US2727732A - Pug mill paddle adjustable mounting means - Google Patents

Pug mill paddle adjustable mounting means Download PDF

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US2727732A
US2727732A US438944A US43894454A US2727732A US 2727732 A US2727732 A US 2727732A US 438944 A US438944 A US 438944A US 43894454 A US43894454 A US 43894454A US 2727732 A US2727732 A US 2727732A
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paddle
arm
ring
clamping
collars
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US438944A
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Robert F Plumb
Marcus J Linse
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Cedarapids Inc
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Iowa Manufacturing Company of Cedar Rapids
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F27/00Mixers with rotary stirring devices in fixed receptacles; Kneaders
    • B01F27/05Stirrers
    • B01F27/07Stirrers characterised by their mounting on the shaft
    • B01F27/071Fixing of the stirrer to the shaft

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  • This invention relates to pug mills, and has to do with means for adjusting the paddles of such mills.
  • Pug mills are used extensively for working or mixing together various materials, some of which are highly abrasive in character.
  • the materials to be mixed or worked are operated upon by mixing members or paddles carried by arms extending substantially radially from a rotatable shaft mounted in suitable bearings on the end walls of the mill housing or casing.
  • the paddles are set at an angle elfective for propelling the material toward an outlet or discharge opening of the casing at a rate such that thorough working or mixingof the material is assured when it reaches the discharge opening. It is desirable that the paddles be so mounted as to be readily adjusted at various angles to suit the materials being mixed or operated upon and, also, that they be capable of adjustments to compensate for wear.
  • Our invention is directed to a pug mill of the character above referred to having improved paddle mounting means whereby the paddles may be adjusted with expedition and facility at any desired angle within a complete revolution of the respective paddles about the associated arms.
  • we provide means whereby a paddle may readily be clamped upon its associated arm in fixed adjustment relative thereto at any desired angle circumferentially of the arm, such mounting means permitting of quick release of the paddle from the arm for desired adjustment thereof.
  • the paddle preferably is formed in two similar sections which are interchangeable and reversible so that when one portion of the paddle becomes worn to objectionable extent the paddle as a whole may be reversed so as to present an unworn leading portion for engagement with the material being operated upon.
  • the mounting means also provides for adjustment of the paddle lengthwise of its arm which, in conjunction with the reversibility of the paddle, renders it possible to compensate for wear of the paddle in the operation ofthe pug mill. Further objects and advantages of our invention will appear from the detail description.
  • Figure 1 is a semi-diagrammatic cross sectional view of a pug mill having paddle mounting means embodying our invention
  • Figure 2 is a fragmentary cross sectional view, on enlarged scale, of the shaft of the pug mill, taken substantially in the plane of one of the paddle arms with the latter shown in elevation and partly broken away;
  • FIG 3 is an end view of the paddle arm of Figure 2 with the paddle mounted thereon, the shaft being shown fragmentarily and in plan view;
  • Figure 4 is a face view of the paddle and associated parts taken substantially on line 4-4 of Figure 3;
  • Figure 5 is a transverse sectional view of one of the paddle arms taken substantially in the central plane of one of the clamping rings and showing a modified form thereof.
  • the pug mill is, in general, of known construction and operation, and a brief description thereof will suflice.
  • the pug mill comprises a housing or casing 5 in the form of a double trough having arcuate bottom walls 6 concentric with shafts 8 rotatably mounted in the end walls of the casing 5, in suitable bearings mounted thereon, the two shafts 8 being driven in timed relation in a known manner.
  • a plurality of paddle arms 9 extending radially therefrom and provided at their radially outer ends with paddles which operate upon the material being treated in the pug mill and propel such material, as it is mixed or worked, toward an outlet opening (not shown) of the pug mill, as is known.
  • the pug mill shaft 8 may be of tubular construction, as is shown, and the paddle arms 9 preferably are in the form of cylindrical rods secured through shaft 8 diametrically thereof and welded thereto at 10.
  • Each of the arms 9 is provided, adjacent its outer end, with one or more, conveniently three, circumferential grooves 11 disposed contiguous one to the other.
  • the groove 11 is of approximately semi-circular shape at its radially outer portion and tapers in width radially inward.
  • a split steel clamping ring 12, of circular cross section, is disposed in one of the grooves 11, selectively. Ring 12 seats in the semi-circular outer portion of groove 11 and, when not subjected to radial inward pressure, is held expanded by its inherent resiliency so as to be out of binding contact with the wall of groove 11 and freely turnable therein.
  • a paddle 13 is mounted on the radially outer end of arm 9 by means of the ring 12 and associated cooperating parts of the paddle.
  • the paddle 13 comprises two substantially rectangular generally flat sections 14 each having an integral collar 15 substantially tangent thereto.
  • the collars 15 are of a size to fit snugly about the arm 9 without binding thereon and are disposed at opposite sides of the ring 12.
  • Each of the collars is provided, at the end thereof adjacent ring 12, with an inner beveled surface 16 disposed to contact ring 12 when the collars 15 are forced toward each other.
  • Each collar 15 is further provided with three bosses 17 suitably bored for reception of headed bolts 18 inserted therethrough, with the heads 19 seating on the outer faces of the bosses 17 of one of the collars 15.
  • Securing nuts 20 are threaded on the other ends of the bolts 18 and seat on spring washers 21 seating on the outer faces of bosses 17 of the other collar 15.
  • the collars 15 may be forced toward each other so as to force the inclined or beveled surfaces 16 into clamping pressure contact with the split ring 12, effective for compressing the latter and forcing it into clamping pressure contact with the surrounding wall of groove 11.
  • the paddle 13 is clamped upon arm 9 so as to be fixed in desired adjustment thereabout.
  • the pressure is relieved and ring 12 then expands by its inherent resiliency, exerting a Wedging effect on the beveled surfaces 16 and spreading the collars 15 apart to the extent permitted by the nut and bolt securing means.
  • the paddle 13 may then be turned about arm 9 to desired position and clamped thereon in the manner above described. Accordingly, when the clamping pressure on ring 12 is relieved, the paddle 13 may be turned freely about the arm 9 through a complete revolution to any desired angular position. That renders it possible to adjust with expedition and facility the angle of the paddles relative to the associated arms 9 to any extent, to suit the material being mixed or operated upon in the pug mill.
  • the two sections 14 of the so that they are reversible and inter- Each of the shafts 8 is provided withv changeable.
  • the leading edge portion such as portion 22 of the paddle 13 becomes worn to objectionable extent
  • the two sections of the paddle may readily be removed and reversed, the former outer section replacing the former inner section and vice versa, so that the unworn following edge portion 23 of the paddle then becomes the leading edge portion.
  • wear of the leading edge portion of the paddle may be readily compensated for.
  • wear of the radially outer end portion of the paddle may be compensated for, as such wear progresses, by moving the ring 12 outward into the successive grooves 11. That may readily be accomplished by expanding .ring 12, by means of a suitable tool, so as to remove it from the groove in which it is then positioned and replace it in an outer groove.
  • the number of grooves 11 may be varied as desired and to suit requirements.
  • a protective sleeve 25 is placed upon the arm 9 so as to extend a substantial distance outward therealong from shaft 8, and the inner section 14 of the paddle 13 is placed on arm 9 inwardly beyond grooves 11.
  • the sleeve 25 serves to protect arm 9, for the major portion of the length thereof, from wear and abrasion by the material treated in the pug mill. When the sleeve 25 becomes worn, it may readily be replaced in an obvious manner.
  • the paddle is shown in full lines in one angular position on arm 9 and in dot and dash lines in a second angular position, to which it may readily be turned by slightly loosening the nuts 20 on the bolts 18 and thereafter turning up the nuts tight onto the bolts so as to clamp the paddle in fixed adjustment on arm 9 in the manner previously described.
  • the paddle 13 may be turned into any position desired about arm 9 throughout a complete revolution thereabout.
  • a clamping ring 12a formed in two approximately semi-circular sections 121) may be used instead of using a one piece clamping ring 12, a clamping ring 12a formed in two approximately semi-circular sections 121) may be used.
  • the two part ring 12a functions in substantially the same manner as the one piece ring 12, except that it is not resilient and does not exert a spring action, and need not be described in greater detail.
  • the two part ring of Figure 5 and the one part ring of Figure 2 each constitute a compression member which is compressed about arm 9 in clamping engagement therewith.
  • a pug mill a casing and a rotatable shaft therein, paddle arms secured to said shaft extending substantially radially therefrom, paddles on said arms respectively comprising opposed clamping members fitting about the associated arm, a compression member extending about said arm between said opposed paddle clamping members efiective for clamping said paddle clamping members in fixed adjustment about said arm when said paddle clamping members are forced toward each other into clamping pressure contact with said compression member, and means for forcing said paddle clamping members toward each other into clamping pressure contact with said compression member, said paddle clamping members being turnable about said arm through a complete revolution when released from clamping contact with said compression member.
  • a paddle arm comprising opposed clamping members carried by said paddle and fitting about said arm and freely turnable thereabout when released from said arm, a compression member extending about said arm between said paddle clamping members and in cooperation therewith clamping said paddle in fixed adjustment about said arm when said paddle clamping members are forced toward each other into clamping pressure contact with said compression member, and means for forcing said paddle clamping members toward each other into clamping pressure contact with said compression member.
  • a paddle arm comprising two opposed clamping members fitting about said arm and freely turnable thereabout when released from said arm, a compression member surrounding said arm between said paddle clamping members and normally out of clamping contact with said arm, said paddle clamping members having elements cooperating with said compression member for frictionally securing the latter and said paddle clamping members to said arm in fixed adjustment thereabout when said paddle clamping members are forced toward each other into clamping pressure contact with said compression member, and means for forcing said paddle clamping members toward each other into clamping pressure contact with said compression member.
  • a paddle arm a paddle formed in two similar sections each comprising a collar fitting on said arm and a substantially rectangular paddle element on said collar substantially tangent thereto, a resilient clamping ring on said arm between the collars of said paddle sections and normally out of clamping contact with said arm, said collars and said arm having elements cooperating with said ring effective for clamping the latter and said collars to said arm in fixed adjustment thereabout when said collars are forced toward each other into clamping pressure contact with said ring, and means for forcing said collars toward each other into clamping pressure contact with said ring.
  • a paddle arm a paddle formed in two similar sections each comprising a collar fitting on said arm and a substantially rectangular paddle element on said collar substantially tangent thereto, said arm having a circumferential groove diminishing in width radially inward of said arm, a split clamping ring seating in the radially outer portion of said groove and disposed between the collars of said paddle sections, said collars having beveled surfaces effective for compressing said ring and clamping it and said collars to said arm in fixed adjustment thereabout when said collars are forced toward each other into clamping pressure contact with said ring, and means for forcing said collars toward each other into clamping pressure contact with said ring.
  • a paddle arm a paddle formed in two similar reversible and interchangeable sections each comprising a collar fitting on said arm and a substantially rectangular paddle element on said collar tangent thereto, said arm having a circumferential groove diminishing in width radially inward of said arm, a split clamping ring seating in the radially outer portion of said groove and disposed between the collars of said paddle sections, said collars having beveled surfaces effective for compressing said ring and clamping it and said collars to said arm in fixed adjustment thereabout when said collars are forced toward each other into clamping pressure contact with said ring, and means for forcing said collars toward each other into clamping pressure contact with said ring.
  • a paddle arm having a plurality of circumferential grooves diminishing in width radially inward of said arm, a split clamping ring positionable in said grooves selectively and seating in the outer portion of the selected groove, a paddle formed in two sections each comprising a collar fitting on said arm, said ring being disposed between the collars of said paddle sections and said collars having elements cooperating with said ring effective for compressing it and clamping said ring and collars to said arm in fixed adjustment thereabout when said collars are forced toward each other into clamping pressure contact with said ring, and means for forcing said collars toward each other into clamping pressure contact with said ring.
  • a paddle arm a paddle formed in two similar sections each comprising a collar fitting on said arm and a substantially rectangular paddle element on said collar substantially tangent thereto, said arm having a circumferential groove diminishing in width radially inward of i said arm, a sectional clampingring seating in the radially outer portion of said groove and disposed between the collars of said paddle sections, said collars having beveled surfaces efiective for compressing said ring and clamping it and said collars to said arm in fixed adjustment thereabout when said collars are forced toward each other into clamping pressure contact with said ring, and means for forcing said collars toward each other in clamping pressure contact with said ring.
  • a paddle arm a paddle formed in two similar sections each comprising a collar fitting on said arm and a substantially rectangular paddle element on said collar substantially tangent thereto, said arm having a circumferential groove diminishing in width radially inward of said arm, a two part clamping ring seating in the radially outer portion of said groove and disposed between the collars of said paddle sections, said collars having beveled surfaces effective for compressing said ring and clamping it and said collars to said arm in fixed adjustment thereabout when said collars are forced toward each other into clamping pressure contact with said ring, and means for forcing said collars toward each other into clamping pressure contact with said ring.

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  • Chemical Kinetics & Catalysis (AREA)
  • Crushing And Grinding (AREA)

Description

DCC. 20, 1955 R PLUMB r 2,727,732
PUG MILL PADDLE ADJUSTABLE MOUNTING MEANS Filed June 24. 1954 MM 772W JZMwe United States Patent PUG MILL PADDLE ADJUSTABLE MOUNTING MEANS Robert F. Plumb and Marcus J. Linse, Cedar Rapids, Iowa, assignors to Iowa Manufacturing Company of Cedar Rapids, Iowa, Cedar Rapids, Iowa, a corporation of Iowa Application June 24, 1954, Serial No. 438,944
9 Claims. (Cl. 259- 109) This invention relates to pug mills, and has to do with means for adjusting the paddles of such mills.
Pug mills are used extensively for working or mixing together various materials, some of which are highly abrasive in character. In the operation of the mill the materials to be mixed or worked are operated upon by mixing members or paddles carried by arms extending substantially radially from a rotatable shaft mounted in suitable bearings on the end walls of the mill housing or casing. The paddles are set at an angle elfective for propelling the material toward an outlet or discharge opening of the casing at a rate such that thorough working or mixingof the material is assured when it reaches the discharge opening. It is desirable that the paddles be so mounted as to be readily adjusted at various angles to suit the materials being mixed or operated upon and, also, that they be capable of adjustments to compensate for wear.
Our invention is directed to a pug mill of the character above referred to having improved paddle mounting means whereby the paddles may be adjusted with expedition and facility at any desired angle within a complete revolution of the respective paddles about the associated arms. To that end, we provide means whereby a paddle may readily be clamped upon its associated arm in fixed adjustment relative thereto at any desired angle circumferentially of the arm, such mounting means permitting of quick release of the paddle from the arm for desired adjustment thereof. The paddle preferably is formed in two similar sections which are interchangeable and reversible so that when one portion of the paddle becomes worn to objectionable extent the paddle as a whole may be reversed so as to present an unworn leading portion for engagement with the material being operated upon. The mounting means also provides for adjustment of the paddle lengthwise of its arm which, in conjunction with the reversibility of the paddle, renders it possible to compensate for wear of the paddle in the operation ofthe pug mill. Further objects and advantages of our invention will appear from the detail description.
In the drawings:
Figure 1 is a semi-diagrammatic cross sectional view of a pug mill having paddle mounting means embodying our invention;
Figure 2 is a fragmentary cross sectional view, on enlarged scale, of the shaft of the pug mill, taken substantially in the plane of one of the paddle arms with the latter shown in elevation and partly broken away;
Figure 3 is an end view of the paddle arm of Figure 2 with the paddle mounted thereon, the shaft being shown fragmentarily and in plan view;
Figure 4 is a face view of the paddle and associated parts taken substantially on line 4-4 of Figure 3; and
Figure 5 is a transverse sectional view of one of the paddle arms taken substantially in the central plane of one of the clamping rings and showing a modified form thereof.
2,727,732 Patented Dec. 20, 1955 The pug mill is, in general, of known construction and operation, and a brief description thereof will suflice. The pug mill comprises a housing or casing 5 in the form of a double trough having arcuate bottom walls 6 concentric with shafts 8 rotatably mounted in the end walls of the casing 5, in suitable bearings mounted thereon, the two shafts 8 being driven in timed relation in a known manner. a plurality of paddle arms 9 extending radially therefrom and provided at their radially outer ends with paddles which operate upon the material being treated in the pug mill and propel such material, as it is mixed or worked, toward an outlet opening (not shown) of the pug mill, as is known.
Referring to Figures 2, 3 and 4, the pug mill shaft 8 may be of tubular construction, as is shown, and the paddle arms 9 preferably are in the form of cylindrical rods secured through shaft 8 diametrically thereof and welded thereto at 10. Each of the arms 9 is provided, adjacent its outer end, with one or more, conveniently three, circumferential grooves 11 disposed contiguous one to the other. The groove 11 is of approximately semi-circular shape at its radially outer portion and tapers in width radially inward. A split steel clamping ring 12, of circular cross section, is disposed in one of the grooves 11, selectively. Ring 12 seats in the semi-circular outer portion of groove 11 and, when not subjected to radial inward pressure, is held expanded by its inherent resiliency so as to be out of binding contact with the wall of groove 11 and freely turnable therein.
A paddle 13 is mounted on the radially outer end of arm 9 by means of the ring 12 and associated cooperating parts of the paddle. The paddle 13 comprises two substantially rectangular generally flat sections 14 each having an integral collar 15 substantially tangent thereto. The collars 15 are of a size to fit snugly about the arm 9 without binding thereon and are disposed at opposite sides of the ring 12. Each of the collars is provided, at the end thereof adjacent ring 12, with an inner beveled surface 16 disposed to contact ring 12 when the collars 15 are forced toward each other. Each collar 15 is further provided with three bosses 17 suitably bored for reception of headed bolts 18 inserted therethrough, with the heads 19 seating on the outer faces of the bosses 17 of one of the collars 15. Securing nuts 20 are threaded on the other ends of the bolts 18 and seat on spring washers 21 seating on the outer faces of bosses 17 of the other collar 15. By turning the nuts 20 tightly onto the bolts 18, the collars 15 may be forced toward each other so as to force the inclined or beveled surfaces 16 into clamping pressure contact with the split ring 12, effective for compressing the latter and forcing it into clamping pressure contact with the surrounding wall of groove 11. In that manner, the paddle 13 is clamped upon arm 9 so as to be fixed in desired adjustment thereabout. By turning the nuts 20 off of the bolts 18 to appropriate extent, the pressure is relieved and ring 12 then expands by its inherent resiliency, exerting a Wedging effect on the beveled surfaces 16 and spreading the collars 15 apart to the extent permitted by the nut and bolt securing means. The paddle 13 may then be turned about arm 9 to desired position and clamped thereon in the manner above described. Accordingly, when the clamping pressure on ring 12 is relieved, the paddle 13 may be turned freely about the arm 9 through a complete revolution to any desired angular position. That renders it possible to adjust with expedition and facility the angle of the paddles relative to the associated arms 9 to any extent, to suit the material being mixed or operated upon in the pug mill.
The two sections 14 of the so that they are reversible and inter- Each of the shafts 8 is provided withv changeable. When the leading edge portion, such as portion 22 of the paddle 13 becomes worn to objectionable extent, the two sections of the paddle may readily be removed and reversed, the former outer section replacing the former inner section and vice versa, so that the unworn following edge portion 23 of the paddle then becomes the leading edge portion. In that manner, wear of the leading edge portion of the paddle may be readily compensated for. Further, wear of the radially outer end portion of the paddle may be compensated for, as such wear progresses, by moving the ring 12 outward into the successive grooves 11. That may readily be accomplished by expanding .ring 12, by means of a suitable tool, so as to remove it from the groove in which it is then positioned and replace it in an outer groove. Obviously, the number of grooves 11 may be varied as desired and to suit requirements.
Preferably, before placing the ring 12 in one of the grooves 11, a protective sleeve 25 is placed upon the arm 9 so as to extend a substantial distance outward therealong from shaft 8, and the inner section 14 of the paddle 13 is placed on arm 9 inwardly beyond grooves 11. The sleeve 25 serves to protect arm 9, for the major portion of the length thereof, from wear and abrasion by the material treated in the pug mill. When the sleeve 25 becomes worn, it may readily be replaced in an obvious manner. Referring further to the adjustment of the paddle about arm 9, in Figure 3 the paddle is shown in full lines in one angular position on arm 9 and in dot and dash lines in a second angular position, to which it may readily be turned by slightly loosening the nuts 20 on the bolts 18 and thereafter turning up the nuts tight onto the bolts so as to clamp the paddle in fixed adjustment on arm 9 in the manner previously described. As will be understood from what has been said, the paddle 13 may be turned into any position desired about arm 9 throughout a complete revolution thereabout.
Instead of using a one piece clamping ring 12, a clamping ring 12a formed in two approximately semi-circular sections 121) may be used. The two part ring 12a functions in substantially the same manner as the one piece ring 12, except that it is not resilient and does not exert a spring action, and need not be described in greater detail. As will be understood from the foregoing, the two part ring of Figure 5 and the one part ring of Figure 2 each constitute a compression member which is compressed about arm 9 in clamping engagement therewith.
It will be understood that changes in detail may be resorted to without departing from the field and scope of our invention, and we intend to include all such variations, as fall within the scope of the appended claims, in this application in which the preferred form only of our invention has been disclosed.
We claim:
1. In a pug mill, a casing and a rotatable shaft therein, paddle arms secured to said shaft extending substantially radially therefrom, paddles on said arms respectively comprising opposed clamping members fitting about the associated arm, a compression member extending about said arm between said opposed paddle clamping members efiective for clamping said paddle clamping members in fixed adjustment about said arm when said paddle clamping members are forced toward each other into clamping pressure contact with said compression member, and means for forcing said paddle clamping members toward each other into clamping pressure contact with said compression member, said paddle clamping members being turnable about said arm through a complete revolution when released from clamping contact with said compression member.
2. In adjustable mounting means for pug rnill paddles, a paddle arm, a paddle comprising opposed clamping members carried by said paddle and fitting about said arm and freely turnable thereabout when released from said arm, a compression member extending about said arm between said paddle clamping members and in cooperation therewith clamping said paddle in fixed adjustment about said arm when said paddle clamping members are forced toward each other into clamping pressure contact with said compression member, and means for forcing said paddle clamping members toward each other into clamping pressure contact with said compression member.
3. In adjustable mounting means for pug mill paddles, a paddle arm, a paddle comprising two opposed clamping members fitting about said arm and freely turnable thereabout when released from said arm, a compression member surrounding said arm between said paddle clamping members and normally out of clamping contact with said arm, said paddle clamping members having elements cooperating with said compression member for frictionally securing the latter and said paddle clamping members to said arm in fixed adjustment thereabout when said paddle clamping members are forced toward each other into clamping pressure contact with said compression member, and means for forcing said paddle clamping members toward each other into clamping pressure contact with said compression member.
4. In adjustable mounting means for pug mill paddles, a paddle arm, a paddle formed in two similar sections each comprising a collar fitting on said arm and a substantially rectangular paddle element on said collar substantially tangent thereto, a resilient clamping ring on said arm between the collars of said paddle sections and normally out of clamping contact with said arm, said collars and said arm having elements cooperating with said ring effective for clamping the latter and said collars to said arm in fixed adjustment thereabout when said collars are forced toward each other into clamping pressure contact with said ring, and means for forcing said collars toward each other into clamping pressure contact with said ring.
5. In adjustable mounting means for pug mill paddles, a paddle arm, a paddle formed in two similar sections each comprising a collar fitting on said arm and a substantially rectangular paddle element on said collar substantially tangent thereto, said arm having a circumferential groove diminishing in width radially inward of said arm, a split clamping ring seating in the radially outer portion of said groove and disposed between the collars of said paddle sections, said collars having beveled surfaces effective for compressing said ring and clamping it and said collars to said arm in fixed adjustment thereabout when said collars are forced toward each other into clamping pressure contact with said ring, and means for forcing said collars toward each other into clamping pressure contact with said ring.
6. In adjustable mounting means for pug mill paddles, a paddle arm, a paddle formed in two similar reversible and interchangeable sections each comprising a collar fitting on said arm and a substantially rectangular paddle element on said collar tangent thereto, said arm having a circumferential groove diminishing in width radially inward of said arm, a split clamping ring seating in the radially outer portion of said groove and disposed between the collars of said paddle sections, said collars having beveled surfaces effective for compressing said ring and clamping it and said collars to said arm in fixed adjustment thereabout when said collars are forced toward each other into clamping pressure contact with said ring, and means for forcing said collars toward each other into clamping pressure contact with said ring.
7. In adjustable mounting means for pug mill paddles, a paddle arm having a plurality of circumferential grooves diminishing in width radially inward of said arm, a split clamping ring positionable in said grooves selectively and seating in the outer portion of the selected groove, a paddle formed in two sections each comprising a collar fitting on said arm, said ring being disposed between the collars of said paddle sections and said collars having elements cooperating with said ring effective for compressing it and clamping said ring and collars to said arm in fixed adjustment thereabout when said collars are forced toward each other into clamping pressure contact with said ring, and means for forcing said collars toward each other into clamping pressure contact with said ring.
8. In adjustable mounting means for pug mill paddles, a paddle arm, a paddle formed in two similar sections each comprising a collar fitting on said arm and a substantially rectangular paddle element on said collar substantially tangent thereto, said arm having a circumferential groove diminishing in width radially inward of i said arm, a sectional clampingring seating in the radially outer portion of said groove and disposed between the collars of said paddle sections, said collars having beveled surfaces efiective for compressing said ring and clamping it and said collars to said arm in fixed adjustment thereabout when said collars are forced toward each other into clamping pressure contact with said ring, and means for forcing said collars toward each other in clamping pressure contact with said ring.
9. In adjustable mounting means for pug mill paddles, a paddle arm, a paddle formed in two similar sections each comprising a collar fitting on said arm and a substantially rectangular paddle element on said collar substantially tangent thereto, said arm having a circumferential groove diminishing in width radially inward of said arm, a two part clamping ring seating in the radially outer portion of said groove and disposed between the collars of said paddle sections, said collars having beveled surfaces effective for compressing said ring and clamping it and said collars to said arm in fixed adjustment thereabout when said collars are forced toward each other into clamping pressure contact with said ring, and means for forcing said collars toward each other into clamping pressure contact with said ring.
References Cited in the file of this patent UNITED STATES PATENTS Barr Apr. 10, 1917 1,370,893 Komarek Mar. 8, 1921 2,570,042 West Oct. 2, 1951
US438944A 1954-06-24 1954-06-24 Pug mill paddle adjustable mounting means Expired - Lifetime US2727732A (en)

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Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2961224A (en) * 1958-09-18 1960-11-22 Wright Wilbur Pug-mill mixer for asphalt plant
US3090606A (en) * 1959-09-11 1963-05-21 Strong Scott Mfg Company Rotary mixing device
US3738774A (en) * 1971-12-16 1973-06-12 K Lutz Asphalt mixer tip and shank assembly
US3804380A (en) * 1972-06-13 1974-04-16 W Beutler Container for transport of mastic asphalt and like bulk material required for laying streets
US4911558A (en) * 1987-06-30 1990-03-27 Lothar Teske Screw conveyor
US20050175516A1 (en) * 1997-02-10 2005-08-11 Ber Systems, Inc. Sewage sludge treatment
US20080131266A1 (en) * 2006-11-30 2008-06-05 Ljubisa Vrljes Bleed valve actuating system for a gas turbine engine
WO2020048929A1 (en) * 2018-09-03 2020-03-12 Detloff GmbH Mixer with arm

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1222584A (en) * 1916-10-04 1917-04-10 Howard Barr Self-rising-flour-mixing machine.
US1370893A (en) * 1920-05-24 1921-03-08 St Louis Briquette Machine Com Fluxer stirring-arm
US2570042A (en) * 1950-02-14 1951-10-02 West Construction Company Pug mill

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1222584A (en) * 1916-10-04 1917-04-10 Howard Barr Self-rising-flour-mixing machine.
US1370893A (en) * 1920-05-24 1921-03-08 St Louis Briquette Machine Com Fluxer stirring-arm
US2570042A (en) * 1950-02-14 1951-10-02 West Construction Company Pug mill

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2961224A (en) * 1958-09-18 1960-11-22 Wright Wilbur Pug-mill mixer for asphalt plant
US3090606A (en) * 1959-09-11 1963-05-21 Strong Scott Mfg Company Rotary mixing device
US3738774A (en) * 1971-12-16 1973-06-12 K Lutz Asphalt mixer tip and shank assembly
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