CN213945152U - Guide member chamfering machining mechanism - Google Patents

Guide member chamfering machining mechanism Download PDF

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Publication number
CN213945152U
CN213945152U CN202022253720.2U CN202022253720U CN213945152U CN 213945152 U CN213945152 U CN 213945152U CN 202022253720 U CN202022253720 U CN 202022253720U CN 213945152 U CN213945152 U CN 213945152U
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surface wall
plate
chip
frame
guide groove
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CN202022253720.2U
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Chinese (zh)
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樊文江
李晓宾
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Tianjin Muyuan Automation Technology Development Co ltd
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Tianjin Muyuan Automation Technology Development Co ltd
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Abstract

The utility model belongs to the technical field of chamfer processing, and discloses a guide chamfer processing mechanism, which comprises a bottom frame, wherein the top end of the bottom frame is fixed with a fixed plate, two ends of the upper surface wall of the fixed plate are symmetrically connected with a vertical plate, the front surface wall of the vertical plate is provided with a control switch, the top end of the vertical plate is connected with a mounting plate, the middle position of the upper surface wall of the mounting plate is provided with a hydraulic cylinder, and the bottom end of the hydraulic cylinder is connected with a mounting frame through a telescopic rod, the utility model is additionally provided with a first chip guide groove, a second chip guide groove and a waste chip collecting frame, wherein one end of the first chip guide groove is higher and the other end is lower, waste chips generated by chamfering can be swept into the first chip guide groove, then the waste chips in the first chip guide groove can slide down along the first chip guide groove and then fall into the waste chip collecting frame through the second chip guide groove for collection, the waste chips are conveniently and thoroughly discharged, and are convenient for cleaning the subsequent waste chips, greatly reducing the workload of cleaning the sweeps.

Description

Guide member chamfering machining mechanism
Technical Field
The utility model belongs to the technical field of the chamfer processing, concretely relates to guide chamfer processing agency.
Background
The chamfering refers to processing of cutting edges and corners of a workpiece into a certain inclined plane, the chamfering is to remove burrs generated on the part due to machining, and is also to facilitate assembly of the part, the chamfering is generally made at the end part of the part, and a chamfering processing mechanism is generally used for processing in the processing processes of a guide slide rail, a guide block, a guide seat, a guide plate, a guide rail, a guide positioning block and the like so as to remove the burrs.
But present current chamfer processing agency has certain defect, and traditional chamfer processing agency does not set up effectual bits structure of leading, and the sweeps that the chamfer in-process produced is difficult for discharging fast, the clearance of the follow-up sweeps of not being convenient for, and in addition, the structure is shelved to the work piece on the traditional chamfer processing agency is difficult to lift off, is not convenient for subsequent washing and change.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a guide chamfer processing agency to propose in solving above-mentioned background art and not set up effectual guide bits structure, the difficult quick exhaust problem of sweeps that produces, in addition, traditional work piece is shelved the structure and is difficult to lift off, the follow-up problem of wasing and changing of being not convenient for.
In order to achieve the above object, the utility model provides a following technical scheme: the guide piece chamfering machining mechanism comprises a bottom frame, wherein a fixed plate is fixed at the top end of the bottom frame, vertical plates are symmetrically connected to two ends of the upper surface wall of the fixed plate, a control switch is installed on the front surface wall of each vertical plate, a mounting plate is connected to the top end of each vertical plate, a hydraulic cylinder is installed in the middle position of the upper surface wall of the mounting plate, the bottom end of the hydraulic cylinder is connected with a mounting frame through a telescopic rod, a motor is installed inside the mounting frame, the output end of the motor is connected with a chamfering knife through a rotating shaft, slots are symmetrically formed in the lower ends of the opposite sides of the two vertical plates, inserting blocks matched with the slots are inserted into the slots, a supporting plate is connected between the two inserting blocks, a placing groove is formed in the middle position of the upper surface wall of the supporting plate, first chip guide grooves are symmetrically formed in two sides of the placing groove, and second chip guide grooves are symmetrically formed in the front surface wall of the supporting plate, the first chip guide groove and the second chip guide groove are in through connection, one end, close to the second chip guide groove, of the first chip guide groove is lower than one end, far away from the second chip guide groove, and a waste chip collecting frame is arranged on the upper wall of the fixing plate.
Preferably, the baffle plates are symmetrically connected to two sides of the upper surface wall of the supporting plate, which are located on the placing groove, the outer surface wall of each baffle plate is connected with a screw rod in a screwing mode, and the two opposite sides of the screw rods are provided with the supporting plates through bearings.
Preferably, a hand wheel is installed at one end, far away from the abutting plate, of the screw rod, and a rubber sleeve is sleeved on the outer surface wall of the hand wheel.
Preferably, the front surface wall of the bottom frame is recessed inwards to form a storage cabinet, a storage cabinet door is installed at a port of the storage cabinet, and a handle is installed on the outer surface wall of the storage cabinet door.
Preferably, bottom feet are symmetrically connected to the bottom end of the bottom frame, and anti-skid grains are formed in the lower surface wall of each bottom foot.
Preferably, the two side walls of the mounting frame are symmetrically connected with supporting plates, and the opposite sides of the two vertical plates are symmetrically provided with guide grooves matched with the supporting plates.
Compared with the prior art, the beneficial effects of the utility model are that:
(1) the utility model discloses add first chip groove, second chip groove and sweeps and collect the frame, wherein the high one end of first chip groove one end is low, the sweeps that the chamfer produced can be swept to first chip groove in, then clean the sweeps in the first chip groove, the sweeps can slide along first chip groove, then fall to the sweeps via the second chip groove and collect in collecting the frame, the sweeps discharge is convenient and thorough, the clearance of the follow-up sweeps of being convenient for has greatly reduced the work load of sweeps clearance.
(2) The utility model discloses a cooperation of inserted block and slot has realized inserting of layer board and has established the installation, need lift off when wasing or changing at the layer board, only need pull out the layer board outward, with the inserted block follow slot in extract can, lift off swift convenience, labour saving and time saving, wherein lift off the washing and can effectively avoid wasing water messenger whole mechanism and wet, lift off and wash and have more the security.
Drawings
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is a top view of the vertical plate of the present invention;
FIG. 3 is an enlarged view of portion A of FIG. 1;
in the figure: 1. a bottom frame; 2. a fixing plate; 3. a screw; 4. a resisting plate; 5. a support plate; 6. mounting a plate; 7. a motor; 8. a hydraulic cylinder; 9. installing a frame; 10. a vertical plate; 11. a control switch; 12. a baffle plate; 13. a first chip guide groove; 14. inserting a block; 15. a second chip guide groove; 16. a support plate; 17. a resting groove; 18. a scrap collecting frame; 19. a locker door; 20. footing; 21. a guide groove; 22. and (4) a slot.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-3, the present invention provides the following technical solutions: a guide part chamfering processing mechanism comprises a bottom frame 1, wherein a fixed plate 2 is fixed at the top end of the bottom frame 1, vertical plates 10 are symmetrically connected to two ends of the upper surface wall of the fixed plate 2, a control switch 11 is installed on the front surface wall of each vertical plate 10, a mounting plate 6 is connected to the top end of each vertical plate 10, a hydraulic cylinder 8 is installed in the middle position of the upper surface wall of the mounting plate 6, the bottom end of each hydraulic cylinder 8 is connected with a mounting frame 9 through a telescopic rod, a motor 7 is installed inside the mounting frame 9, the motor 7 is electrically connected with the control switch 11, the type of the motor 7 is M425-402, the output end of the motor 7 is connected with a chamfering knife through a rotating shaft, slots 22 are symmetrically formed in the lower end of one side, opposite to the two vertical plates 10, insertion blocks 14 matched with the insertion blocks are inserted into the insertion slots 22, when the support plates 16 need to be detached for cleaning or replacement, only the support plates 16 need to be pulled out, the insertion blocks 14 can be pulled out of the insertion slots 22, the unloading is rapid and convenient, time and labor are saved, wherein the whole mechanism is effectively prevented from being affected by cleaning water when the mechanism is unloaded and cleaned, the unloading and cleaning are safer, a supporting plate 16 is connected between two insert blocks 14, a placing groove 17 is arranged in the middle of the upper wall of the supporting plate 16, first chip guide grooves 13 are symmetrically arranged on two sides of the interior of the placing groove 17, second chip guide grooves 15 are symmetrically arranged on the front surface wall of the supporting plate 16, the first chip guide grooves 13 are communicated with the second chip guide grooves 15, one ends of the first chip guide grooves 13, which are close to the second chip guide grooves 15, are lower than the ends, which are far away from the second chip guide grooves 15, a waste chip collecting frame 18 is arranged on the upper wall of the fixing plate 2, waste chips generated by chamfering can be swept into the first chip guide grooves 13 and then are cleaned, the waste chips in the first chip guide grooves 13 can slide down along the first chip guide grooves 13 and then fall into the waste chip collecting frame 18 through the second chip guide grooves 15 to be collected, and the waste chips can be conveniently and thoroughly discharged, the subsequent sweeps can be cleaned conveniently, and the workload of cleaning the sweeps is greatly reduced.
Furthermore, baffles 12 are symmetrically connected to two sides of the upper surface wall of the supporting plate 16, which are located in the placing groove 17, the outer surface walls of the baffles 12 are connected with the screws 3 in a screwing mode, the abutting plates 4 are installed on one opposite sides of the two screws 3 through bearings, and a worker can rotate the screws 3 to enable the abutting plates 4 to move to abut against the workpiece tightly, so that the stability of the workpiece is further improved.
Furthermore, a hand wheel is installed at one end, far away from the abutting plate 4, of the screw rod 3, a rubber sleeve is sleeved on the outer surface wall of the hand wheel, and the screw rod 3 is rotated through the hand wheel sleeved with the rubber sleeve, so that labor is saved and convenience is achieved.
Further, the front surface wall of the bottom frame 1 is recessed inwards to form a storage cabinet, a storage cabinet door 19 is installed at the port position of the storage cabinet, a handle is installed on the outer surface wall of the storage cabinet door 19, and the storage cabinet door 19 is opened and closed through the handle, so that the multifunctional storage cabinet is convenient and practical.
Further, the bottom end of the bottom frame 1 is symmetrically connected with the bottom feet 20, the lower surface wall of the bottom feet 20 is provided with anti-slip lines, the bottom feet 20 provided with the anti-slip lines are tightly attached to the ground, and the placing stability of the mechanism can be effectively improved.
Further, both sides wall symmetric connection of installing frame 9 has backup pad 5, and the relative one side symmetry of two risers 10 is seted up with backup pad 5 assorted guide way 21, when installing frame 9 reciprocated, the tip of backup pad 5 can be removed along guide way 21, can effectively support installing frame 9 to effectively increase the stability when motor 7 moves in the time.
The utility model discloses a theory of operation and use flow: when the utility model is used, a workpiece to be chamfered can be firstly placed in the placing groove 17, then the screw rod 3 is rotated to enable the supporting plate 4 to move to tightly support the workpiece, after the workpiece is fixed, the motor 7 can be started by using the control switch 11, the output end of the motor 7 can drive the chamfering tool to rotate, thereby the chamfering operation is completed, the sweeps generated by chamfering can be swept into the first chip guide groove 13, then the sweeps in the first chip guide groove 13 are cleaned, the sweeps can slide down along the first chip guide groove 13 and then fall into the sweeps collecting frame 18 through the second chip guide groove 15 for collection, the sweeps can be conveniently and thoroughly discharged, wherein, the mounting frame 9 can be driven to move up and down by the hydraulic motion of the hydraulic cylinder 8, the height of the chamfering tool can be conveniently adjusted, secondly, when the mounting frame 9 moves up and down, the end part of the supporting plate 5 can move along the guide groove 21, the mounting frame 9 can be effectively supported, therefore, the stability of the motor 7 during operation is effectively improved, in addition, when the supporting plate 16 needs to be detached for cleaning or replacement, only the supporting plate 16 needs to be pulled out, and the inserting block 14 is pulled out from the inserting groove 22, so that the detachment is quick and convenient, and the time and the labor are saved.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. Guide member chamfer processing agency, its characterized in that: the lifting device comprises a bottom frame (1), wherein a fixed plate (2) is fixed at the top end of the bottom frame (1), vertical plates (10) are symmetrically connected to two ends of an upper surface wall of the fixed plate (2), a control switch (11) is installed on a front surface wall of each vertical plate (10), a mounting plate (6) is connected to the top end of each vertical plate (10), a hydraulic cylinder (8) is installed at the middle position of the upper surface wall of the mounting plate (6), the bottom end of each hydraulic cylinder (8) is connected with a mounting frame (9) through a telescopic rod, a motor (7) is installed inside the mounting frame (9), the output end of the motor (7) is connected with a chamfering tool through a rotating shaft, slots (22) are symmetrically formed in the lower end of one side, opposite to the vertical plates (10), inserting blocks (14) matched with the inserting slots (22) are inserted in the inner parts of the inserting blocks, last wall intermediate position department of layer board (16) has seted up and has shelved groove (17), first chip groove (13) have been seted up to the inside bilateral symmetry of shelve groove (17), second chip groove (15) have been seted up to the preceding table wall symmetry of layer board (16), first chip groove (13) and second chip groove (15) through connection, and first chip groove (13) are close to the one end of second chip groove (15) and are less than the one end of keeping away from second chip groove (15), the last wall of fixed plate (2) is equipped with sweeps and collects frame (18).
2. The guide chamfering processing mechanism according to claim 1, wherein: the supporting plate is characterized in that baffle plates (12) are symmetrically connected to two sides of the upper surface wall of the supporting plate (16) and located in the placing groove (17), screw rods (3) are connected to the outer surface wall of the baffle plates (12) in a screwing mode, and the supporting plates (4) are installed on one sides, opposite to the screw rods (3), of the two screw rods through bearings.
3. The guide chamfering processing mechanism according to claim 2, wherein: and a hand wheel is installed at one end of the screw rod (3) far away from the abutting plate (4), and a rubber sleeve is sleeved on the outer surface wall of the hand wheel.
4. The guide chamfering processing mechanism according to claim 1, wherein: the front surface wall of the bottom frame (1) is recessed inwards to form a storage cabinet, a storage cabinet door (19) is installed at the port position of the storage cabinet, and a handle is installed on the outer surface wall of the storage cabinet door (19).
5. The guide chamfering processing mechanism according to claim 1, wherein: bottom end symmetry of underframe (1) is connected with footing (20), the lower surface wall of footing (20) has seted up anti-skidding line.
6. The guide chamfering processing mechanism according to claim 1, wherein: the two side walls of the mounting frame (9) are symmetrically connected with supporting plates (5), and one sides of the two vertical plates (10) opposite to each other are symmetrically provided with guide grooves (21) matched with the supporting plates (5).
CN202022253720.2U 2020-10-12 2020-10-12 Guide member chamfering machining mechanism Active CN213945152U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022253720.2U CN213945152U (en) 2020-10-12 2020-10-12 Guide member chamfering machining mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022253720.2U CN213945152U (en) 2020-10-12 2020-10-12 Guide member chamfering machining mechanism

Publications (1)

Publication Number Publication Date
CN213945152U true CN213945152U (en) 2021-08-13

Family

ID=77203266

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022253720.2U Active CN213945152U (en) 2020-10-12 2020-10-12 Guide member chamfering machining mechanism

Country Status (1)

Country Link
CN (1) CN213945152U (en)

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