CN222589236U - Polishing machine mounting structure for machining - Google Patents

Polishing machine mounting structure for machining Download PDF

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Publication number
CN222589236U
CN222589236U CN202420860764.7U CN202420860764U CN222589236U CN 222589236 U CN222589236 U CN 222589236U CN 202420860764 U CN202420860764 U CN 202420860764U CN 222589236 U CN222589236 U CN 222589236U
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China
Prior art keywords
fixedly connected
polishing machine
rods
machining
bottom plate
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CN202420860764.7U
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Chinese (zh)
Inventor
何江海
闫大伟
刘乾飞
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Xi'an Tongke Electromechanical Co.,Ltd.
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Xi'an Bohou Electronic Technology Co ltd
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Abstract

The utility model relates to a machining burnishing machine technical field discloses a burnishing machine mounting structure for machining, including the bottom plate, the top fixedly connected with processing platform of bottom plate, the top of bottom plate is provided with the burnishing machine, and the top of bottom plate is provided with the elevating system that is used for promoting the burnishing machine, and the inboard of processing platform is provided with the fixed establishment who is used for installing the burnishing machine, the utility model discloses a set up bottom plate, processing platform, elevating system, fixed establishment, base and jack for when using, user accessible elevating system removes the burnishing machine to the processing bench, later accessible fixed establishment installs the burnishing machine, has avoided current burnishing machine to need rotate more bolt just can be fixed problem to the burnishing machine to the user installs, fixes the burnishing machine, still can conveniently promote the burnishing machine to the processing bench simultaneously, thereby promotes the use convenience greatly.

Description

Polishing machine mounting structure for machining
Technical Field
The utility model relates to the technical field of machining polishing machines, in particular to a polishing machine mounting structure for machining.
Background
The polishing machine is a mechanical device for polishing the surface of an object, is usually used for the surface treatment of materials such as metal, plastic, glass and the like, adopts a rotary or vibration mode, is matched with polishing paste or polishing liquid, and generates a smooth and bright effect on the surface of the object through friction and friction, so that the parts of the existing mechanical product mostly need to be polished after production is finished, thereby improving the attractiveness of the parts, and the polishing machine is needed.
Most of the existing polishing machines are installed on a processing table through bolts, and the mode leads to the fact that a user needs to rotate more bolts when installing polishing, so that the installation efficiency is low, and meanwhile, the existing polishing machines are not convenient for the user to detach and are transported to the processing table through manpower, so that time and labor are wasted.
Disclosure of utility model
The utility model aims to provide a polishing machine mounting structure for machining, which solves the problems that in the prior art, most of existing polishing machines are mounted on a processing table through bolts, a user needs to rotate more bolts when mounting polishing, so that the mounting efficiency is low, the polishing machine is inconvenient for the user to detach, and most of existing polishing machines are manually carried to the processing table, so that time and labor are wasted.
The utility model provides a polishing machine mounting structure for machining, which comprises a bottom plate, wherein a machining table is fixedly connected to the top of the bottom plate, a polishing machine is arranged on the top of the bottom plate, a lifting mechanism for lifting the polishing machine is arranged on the top of the bottom plate, and a fixing mechanism for mounting the polishing machine is arranged on the inner side of the machining table.
As the preference of above-mentioned technical scheme, the processing groove that is used for placing the material is offered at the top of processing platform, and the bottom fixedly connected with base of burnishing machine, the outside of base sets up a plurality of jacks.
As the optimization of the technical scheme, the number of the jacks is four, two groups of jacks are divided into two groups, the two groups of jacks are all arranged on the base, the two groups of jacks are symmetrically distributed, and the specification sizes of the two groups of jacks are the same.
As the preference of above-mentioned technical scheme, elevating system is including seting up the recess at the bottom plate top and seting up two spacing grooves of symmetric distribution in the processing platform outside, the inboard rotation of recess is connected with first bi-directional screw, the outside threaded connection of first bi-directional screw has two symmetric distribution's sliders, the outside sliding connection of slider has first gag lever post, the top fixedly connected with branch of slider, the outside rotation of branch is connected with the scissors pole, the one end rotation that branch was kept away from to the scissors pole is connected with the support, the outside sliding connection of support has two second gag lever posts, the outside fixedly connected with carrier plate of second gag lever post, the outside fixedly connected with of carrier plate has two stoppers, two stoppers sliding connection respectively are in the inboard of two spacing grooves, the one end fixedly connected with motor of recess is kept away from to first bi-directional screw, make the user can place polishing machine and the base that need install on the carrier plate, afterwards, drive first bi-directional screw rotation through motor work, first bi-directional screw rotates and drives two sliders through first gag lever motions, the slider motions drive branch motions, the cooperation that branch motions can drive the pole down at support and second gag lever post, the outside fixedly connected with carrier plate of support, the outside fixedly connected with two stoppers, two stoppers are passed through two stopper, two stopper sliding connection respectively, sliding connection are in the inside of carrier plate, the recess is needed to the processing platform is avoided at this moment, and the processing problem is convenient to be carried by the manual handling, and the processing can be carried forward to the problem.
As the preference of above-mentioned technical scheme, the one end of first bi-directional screw passes through the bearing and rotates the inboard of connection at the recess, and the other end of first bi-directional screw passes the output shaft fixed connection of recess and motor, the outside fixedly connected with mounting panel of bottom plate, motor fixed connection is at the top of mounting panel, the both ends of first gag lever post are all fixed connection in the inboard of recess, two sliders all with first gag lever post axial sliding connection, the top of two sliders all is fixed with branch, the quantity of support is the same with the second gag lever post, the one end of scissors pole rotates with two branches respectively to be connected, and the other end of scissors pole rotates with two supports respectively to be connected, two supports slide connection are on two second gag lever posts respectively, the bottom at the carrier plate is all fixed connection to two second gag lever posts, the carrier plate passes through two stopper and two spacing groove sliding connection.
As the preference of above-mentioned technical scheme, fixed establishment is including seting up the abnormal shape groove and two symmetric distribution's spout at the processing bench top, the inboard rotation in abnormal shape groove is connected with the two bi-directional screw rods of second, the outside threaded connection of two slide, the outside sliding connection of slide has the third gag lever post, the inboard fixedly connected with two inserted bars of slide, a plurality of spliced eyes have been seted up to the inboard in abnormal shape groove, a plurality of slots are all seted up to the inboard of two spouts, the outer tip fixedly connected with handle of second bi-directional screw rod, make the user accessible hoist mechanism remove the burnishing machine to the processing bench, afterwards when the base is driven the position that moves to correspond with the spout, the user can promote the base of burnishing machine bottom, and slide into the spout in, afterwards the handle of user rotatable processing bench outside, the handle rotates and drives the second bi-directional screw rod and rotates, the two slide passes through the third gag lever post and moves, after the slide moves to a certain position, a plurality of spliced eyes can pass the spliced eyes, afterwards insert the jack on the slide, and insert the jack on the base, and then insert the base can be fixed with the base along with the time, the inside jack is broken along with the motion, the base can be fixed because of the jack is installed to the base at this moment, the fixed efficiency is realized.
As the preference of above-mentioned technical scheme, the one end of second bidirectional screw rod passes through the bearing and rotates the inboard of connecting at abnormal shape groove, and the other end of second bidirectional screw rod passes abnormal shape groove and handle fixed connection, the both ends of third gag lever post are all fixed connection in abnormal shape inslot, two slide all with third gag lever post axial sliding connection, the inboard of two slide all fixedly connected with two inserted bars, the quantity of spliced eye and slot is the same with the inserted bar, two sets of inserted bars, the size of spliced eye and slot all matches with two sets of jacks, and the position of two sets of inserted bars, spliced eye and slot all corresponds with two sets of jacks.
Compared with the prior art, the utility model has the beneficial effects that:
According to the utility model, the bottom plate, the processing table, the lifting mechanism, the fixing mechanism, the base and the jack are arranged, so that when the polishing machine is used, a user can place the polishing machine and the base on the carrier plate, then the motor works to drive the first bidirectional screw rod to rotate, the first bidirectional screw rod rotates to drive the two sliding blocks to move through the first limiting rod, the sliding blocks move to drive the supporting rods to move, the supporting rods move to drive the scissor rods to deform under the cooperation of the supporting seats and the second limiting rods, the carrier plate can move in the limiting grooves through the limiting blocks, the carrier plate can drive the polishing machine to move upwards, after the polishing machine moves to the position of the sliding groove on the outer side of the processing table, the user can push the base on the bottom of the polishing machine and slide into the sliding groove, then the user can rotate the handle on the outer side of the processing table, the handle rotates to drive the second bidirectional screw rod to rotate, the second bidirectional screw rod rotates to drive the two sliding plates to move through the third limiting rod, and after the sliding plates move to a certain position, the sliding plates can penetrate through the inserting rods to be inserted into the jacks on the base, and the inserting rods on the sliding plates move continuously, and the inserting rods penetrate through the inserting grooves on the base to the sliding grooves, at the moment, the inserting rods on the sliding plates can penetrate the sliding rods to the sliding grooves to the inner side, and the sliding grooves on the base to be fixed to the polishing machine, and the bottom of the polishing machine can be conveniently fixed and convenient to be fixed.
Drawings
Fig. 1 is a first perspective view;
Fig. 2 is a second perspective view;
FIG. 3 is an enlarged schematic view of a partial structure section;
FIG. 4 is an enlarged schematic view of the structure shown at A in FIG. 1;
fig. 5 is an enlarged schematic view of the structure at B in fig. 2.
In the figure, 1, a bottom plate; 11, a groove, 12, a limit groove, 13, a first bidirectional screw, 14, a sliding block, 15, a first limit rod, 16, a supporting rod, 17, a scissor rod, 18, a support, 19, a second limit rod, 110, a carrier plate, 111, a limit block, 112, a motor, 2, a processing table, 21, a special-shaped groove, 22, a sliding groove, 23, a second bidirectional screw, 24, a sliding plate, 25, a third limit rod, 26, an inserting rod, 27, an inserting hole, 28, a slot, 29, a handle, 3, a polishing machine, 4, a processing groove, 5, a base, 6 and a jack.
Detailed Description
The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model.
Embodiment one: as shown in fig. 1, fig. 2, fig. 3 and fig. 5, the utility model provides a technical scheme that the polishing machine mounting structure for mechanical processing comprises a bottom plate 1, a processing table 2 is fixedly connected to the top of the bottom plate 1, a polishing machine 3 is arranged at the top of the bottom plate 1, a lifting mechanism for lifting the polishing machine 3 is arranged at the top of the bottom plate 1, a fixing mechanism for mounting the polishing machine 3 is arranged at the inner side of the processing table 2, a processing groove 4 for placing materials is arranged at the top of the processing table 2, a base 5 is fixedly connected to the bottom of the polishing machine 3, a plurality of jacks 6 are arranged at the outer side of the base 5, the jacks 6 are four, two groups of jacks 6 are respectively arranged at two groups, the jacks 6 are symmetrically distributed on the base 5, the two groups of jacks 6 have the same specification and size, the lifting mechanism comprises a groove 11 arranged at the top of the bottom plate 1 and two limit grooves 12 symmetrically distributed at the outer side of the processing table 2, a first bidirectional screw 13 is rotatably connected to the inner side of the groove 11, two symmetrically distributed support rods 14 are externally screwed, two limit rods 14 are externally connected to the first bidirectional screw rods 15 are externally connected to the slide blocks, a first end 16 is fixedly connected to the two limit rods 16 are fixedly connected to the inner side of the first support rods 16 and the second end of the first end support rods 11 and the second end support rods 11 are fixedly connected to the second end support rods 110, the second end supports 19 are fixedly connected to the second end supports 11 are respectively, and the first end supports 16 are fixedly connected to the second end supports 19 and the second end supports 11 are respectively, and the end supports are fixedly connected to the end supports and the end supports are respectively, and the end supports are respectively. And the other end of first two-way screw 13 passes recess 11 and motor 112's output shaft fixed connection, the outside fixedly connected with mounting panel of bottom plate 1, motor 112 fixed connection is at the top of mounting panel, the both ends of first gag lever post 15 are all fixed connection in recess 11's inboard, two sliders 14 all with first gag lever post 15 axial sliding connection, the top of two sliders 14 all is fixed with branch 16, the quantity of support 18 is the same with second gag lever post 19, the one end of scissors pole 17 rotates with two branches 16 respectively to be connected, and the other end of scissors pole 17 rotates with two support 18 respectively to be connected, two support 18 slide connection are on two second gag lever posts 19 respectively, two second gag lever posts 19 are all fixed connection in the bottom of carrier plate 110, carrier plate 110 passes through two stopper 111 and two spacing groove 12 sliding connection.
Through the above technical scheme for when using, the user can place burnishing machine 3 and the base 5 that need install on carrier plate 110, afterwards drive first two-way screw 13 through motor 112 work and rotate, first two-way screw 13 rotates and drives two sliders 14 and pass through first gag lever post 15 motion, slider 14 motion drives branch 16 motion, branch 16 motion can drive scissors pole 17 deformation under the cooperation of support 18 and second gag lever post 19, carrier plate 110 can pass through stopper 111 at spacing inslot 12 at this moment and move to processing bench 2 in the time, carrier plate 110 can drive burnishing machine 3 upward movement to on the processing bench 2, thereby avoided the manual work to carry burnishing machine 3 to the problem on the processing bench 2, and then promote the use convenience.
Embodiment two: as shown in fig. 1 and fig. 4, the present utility model provides a technical solution: the utility model provides a polishing machine mounting structure for machining, including bottom plate 1, the top fixedly connected with processing platform 2 of bottom plate 1, the top of bottom plate 1 is provided with burnishing machine 3, the top of bottom plate 1 is provided with the elevating system who is used for promoting burnishing machine 3, the inboard of processing platform 2 is provided with the fixed establishment who is used for installing burnishing machine 3, processing groove 4 that is used for placing the material is seted up at the top of processing platform 2, the bottom fixedly connected with base 5 of burnishing machine 3, the outside of base 5 sets up a plurality of jack 6, jack 6 has four, and divide into two groups each and have two, two groups jack 6 all offer on base 5, and two groups jack 6 symmetric distribution, the specification size of two groups jack 6 is the same, fixed establishment is including offering special-shaped groove 21 and two symmetric distribution's spout 22 at processing platform 2 top, the inboard rotation connection of special-shaped groove 21 has second bi-directional screw 23, two slide 24, the outside threaded connection of slide 24 has third gag lever 25, the inboard fixedly connected with two inserted bars 26 of slide 24, special-shaped groove 21's inboard has a plurality of jack holes 27, two sets of jack holes 27 are all connected with two end 25 at the inboard of two outside of two bi-directional screw rods 23, two ends of two 25 fixed connection of special-shaped screw rods 23, two ends of two 25 are connected with two outside two 13, two end 25 respectively, two outside of special-directional screw rod 23 are connected with two 13 through two special-directional screw rods 23 respectively, the number of the inserting holes 27 and the inserting grooves 28 is the same as that of the inserting rods 26, the sizes of the two groups of inserting rods 26, the inserting holes 27 and the inserting grooves 28 are matched with those of the two groups of inserting holes 6, and the positions of the two groups of inserting rods 26, the inserting holes 27 and the inserting grooves 28 are corresponding to those of the two groups of inserting holes 6.
Through the above technical scheme, when in use, a user can move the polishing machine 3 onto the processing table 2 through the lifting mechanism, then when the base 5 is driven to move to a position corresponding to the chute 22, the user can push the base 5 at the bottom of the polishing machine 3 and slide the base into the chute 22, then the user can rotate the handle 29 at the outer side of the processing table 2, the handle 29 rotates to drive the second bidirectional screw 23 to rotate, the second bidirectional screw 23 rotates to drive the two sliding plates 24 to move through the third limiting rod 25, the sliding plate 24 moves to drive the inserting rod 26 to move, after the sliding plate 24 moves to a certain position, the inserting rod 26 on the sliding plate 24 passes through the inserting hole 27 and then is inserted into the inserting hole 6 on the base 5, and along with the continuous movement of the sliding plate 24, the inserting rod 26 passes through the inserting hole 6 on the base 5 and is inserted into the inserting groove 28 at the inner side of the chute 22, at this moment, the base 5 at the bottom of the polishing machine 3 can be fixed, and the polishing machine 3 and the base 5 are fixedly connected, at this moment, the effect of fixedly mounting the polishing machine 3 can be realized, and the effect of improving the mounting efficiency is realized.
The above embodiments are only for illustrating the technical solution of the present utility model, and are not limiting.

Claims (5)

1. The polishing machine mounting structure for machining comprises a bottom plate (1), and is characterized in that the top of the bottom plate (1) is fixedly connected with a machining table (2), the top of the bottom plate (1) is provided with a polishing machine (3), the top of the bottom plate (1) is provided with a lifting mechanism for lifting the polishing machine (3), the inner side of the machining table (2) is provided with a fixing mechanism for mounting the polishing machine (3), the lifting mechanism comprises a groove (11) formed in the top of the bottom plate (1) and two symmetrically distributed limit grooves (12) formed in the outer side of the machining table (2), the inner side of the groove (11) is rotationally connected with a first bidirectional screw (13), the outer side of the first bidirectional screw (13) is in threaded connection with two symmetrically distributed sliding blocks (14), the outer sides of the sliding blocks (14) are in sliding connection with a first limit rod (15), the top of the sliding blocks (14) are fixedly connected with supporting rods (16), the outer sides of the supporting rods (16) are rotationally connected with a fixing mechanism for mounting the polishing machine (17), one ends of the supporting rods (17) are far away from the supporting rods (16) and are rotationally connected with two second limit plates (19), the outside fixedly connected with stopper (111) of support plate (110), two stopper (111) are sliding connection respectively in the inboard of two spacing grooves (12), the one end fixedly connected with motor (112) of recess (11) are kept away from to first bi-directional screw rod (13), fixed establishment is including seting up abnormal shape groove (21) and two symmetric distribution's spout (22) at processing platform (2) top, the inboard rotation of abnormal shape groove (21) is connected with second bi-directional screw rod (23), the outside threaded connection of second bi-directional screw rod (23) has two slide (24), the outside sliding connection of slide (24) has third gag lever post (25), the inboard fixedly connected with two inserted bars (26) of slide (24), a plurality of spliced eyes (27) have been seted up to the inboard of abnormal shape groove (21), and the inboard of two spouts (22) is all seted up and is provided with a plurality of slots (28), the outer tip fixedly connected with handle (29) of second bi-directional screw rod (23).
2. The polishing machine mounting structure for machining according to claim 1, wherein the top of the machining table (2) is provided with a machining groove (4) for placing materials, the bottom of the polishing machine (3) is fixedly connected with a base (5), and a plurality of jacks (6) are arranged on the outer side of the base (5).
3. The polishing machine mounting structure for machining is characterized in that the number of the jacks (6) is four, the jacks are divided into two groups, each group is two, the two groups of jacks (6) are all arranged on the base (5), the two groups of jacks (6) are symmetrically distributed, and the two groups of jacks (6) have the same specification and size.
4. The polishing machine mounting structure for machining is characterized in that one end of the first bidirectional screw rod (13) is rotationally connected to the inner side of the groove (11) through a bearing, the other end of the first bidirectional screw rod (13) penetrates through the groove (11) and is fixedly connected with an output shaft of the motor (112), the outer side of the bottom plate (1) is fixedly connected with a mounting plate, the motor (112) is fixedly connected to the top of the mounting plate, two ends of the first limiting rod (15) are fixedly connected to the inner side of the groove (11), two sliding blocks (14) are axially and slidably connected with the first limiting rod (15), supporting rods (16) are fixedly arranged at the tops of the two sliding blocks (14), the number of the supporting rods (18) is the same as that of the second limiting rods (19), one end of the scissor rod (17) is respectively and rotationally connected with the two supporting rods (16), the other end of the scissor rod (17) is respectively and rotationally connected with the two supporting rods (18), the two supporting rods (18) are respectively and slidably connected to the two second limiting rods (19) respectively, the two limiting rods (19) are respectively and the two limiting rods (19) are fixedly connected to the two limiting plates (110) through two limiting plates (110).
5. The polishing machine mounting structure for machining is characterized in that one end of the second bidirectional screw rod (23) is rotatably connected to the inner side of the special-shaped groove (21) through a bearing, the other end of the second bidirectional screw rod (23) penetrates through the special-shaped groove (21) and is fixedly connected with the handle (29), two ends of the third limiting rod (25) are fixedly connected to the inner side of the special-shaped groove (21), two sliding plates (24) are axially and slidably connected with the third limiting rod (25), two inserting rods (26) are fixedly connected to the inner sides of the two sliding plates (24), the number of the inserting holes (27) and the inserting grooves (28) are the same as that of the inserting rods (26), the two inserting rods (26), the inserting holes (27) and the inserting grooves (28) are matched with the two groups of inserting holes (6), and the positions of the two groups of inserting rods (26), the inserting holes (27) and the inserting grooves (28) are corresponding to the two groups of inserting holes (6).
CN202420860764.7U 2024-04-24 2024-04-24 Polishing machine mounting structure for machining Active CN222589236U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202420860764.7U CN222589236U (en) 2024-04-24 2024-04-24 Polishing machine mounting structure for machining

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202420860764.7U CN222589236U (en) 2024-04-24 2024-04-24 Polishing machine mounting structure for machining

Publications (1)

Publication Number Publication Date
CN222589236U true CN222589236U (en) 2025-03-11

Family

ID=94860643

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202420860764.7U Active CN222589236U (en) 2024-04-24 2024-04-24 Polishing machine mounting structure for machining

Country Status (1)

Country Link
CN (1) CN222589236U (en)

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GR01 Patent grant
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Effective date of registration: 20250815

Address after: 710000 Shaanxi Province, Xi'an City, Beilin District, No. 3 Chang'an Street East of Chang'an South Road, North of the South Second Ring Road, Building 1, Unit 2, 2nd Floor, Room 10202

Patentee after: Xi'an Tongke Electromechanical Co.,Ltd.

Country or region after: China

Address before: 710000 Shaanxi Province, Xi'an City, Gaoxin District, No. 41 Zhangba Five Road, Gaokexiangdu Moka Building 1, Room 11401

Patentee before: Xi'an Bohou Electronic Technology Co.,Ltd.

Country or region before: China