12 is movable between the automatic position (see in
(39) As shown in
(40) In this particular embodiment, when in use, puck former 12 automatically forms the vinyl puck when puck former 12 is in the automatic position. When puck former 12 is in the semi-automatic position away from record former 14, puck former 12 forms the vinyl puck on demand by the operator. Once the puck is complete, the operator may then add additional colours or otherwise manipulate the puck prior to feeding the puck into puck receiver 18 of record former 14 to be automatically formed into a record.
(41) As best seen in
(42) Labeling subsystem 40 (see
(43) Label swing arm 50, as depicted in
(44) As seen in
(45) In use, as shown in
(46) As depicted in
(47) Stamper 67 is releasably coupled to record former 14 without tools by mould locking components which collectively define a combination quick release mechanism. In the depicted embodiment seen in
(48) Clamp ring 66 holds stamper 67 in place via a friction fit. As seen in
(49) Locking mechanism 69 comprises a centre bushing 70 and a lever 72. As seen in
(50) Trimming subsystem 44 is mounted on wheels 74 and pivotably connected to the press subsystem 42. Trimming subsystem 44 is pivotable between an active position, when trimming subsystem 44 is operatively coupled to press subsystem 42 (see
(51) In the active position, after the puck is pressed into a record in press subsystem 42, a transport swing arm 76 picks up the record and transports it onto a trimmer 78 in trimming subsystem 44 (see
(52) After the record is trimmed, the finished record is transported into cooling subsystem 46 via a stacking mechanism. As depicted in
(53) Collection swing arm 86 has a linear stacking mode, where finished records are stacked onto one collection spindle 88 until that collection spindle is full before stacking finished records onto the other collection spindle. Collection swing arm 86 also has a sequential stacking mode, where finished records are stacked sequentially or alternately between collection spindles 88 to provide each finished record more time to cool before the next finished record is stacked on top.
(54) Collection swing arm 86 also picks up cooling plates 92 from cooling plate stack 90 to release onto collection spindles 88. In this way, collection swing arm 86 can alternately stack finished records and cooling plates 92 onto any collection spindle 88 (see
(55) Whereas a specific embodiment is shown and described, it will be understood that variants are possible.
(56) For example, formation of a puck on demand by the operator can be initiated by pressing and holding two pushbuttons simultaneously to start extruding a puck from outlet 16.
(57) In another variant, the system can be operated in a semi-automated mode with the trimming subsystem 44 in the mould-change position shown in
(58) Accordingly, the invention should be understood to be limited only by the accompanying claims, purposively construed.