CN216322364U - Be used for kibbling automatic cutting mechanism of wax stone - Google Patents

Be used for kibbling automatic cutting mechanism of wax stone Download PDF

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Publication number
CN216322364U
CN216322364U CN202122058768.2U CN202122058768U CN216322364U CN 216322364 U CN216322364 U CN 216322364U CN 202122058768 U CN202122058768 U CN 202122058768U CN 216322364 U CN216322364 U CN 216322364U
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China
Prior art keywords
movable block
cutting mechanism
wax
fixed frame
block
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CN202122058768.2U
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Chinese (zh)
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赵强
李永开
赵伟
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Wuhu Pinshang Precision Technology Co ltd
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Wuhu Pinshang Precision Technology Co ltd
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Abstract

The utility model discloses an automatic cutting mechanism for wax block crushing, which comprises a fixed frame, wherein an equivalent cutting mechanism is arranged on one side of the fixed frame, and a conveying mechanism is arranged in the fixed frame. The device is through being provided with conveying mechanism, be favorable to driving the surface transmission post through first drive plate when rotating, thereby it rotates to drive the second drive plate, it is one section to make the second drive plate drive the movable block downstream through first pulley subassembly, thereby it cuts second pulley subassembly surface wax piece to drive the blade, first drive plate rotates first pulley subassembly once more after rotating a week and drives the rotation, form quantitative transmission, make the blade to the equal-speed equivalent cutting of wax piece, be convenient for cut into the same piece of size with the wax piece, subsequent processing of being convenient for, prevent that it is too big and influence follow-up processing crushing efficiency, also be favorable to the neat assembly after the cutting simultaneously, be convenient for transport.

Description

Be used for kibbling automatic cutting mechanism of wax stone
Technical Field
The utility model belongs to the technical field of wax block crushing, and particularly relates to an automatic cutting mechanism for wax block crushing.
Background
In the process of processing the wax block, the wax block needs to be crushed so as to facilitate the subsequent further processing of the wax block, but because the size of the untreated wax block is different, the oversize wax block possibly cannot enter crushing equipment, the efficiency of crushing the wax block is influenced, and a targeted improved design is needed.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an automatic cutting mechanism for crushing wax blocks, which aims to solve the problem that the crushing efficiency of the wax blocks is influenced because the size of the untreated wax blocks is different and the overlarge wax blocks cannot enter crushing equipment.
In order to achieve the purpose, the utility model provides the following technical scheme: an automatic cutting mechanism for crushing wax blocks comprises a fixed frame, wherein an equivalent cutting mechanism is installed on one side of the fixed frame, a conveying mechanism is installed inside the fixed frame, the equivalent cutting mechanism comprises a motor, the motor is installed on one side of the fixed frame, a first transmission disc is sleeved on an output end of the motor, which is positioned inside the fixed frame, a transmission column is fixedly connected to the surface of one side of the first transmission disc, one side, far away from the first transmission disc, of the transmission column is inserted into a second transmission disc, the second transmission disc is connected with a first belt pulley assembly through a rotating shaft inserted into the inner wall of the fixed frame, the other end of the first belt pulley assembly is connected with a movable block, a blade is inserted into the bottom end of the movable block, the top end of the movable block is connected with a spring telescopic rod, and sliding blocks are fixedly connected to two sides of the movable block, and one side of the sliding block, which is far away from the movable block, is inserted on the surface of the inner wall of the connecting frame.
Preferably, four groups of through grooves are formed in the surface of the second transmission disc at equal intervals, and the surface size of the inner walls of the four groups of through grooves is matched with the surface size of the transmission column.
Preferably, the surface of one end of the first belt pulley assembly, which is far away from the second transmission disc, is provided with teeth, the surface of one side of the movable block, which is close to the first belt pulley assembly, is provided with teeth, and the teeth are engaged with the teeth arranged on the surface of one end of the first belt pulley assembly, which is far away from the second transmission disc.
Preferably, the inner wall surface of the connecting frame is provided with a sliding groove, and the movable block and the connecting frame form sliding connection.
Preferably, the side face of the top end of the blade is in an inverted convex shape, an inverted convex groove is formed in the surface of the bottom end of the movable block, and the surface size of the inverted convex groove is matched with the surface size of the top end of the blade.
Preferably, conveying mechanism is including carrying the platform, fixed frame's inside is inserted and is equipped with and carry the platform, and carries top one side of platform and seted up the import, the inside of carrying the platform is connected with second belt pulley subassembly through the bearing, and the wax stone has been placed on the top of second belt pulley subassembly, carry one side fixedly connected with collection frame of platform, the import is the inclined plane, collect the frame and seted up the opening near a side surface of carrying the platform, and this open-ended bottom is less than the level of second belt pulley subassembly.
The utility model has the technical effects and advantages that: the device is through being provided with conveying mechanism, be favorable to driving the surface transmission post through first drive disc when rotating, insert the logical inslot of second drive disc surface four groups, thereby it rotates to drive the second drive disc, the drive post leaves the logical inslot of second drive disc surface after the second drive disc rotates quarter a week, it is one section to make the second drive disc drive the movable block through first pulley subassembly downstream, thereby it cuts second pulley subassembly surface wax piece to drive the blade, first drive disc rotates first pulley subassembly drive rotation once more after a week, form quantitative transmission, make the blade to the equal-speed equivalent cutting of wax piece, be convenient for cut the wax piece into the piece that the size is the same, be convenient for subsequent processing, prevent that it is too big and influence follow-up processing crushing efficiency, also be favorable to the neat assembly after the cutting simultaneously, be convenient for transport.
Drawings
FIG. 1 is a schematic sectional elevation view of the structure of the present invention;
FIG. 2 is a schematic side sectional view of the structure of the present invention;
fig. 3 is a schematic structural front view of the movable block and the blade of the utility model.
In the figure: 1. a fixed frame; 2. an equivalent cutting mechanism; 21. a motor; 22. a first drive disk; 23. a drive post; 24. a second drive disk; 25. a first pulley assembly; 26. a movable block; 27. a blade; 28. a spring telescopic rod; 29. a slider; 210. a connecting frame; 3. a conveying mechanism; 31. a conveying table; 32. an inlet; 33. a second pulley assembly; 34. a wax block; 35. and (5) collecting the frame.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
The utility model provides an automatic cutting mechanism for wax block crushing as shown in figures 1-3, which comprises a fixed frame 1, wherein one side of the fixed frame 1 is provided with an equivalent cutting mechanism 2, the fixed frame 1 is internally provided with a conveying mechanism 3, the equivalent cutting mechanism 2 comprises a motor 21, one side of the fixed frame 1 is provided with the motor 21, the output end of the motor 21, which is positioned in the fixed frame 1, is sheathed with a first transmission disc 22, the surface of one side of the first transmission disc 22 is fixedly connected with a transmission column 23, the side, which is far away from the first transmission disc 22, of the transmission column 23 is inserted in the second transmission disc 24, the second transmission disc 24 is connected with a first belt pulley component 25 through a rotating shaft inserted in the inner wall of the fixed frame 1, the other end of the first belt pulley component 25 is connected with a movable block 26, the bottom end of the movable block 26 is inserted with a blade 27, the top end of the movable block 26 is connected with a spring telescopic rod 28, the sliding blocks 29 are fixedly connected to both sides of the movable block 26, and one side of the sliding block 29 away from the movable block 26 is inserted into the inner wall surface of the connecting frame 210.
When the wax block cutting machine is used, the wax block 34 is placed inside the conveying mechanism 3, the motor 21 is started through an external power supply, the motor 21 is started to transfer the first transmission disc 22 to rotate, the surface transmission column 23 is driven to rotate through the first transmission disc 22, the surface transmission column 23 is inserted into the four groups of through grooves on the surface of the second transmission disc 24, so as to drive the second transmission disc 24 to rotate, after the second transmission disc 24 rotates for a quarter of a circle, the transmission column 23 leaves the through groove on the surface of the second transmission disc 24, so that the second transmission disc 24 drives the movable block 26 to move downwards for one section through the first belt pulley component 25, so as to drive the blade 27 to cut the wax block 34 on the surface of the second belt pulley component 33, after the downward surface teeth of the movable block 26 are disengaged with the teeth on one side of the first belt pulley component 25, the first belt pulley component 25 restores the movable block 26 to the original position through self elasticity, the first transmission disc 22 rotates for a circle, and then drives the first belt pulley component 25 to rotate again, thereby form quantitative transmission for blade 27 is convenient for cut wax stone 34 into the same piece of size to the equal fast equivalent cutting of wax stone 34, and subsequent processing of being convenient for prevents that it is too big and influence follow-up processing crushing efficiency, also is favorable to the neat assembly after the cutting simultaneously, is convenient for transport.
Further, four groups of through grooves have been seted up to the surperficial equidistance of second drive disk 24, and the surface dimension size of the inner wall of these four groups of through grooves is big or small with the surface dimension looks adaptation of drive post 23, be favorable to driving surface drive post 23 when rotating through first drive disk 22, insert the interior of the four groups of through grooves in second drive disk 24 surface, thereby drive second drive disk 24 and rotate, drive post 23 leaves the interior of through groove in second drive disk 24 surface after second drive disk 24 rotates quarter a week, make second drive disk 24 drive movable block 26 through first pulley subassembly 25 and move downwards for one section, be favorable to driving second drive disk 24 through the block in drive post 23 and the through groove in second drive disk 24 surface and be interrupted the rotation.
Further, the surface of one end of the first belt pulley assembly 25, which is far away from the second transmission disc 24, is provided with teeth, the side surface of the movable block 26, which is close to the first belt pulley assembly 25, is provided with teeth, and the teeth are engaged with the teeth arranged on the surface of one end of the first belt pulley assembly 25, which is far away from the second transmission disc 24, so that when the second transmission disc 24 drives the first belt pulley assembly 25 to rotate, the teeth on the surface of the other end of the first belt pulley assembly 25 are engaged with the teeth on the surface of one side of the movable block 26, the movable block 26 is driven by the matching sliding block 29 to move downwards in the connecting frame 210, so as to drive the blade 27 to cut the wax block 34 on the surface of the second belt pulley assembly 33, and after the teeth on the side of the movable block 26, which is downward and are disengaged from the teeth on one side of the first belt pulley assembly 25, the first belt pulley assembly 25 restores the movable block 26 to the original position by its own elasticity.
Further, the spout has been seted up on the inner wall surface of coupling frame 210, sliding connection is constituteed with coupling frame 210 to movable block 26, be favorable to second driving pulley 24 to drive first pulley subassembly 25 and rotate, the other end surface tooth of first pulley subassembly 25 is through meshing mutually with 26 side surface teeth of movable block, cooperation slider 29 drives movable block 26 at the inside downstream of coupling frame 210, provide certain support and atress for the movable block 26 at the inside up-and-down motion of coupling frame 210 simultaneously.
Further, the top side of blade 27 is the shape of falling convex character, and the shape of falling convex character groove has been seted up on the bottom surface of movable block 26, and the size of the surface dimension in shape of falling convex character groove and the top surface dimension looks adaptation of blade 27 are favorable to the change to blade 27, the dismantlement maintenance of the blade 27 of being convenient for.
Further, conveying mechanism 3 is including carrying platform 31, fixed frame 1's inside is inserted and is equipped with and carry platform 31, and carry top one side of platform 31 and seted up import 32, the inside of carrying platform 31 is connected with second belt pulley assembly 33 through the bearing, and wax stone 34 has been placed on the top of second belt pulley assembly 33, carry one side fixedly connected with collection frame 35 of platform 31, import 32 is the inclined plane, collect frame 35 and be close to a side surface of carrying platform 31 and seted up the opening, and this open-ended bottom is less than the level of second belt pulley assembly 33.
During the use, place wax stone 34 in the top surface of second belt pulley subassembly 33 through the inclined plane of import 32, when second belt pulley subassembly 33 starts, pass through the below of blade 27 with surface wax stone 34 is the uniform velocity, by the equal amount cutting mechanism 2 through the uniform velocity cutting piecemeal of blade 27, send the inside of collecting frame 35 by second belt pulley subassembly 33 and collect, subsequent processing of being convenient for prevents that it is too big and influence follow-up processing crushing efficiency.

Claims (6)

1. The utility model provides a be used for kibbling automatic cutting mechanism of wax stone, includes fixed frame (1), equivalent cutting mechanism (2) are installed to one side of fixed frame (1), the internally mounted of fixed frame (1) has conveying mechanism (3), its characterized in that: the equivalent cutting mechanism (2) comprises a motor (21), the motor (21) is installed on one side of the fixed frame (1), the output end, located inside the fixed frame (1), of the motor (21) is sleeved with a first transmission disc (22), a transmission column (23) is fixedly connected to the surface of one side of the first transmission disc (22), one side, away from the first transmission disc (22), of the transmission column (23) is inserted into a second transmission disc (24), the second transmission disc (24) is connected with a first belt pulley assembly (25) through a rotating shaft inserted into the inner wall of the fixed frame (1), the other end of the first belt pulley assembly (25) is connected with a movable block (26), a blade (27) is inserted into the bottom end of the movable block (26), the top end of the movable block (26) is connected with a spring telescopic rod (28), and sliding blocks (29) are fixedly connected to two sides of the movable block (26), and one side of the sliding block (29) far away from the movable block (26) is inserted into the inner wall surface of the connecting frame (210).
2. An automated cutting mechanism for wax block comminution as in claim 1 wherein: four groups of through grooves are formed in the surface of the second transmission disc (24) at equal intervals, and the surface size of the inner walls of the four groups of through grooves is matched with the surface size of the transmission column (23).
3. An automated cutting mechanism for wax block comminution as in claim 1 wherein: the end surface that second driving disc (24) was kept away from in first pulley assembly (25) is provided with the tooth, a side surface that movable block (26) is close to first pulley assembly (25) is provided with the tooth, and this tooth meshes with the tooth that first pulley assembly (25) kept away from the end surface setting of second driving disc (24) mutually.
4. An automated cutting mechanism for wax block comminution as in claim 1 wherein: the inner wall surface of the connecting frame (210) is provided with a sliding groove, and the movable block (26) and the connecting frame (210) form sliding connection.
5. An automated cutting mechanism for wax block comminution as in claim 1 wherein: the side of the top end of the blade (27) is in the shape of an inverted convex character, an inverted convex character-shaped groove is formed in the surface of the bottom end of the movable block (26), and the surface size of the inverted convex character-shaped groove is matched with the surface size of the top end of the blade (27).
6. An automated cutting mechanism for wax block comminution as in claim 1 wherein: conveying mechanism (3) are including carrying platform (31), the inside of fixed frame (1) is inserted and is equipped with carries platform (31), and carries top one side of platform (31) and seted up import (32), the inside of carrying platform (31) is connected with second belt pulley subassembly (33) through the bearing, and wax stone (34) have been placed on the top of second belt pulley subassembly (33), one side fixedly connected with of carrying platform (31) collects frame (35), import (32) are the inclined plane, collect frame (35) and be close to a side surface of carrying platform (31) and seted up the opening, and this open-ended bottom is less than the level of second belt pulley subassembly (33).
CN202122058768.2U 2021-08-30 2021-08-30 Be used for kibbling automatic cutting mechanism of wax stone Active CN216322364U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122058768.2U CN216322364U (en) 2021-08-30 2021-08-30 Be used for kibbling automatic cutting mechanism of wax stone

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122058768.2U CN216322364U (en) 2021-08-30 2021-08-30 Be used for kibbling automatic cutting mechanism of wax stone

Publications (1)

Publication Number Publication Date
CN216322364U true CN216322364U (en) 2022-04-19

Family

ID=81170669

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122058768.2U Active CN216322364U (en) 2021-08-30 2021-08-30 Be used for kibbling automatic cutting mechanism of wax stone

Country Status (1)

Country Link
CN (1) CN216322364U (en)

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