CN216182181U - Shoe machine turntable - Google Patents

Shoe machine turntable Download PDF

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Publication number
CN216182181U
CN216182181U CN202122423938.2U CN202122423938U CN216182181U CN 216182181 U CN216182181 U CN 216182181U CN 202122423938 U CN202122423938 U CN 202122423938U CN 216182181 U CN216182181 U CN 216182181U
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China
Prior art keywords
groove
fixing
piece
butt joint
hole
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CN202122423938.2U
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Chinese (zh)
Inventor
吕健
吕国富
唐晓明
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Wenzhou Ouhai Chaoguang Valve Machinery Casting Factory
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Wenzhou Ouhai Chaoguang Valve Machinery Casting Factory
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Priority to CN202122423938.2U priority Critical patent/CN216182181U/en
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Abstract

The application discloses shoes machine carousel, including a plurality of concatenation dish, the joint groove that the joint board stretched into on supplying adjacent concatenation dish is seted up to the one end fixedly connected with joint board, the other end of concatenation dish, set up the fixed orifices with joint groove intercommunication on the concatenation dish, wear to be equipped with fixed subassembly in the fixed orifices, two adjacent concatenation dishes can dismantle the connection through fixed subassembly. This application has the advantage of conveniently transporting the great shoes machine carousel of volume.

Description

Shoe machine turntable
Technical Field
The application relates to the technical field of sole forming machines, in particular to a shoe machine turntable.
Background
The sole forming machine is sole injection moulding equipment, and it includes the organism, locates rotatable shoes machine carousel on the organism, erects a plurality of groups sole injection mold on the shoes machine carousel and installs the first subassembly of moulding plastics on the organism, and the first subassembly of moulding plastics is located directly over the shoes machine carousel.
When the sole forming machine works, the shoe machine rotating disc rotates to further drive the sole injection mold positioned above the shoe machine rotating disc to rotate, so that the sole injection mold sequentially rotates to the lower side of the injection head assembly to perform injection molding.
However, the existing shoe machine turnplate is usually formed by integral casting, has larger volume and inconvenient transportation, and needs to be improved.
SUMMERY OF THE UTILITY MODEL
In order to facilitate transportation of a shoe machine turntable with a large size, the application provides a shoe machine turntable.
The application provides a shoes machine carousel adopts following technical scheme:
the utility model provides a shoe machine carousel, includes a plurality of concatenation dish, the joint groove that the joint board stretched into on supplying adjacent concatenation dish is seted up to the one end fixedly connected with joint board, the other end of concatenation dish, set up the fixed orifices with joint groove intercommunication on the concatenation dish, wear to be equipped with fixed subassembly in the fixed orifices, two adjacent concatenation dishes can dismantle the connection through fixed subassembly.
Through adopting above-mentioned technical scheme, when assembling the shoes machine carousel, stretch into the joint groove on another concatenation dish with the joint board on one of them concatenation dish earlier, penetrate the fixed orifices with fixed subassembly again to hinder above-mentioned two concatenation dish relative movement. And repeating the steps until all the splicing discs are connected into a whole, thereby forming the shoe machine turntable for mounting the sole injection mold. When the shoe machine turntable needs to be transported, the fixing assembly is taken out of the fixing hole, the clamping plates are moved out of the clamping grooves respectively, and the shoe machine turntable can be detached into a plurality of splicing discs to be transported independently, so that the shoe machine turntable is convenient to transport.
Optionally, the fixing assembly comprises a fixing column, a connecting rod and an abutting block which are fixedly connected in sequence, and the diameter of the connecting rod is smaller than the diameter of the fixing column and the width of the abutting block; the extension length of fixed orifices edge horizontal direction is greater than the length of butt joint piece, is less than the diameter of fixed column, fixed orifices extension width is greater than the width of butt joint piece, the length of connecting rod is greater than the extension degree of depth of fixed orifices, set up the connecting hole the same with the shape size homogeneous phase of fixed orifices cross section on the joint board, when the joint board of concatenation dish stretches into the joint groove of adjacent concatenation dish, connecting hole and fixed orifices communicate each other.
Through adopting above-mentioned technical scheme, when connecting two adjacent splice trays, penetrate fixed orifices and connecting hole with butt piece and connecting rod earlier, wear out the splice tray until the butt piece. Because the length of the fixing hole is less than the diameter of the fixing column, the fixing column cannot penetrate into the fixing hole. Then rotate fixed subassembly for the butt joint piece moves to stagger with the fixed orifices, and one side of connecting rod receives spacing, the opposite side of fixed column and receives the spacing of butt joint piece this moment, and the connecting rod is difficult for breaking away from the fixed orifices, and two adjacent splice trays are difficult for separating.
Optionally, the upper end face of the splicing disc is provided with a rotating groove with a circular cross section, the rotating groove is communicated with the fixing hole, the diameter of the rotating groove is larger than that of the fixing column, and the extending depth of the rotating groove is larger than the thickness of the fixing column.
Through adopting above-mentioned technical scheme, when the fixed column contacts with the diapire that rotates the groove, the terminal surface that the connecting rod was kept away from to the fixed column is arranged in rotating the groove, can not influence follow-up sole injection mold's installation.
Optionally, a butt groove communicated with the fixing hole is formed in the end face, far away from the rotating groove, of the splicing disc, the length of the butt groove is larger than that of the butt block, the width of the butt groove is larger than that of the butt block, the butt groove is different from the fixing hole in the extending length direction in the horizontal direction, and when the butt block stretches into the butt groove, a connecting gap is formed between the fixing column and the rotating groove.
Through adopting above-mentioned technical scheme, the connecting rod is located fixed orifices and connecting hole, and the butt piece wears out the concatenation dish after, rotates the butt piece and makes it be located the butt groove under, then mentions fixed subassembly and makes the butt piece stretch into the butt inslot, and the butt piece is difficult for deflecting owing to receiving blockking of butt groove lateral wall this moment, and fixed subassembly is difficult for deviating from the fixed orifices, helps improving fixed subassembly's stability.
Optionally, a moving groove is formed in the side wall of the rotating groove, a moving assembly is arranged in the moving groove and comprises a spring, a connecting piece and a pressing piece which are fixedly connected in sequence, one end of the spring is fixedly connected to the groove wall of the moving groove far away from the rotating groove, the other end of the spring is fixedly connected to the connecting piece, the pressing piece is fixedly connected to one end of the connecting piece far away from the spring, and when the spring is in a natural state, one end of the pressing piece far away from the connecting piece extends into the connecting gap.
Through adopting above-mentioned technical scheme, the fixed column contacts and forms the connecting gap with the diapire that rotates the groove, and the clamp plate can stretch into in the connecting gap under the elastic force effect of spring for the butt piece is difficult for deviating from the butt groove.
Optionally, the splicing disc is provided with a sliding hole communicated with the moving groove on the end face of the rotating groove, the extending direction of the sliding hole is parallel to the stretching direction of the spring, the connecting sheet is arranged in the sliding hole in a sliding mode, and one end, far away from the spring and the pressing sheet, of the connecting sheet penetrates out of the sliding hole.
Through adopting above-mentioned technical scheme, during the fixed subassembly of dismouting, operating personnel can stand externally through with the connection piece to keeping away from or being close to spring one side when promoting for the preforming stretches into or leaves the connection space.
Optionally, a fixing groove for a screwdriver to extend into is formed in the end face, far away from the connecting rod, of the fixing column.
Through adopting above-mentioned technical scheme, screwdriver protractile is in order to rotate fixed subassembly, convenient operation in the fixed slot.
Optionally, the fixed column is connected with the dwang in the rotation, set up on the fixed column and supply the dwang to rotate the groove of accomodating that stretches into, when the dwang is rolled out and is accomodate the groove, form the rotation hole that can supply the hand to stretch into between dwang and the fixed column.
Through adopting above-mentioned technical scheme, when needing to rotate fixed subassembly, with the dwang roll out and accomodate the groove, the operating personnel accessible is pulled or is rotated the dwang with the hand and move with the fixed subassembly of drive, and it is more convenient to operate. When not using the dwang, operating personnel can change over it into and accomodate in accomodating the groove to reduce the occupation space of dwang.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the shoe machine rotary table comprises a plurality of detachably connected splicing discs, when the shoe machine rotary table needs to be transported, the fixing assembly can be taken out of the fixing hole, the clamping plates are moved out of the clamping grooves respectively, and the shoe machine rotary table can be split into a plurality of splicing discs to be transported independently, so that the shoe machine rotary table is convenient to transport;
2. when the connecting rod penetrates through the fixing hole and the butt block penetrates out of the splicing disc, the fixing assembly is rotated and lifted to enable the butt block to extend into the butt groove, the butt block is not easy to rotate under the obstruction of the side wall of the butt groove, the fixing assembly is not easy to fall off from the fixing hole, and the stability of the splicing disc during splicing is high;
3. the fixed slot can supply to stretch into with the screwdriver of its adaptation, when the dwang rotated out and accomodate the groove, the hole of rotating can supply operating personnel's hand to stretch into, conveniently rotates fixed subassembly.
Drawings
Fig. 1 is a schematic overall structure diagram of an embodiment of the present application.
Fig. 2 is a schematic structural diagram of a fixing assembly in the embodiment of the present application.
Fig. 3 is a schematic view highlighting the explosive structure of the rotating slot in the embodiment of the present application.
Figure 4 is a schematic view highlighting the exploded structure of the abutment groove in the embodiment of the present application.
Fig. 5 is a schematic cross-sectional view of a splice tray in an embodiment of the present application.
Description of reference numerals:
1. splicing discs; 2. a clamping and connecting plate; 21. a rotating groove; 22. a fixing hole; 23. connecting holes; 24. a butt joint groove; 25. a moving groove; 26. a slide hole; 27. a connecting gap; 3. a clamping groove; 4. a fixing assembly; 41. fixing a column; 411. fixing grooves; 412. rotating the rod; 413. a receiving groove; 414. rotating the hole; 42. a connecting rod; 43. a butting block; 5. a moving assembly; 51. connecting sheets; 52. tabletting; 53. a spring.
Detailed Description
The present application is described in further detail below with reference to figures 1-5.
The embodiment of the application discloses a shoe machine turntable. Referring to fig. 1, the shoe machine turntable comprises four splicing disks 1 which are circumferentially arranged, the shape and the size of each splicing disk 1 are the same, and the four splicing disks 1 can be spliced to form a complete circular ring. Two arbitrary adjacent splice trays 1 all can dismantle the connection through fixed subassembly 4, and during transportation shoes machine carousel, can carry alone behind each splice tray 1 split, carry the back that targets in place, link into an organic whole with each splice tray 1 again.
Referring to fig. 2, the fixing assembly 4 includes a fixing column 41, a connecting rod 42 and an abutting block 43, which are sequentially disposed, and one end of the connecting rod 42 is welded to the abutting block 43 and the other end thereof is welded to the fixing column 41. In this embodiment, the fixing post 41 and the connecting rod 42 are both cylindrical, and the connecting rod 42 is collinear with the central axis of the fixing post 41, and the diameter of the connecting rod 42 is smaller than the diameter of the fixing post 41 and the width of the abutting block 43.
Referring to fig. 3 and 4, one end of the splicing tray 1 is integrally formed with a clamping plate 2, and the other end is provided with a clamping groove 3 for the clamping plate 2 on the adjacent splicing tray 1 to extend into. When two adjacent splice trays 1 splice together, joint board 2 on one of them splice tray 1 is arranged in another splice tray 1's joint groove 3, and the lateral wall in joint groove 3 can hinder above-mentioned two splice trays 1 along vertical direction relative movement.
Referring to fig. 3 and 4, the upper end surface of the splicing tray 1 is provided with a rotating groove 21, the cross section of the rotating groove 21 is circular, and the inner diameter of the rotating groove 21 is larger than the diameter of the fixing column 41, so that the fixing column 41 can extend into the rotating groove 21 and rotate freely. Set up the fixed orifices 22 who runs through joint groove 3 on the diapire of rotation groove 21, fixed orifices 22 is greater than the length of butt joint piece 43 along the extending length of horizontal direction, and fixed orifices 22 is greater than the width of butt joint piece 43, is less than the diameter of fixed column 41 along the extending width of horizontal direction, offers the connecting hole 23 with the equal samely of shape and size of fixed orifices 22 cross section on the joint board 2. When the joint plate 2 of one of the splicing disks 1 extends into the joint groove 3 of the other splicing disk 1, the connecting hole 23 is aligned with the fixing hole 22, and an operator can penetrate the connecting rod 42 and the abutting block 43 in the fixing component 4 into the fixing hole 22 and the connecting hole 23 to prevent the adjacent two splicing disks 1 from producing relative movement along the horizontal direction. The distance from the bottom wall of the rotating groove 21 to the side wall of the splice tray 1 away from the opening of the rotating groove 21 is smaller than the length of the connecting rod 42, so that the abutting block 43 can completely penetrate through the splice tray 1.
Referring to fig. 2 and 3, a fixing groove 411 is formed in an end surface of the fixing post 41 away from the connecting rod 42, the fixing groove 411 in this embodiment is cross-shaped, and may be in a shape of a straight line or a hexagon in other embodiments, and the fixing groove 411 may be inserted by a screwdriver adapted to the fixing groove 411 to rotate the fixing post 41. One side of the fixing post 41 far away from the connecting rod 42 is hinged with a rotating rod 412, the fixing post 41 is provided with a storage groove 413 for the rotating rod 412 to extend into, when the rotating rod 412 is not used, an operator can rotate the rotating rod into the storage groove 413 to store the rotating rod 412, and therefore the occupied space of the rotating rod 412 is reduced. When the rotating lever 412 is rotated into the receiving groove 413, a clearance into which the sheet can be inserted exists between the rotating lever 412 and the groove wall of the rotating groove 21, so that the rotating lever 412 is rotated out of the receiving groove 413. When the rotating rod 412 rotates to leave the receiving groove 413, a rotating hole 414 is formed between the rotating rod 412 and the fixing column 41, and the rotating hole 414 can be used for a human hand to extend into to lift the fixing assembly 4. After the abutting block 43 penetrates out of the splicing tray 1, an operator can rotate the fixing column 41 by using the rotating rod 412, so that the abutting block 43 moves to be staggered with the fixing hole 22, and the fixing component 4 is not easy to separate from the fixing hole 22.
With reference to fig. 4, during the operation of the sole-forming machine, the shoe machine carousel inevitably vibrates, causing the abutment blocks 43 to rotate with respect to the splicing disc 1. When the abutment block 43 is rotated to just below the fixing hole 22, the fixing member 4 is easily released from the fixing hole 22, resulting in affecting the connection stability of the splice tray 1. Therefore, in order to enhance the connection stability of the splice tray 1, the end surface of the splice tray 1 away from the rotation groove 21 is provided with an abutting groove 24 communicated with the fixing hole 22, the length of the abutting groove 24 is greater than that of the abutting block 43, the width of the abutting groove 24 is greater than that of the abutting block 43, and the abutting groove 24 and the fixing hole 22 are different in the extending length direction along the horizontal direction. When the abutting block 43 penetrates out of the splicing tray 1, the fixing component 4 is rotated to enable the abutting block 43 to be just positioned under the abutting groove 24, and then the fixing component 4 is lifted upwards, so that the abutting block 43 extends into the abutting groove 24 until the abutting block 43 is in contact with the groove wall of the abutting groove 24 close to the rotating groove 21, and at the moment, a connecting gap 27 is formed between the fixing column 41 and the rotating groove 21.
Referring to fig. 3 and 5, a moving groove 25 is formed on a groove wall of the rotation groove 21, a moving assembly 5 is disposed in the moving groove 25, and the moving assembly 5 includes a spring 53, a connecting piece 51 and a pressing piece 52 which are sequentially disposed. One end of the spring 53 is fixed on the wall of the moving slot 25 away from the rotating slot 21, the other end is fixed on the connecting piece 51, and the pressing piece 52 is fixed on the side of the connecting piece 51 away from the spring 53.
Referring to fig. 3 and 5, the end surface of the splicing tray 1, which is provided with the rotating groove 21, is further provided with a sliding hole 26, the sliding hole 26 is communicated with the moving groove 25, the extending direction of the sliding hole 26 is parallel to the extending and retracting direction of the spring 53, the connecting piece 51 is slidably arranged in the sliding hole 26, and one end of the connecting piece 51 extends out of the sliding hole 26, so that an operator can push the connecting piece 51 by hand. When the spring 53 is in a natural state, one end of the pressing piece 52 away from the connecting piece 51 extends into the connecting gap 27 and contacts the fixed column 41 and the bottom wall of the rotating groove 21, so that the fixed column 41 is not easily moved to a side close to the connecting rod 42.
Referring to fig. 5, the sum of the thickness of the pressing piece 52 and the thickness of the fixing post 41 is slightly smaller than the depth of the rotation groove 21. When the pressing sheet 52 extends into the connecting gap 27, the end surface of the fixing post 41 far away from the connecting rod 42 is positioned in the rotating groove 21, and the subsequent installation of the sole injection mold is not influenced.
The implementation principle of the shoe machine turntable in the embodiment of the application is as follows: before the turntable of the shoe machine needs to be transported, the connecting piece 51 is pushed to the side close to the spring 53, so that the pressing piece 52 leaves the connecting gap 27, and then the fixing component 4 is pushed to make the fixing column 41 contact with the bottom wall of the rotating groove 21, and at this time, the abutting block 43 extends out of the abutting groove 24. Then, the fixing member 4 is rotated to move the abutting block 43 to a position right below the fixing hole 22, and the fixing member 4 is pulled up to be away from the fixing hole 22. And finally, the clamping plate 2 is drawn out from the clamping groove 3, so that the shoe machine turntable with relatively large volume can be disassembled into four independent splicing discs 1, and the transportation is convenient.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (7)

1. A shoe machine turntable is characterized in that: the splicing disc comprises a plurality of splicing discs (1), wherein one end of each splicing disc (1) is fixedly connected with a clamping plate (2), the other end of each splicing disc is provided with a clamping groove (3) for the clamping plate (2) on the adjacent splicing disc (1) to extend into, the splicing disc (1) is provided with a fixing hole (22) communicated with the clamping groove (3), a fixing component (4) penetrates through the fixing hole (22), and the two adjacent splicing discs (1) are detachably connected through the fixing component (4); the fixing assembly (4) comprises a fixing column (41), a connecting rod (42) and a butting block (43) which are fixedly connected in sequence, and the diameter of the connecting rod (42) is smaller than that of the fixing column (41) and the width of the butting block (43); the length of fixed orifices (22) is greater than the length of butt joint piece (43), is less than the diameter of fixed column (41), the width of fixed orifices (22) is greater than the width of butt joint piece (43), the length of connecting rod (42) is greater than the degree of depth of fixed orifices (22), offer connecting hole (23) that can supply connecting rod (42) and butt joint piece (43) to wear out on joint board (2), when joint board (2) of concatenation dish (1) stretched into joint groove (3) of adjacent concatenation dish (1), connecting hole (23) and fixed orifices (22) align each other.
2. The shoe machine turntable of claim 1, characterized in that: the splicing disc is characterized in that a rotating groove (21) with a circular cross section is formed in the upper end face of the splicing disc (1), the rotating groove (21) is communicated with the fixing hole (22), the diameter of the rotating groove (21) is larger than that of the fixing column (41), and the depth of the rotating groove (21) is larger than the thickness of the fixing column (41).
3. The shoe machine turntable of claim 2, characterized in that: the butt joint dish (1) is kept away from and is offered butt joint groove (24) with fixed orifices (22) intercommunication on the terminal surface in rotation groove (21), the length in butt joint groove (24) is greater than the length of butt joint piece (43), the width in butt joint groove (24) is greater than the width of butt joint piece (43), butt joint groove (24) are different with fixed orifices (22) along the length direction that extends of horizontal direction, work as when butt joint piece (43) stretch into in butt joint groove (24), form between fixed column (41) and the rotation groove (21) and connect space (27).
4. The shoe machine turntable of claim 3, characterized in that: the improved rotary groove structure is characterized in that a moving groove (25) is formed in the side wall of the rotating groove (21), a moving assembly (5) is arranged in the moving groove (25), the moving assembly (5) comprises a spring (53), a connecting piece (51) and a pressing piece (52) which are sequentially and fixedly connected, one end of the spring (53) is fixedly connected to the groove wall of the moving groove (25) far away from the rotating groove (21), the other end of the spring (53) is fixedly connected to the connecting piece (51), the pressing piece (52) is fixedly connected to one end of the connecting piece (51) far away from the spring (53), and when the spring (53) is in a natural state, one end of the pressing piece (52) far away from the connecting piece (51) extends into the connecting gap (27).
5. The shoe machine turntable of claim 4, characterized in that: the splicing disc (1) is provided with a sliding hole (26) communicated with the moving groove (25) on the end face of the rotating groove (21), the extending direction of the sliding hole (26) is parallel to the extending direction of the spring (53), the connecting piece (51) is arranged in the sliding hole (26) in a sliding mode, and the end portion of the connecting piece extends out of the sliding hole (26).
6. The shoe machine turntable of claim 1, characterized in that: the end face, far away from the connecting rod (42), of the fixing column (41) is provided with a fixing groove (411) for a screwdriver to extend into.
7. The shoe machine turntable of claim 1, characterized in that: articulated on fixed column (41) have dwang (412), set up on fixed column (41) and supply dwang (412) to rotate the groove (413) of accomodating that stretches into, work as dwang (412) are rolled out and are accomodate groove (413), form rotation hole (414) that can supply the hand to stretch into between dwang (412) and fixed column (41).
CN202122423938.2U 2021-10-08 2021-10-08 Shoe machine turntable Active CN216182181U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122423938.2U CN216182181U (en) 2021-10-08 2021-10-08 Shoe machine turntable

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122423938.2U CN216182181U (en) 2021-10-08 2021-10-08 Shoe machine turntable

Publications (1)

Publication Number Publication Date
CN216182181U true CN216182181U (en) 2022-04-05

Family

ID=80862008

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122423938.2U Active CN216182181U (en) 2021-10-08 2021-10-08 Shoe machine turntable

Country Status (1)

Country Link
CN (1) CN216182181U (en)

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