CN212146652U - Conveyor belt type slitting and dicing machine - Google Patents
Conveyor belt type slitting and dicing machine Download PDFInfo
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- CN212146652U CN212146652U CN202020818307.3U CN202020818307U CN212146652U CN 212146652 U CN212146652 U CN 212146652U CN 202020818307 U CN202020818307 U CN 202020818307U CN 212146652 U CN212146652 U CN 212146652U
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- 235000013305 food Nutrition 0.000 claims abstract description 11
- 238000005520 cutting process Methods 0.000 claims description 44
- 238000007599 discharging Methods 0.000 claims description 10
- 239000000463 material Substances 0.000 abstract description 25
- 239000002994 raw material Substances 0.000 abstract description 15
- 235000013311 vegetables Nutrition 0.000 description 5
- 230000000694 effects Effects 0.000 description 3
- 235000013399 edible fruits Nutrition 0.000 description 2
- 230000005012 migration Effects 0.000 description 2
- 238000013508 migration Methods 0.000 description 2
- 230000003068 static effect Effects 0.000 description 2
- 241000561734 Celosia cristata Species 0.000 description 1
- 210000001520 comb Anatomy 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 235000012907 honey Nutrition 0.000 description 1
- 235000015110 jellies Nutrition 0.000 description 1
- 239000008274 jelly Substances 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- 230000000149 penetrating effect Effects 0.000 description 1
- 235000021110 pickles Nutrition 0.000 description 1
- 239000011435 rock Substances 0.000 description 1
- 230000011218 segmentation Effects 0.000 description 1
- 235000021058 soft food Nutrition 0.000 description 1
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Abstract
The utility model relates to a food processing equipment technical field discloses a conveyer belt formula slitting easy food dicer, which comprises a worktable, the vertical fixed plate that is equipped with in board both sides, the fixed plate both ends are feed end and discharge end respectively, the board is equipped with latticed cut-off sword from the feed end to the discharge end in proper order, cutter and latticed cut-off sword, be equipped with the conveyer belt between the fixed plate, the cut-off sword is vertical to be set up on the board, the fixed plate is close to the vertical spout one of having seted up of cut-off sword one end, the both ends sliding connection of cutter is in spout one, the cut-off sword level sets up, the fixed plate is close to the vertical spout two of having seted up of discharge end. The raw material to be processed is put in from the feed end, moves to the latticed cutter along the conveyer belt, is cut into strips by the cutter, cuts off the strip material into proper length through the cutter, cuts into the strip material into dices through the dicing cutter, satisfies people's demand to slitting or dicing simultaneously.
Description
Technical Field
The utility model belongs to the technical field of the technique of food processing equipment and specifically relates to a conveyer belt formula slitting easy food dicer is related to.
Background
The dicing machine is a general name of a machine suitable for processing various root and stem vegetables into cubes and cuboid shapes in the industries of dehydrated vegetables, quick-frozen vegetable processing factories, soft food materials such as jelly, herb honey and the like and food pickles. In daily production and life, food raw materials are often required to be processed and diced or sliced, so that a dicing machine is required, and compared with manual operation, the working efficiency of the dicing machine is obviously higher than that of manual operation.
The utility model discloses a patent that the prior art can refer to the grant bulletin number for CN205651412U, this utility model provides a portable fruit vegetables easy food dicer, including the dicer casing, the pay-off is rolled, the cutting is rolled, conveyer and support, the supporting structure is installed to the bottom of the dicer casing, the support bottom is provided with the gyro wheel, be provided with feed inlet and discharge gate in the dicer casing, it rolls to install the pay-off at the feed inlet position, the material gets into to roll the back again through the cutting and rolls the ejection of compact from the discharge gate, the cutting is rolled to 2, and mutual staggered connection, the cutting rolls the blade that surface evenly distributed has the cockscomb structure, conveyer is conveyer structure, and the setting. Whole device reaches effective convenient removal operation through the gyro wheel that sets up, and the pay-off is rolled, the cutting is rolled the operation of mutually supporting, reaches the effect of effective cutting fruit vegetables, device easy operation, and the practicality is high, can be popularized and applied by further.
The above prior art solutions have the following drawbacks: the dicing machine can only dice raw materials in working, and the working mode is single.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a not enough to prior art exists, the utility model aims at providing a conveyer belt formula slitting easy food dicer, it has the effect that independently selects to carry out dicing or slitting to the raw and other materials of putting into the easy food dicer.
The above utility model discloses an above-mentioned utility model purpose can realize through following technical scheme:
a conveyor belt type slitting and dicing machine, which comprises a machine table, wherein fixed plates are vertically arranged on two sides of the machine table, the two ends of the fixed plate are respectively a feeding end and a discharging end, the machine table is sequentially provided with a latticed dividing cutter, a strip-shaped cutter and a latticed dicing cutter from the feeding end to the discharging end, the fixed plate comprises a conveying plate and a cutting plate, the conveying plate is close to the feeding end, the cutting plate is close to the discharging end, a first conveying belt is horizontally arranged between the two conveying plates, a second conveying belt is horizontally arranged between the two cutting plates, the dividing knife is positioned between the first conveying belt and the second conveying belt and is vertically arranged on the machine table, one end of the cutting plate close to the dividing knife is vertically provided with a first sliding groove, the two ends of the cutter are respectively connected in the first sliding grooves in a sliding mode, the dicing cutter is horizontally arranged, the cutting plate is close to the discharge end and is vertically provided with a second sliding groove, and the two ends of the dicing cutter are respectively connected in the second sliding grooves in a sliding mode.
By adopting the technical scheme, the raw material is put on the conveying belt from the feeding end, the conveying belt drives the raw material to move towards the latticed dividing knife, the raw material is cut into strips when passing through the dividing knife, the dividing knife slides up and down in the sliding groove II to cut the material when the material is cut into the blocks, and the cutter is static and is cut into the blocks; during slitting, the cutter slides from top to bottom in the first sliding groove to cut the material, the dicing cutter is static and is cut into strips, and an operator can select the corresponding cutter as required, so that dicing or slitting is realized.
The present invention may be further configured in a preferred embodiment as: the cutting machine is characterized in that first sliding blocks are fixed at two ends of the cutter, the first sliding blocks are connected in the first sliding grooves in a sliding mode, the first sliding blocks penetrate through the first sliding grooves to extend out of the cutting plate, a first air cylinder is arranged on the side edge of the machine table, and the first air cylinder is fixedly connected with one of the first sliding blocks.
Through adopting above-mentioned technical scheme, with one of them reciprocal anchorage of cylinder one and slider, through the pulling of cylinder one, drive slider one and cylinder one and move together to drive the cutter up-and-down motion together, will cut apart into the long section that needs through the raw and other materials of cutting knife, satisfy people to the needs of slitting.
The present invention may be further configured in a preferred embodiment as: two sliding blocks II are fixed on two sides of the dicing cutter, the sliding blocks II are connected in the sliding grooves II in a sliding mode, the sliding grooves II penetrate through the cutting board, the sliding blocks II penetrate through the sliding grooves II to extend out of the cutting board, a cylinder II is arranged on the side edge of the machine table, and the cylinder II is fixedly connected with one sliding block II.
Through adopting above-mentioned technical scheme, with cylinder two and the second reciprocal anchorage of slider that is in same one side, through the pulling of cylinder two, drive slider two and cylinder two and move together to drive the dicing cutter and move from top to bottom together, will cut into the dices through the raw and other materials of cutting apart the long section, satisfy people to the needs of dicing.
The present invention may be further configured in a preferred embodiment as: the conveying belt III which is located above the conveying belt I is obliquely arranged between the two conveying plates and comprises a driving roller, a driven roller and a belt, the belt is wound between the driving roller and the driven roller, the driving roller is vertically connected between the two conveying plates in a sliding mode, and the driven roller is horizontally connected between the two conveying plates in a sliding mode.
Through adopting above-mentioned technical scheme, it is equipped with the conveyer belt three that is located conveyer belt one top to cut to one side between two conveyer plates, can pass through conveyer belt one with the conveyer belt three with raw and other materials when, it is tight with raw and other materials clamp through conveyer belt one, it is more stable when making raw and other materials pass through the cut-off sword, the slitting is more even, conveyer belt three includes the drive roll, driven voller and belt, the vertical sliding connection of drive roll is between two conveyer plates, driven voller horizontal sliding connection is between two conveyer plates, can pass through vertical removal drive roll and horizontal migration driven voller, realize that conveyer belt three reciprocates, change the distance between conveyer belt three and the conveyer belt one, can make not raw and other materials of equidimension pass through conveyer belt one.
The present invention may be further configured in a preferred embodiment as: the automatic cutting device is characterized in that one end, close to the splitting knife, of the conveying plate is provided with a first vertical moving block, a first moving block is connected in the first moving block in a sliding mode, two ends of the driving roller are respectively connected with one of the two moving blocks in a rotating mode, one end, far away from the splitting knife, of the conveying plate is provided with a second horizontal moving block, the second moving block is higher than the upper end of the first moving block, a second moving block is connected in the second moving block in a sliding mode, and two ends of the driven roller are respectively connected with the two second moving.
By adopting the technical scheme, one end of the conveying plate, which is close to the splitting knife, is provided with the first vertical moving groove, the first moving block is arranged in the first moving groove, so that the first moving block can slide in the first moving groove, two ends of the driving roller are respectively connected with the first moving block in a rotating manner, so that the rotation and the sliding of the driving roller can be carried out simultaneously, and the mutual influence is avoided.
The present invention may be further configured in a preferred embodiment as: the end part, far away from the first moving groove, of the second moving groove is provided with a threaded hole, a threaded shaft is rotatably connected in the second moving groove, one end of the threaded shaft penetrates through the threaded hole and is in threaded connection with the threaded hole, and the other end of the threaded shaft is rotatably connected with the second moving block.
Through adopting above-mentioned technical scheme, the tip that the shifting chute is kept away from to shifting chute two has seted up the screw hole, and the rotation is connected with the screw thread axle in the shifting chute two, wears out the screw hole with the one end of screw thread axle and screw hole threaded connection, and the other end rotates with the movable block two and links to each other, rotates the screw thread axle and makes the screw thread axle rotate in the screw hole, drives the movable block two and slides in the shifting chute two to pulling driven voller horizontal migration, and then change the height of conveyer belt three.
The present invention may be further configured in a preferred embodiment as: the machine table is provided with a T-shaped clamping groove located between the first conveying belt and the second conveying belt, an inverted T-shaped base connected in the clamping groove in a sliding mode is fixed at the lower end of the dividing cutter, and the clamping groove is perpendicular to the conveying direction of the first conveying belt.
Through adopting above-mentioned technical scheme, set up "T" shape draw-in groove between conveyer belt one and conveyer belt two, be fixed with "T" shape base at the cut-off sword lower extreme, base sliding connection is in the draw-in groove, and the draw-in groove is mutually perpendicular with the direction of delivery of conveyer belt one, makes the cut-off sword conveniently dismantle the change.
The present invention may be further configured in a preferred embodiment as: the clamping groove is characterized in that the two ends of the clamping groove are connected with valves, one end of each valve is hinged to the clamping groove, the other end of each valve is provided with a linear fixed port, and the side edge of the machine table, close to the end part of the clamping groove, is rotatably connected with a linear rotating block matched with the fixed port.
Through adopting above-mentioned technical scheme, the draw-in groove both ends are connected with the valve, and the one end and the draw-in groove of valve are articulated, and "one" font fixed port has been seted up to the other end, and it is connected with fixed mouthful matched with "one" font rotatory piece to be close to the draw-in groove tip rotation on the side of machine platform, and rotatory piece prevents to cut apart the sword and drops at the course of the work with the valve chucking.
To sum up, the utility model discloses a following at least one useful technological effect:
1. through the arrangement of the cutter and the dicing cutter, the raw materials can be cut into strips and sections, and through the arrangement of the dicing cutter, the materials cut into strips can be diced, so that people can independently select the strips or dice, and a larger space for independent selection is provided for people;
2. through the setting of shifting chute one, shifting chute two and threaded shaft, can be through changing the height of conveyer belt three, change the contained angle between conveyer belt one and the conveyer belt three, can make the not raw and other materials of equidimension pass through.
Drawings
FIG. 1 is a schematic structural diagram of an embodiment;
FIG. 2 is a schematic structural view of a third conveyor belt in the embodiment;
FIG. 3 is an enlarged schematic view of part A in the embodiment;
FIG. 4 is a schematic structural view of a cutter and a dicing blade portion in the embodiment.
In the figure, 1, a machine; 11. a feeding end; 12. a discharge end; 13. a first cylinder; 14. a second air cylinder; 2. a fixing plate; 21. a conveying plate; 213. moving the first groove; 2131. moving a first block; 214. a second moving groove; 2141. a second moving block; 22. cutting the board; 221. a first sliding chute; 222. a second chute; 3. a dividing knife; 4. a cutter; 41. a first sliding block; 5. a dicing cutter; 51. a second sliding block; 6. conveying belt III; 61. a first conveying belt; 62. a drive roll; 63. a driven roller; 64. a belt; 7. a threaded shaft; 71. rotating the disc; 8. a base; 9. a card slot; 91. a shutter; 911. a fixed port; 9111. the block is rotated.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Example (b):
the utility model provides a conveyer belt slitting easy food dicer, as shown in figure 1, includes board 1, and 1 both sides of board are vertical to be equipped with fixed plate 2, and 2 both ends of fixed plate are feed end 11 and discharge end 12 respectively, and board 1 leads to and is equipped with the latticed cut-off sword 3 of fixed setting, the banding cutter 4 and the latticed dicing sword 5 that can up-and-down motion between feed end 11 to discharge end 12 in proper order. Raw materials are put into the position where the raw materials are conveyed to the segmenting knife 3 from the feeding end 11, the raw materials are cut into strips through the segmenting knife 3, the cutter 4 conducts segmentation on the raw materials cut into the strips along the up-and-down movement, then the raw materials are cut into dices through the up-and-down movement of the dicer 5, and the requirements of people on the cutting strips and the dicing are met.
As shown in fig. 1 and 2, the fixed plate 2 includes a conveying plate 21 and a cutting plate 22, the conveying plate 21 being adjacent to the feeding end 11, and the cutting plate 22 being adjacent to the discharging end 12. Be equipped with horizontal conveyer belt 61 between two transport plates 21, be equipped with horizontal conveyer belt two between two cutting boards 22, cut apart sword 3 and be located conveyer belt 61 and the conveyer belt two between and vertically set up on board 1. The raw material put into the feeding end 11 is transported to the dividing knife 3 through the conveyer belt 61, and the cut material is transported out from the discharging end 12 through the second conveyer belt.
As shown in fig. 2, a conveying belt three 6 positioned above the conveying belt one 61 is obliquely arranged between the two conveying plates 21, the conveying belt three 6 comprises a driving roller 62, a driven roller 63 and a belt 64, the belt 64 is in annular rotary connection with the driving roller 62 and the driven roller 63, and one end, close to each other, of the conveying belt one 61 and the conveying belt three 6 is close to the dividing knife 3. The conveyer belt 61 and the conveyer belt three 6 between be certain contained angle, make and place the material of carrying on one, when through conveyer belt 61 and conveyer belt three 6, compress tightly the material fixedly through conveyer belt 61 and conveyer belt three 6, prevent that in the cutting process, the material takes place to rock, leads to the slitting inhomogeneous.
As shown in fig. 2, one end of the conveying plate 21 close to the splitting knife 3 is provided with a first vertical moving groove 213, the first moving blocks 2131 are respectively connected in the first moving groove 213 in a sliding manner, one side of the first two moving blocks 2131, which is opposite to the first moving blocks, is provided with a cylindrical cavity, and two ends of the driving roll 62 are rotatably connected in the cavity. Horizontal second moving grooves 214 are formed in one ends, far away from the splitting knife 3, of the two conveying plates 21 respectively, second moving blocks 2141 are connected in the second moving grooves 214 in a sliding mode respectively, a cylindrical cavity is formed in one side, opposite to the second moving blocks 2141, of the two moving blocks, and two sides of the driven roller 63 are rotatably connected in the cavity. The driving roller 62 is moved in the vertical direction, the driven roller 63 is moved in the horizontal direction, and the height of the conveying belt three 6 is changed along with the movement of the driving roller 62 and the driven roller 63, so that the distance between the conveying belt one 61 and the conveying belt three 6 is changed, and the materials with different sizes can pass through conveniently.
As shown in fig. 2, a threaded hole is formed in an end portion of the second moving groove 214, which is far away from the first moving groove 213, a threaded shaft 7 is rotatably connected to the second moving groove 214, one end of the threaded shaft 7 penetrates through the threaded hole and is in threaded connection with the threaded hole, the other end of the threaded shaft is rotatably connected to the second moving block 2141, and a rotating disc 71 is fixed to one end of the threaded shaft 7 penetrating through the threaded hole. The rotating disc 71 is rotated to drive the threaded shaft 7 to rotate, so that the threaded shaft 7 moves back and forth in the threaded hole, the second moving block 2141 is driven to slide in the second moving groove 214, the driven roller 63 is driven to move horizontally, the driving roller 62 is driven to move vertically, the height of the third conveying belt 6 is changed, meanwhile, the driving roller 62 is rotatably connected with the first moving block 2131, the driven roller 63 is rotatably connected with the second moving block 2141, it is guaranteed that the third conveying belt 6 can rotate normally and can also adjust the height, the application range of the device is improved, and meanwhile, the device is convenient and labor-saving.
As shown in fig. 2, a motor is fixedly connected to one end of the drive roll 62 rotatably connected to the cavity. The motor rotates to drive the driving roller 62 to rotate, so that the conveying belt III 6 is driven to rotate around the driving roller 62 and the driven roller 63, and normal operation of the conveying belt III 6 is guaranteed.
As shown in fig. 3, a "T" shaped clamping groove 9 is formed in the upper surface of the machine table 1, two ends of the clamping groove 9 penetrate through the machine table 1, the lower end of the splitting knife 3 is connected with an inverted "T" shaped base 8, the base 8 can be inserted into the clamping groove 9 from two ends of the machine table 1 and is connected with the clamping groove 9 in a sliding manner, and the splitting knife 3 can be conveniently replaced at any time. 9 both ends of draw-in groove articulate has the valve 91, valve 91 one end fixedly connected with loose-leaf, horizontal "one" font fixed port 911 has been seted up to the other end, the fixed port 911 at draw-in groove 9 both ends can be covered in the loose-leaf rotation, the tip that 1 side of board is close to draw-in groove 9 is equipped with rotatable "one" font rotatory piece 9111, rotatory piece 9111 rotates with board 1 through a axis of rotation and is connected, close valve 91, rotatory piece 9111 passes fixed port 911 and rotates vertical state, with valve 91 and 1 chucking of board, prevent that cut-apart sword 3 from droing because of the vibration in the use.
As shown in fig. 4, the opposite positions of the two cutting boards 22 are vertically provided with a first sliding groove 221, the first sliding groove 221 is close to the cutting boards 22, two sides of the cutting knife 4 are fixed with first sliding blocks 41, and the first sliding blocks 41 are slidably connected in the first sliding grooves 221. The first sliding block 41 penetrates through the first sliding groove 221 to extend out of the cutting plate 22, the first air cylinder 13 is vertically fixed on the side wall of the machine table 1, the upper end of the first air cylinder 13 is fixedly connected with one end of the first sliding block 41 extending out of the fixing plate 2, the first air cylinder 13 stretches and retracts to drive the cutter 4 to move along the first sliding groove 221, and the function that the cutter 4 cuts off raw materials is achieved.
As shown in fig. 4, a second sliding groove 222 is vertically formed at the position opposite to the two cutting boards 22, the second sliding groove 222 is close to the discharging end 12, and the second sliding block 51 is slidably connected in the second sliding groove 222. The second sliding block 51 penetrates through the second sliding groove 222 to extend out of the cutting plate 22, the second air cylinder 14 is vertically fixed on the side wall of the machine table 1, the upper end of the second air cylinder 14 is fixedly connected with one end of the second sliding block 51 extending out of the fixing plate 2, the dicing cutter 5 is driven to move in the direction of the second sliding groove 222 in a telescopic mode through the second air cylinder 14, the function that the cutter 4 dices raw materials is achieved, and then dices cut by the second conveying belt rotatably connected between the cutting plates 22 are conveyed to the discharging end 12.
The implementation principle of the embodiment is as follows: install the cut-off sword 3 at board 1 upper surface, connect cutter 4 and slider 41 and settle in spout 221, connect the dicing sword 5 and slider two 51 and settle in spout two 222, the rotation of conveyer belt one 61 drives raw and other materials and removes to the direction of cut-off sword 3, cut into the strip through the cutting sword 3, when needing the strip cutting, start cylinder one 13 and drive cutter 4 and cut off the strip raw and other materials, when needing the dicing, start cylinder two 14 and drive the dicing sword 5 and cut off the raw and other materials and cut into the dicing, the material after the conveyer belt two will cut is transported to discharge end 12.
The embodiment of this specific implementation mode is the preferred embodiment of the present invention, not limit according to this the utility model discloses a protection scope, so: all equivalent changes made according to the structure, shape and principle of the utility model are covered within the protection scope of the utility model.
Claims (8)
1. The utility model provides a conveyer belt slitting easy food dicer, includes board (1), its characterized in that: the automatic cutting machine is characterized in that fixing plates (2) are vertically arranged on two sides of the machine table (1), a feeding end (11) and a discharging end (12) are respectively arranged at two ends of each fixing plate (2), the machine table (1) is sequentially provided with a latticed dividing cutter (3), a strip-shaped cutter (4) and a latticed dicing cutter (5) from the feeding end (11) to the discharging end (12), each fixing plate (2) comprises a conveying plate (21) and a cutting plate (22), the conveying plate (21) is close to the feeding end (11), the cutting plate (22) is close to the discharging end (12), a first conveying belt (61) is horizontally arranged between the two conveying plates (21), a second conveying belt is horizontally arranged between the two cutting plates (22), the dividing cutter (3) is positioned between the first conveying belt (61) and the second conveying belt and vertically arranged on the machine table (1), and a first sliding groove (221) is vertically arranged at one end, close to the dividing cutter (, the two ends of the cutter (4) are respectively connected in the first sliding groove (221) in a sliding mode, the dicing cutter (5) is horizontally arranged, the cutting plate (22) is close to the discharge end (12) and is vertically provided with a second sliding groove (222), and the two ends of the dicing cutter (5) are respectively connected in the second sliding groove (222) in a sliding mode.
2. A conveyor-type slitter-dicer according to claim 1, characterized in that: the cutting machine is characterized in that first sliding blocks (41) are fixed at two ends of the cutting knife (4), the first sliding blocks (41) are connected in first sliding grooves (221) in a sliding mode, the first sliding blocks (41) penetrate through the first sliding grooves (221) to extend out of the cutting plate (22), a first air cylinder (13) is arranged on the side edge of the machine table (1), and the first air cylinder (13) is fixedly connected with one first sliding block (41).
3. A conveyor-type slitter-dicer according to claim 1, characterized in that: two sliding blocks (51) are fixed to two sides of the dicing cutter (5), the sliding blocks (51) are connected in the sliding grooves (222) in a sliding mode, the sliding grooves (222) penetrate through the cutting plate (22), the sliding blocks (51) penetrate through the sliding grooves (222) to extend out of the cutting plate (22), a second air cylinder (14) is arranged on the side edge of the machine table (1), and the second air cylinder (14) is fixedly connected with the sliding blocks (51) located on the same side.
4. A conveyor-type slitter-dicer according to claim 1, characterized in that: the conveying belt III (6) located above the conveying belt I (61) is obliquely arranged between the two conveying plates (21), the conveying belt III (6) comprises a driving roller (62), a driven roller (63) and a belt (64), the belt (64) is wound between the driving roller (62) and the driven roller (63), the driving roller (62) is vertically connected between the two conveying plates (21) in a sliding mode, and the driven roller (63) is horizontally connected between the two conveying plates (21) in a sliding mode.
5. A conveyor-type slitter-dicer according to claim 4, characterized in that: the automatic cutting device is characterized in that one end, close to the splitting knife (3), of the conveying plate (21) is provided with a first vertical moving groove (213), a first moving block (2131) is connected in the first moving groove (213) in a sliding mode, two ends of the driving roller (62) are connected with the first two moving blocks (2131) in a rotating mode respectively, one end, far away from the splitting knife (3), of the conveying plate (21) is provided with a second horizontal moving groove (214), the second moving groove (214) is higher than the upper end of the first moving groove (213), a second moving block (2141) is connected in the second moving groove (214) in a sliding mode, and two ends of the driven roller (63) are connected with the second two moving blocks (2141) in.
6. A conveyor-type slitter-dicer according to claim 5, characterized in that: a threaded hole is formed in the end part, far away from the first moving groove (213), of the second moving groove (214), a threaded shaft (7) is connected in the second moving groove (214) in a rotating mode, one end of the threaded shaft (7) penetrates out of the threaded hole and is in threaded connection with the threaded hole, and the other end of the threaded shaft is connected with the second moving block (2141) in a rotating mode.
7. A conveyor-type slitter-dicer according to claim 1, characterized in that: the machine table (1) is provided with a T-shaped clamping groove (9) located between the first conveying belt (61) and the second conveying belt, an inverted T-shaped base (8) connected in the clamping groove (9) in a sliding mode is fixed at the lower end of the dividing cutter (3), and the clamping groove (9) is perpendicular to the conveying direction of the first conveying belt (61).
8. A conveyor-type slitter-dicer according to claim 7, characterized in that: draw-in groove (9) both ends are connected with valve (91), the one end and the draw-in groove (9) of valve (91) are articulated, and "one" font fixed port (911) have been seted up to the other end, board (1) side is close to draw-in groove (9) tip and rotates and be connected with "one" font rotatory piece (9111) with fixed port (911) matched with.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202020818307.3U CN212146652U (en) | 2020-05-15 | 2020-05-15 | Conveyor belt type slitting and dicing machine |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202020818307.3U CN212146652U (en) | 2020-05-15 | 2020-05-15 | Conveyor belt type slitting and dicing machine |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN212146652U true CN212146652U (en) | 2020-12-15 |
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ID=73707197
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202020818307.3U Expired - Fee Related CN212146652U (en) | 2020-05-15 | 2020-05-15 | Conveyor belt type slitting and dicing machine |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN212146652U (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN118320908A (en) * | 2024-04-29 | 2024-07-12 | 兴化市三强机械制造有限公司 | Agricultural granule rubbing crusher |
-
2020
- 2020-05-15 CN CN202020818307.3U patent/CN212146652U/en not_active Expired - Fee Related
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN118320908A (en) * | 2024-04-29 | 2024-07-12 | 兴化市三强机械制造有限公司 | Agricultural granule rubbing crusher |
| CN118320908B (en) * | 2024-04-29 | 2024-10-08 | 兴化市三强机械制造有限公司 | Agricultural granule rubbing crusher |
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Granted publication date: 20201215 |