Shaft spacing flange for a kneading machine
09919279 ยท 2018-03-20
Assignee
Inventors
Cpc classification
F16D2001/062
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01F27/723
PERFORMING OPERATIONS; TRANSPORTING
B01F27/722
PERFORMING OPERATIONS; TRANSPORTING
B01F31/401
PERFORMING OPERATIONS; TRANSPORTING
F16L19/0206
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D1/108
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D1/076
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01F31/40
PERFORMING OPERATIONS; TRANSPORTING
International classification
F16D1/108
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An adjustable coupler for linking an oscillating kneader to a gear box. The adjustable coupling has a slide coupler adapted to be slidably received within an output couple of a gear box. The slide coupler has external splines wherein the external splines mate with splines of the output couple thereby coupling rotation of the slide coupler with rotation of the output couple. The internal splines are capable of mating with external splines of a slidably received kneader input shaft thereby coupling rotation of the kneader input shaft with rotation of the slide coupler. A plug in the slide coupler abut the kneader input shaft in the slide coupler and a lock mechanism maintains the kneader input shaft abutted against the plug.
Claims
1. A kneader comprising: a gear box comprising an output couple; a screw kneader comprising a kneader input shaft; an adjustable coupler linking said output couple to said kneader input shaft wherein said adjustable coupler comprises: a slide coupler adapted to be slidably received within said output couple of said gear box said slide coupler comprising: external splines wherein said external splines mate with splines of said output couple thereby coupling rotation of said slide coupler with rotation of said output couple; and internal splines capable of mating with external splines of a slidably received kneader input shaft thereby coupling rotation of said kneader input shaft with rotation of said slide coupler; a plug in said slide coupler adapted to abut said kneader input shaft in said slide coupler; and a lock mechanism capable of maintaining said kneader input shaft abutted against said plug.
2. The kneader of claim 1 wherein said lock mechanism comprises an internally threaded lock cap.
3. The kneader of claim 2 wherein said threaded lock cap is threaded onto said slide coupler.
4. The kneader of claim 2 wherein said threaded lock cap comprises a shoulder which engages with a shoulder of said kneader input shaft.
5. The kneader of claim 1 wherein said lock mechanism comprises a process shaft.
6. The kneader of claim 2 wherein said process shaft and said kneader input shaft comprise mating threads.
7. The kneader of claim 1 wherein said splines of said output couple comprises mating threads.
8. The kneader of claim 1 wherein said splines of said output couple comprises a non-round shape.
9. The kneader of claim 1 wherein said plug and said slide couple comprise mating threads.
10. The kneader of claim 1 further comprising a channel.
11. The kneader of claim 10 further comprising a siphon tube in flow communication with said channel.
Description
BRIEF DESCRIPTION OF FIGURES
(1)
(2)
(3)
(4)
(5)
(6)
DETAILED DESCRIPTION
(7) The present invention is directed to a shaft spacing flange for coupling a gear box to a reciprocating kneader. More specifically, the present invention is related to a shaft spacing flange which is translationally adjusted to account for a separation between the output coupler of the gear box and the kneader input shaft.
(8) The present invention will be described with reference to the figures which are an integral, but non-limiting, part of the instant specification. Throughout the description similar elements will be numbered accordingly.
(9) An embodiment of the invention is illustrated in schematic partial cut-away view in
(10) The gear box, 2, which is not limited herein, has an output coupler, 6, which is coupled to a kneader input shaft, 9, of a reciprocating kneader, 8, by a kneader shaft couple, 7. The kneader shaft couple insures that the rotation and oscillation of the output coupler is translated to the kneader input shaft and will be described more fully herein. The reciprocating kneader comprises a screw, 10, with a multiplicity of flights, 11, thereon. As the screw rotates and oscillates the flights pass by pins, 12, in close proximity thereby providing the kneading function. Precursor material, 14, enters a hopper, 15, wherein it passes into the kneader and exits, optionally through an extrusion die, 16, as extrudate, 17, for collection in a bin, 18.
(11) A kneader shaft couple is illustrated in exploded cross-sectional view in
(12) As would be realized to one of skill in the art the slide coupler couples the rotation of the output coupler of the gear box to the kneader input shaft. The slide coupler also couples the translation of the kneader input shaft to the translation of the output coupler of the gear box. Furthermore, the slide coupler can slide parallel to the rotation axis as necessary during assembly thereby eliminating the need for shims or other techniques between the output coupler of the gear box and the kneader input shaft.
(13) An embodiment of the invention is illustrated in partial cross-section assembled view in
(14) An embodiment of the invention is illustrated in partial cross-sectional and partial exploded view in
(15) An advantage of the embodiment illustrated in
(16) The invention has been described with reference to the preferred embodiments without limit thereto. One of skill in the art would realize additional embodiments, configurations and alterations which are not specifically set forth but which are within the scope of the invention as more specifically set forth in the claims appended hereto.