CN212383786U - Stud type roller edge protection structure of roller press - Google Patents

Stud type roller edge protection structure of roller press Download PDF

Info

Publication number
CN212383786U
CN212383786U CN202020452011.4U CN202020452011U CN212383786U CN 212383786 U CN212383786 U CN 212383786U CN 202020452011 U CN202020452011 U CN 202020452011U CN 212383786 U CN212383786 U CN 212383786U
Authority
CN
China
Prior art keywords
stud
roller
edge
ring
wear
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202020452011.4U
Other languages
Chinese (zh)
Inventor
何亚民
丁亚卓
徐智平
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Chengdu Leejun Industrial Co Ltd
Original Assignee
Chengdu Leejun Industrial Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Chengdu Leejun Industrial Co Ltd filed Critical Chengdu Leejun Industrial Co Ltd
Priority to CN202020452011.4U priority Critical patent/CN212383786U/en
Application granted granted Critical
Publication of CN212383786U publication Critical patent/CN212383786U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Rolls And Other Rotary Bodies (AREA)
  • Reduction Rolling/Reduction Stand/Operation Of Reduction Machine (AREA)

Abstract

The utility model discloses a roll squeezer stud formula roller limit protective structure relates to roll squeezer roll surface protection technical field. The utility model discloses a roller shell and retaining ring, the terminal surface edge of roller shell is provided with the step of supporting retaining ring, and retaining ring detachable connects the roller shell terminal surface, and the retaining ring encircles the roller shell terminal surface, and the anchor ring of retaining ring is inlayed and is had wear-resisting post, and wear-resisting post is at least including a pin and No. two posts of dislocation arrangement, and the diameter and/or the exposure of a pin are highly different with No. two posts. The utility model discloses a set up the multiple stud of dislocation arrangement on the detachable retaining ring, make the roller press roller edge obtain wear-resisting protection, reach extension roller life, manufacturing process is simple and low cost.

Description

Stud type roller edge protection structure of roller press
Technical Field
The utility model relates to a roll squeezer roll surface protection technical field particularly relates to a roll squeezer stud formula roller limit protective structure.
Background
In the industries of building material cement, metallurgical mines, coal, chemical industry and the like, the roller press has the advantages of high single machine yield, high operation rate, good reliability, low unit energy consumption and the like, and is quickly universally accepted by the industries. As the application field of the roller press is more and more extensive, the materials are more and more complex, and when the materials with stronger abrasiveness, larger particle size and non-uniformity are encountered, higher requirements on the wear resistance and the impact resistance of the roller surface are provided. In the edge area of the roll surface, problems such as too fast abrasion, edge breakage and the like often occur, and if the problems are not timely treated, the yield of the roll press and the service life of the roll surface are seriously affected.
At present, roller surface wear-resistant armor and wear-resistant material surfacing are mainly adopted as means for protecting the edge of the roller surface.
Chinese patent application publication No. CN104284729A discloses a press roll, which has a roller body, on one or both roller edges of which hard bodies are fastened as replaceable edge protection elements, the edge protection elements being made entirely or partially of a metal matrix composite material, the roller body having a plurality of circumferentially distributed and circumferentially spaced-apart pocket-like recesses on one or both roller edges, which recesses are each formed open laterally and upwardly, wherein only one hard body is inserted as a replaceable edge protection element in each pocket-like recess. The compression roller adopts the roller surface wear-resistant armor, and the roller surface wear-resistant armor is complex in production and preparation process and high in cost.
The chinese utility model patent application with publication number CN202803307U discloses a self-synchronizing wear roller of a roller press and a high-pressure roller mill, which uses the center of the roller surface as the center, evenly distributes studs in the total width 1/3-3/4 of the roller surface of the roller body, and uniformly overlaying patterns on the roller surface of the rest parts. The self-synchronous abrasion roller of the roller press and the high-pressure roller mill adopts a wear-resistant material surfacing mode to protect the edge of the roller surface, the roller surface edge protection structure has the advantages of long service life, need of periodic surfacing repair, limited repair times, block falling phenomenon and difficulty in meeting the field use requirements.
SUMMERY OF THE UTILITY MODEL
The utility model discloses a utility model aim at: can't compromise economy to current roll squeezer roller edge protection architecture and be suitable for and extension roller edge life, keep high wear resistance, the problem of shock resistance, a roll squeezer stud formula roller limit protective structure is provided, the terminal surface edge at the roller shell sets up the detachable retaining ring, and inlay the wear-resisting stud of diameter and/or outcrop height difference on the anchor ring of retaining ring, make roll squeezer roller edge obtain wear-resisting protection, can effectively prolong roller life, the protection architecture that can dismantle the retaining ring and combine the stud is convenient for overhaul the change, manufacturing process is simple and low cost.
The utility model adopts the technical scheme as follows:
the utility model provides a roll squeezer stud formula roller limit protective structure, includes roller shell and retaining ring, and the terminal surface edge of roller shell is provided with the step of supporting retaining ring, retaining ring detachable connects the roller shell terminal surface, just the retaining ring encircles the roller shell terminal surface, the anchor ring of retaining ring is inlayed and is had wear-resisting stud, and wear-resisting stud includes a stud and No. two studs of dislocation arrangement at least, the diameter and/or the outcrop height of a stud are different with No. two studs.
Furthermore, the first studs are uniformly distributed on the ring surface, and at least part of the second studs are arranged between two circumferentially adjacent first studs.
Furthermore, the diameter of the first stud is larger than that of the second stud, the second stud is arranged on the edge of the near roller surface and the edge of the far roller surface of the ring surface, and the second stud and the first stud are arranged at intervals in the circumferential direction.
Furthermore, the diameter of a stud is greater than that of a second stud, the second stud is arranged on the edge of the near roller surface and the edge of the far roller surface of the ring surface, the second stud is arranged at intervals in the circumferential direction, and the arrangement density of the second stud on the edge of the near roller surface is greater than that of the edge of the far roller surface.
Furthermore, the wear-resistant stud is embedded into the guard ring along the radial direction, and the top of the wear-resistant stud protrudes out of the ring surface or is flush with the ring surface.
Furthermore, on the longitudinal section, the ring surface is flush with the roller surface; or, in longitudinal section, the ring surface is higher than the roll surface; or, in the longitudinal section, the outer diameter of the side of the guard ring close to the roller surface is smaller than the outer diameter of the side of the guard ring far away from the roller surface, and the side of the ring surface close to the roller surface is connected with the roller surface.
Further, the guard ring is integrally formed; or the guard ring comprises a plurality of guard edge blocks which can be spliced into a ring.
Further, in a longitudinal section, the step includes a wedge that limits the movement of the edge-protecting block in the axial direction of the sleeve, the edge-protecting block having a head that matches the wedge.
Further, the diameter of the wear-resistant stud is
Figure BDA0002434444870000021
The outcrop height of the wear-resistant stud is 0-10 mm.
Furthermore, the wear-resistant stud is made of hard alloy, high-speed steel or high-chromium cast iron.
To sum up, owing to adopted above-mentioned technical scheme, the beneficial effects of the utility model are that: the guard ring of the stud type roller edge protection structure of the roller press is detachably separated from the roller sleeve, studs with different diameters and/or exposed head heights are arranged on the guard ring in a staggered mode to play a role in resisting wear, the staggered arrangement mode of the studs is favorable for improving the wear resistance of the ring surface of the guard ring, slowing down the wear speed of the studs, improving the impact resistance of the roller surface and prolonging the service life of the roller; in addition, the retaining ring can be detached, and the stud can be quickly overhauled and replaced, so that online quick repair can be realized.
Drawings
The invention will now be described, by way of example, with reference to the accompanying drawings, in which:
fig. 1 and fig. 2 are schematic structural views of a first embodiment of the stud-type roll edge protection structure of the roll squeezer;
fig. 3 and 4 are schematic structural views of a second embodiment of the stud-type roll edge protection structure of the roll squeezer according to the present invention;
FIG. 5 is a schematic structural view of a third embodiment of the stud-type roll edge protection structure of the roll squeezer according to the present invention;
fig. 6 and 7 are schematic structural views of a second embodiment of the stud-type roll edge protection structure of the roll squeezer according to the present invention;
FIG. 8 is a side view of the stud type roll edge protection structure of the roll squeezer adopting the split type retaining ring of the present invention;
FIG. 9 is a side view of the nail type roll edge protection structure of the roll squeezer adopting the integrated guard ring;
description of the drawings: 1-roller sleeve; 1 a-roll surface; 1 b-an end face; 1 c-step; 1 d-wedge; 2-protecting the ring; 2 a-a torus; 2 b-near the edge of the roll surface; 2 c-the edge of the far roll surface; 2 d-head; 2 e-a base portion; 2' -edge bead block; 3-stud; 3 a-a first stud; 3 b-a second stud; 4-bolt.
Detailed Description
All of the features disclosed in this specification, or all of the steps in any method or process so disclosed, may be combined in any combination, except combinations of features and/or steps that are mutually exclusive.
Any feature disclosed in this specification (including any accompanying claims, abstract) may be replaced by alternative features serving equivalent or similar purposes, unless expressly stated otherwise. That is, unless expressly stated otherwise, each feature is only an example of a generic series of equivalent or similar features.
According to the utility model discloses a 3 formula roller limit protective structure of roller press stud, in order to make the roller edge obtain wearing and tearing protection, roller shell 1 sets up step 1c at both sides terminal surface 1b edge, embeds removable retaining ring 2 in step 1 c. The edge of the end face 1b of the roller sleeve 1 is inwards recessed from the radial direction of the sleeve and the axial direction of the sleeve to form a step 1c, the step 1c can be formed by cutting, and the step 1c provides support for the guard ring 2 from the radial direction and the axial direction. The guard ring 2 is detachably connected with the end surface 1b of the roller sleeve 1 by a connecting mode including but not limited to metal adhesive bonding and bolt connection. The ring surface 2a of the shroud ring 2 forms an extension of the roll surface 1a of the roll shell 1 and provides wear protection for the roll edges. Inlay wear-resisting stud 3 on the anchor ring 2a of retaining ring 2, during wear-resisting stud 3 accessible was inlayed into the hole site of setting on anchor ring 2a by modes such as sticky, wear-resisting stud 3 excessive wearing and tearing back rethread removal were changed and are maintained.
The wear-resistant studs 3 are uniformly distributed in a conventional arrangement mode. In order to prolong the service life of the retaining ring 2 and the studs 3, the studs 3 of different types are arranged in a staggered mode in a better embodiment. Specifically, the guard ring 2 is at least embedded with a first stud 3a and a second stud 3b which are arranged in a staggered mode, and the diameter and/or the outcrop height of the first stud 3 a.
Fig. 1 and 2 show a first embodiment of arrangement of studs 3, a retaining ring 2 is embedded in a step 1c at the edge of an end face 1b of a roller sleeve 1, wear-resistant studs 3 are uniformly arranged on a ring surface 2a of the retaining ring 2, and the diameters and exposed heights of all the wear-resistant studs 3 are consistent.
Fig. 3 and 4 show a second embodiment of arrangement of studs 3, a retaining ring 2 is embedded in a step 1c at the edge of an end surface 1b of a roller sleeve 1, a wear-resistant stud 3 is embedded on the retaining ring 2, the wear-resistant stud 3 comprises a first stud 3a and a second stud 3b, wherein the first stud 3a with a larger diameter is uniformly arranged on a ring surface 2a, and the second stud 3b with a smaller diameter is mainly arranged at the edge of a roller surface 1a close to the ring surface 2a and the edge of a roller surface 1a far away from the ring surface 2a, i.e. the second stud 3b is mainly arranged at two sides of a first stud 3a belt, and the first studs 3a and the second studs 3b are alternately arranged at intervals in the circumferential direction of the retaining ring 2. The exposed height of the first stud 3a is the same as that of the second stud 3 b.
Fig. 5 shows a third embodiment of arrangement of studs 3, a retaining ring 2 is embedded in a step 1c at the edge of an end surface 1b of a roller sleeve 1, a wear-resistant stud 3 is embedded in the retaining ring 2, the wear-resistant stud 3 comprises a first stud 3a and a second stud 3b, wherein the first stud 3a with a larger diameter is uniformly arranged on a ring surface 2a, the second stud 3b with a smaller diameter is mainly arranged at the edge of a near roller surface 1a of the ring surface 2a and the edge of a far roller surface 1a, the second stud 3b is circumferentially arranged at intervals, and the arrangement density of the second stud 3b at the edge of the far roller surface 1a is greater than that of the second stud 3b at the edge of the near roller surface 1 a. The exposed height of the first stud 3a is the same as that of the second stud 3 b.
Fig. 6 and 7 show the fourth embodiment that stud 3 arranged, embedded grommet 2 in the step 1c at 1b edge of the terminal surface of roller shell 1, inlay wear-resisting stud 3 on grommet 2, wear-resisting stud 3 includes a stud 3a and No. two studs 3b, wherein, the great stud 3a of diameter evenly arranges on anchor face 2a, sets up the less No. two studs 3b of diameter between the adjacent stud 3a, in 2 circumferencial directions of grommet, the interval sets up in turn No. one stud 3a and No. two studs 3b, and the outcrop height of a stud 3a is greater than No. two studs 3 b.
In the fifth embodiment that stud 3 was arranged, embedded grommet 2 in the step 1c at 1b edge of the 1 terminal surface of roller shell, inlay wear-resisting stud 3 on grommet 2, wear-resisting stud 3 includes a stud 3a and No. two studs 3b, wherein, a stud 3a evenly arranges on anchor face 2a, sets up No. two studs 3b between the adjacent stud 3a, in 2 circumferencial directions of grommet, a stud 3a sets up with No. two studs 3b interval in turn, the outcrop height of a stud 3a is greater than the outcrop height of No. two studs 3b, and the diameter of a stud 3a is the same with the diameter of No. two studs 3 b.
Optionally, a radial blind hole is formed in the guard ring 2, so that the wear-resistant stud 3 is radially embedded into the guard ring 2. The radially arranged wear-resistant studs 3 have a greater impact resistance. In the way of fitting the wear-resistant stud 3 to the annular surface 2a of the guard ring 2, as in the embodiment shown in fig. 1 and 5, the top of the wear-resistant stud 3 protrudes from the annular surface 2 a; in another embodiment, the wear stud 3 may be flush on top with the annulus 2a as shown. Wherein, the scheme that the wear-resistant stud 3 protrudes out of the ring surface 2a enables the ring surface 2a to be easier to form a self-abrasive pad.
Alternatively, in the way of matching the ring surface 2a of the guard ring 2 with the roll surface 1a, as in the embodiment shown in fig. 1 and 5, in the longitudinal section of the roll, the ring surface 2a is flush with the roll surface 1a, and the edge of the ring surface 2a close to the roll surface 1a is connected with the roll surface 1 a; in another embodiment, the ring surface 2a is higher than the roller surface 1a on the longitudinal section of the roller, and the edge of the ring surface 2a close to the roller surface 1a can be provided with a chamfer to form a transition connected with the roller surface 1 a; in the third embodiment, in the longitudinal section of the roll, the outer diameter of the guard ring 2 on the side close to the roll surface 1a is smaller than the outer diameter of the guard ring 2 on the side far from the roll surface 1a, and more specifically, the ring surface 2a of the guard ring 2 is inclined, and the side close to the roll surface 1a of the ring surface 2a is in contact with the roll surface 1 a. It should be noted that the connection between the ring surface 2a and the roll surface 1a as described herein does not mean a seamless connection therebetween, but means that the two are substantially connected as a whole, allowing for a gap due to the provision of a chamfer or the like.
Alternatively, in the structure of the grommet 2, fig. 8 shows a first embodiment of the grommet 2, wherein the grommet 2 comprises a plurality of detachable grommet blocks 2 ', and the grommet blocks 2' are sequentially spliced into the grommet 2 in a ring shape. Fig. 9 shows a second embodiment of the grommet 2, in which the grommet 2 is integrally formed as a ring-shaped unitary structure.
Optionally, on the basis of the split type retaining ring 2, fig. 4 shows a preferred embodiment of assembling the edge protection block 2 'with the step 1c of the roller sleeve 1, wherein the edge protection block 2' comprises a head portion 2d and a base portion 2e, the head portion 2d of the edge protection block 2 'forms an extension of the roller surface 1a, the base portion 2e of the edge protection block 2' is connected with the end surface 1b of the roller sleeve 1, the step 1c is provided with a wedge portion 1d at a position matching the head portion 2d of the edge protection block 2 ', the head portion 2d of the edge protection block 2' is embedded into the wedge portion 1d to prevent the edge protection block 2 'from moving axially along the roller sleeve 1, and the edge protection block 2' has stronger impact resistance and pressure bearing capacity.
Optionally, the diameter of the wear-resistant stud 3 is preferably 10mm to 20 mm. The outcrop height of the wear-resistant stud 3 is preferably 0-10 mm.
Optionally, in order to improve the strength and wear resistance of the stud 3, the wear-resistant stud 3 is made of cemented carbide, high-speed steel or high-chromium cast iron. To ensure the structural strength of the guard ring 2, the guard ring 2 is preferably made of structural alloy steel, such as structural alloy steel 42CrMo, structural alloy steel 35CrMo, structural alloy steel 34Cr2Ni2Mo, and the like.
The present invention is not limited to the foregoing embodiments. The invention extends to any novel feature or any novel combination of features disclosed in this specification, and to any novel method or process steps or any novel combination of features disclosed.

Claims (10)

1. The utility model provides a roll squeezer stud (3) formula roller limit protective structure, includes roller shell (1) and retaining ring (2), and terminal surface (1b) edge of roller shell (1) is provided with step (1c) that support retaining ring (2), retaining ring (2) detachable connects roller shell (1) terminal surface (1b), just retaining ring (2) encircle roller shell (1) terminal surface (1b), its characterized in that, anchor ring (2a) of retaining ring (2) are inlayed and are had wear-resisting stud (3), and wear-resisting stud (3) are at least including a stud (3a) and No. two studs (3b) of dislocation arrangement, the diameter and/or the exposure height of a stud (3a) are different with No. two studs (3 b).
2. The roller press stud (3) type roller edge protection structure as claimed in claim 1, characterized in that the first studs (3a) are uniformly distributed on the ring surface (2a), and at least part of the second studs (3b) are arranged between two circumferentially adjacent first studs (3 a).
3. The roller press stud (3) type roller edge protection structure according to claim 2, wherein the diameter of the first stud (3a) is larger than that of the second stud (3b), the second stud (3b) is arranged at the edge of the near roller surface (1a) and the edge of the far roller surface (1a) of the ring surface (2a), and the second stud (3b) and the first stud (3a) are arranged at intervals in the circumferential direction.
4. The roller press stud (3) type roller edge protection structure according to claim 2, wherein the diameter of the first stud (3a) is larger than that of the second stud (3b), the second stud (3b) is arranged at the edge of the near roller surface (1a) and the edge of the far roller surface (1a) of the ring surface (2a), the second studs (3b) are arranged at intervals in the circumferential direction, and the arrangement density of the second studs (3b) at the edge of the near roller surface (1a) is larger than that of the edge of the far roller surface (1 a).
5. A roller edge protection structure of a roller press stud (3) according to any one of claims 1 to 4, characterized in that the wear stud (3) is radially embedded in the guard ring (2), the top of the wear stud (3) protrudes from the ring surface (2a) or the top of the wear stud (3) is flush with the ring surface (2 a).
6. Roller press stud (3) type edge protector according to any of claims 1 to 4, characterized in that in longitudinal section the ring surface (2a) is flush with the roller surface (1 a); or, in longitudinal section, the toroidal surface (2a) is higher than the roll surface (1 a); or in the longitudinal section, the outer diameter of the side of the guard ring (2) close to the roll surface (1a) is smaller than the outer diameter of the side of the guard ring (2) far away from the roll surface (1a), and the side of the ring surface (2a) close to the roll surface (1a) is connected with the roll surface (1 a).
7. Roller press stud (3) type roller edge guard structure according to any one of claims 1 to 4, characterized in that the guard ring (2) is formed in one piece; or the guard ring (2) comprises a plurality of guard blocks (2') which can be spliced into a ring.
8. Roller press stud (3) type roller edge guard structure according to claim 7, characterized in that, in longitudinal section, the step (1c) comprises a wedge (1d) limiting the axial movement of the edge guard block (2 ') along the roller shell (1), the edge guard block (2') having a head (2d) matching the wedge (1 d).
9. The roller press stud (3) type roller edge protection structure as claimed in any one of claims 1 to 4, characterized in that the diameter of the wear-resistant stud (3) is from 10mm to 20 mm; the outcrop height of the wear-resistant stud (3) is 0-10 mm.
10. A roller edge protection structure of the roller press stud (3) type according to any one of claims 1 to 4, characterized in that the wear-resistant stud (3) is made of cemented carbide, high-speed steel or high-chromium cast iron.
CN202020452011.4U 2020-04-01 2020-04-01 Stud type roller edge protection structure of roller press Active CN212383786U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020452011.4U CN212383786U (en) 2020-04-01 2020-04-01 Stud type roller edge protection structure of roller press

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020452011.4U CN212383786U (en) 2020-04-01 2020-04-01 Stud type roller edge protection structure of roller press

Publications (1)

Publication Number Publication Date
CN212383786U true CN212383786U (en) 2021-01-22

Family

ID=74256872

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020452011.4U Active CN212383786U (en) 2020-04-01 2020-04-01 Stud type roller edge protection structure of roller press

Country Status (1)

Country Link
CN (1) CN212383786U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114939472A (en) * 2022-05-23 2022-08-26 郑州机械研究所有限公司 Wear-resistant structure

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114939472A (en) * 2022-05-23 2022-08-26 郑州机械研究所有限公司 Wear-resistant structure

Similar Documents

Publication Publication Date Title
JP2799250B2 (en) Method for producing bimetal casting and wear parts produced by this method
CN212383786U (en) Stud type roller edge protection structure of roller press
CN211838176U (en) Assembled wear-resisting squeeze roll roller shell
CA2866949C (en) Press roller for a roller press
CN111420753A (en) Stud type roller edge protection structure of roller press
CN113926994A (en) Preparation method of wear-resistant extrusion roller
CN201865900U (en) Spectacle plate embedded with ultrafine crystal grain cemented carbide
CN1925920A (en) Milling rollers for vertical miller
US3582008A (en) Bimetal crusher liner
CN209810296U (en) Roll squeezer squeeze roll cover
CN110145239B (en) Insert for drilling, roller bit, and method for machining insert for drilling
CN102205256B (en) Roll surface of rolling machine and assembly and maintenance method thereof
CN211865218U (en) Non-maintaining roll squeezer stud roller
CN207357217U (en) A kind of Combined hard-alloy composite crusher liner plate
CN211838177U (en) Extrusion roller sleeve for preparing fine-grained materials
CN210474164U (en) Grinding roller of coal mill
CN209451936U (en) A kind of hydraulic vertical grinding machine pressure roller
CN114377775B (en) Extrusion roller sleeve with high rigidity and high crack resistance
CN219519030U (en) High-pressure roller mill roller edge structure
CN218107859U (en) High manganese steel cast nail build-up welding composite vertical mill grinding roller sleeve
EP4115979B1 (en) Mantle for a gyratory or cone crusher
CN211144380U (en) Cone bit of back cone build-up welding
CN114939472A (en) Wear-resistant structure
CN218609561U (en) Set up broken wall of spiral guide block
JP4680541B2 (en) Crushing surface member

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant