Claims
- 1. A roller mechanism for forming elongated helical-shaped structures using multiple forming rollers, comprising:
- (a) a support frame having a fixed member and an adjustable member, each member being provided with means for rotatably supporting parallel multiple rollers;
- (b) at least nine parallel cylindrical forming rollers spaced apart from each other and rotatably mounted in said support frame and arranged in a vertically non-aligned or staggered pattern in two sets, four rollers in a first set being rotatably mounted in said frame fixed member and rotatably driven and five rollers in a second set being adjustable relative to the first set for drawing a feed wire through the multiple rotating staggered forming rollers solely by a frictional drawing force exerted on the wire by said sets of forming rollers, and thereby form the wire passing through the rollers into a sinusoidal pattern;
- (c) drive means coupling together all said driven rollers of said first set so as to rotate said driven rollers at a common surface speed; and
- (d) means for rotating the feed wire about its own axis while being drawn through said forming rollers, so as to produce a helical shaped structural product.
- 2. The forming roller mechanism of claim 1, wherein one of said two rollers sets contain at least four fixed position driven rollers and the other said set contains at least five idler rollers located above the fixed position rollers; the position of said idler roller set being adjustable relative to the fixed position roller set in said support frame, so as to control the spacing between the two roller sets and thereby control the diameter of the formed helical shaped wire product.
- 3. The forming roller mechanism of claim 1, wherein a guide means is provided attached to said frame for guiding the feed wire to the first forming rollers.
- 4. The forming roller mechanism of claim 2, wherein the driven set of rollers have roughened surfaces to provide increased friction between the rollers and a feed wire sufficient for pulling the feed wire through said driven rollers.
- 5. The forming roller mechanism of claim 2, wherein the driven set of rollers each have a groove into which a feed wire being formed is fitted, so as to increase the surface contact and friction betweenn the driven rollers and the wire.
- 6. The forming roller mechanism of claim 1, wherein three supplemental rollers each adjustable in position are provided in a staggered arrangement in said frame to produce more precise forming of the helical shaped product.
- 7. The forming roller mechanism of claim 2, wherein said driven rollers are each rotatably driven from a common rotatable shaft by drive chain means connecting said rollers together so that said rollers rotate at common surface speed.
- 8. The forming roller mechanism of claim 2, wherein said driven rollers are each driven at a common surface speed by gears located between the rollers.
- 9. The forming roller mechanism of claim 2, wherein the vertical adjustment spacing between the roller sets is progressively decreased for the subsequent rollers.
- 10. The forming roller mechanism of claim 1, including a supply reel unit for a feed wire, wherein the feed wire is unrolled from the supply reel rotatable about the axis of the reel, and wherein the supply reel unit is simultaneously rotatable about the longitudinal axis of the feed wire.
- 11. The forming roller mechanism of claim 1, wherein for a straight feed wire said means for rotation of said wire is a helical shaped die which initially pulls the wire through the sets of fixed position driven rollers and adjustable idler rollers.
- 12. A roller mechanism for forming elongated helical-shaped structures using multiple forming rollers, comprising:
- (a) a support frame having a fixed lower member and an adjustable upper member, each member being provided with means for receiving parallel multiple rollers;
- (b) at least four fixed position driven parallel rollers spaced apart from each other and rotatably mounted in said lower frame member, and at least five idler parallel rollers spaced apart from each other and mounted in said adjustable upper frame member in a vertically non-aligned or staggered relationship relative to said driven rollers; wherein the vertical adjustment between the roller sets is progressively decreased for the succeeding rollers, said lower rollers being rotatably driven for drawing a feed wire through the multiple rotating mating staggered forming rollers solely by a frictional drawing force exerted on the wire by said multiple forming rollers, and thereby form the wire passed through the rollers into a sinusoidal pattern;
- (c) drive means coupling together all said driven rollers so as to rotate said driven rollers at a common surface speed; and
- (d) means for rotating the feed wire about its own axis while being drawn through said forming rollers, so as to produce a helical-shaped structural product.
Parent Case Info
This application is a continuation of application Ser. No. 481,135, filed Apr. 1, 1983, abandoned.
US Referenced Citations (4)
Foreign Referenced Citations (6)
Number |
Date |
Country |
109266 |
Nov 1939 |
AUX |
1235847 |
Mar 1967 |
DEX |
1014885 |
Aug 1952 |
FRX |
57538 |
May 1946 |
NLX |
756409 |
Sep 1956 |
GBX |
617113 |
Jul 1978 |
SUX |
Continuations (1)
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Number |
Date |
Country |
Parent |
481135 |
Apr 1983 |
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