A clamp device for cutting hoof food
By designing a clamp device for cutting hoofed food materials, the safety hazards and accuracy problems in the cutting process are solved, the stable clamping of hoofed food materials and the stable cutting of the saw blade are achieved, and the production of defective products is reduced.
Patent Information
- Application Number
- CN202411210822.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-30
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2044-08-30
AI Technical Summary
The existing technology has operational safety risks and inaccurate cutting problems when cutting hoof ingredients, especially for hard hoof bones, which easily produces defective products.
A clamp device for cutting hoofed food is designed, which includes a mounting plate, a drive mechanism and a clamping mechanism. The clamping mechanism achieves stable clamping of hoofed food through a clamping assembly and a secondary pressing component, and prevents the clamping from loosening through a downward pressing locking mechanism, and cooperates with a saw blade for horizontal and vertical cutting.
It improves the accuracy and safety of cutting, reduces the generation of defective products, ensures the stability of the saw blade during the cutting process, and avoids slipping.
Smart Images

Figure CN119077831B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of clamps, and in particular to a clamp device for cutting hoof food. Background Art
[0002] At present, with the rise of the pre-prepared meal industry, many pre-prepared meals require block-shaped ingredients, especially animal hoof products such as pig's trotters and cow's trotters, which are particularly popular. In the process of processing such hoof products, the cutting process involved is still mostly done by long saw blades. Such machines require manual adjustment to accurately control the cutting position, which increases the safety risks of operation. Some food factories use hydraulic cutters for direct cutting. For cow and pig trotters with hard hoof bones, the direct downward pressure cutting method can easily crush the bones, resulting in a large number of defective products. Such problems need to be solved urgently. Summary of the Invention
[0003] In order to overcome the deficiencies of the prior art, the present invention aims to provide a clamp device for cutting hoof food materials to solve the technical problems mentioned in the background art.
[0004] In order to solve the technical problem, the present invention adopts the following technical solution:
[0005] The transmission mechanism is a pair of pair of pair of couplings, and the pair of couplings is a pair of pair of couplings, and the pair of couplings is a pair of pair of couplings, and the pair of couplings is a pair of pair of couplings.
[0006] Specifically, the clamping assembly includes a clamping plate and a pressure head clamp, and the pressure head clamp includes a bottom clamping piece located at the lower end of the clamping plate and a top clamping piece located at the upper end of the clamping plate, wherein the bottom clamping piece and the top clamping piece are directly or indirectly rotatably hinged to the clamping plate.
[0007] Specifically, the clamping assembly also includes a secondary clamping component, which includes a top pin, a tilting rod, a support rod, a first connecting rod and a second connecting rod. The clamping plate includes a bottom clamping plate and a top clamping plate hinged to each other. The bottom clamping plate is provided with a pin through hole, one end of the top pin extends into and out of the pin through hole and abuts against one end of the bottom clamping piece, and the other end of the top pin is hinged to one end of the tilting rod. The upper end of the tilting rod is hinged to the first connecting rod, one end of the support rod is hinged to one side of the lower end of the tilting rod, and the other end is fixedly installed with the bottom clamping plate, and an oblique through hole is provided on the top clamping plate, one end of the second connecting rod is hinged to the first connecting rod, and the other end extends into and out of the oblique through hole and is hinged to the top clamping piece. The protruding part of the top pin close to the side of the bottom clamping piece is sleeved with a first return spring.
[0008] Specifically, the bottom clamping piece includes a lower clamping arm and an upper clamping arm distributed at an obtuse angle, wherein a rotating part is provided between the lower clamping arm and the upper clamping arm, a seat rod is provided extending from the bottom clamping plate, and the rotating part is hinged to the seat rod, a lower clamping head is provided at the end of the lower clamping arm, and an upper clamping head is provided at the end of the upper clamping arm, and a top clamping arm and a top clamping head are provided on the top clamping piece.
[0009] Specifically, a top slider extends from the upper end of the slider seat, and the upper end of the top slider extends into and passes through the slide groove to be connected to the push plate. The lower end of the clamping plate is connected to the push plate, and the push plate drives the upper clamping plate to slide toward or away from each other.
[0010] Specifically, a top slider extends from the upper end of the slider seat, and a guide groove seat is provided at the upper end of the mounting plate, and a guide groove is provided on the guide groove seat. A spring seat is provided at the upper end of the guide groove seat, and a splint slide groove is provided in the spring seat, and a straight push spring is provided on the inner side of the splint slide groove. The upper end of the top slider passes through the slide groove and the guide groove and is fixed to the inner lower end of the spring seat to drive the spring seat to slide, and the bottom of the splint is respectively embedded in the guide groove and the splint slide groove from bottom to top and can slide along the guide groove and the splint slide groove, and one end of the straight push spring abuts against the splint.
[0011] Specifically, it also includes a downward pressing locking mechanism, which includes a pressing plate, a locking rod, a clamping block, and a tension and compression screw. The inner side of the guide groove seat is recessed to form an oblique pressure groove, and tension and compression blocks are extended on both sides of the pressing plate and an avoidance groove is provided on the inner side. One end of the tension and compression screw is passed through the upper end surface of the pressing plate, and the other end passes through the mounting plate and can be movably passed through the lifting plate. The tension and compression screw is provided at the position of the lower end of the lifting plate. When the lifting plate descends to a certain stroke with the screw slider and touches the bottom limiter, it can drive the tension and compression screw to slide downward, thereby The clamping block includes a sliding portion and a clamping portion, wherein the inner side of the sliding portion is provided with a pulling and pressing groove adapted to pass through the pulling and pressing block, the outer side of the sliding portion is provided with a first inclined surface, and the inner side of the inclined pressing groove is provided with a second inclined surface matched with the first inclined surface, wherein the vertical axis height of the pulling and pressing groove is higher than the height of the pulling and pressing block, one end of the locking rod is fixed to the clamping plate, and the other end extends to the avoidance groove of the pressure plate, wherein the clamping parts of an adjacent pair of clamping blocks can just hold the locking rod after being pressed downward by the pressure plate, and a second return spring is also provided between the pressure plate and the mounting plate.
[0012] Specifically, the two outer sides of the guide groove portion of the clamping plate are further provided with power-assist pulley sets, and the wheel surfaces of the power-assist pulley sets act on the end surface of the mounting plate to accelerate the sliding speed of the clamping plate.
[0013] Specifically, a dustproof plate is sleeved on the outer periphery of the clamping plate near the upper end surface of the spring seat, wherein the oppositely arranged dustproof plates are staggered in height, and the oppositely arranged tension and compression screws are staggered in horizontal positions when extending into the avoidance groove.
[0014] Specifically, the locking rod is provided with an external thread, and the inner arc surface of the clamping portion of the clamping block is provided with an internal thread, so as to increase the clamping force and prevent slipping.
[0015] Compared with the prior art, the present invention has the following beneficial effects:
[0016] The clamp for cutting hoof food provided by the present invention can cooperate with the two sets of circular longitudinal cutting and transverse cutting saw blades in the sawing machine to cut on its transverse incision and longitudinal incision, and this clamp is responsible for clamping the hoof food. For this clamp, the clamping mechanism is driven to clamp by a driving device. In addition to the initial clamping mechanism, the clamping and pressing component in the clamping mechanism also has a secondary clamping component, which can use the lever principle to perform a secondary clamping action on the upper end clamp after the initial clamping, thereby strengthening the clamping force. Secondly, in the process of cutting individual hoofs such as cattle hooves, considering that the saw blade may slip or part of the material block may fly out due to the loosening of the clamping mechanism when cutting the hard cattle hoof, a downward pressing locking mechanism is provided here, which adopts the inclined surface matching method, and uses the tension and pressure screw to match the lowering of the lifting plate to clamp and lock the locking rod connected to the clamping plate, so that the entire clamping mechanism is locked, so that the cutting saw blade will not slip during cutting. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 :Assemble the overall structure of the patent of this invention Figure 1 ;
[0018] Figure 2 :Assemble the overall structure of the patent of this invention Figure 2 ;
[0019] Figure 3 : This is a radial cross-sectional view of the overall structure of the patented invention;
[0020] Figure 4 : Schematic diagram of the transmission mechanism and drive motor structure in the patent of this invention Figure 1 ;
[0021] Figure 5 : Schematic diagram of the transmission mechanism and drive motor structure in the patent of this invention Figure 2 ;
[0022] Figure 6 : It is a schematic diagram of the structure of the clamping assembly in the patent of this invention;
[0023] Figure 7 : It is a radial cross-sectional view of the overall structure of the clamping assembly in the patent of the present invention;
[0024] Figure 8 : Schematic diagram of the structure of the slider seat (top slider and transverse rack) in the patent of this invention;
[0025] Figure 9 : It is a schematic diagram of the structure of the plywood (including the bottom plywood and the top plywood) in the patent of this invention;
[0026] Figure 10 : This is a cross-sectional view of the downward pressing locking mechanism in the patent of this invention;
[0027] Figure 11 : This is a schematic diagram of the assembly structure of the guide groove seat, spring seat, clamping component, and pressure plate in the patent of this invention;
[0028] Figure 12 : This is a schematic diagram of the exploded structure of the guide groove seat, spring seat, clamping assembly, and pressure plate in the patent of this invention;
[0029] Figure 13 : Schematic diagram of the decomposition structure of the guide groove seat, spring seat, clamping assembly and pressure plate in the patent of this invention Figure 2 ;
[0030] Figure 14 : This is a schematic diagram of the exploded structure of the guide groove seat, clamping assembly, and pressure plate in the patent of this invention;
[0031] Figure 15: It is a schematic diagram of the mounting plate structure of the present invention;
[0032] In the figure: mounting plate 100, slide 101, drive motor 103, transmission assembly 2, support plate 102, screw slider 21, lifting plate 22, horizontal slide rail 23, slider seat 24, adapter gear shaft 25, vertical rack 26, horizontal rack 27, bearing fixing seat 28, external gear 251, intermediate gear 252, clamping mechanism 300, horizontal incision 301, longitudinal incision 302, clamping assembly 3, clamping plate 31, pressure head clamp 32, bottom clamping piece 321, top clamping piece 322, secondary pressing component 400, top pin 41, tilting rod 42, support rod 43, first connecting rod 44, second connecting rod 45, bottom clamping plate 310, top clamping plate 320, pin through hole 310 1. Oblique insertion hole 3201, first return spring 411, lower clamping arm 3211, upper clamping arm 3212, rotating part 3213, seat rod 33, lower clamping head 3214, upper clamping head 3215, top clamping arm 3221, top clamping head 3222, top slider 29, push plate 30, guide groove seat 4, guide groove 401, spring seat 5, clamping plate slide groove 51, straight push spring 52, pressure plate 6, locking rod 9, clamping block 8, tension and compression screw 7, oblique pressure groove 42, tension and compression block 61, avoidance groove 62, bottom limiter 71, sliding part 81, clamping part 82, tension and compression groove 811, first inclined surface 812, second inclined surface 621, second return spring 10, power pulley assembly 11, dustproof plate 12. DETAILED DESCRIPTION
[0033] The present invention will be further described below in conjunction with the accompanying drawings and specific implementation methods. It should be noted that, under the premise of no conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.
[0034] refer to Figures 1 to 15 :
[0035] The present invention discloses a clamp device for cutting hoof food, comprising a mounting plate 100, a driving mechanism and a clamping mechanism 300, wherein the mounting plate 100 is provided with a plurality of slide grooves 101; the driving mechanism is mounted on the lower end of the mounting plate 100, and is composed of a driving motor 103 and a transmission assembly 2, wherein the driving motor 103 is mounted on the lower end of the mounting plate 100 through a supporting plate 102, and the transmission assembly 2 comprises a screw slider 21, a lifting plate 22, a transverse slide rail 23, a slider seat 24, and a transfer gear shaft 25, wherein the screw slider The outer side of the block 21 is fixedly connected with a lifting plate 22, which is embedded in the inner side of the support plate 102 and can slide up and down along the support plate 102. The two sides of the lifting plate 22 are fixedly connected with vertical racks 26, and the transverse slide rails 23 are fixed to the lower end of the mounting plate 100. The slider seat 24 slides with the slide rails. A transverse rack 27 is provided on one side of the slider seat 24. A transfer gear shaft 25 is fixed to one side of the slider seat 24 and the lower end of the mounting plate 100 through a bearing fixing seat 28. Here, the bearing fixing seat 28 and the mounting plate are fixed. The plate 100 is fixedly connected, and the bearing fixing seat 28 just extends downward to the inner position of the slider seat 24. The transfer gear shaft 25 is provided with an external gear 251 and an intermediate gear 252. The external gear 251 is located on the other side of the transfer gear shaft 25 and meshes with the horizontal rack 27. The intermediate gear 252 is located in the middle position of the transfer gear shaft 25 and meshes with the vertical rack 26. In this way, when the driving motor 103 rotates to drive the screw slider 21 to slide up and down, the outer lifting plate 22 slides up and down with the vertical rack 26, thereby driving The intermediate gear 252 meshing with it rotates, and the rotation of the intermediate gear 252 drives the transfer gear shaft 25 to rotate, thereby driving the external gear 251 to rotate. The external gear 251 is meshed with the transverse rack 27, and the entire external gear 251 shaft, including the external gear 251 and the intermediate gear 252, is fixed by the bearing fixing seat 28 and will not rise or fall. As a result, the transverse rack 27 meshing with the external gear 251 is forced to slide within the transverse slide rail 23, thereby driving the upper end clamping mechanism 300 to perform clamping and releasing actions;
[0036] It also includes a clamping mechanism 300, which is installed at the upper end of the mounting plate 100 and is composed of a number of clamping components 3 that are slidable in opposite directions and arranged in an array, and has a transverse incision 301 and a longitudinal incision 302; the transverse incision 301 is used to cooperate with the multiple groups of transverse saw blades arranged in the sawing machine to cut the food transversely, while the longitudinal incision 302 is used to cooperate with the longitudinal saw blades in the sawing machine for cutting. The clamping mechanism 300 can perform opposite clamping and back-to-back separation actions through direct or indirect drive of the driving mechanism.
[0037] The clamping assembly 3 includes a clamping plate 31 and a pressure head clamp 32. The pressure head clamp 32 includes a bottom clamp 321 located at the lower end of the clamping plate 31 and a top clamp 322 located at the upper end of the clamping plate 31. The bottom clamp 321 and the top clamp 322 are directly or indirectly rotatably hinged to the clamping plate 31. An embodiment is disclosed herein in which the bottom clamp 321 or the top clamp 322 is directly hinged to the clamping plate 31, and a hinge head with an axial hole is provided on its inner side to connect with the recessed Hinge groove hinge, another embodiment is also disclosed, the bottom clamp 321 or the top clamp 322 is hinged to the clamp 31 in an introductory manner, a seat rod 33 is extended from one side of the clamp 31, an axial hole is provided on the seat rod 33, and a hinge groove is provided on the bottom clamp 321 and the top clamp 322, thereby achieving indirect hinge connection with the clamp 31 through the seat rod 33. The indirect hinge can lengthen the contact distance between the pressure head clamp 32 and the food to be cut to facilitate a stronger clamping of the food.
[0038] Specifically, the clamping assembly 3 also includes a secondary clamping component 400, which includes a top pin 41, a tilting rod 42, a support rod 43, a first connecting rod 44 and a second connecting rod 45. The clamping plate 31 includes a bottom clamping plate 310 and a top clamping plate 320 that are hinged to each other. The bottom clamping plate 310 is provided with a pin through hole 3101. One end of the top pin 41 extends into and out of the pin through hole 3101 and abuts against one end of the bottom clamping piece 321. The other end of the top pin 41 is hinged to one end of the tilting rod 42. The upper end of the tilting rod 42 is hinged to the first connecting rod 44. One end of the support rod 43 is hinged to one side of the lower end of the tilting rod 42, and the other end is fixedly connected to the side of the bottom clamping plate 310. The top clamping plate 320 is provided with an oblique through hole 3201. One end of the second connecting rod 45 is hinged to the first connecting rod 44, and the other end extends into and out of the oblique through hole 3201 and abuts against the top clamping piece 32 When the clamping plate 31 is in contact with the food to be cut, the clamping plate 31 is clamped and held tightly by the lower end. The longer arm of the bottom clamping member 321 is pressed against the food to be cut and is then pried toward the top pin 41, thereby driving the top pin 41 to extend outward, thereby driving the tilting rod 42 to carry the first connecting rod 44 and the second connecting rod 45 to perform a connecting rod action, and finally driving the top pin 41 to be inserted into the oblique insertion hole 3201 to drive the top clamping member 322 to be pressed inward, thereby achieving secondary pressing, that is, the tighter the bottom clamping member 321 is pressed by the food to be cut, the top clamping member 322 will be pressed inward by the tilting rod 42, thereby achieving complete clamping of the upper and lower ends of the food to be cut.
[0039] Specifically, the bottom clamping piece 321 includes a lower clamping arm 3211 and an upper clamping arm 3212 distributed at an obtuse angle, wherein a rotating portion 3213 is provided between the lower clamping arm 3211 and the upper clamping arm 3212, and a seat rod 33 is extended from the bottom clamping plate 310, and the rotating portion 3213 is hinged to the seat rod 33, and a lower clamping head 3214 is provided at the end of the lower clamping arm 3211, and an upper clamping head 3215 is provided at the end of the upper clamping arm 3212. A top clamping arm 3221 and a top clamping head 3222 are provided on the top clamping piece 322, and the lower clamping head 3214, the upper clamping head 3215, the lower clamping arm 3211 and the upper clamping arm 3212 together form a C-shaped encircling area, which can better encircle the food to be cut.
[0040] As one of the embodiments, a top slider 29 extends from the upper end of the slider seat 24, and the upper end of the top slider 29 extends into and passes through the slide groove 101 to be connected with the push plate 30. The lower end of the clamping plate 31 is connected to the push plate 30, and the push plate 30 drives the upper clamping plate 31 to slide toward or away from each other. In this embodiment, the top slider 29 drives the push plate 30 to directly drive the upper clamping plate 31 to slide in the slide groove 101, thereby completing the basic clamping, holding and separation actions.
[0041] As another optional embodiment, a top slider 29 extends from the upper end of the slider seat 24, and a guide slot seat 4 is provided on the upper end of the mounting plate 100. A guide slot 401 is provided on the guide slot seat 4, and a spring seat 5 is provided on the upper end of the guide slot seat 4. A splint slide 51 is provided in the spring seat 5, and a straight push spring 52 is provided on the inner side of the splint slide 51. The upper end of the top slider 29 passes through the slide 101 and the guide slot 401 and is fixed to the inner lower end of the spring seat 5 to drive the spring seat 5 to slide. The bottom of the splint 31 From bottom to top, they are respectively embedded in the guide groove 401 and the splint slide groove 51 and can slide along the guide groove 401 and the splint slide groove 51. One end of the direct push spring 52 abuts on the splint 31. In the embodiment, the top slider 29 does not directly drive the splint 31 to clamp, but slides with the spring seat 5, and the splint slide groove 51 slides on the guide groove seat 4. The two seat bodies have a connecting groove, in which the guide groove seat 4 is fixed, and the spring seat 5 can slide. The bottom lower end of the splint 31 is located in the guide groove 401 and the splint The upper end of the bottom of 31 is located in the splint slide groove 51, and a direct push spring 52 is provided in the splint slide groove 51, that is, when the top slider 29 slides toward each other with the spring seat 5, the splint 31 will slide with the spring seat 5 due to the push of the direct push spring 52, thereby performing a clamping action. In specific implementation, the stroke of the guide groove 401 will be greater than the stroke of the splint slide groove 51. When the splint 31 encounters a protruding part of a food material, such as the position of the cow's hoof and ankle, which has a larger diameter, the corresponding splint 31 will be forced to squeeze the direct push spring 52. The spring 52 causes the corresponding clamp 31 to retreat outward, forming a buffer. This arrangement allows the clamp to adapt to the uneven shape of food. Here, the straight-push spring 52 is preferably a hard spring, that is, a high-elasticity spring. The specific spring parameters can be changed according to the cutting of food of different hardness and shape types. For example, when cutting frozen fish with low hardness, a spring with lower elasticity can be used to prevent excessive clamping and damage to the surface of the frozen fish. When cutting very hard food such as cattle hooves, a high-elasticity spring needs to be used.
[0042] Specifically, when cutting some foods with higher hardness, such as cow hooves, the centrifugal force of the saw blade is very large during the cutting process, and the food will tend to deviate. For example, if the clamping action of the splint 31 is relied upon alone, the splint 31 needs to maintain a high-torque clamping action all the time, and thus the motor 103 needs to be driven to continuously output high-torque rotation, which can easily damage the motor over time. On the other hand, the torque of the motor does not change, while the hardness of the cutting part may change with the increase of the depth. When encountering a very hard part to be cut, the continuous output of the saw blade may cause the splint 31 to not be clamped tightly, become loose, or slip. Here, a solution is provided, specifically: it also includes a downward pressing locking mechanism, and the downward pressing locking mechanism The locking mechanism includes a pressure plate 6, a locking rod 9, a clamping block 8, and a tension and compression screw 7. The inner side of the guide groove seat 4 is recessed to form an oblique pressure groove 42. Tension and compression blocks 61 extend from both sides of the pressure plate 6 and are provided with an avoidance groove 62 on the inner side. The avoidance groove 62 is preferably set as a through groove. One end of the tension and compression screw 7 is passed through the upper end surface of the pressure plate 6, and the other end passes through the mounting plate 100 and the lifting plate 22, and is movably passed through the mounting plate 100 and the lifting plate 22. The tension and compression screw 7 is provided with a bottom limiter 71 at the position of the lower end of the lifting plate 22. The bottom limiter 71 is preferably a nut, and a thread is provided at the lower end position of the tension and compression screw 7. In this way, the height of the bottom limiter 71 on the tension and compression screw 7 can be adjusted to adjust the degree of compression of the pressure plate 6. When the lifting plate 22 is lowered to a certain stroke along with the screw slider 21 and touches the bottom limit piece 71, it can drive the tension and pressure screw 7 to slide downward, thereby driving the pressure plate 6 to press downward. The clamping block 8 includes a sliding portion 81 and a clamping portion 82, wherein the inner side of the sliding portion 81 is provided with a tension and pressure groove 811 that is adapted to pass through the tension and pressure block 61, and the outer side of the sliding portion 81 is provided with a first inclined surface 812, and the inner side of the inclined pressure groove 42 is provided with a second inclined surface 621 that cooperates with the first inclined surface 812, wherein the vertical axis height of the tension and pressure groove 811 is higher than the height of the tension and pressure block 61, one end of the locking rod 9 is fixed to the clamping plate 31, and the other end extends to the avoidance groove 62 of the pressure plate 6, wherein the clamping portions 82 of a pair of adjacent clamping blocks 8 are pressed downward by the pressure plate 6, and can be in the first The first inclined surface 812 and the second inclined surface 621 cooperate with each other to perform an inward clamping action, and finally just hold the locking rod 9 that passes through. The locking rod 9 is inserted into the avoidance groove 62 in the opposite direction as the clamping plate 31 is clamped. After the locking rod 9 is clamped, it is equivalent to that the clamping block 8 cannot move, thereby completing the locking. A second return spring 10 is also provided between the pressure plate 6 and the mounting plate 100. When the drive motor 103 rotates in the opposite direction, the screw slider 21 rises and drives the lifting plate 22 to rise. The lifting plate 22 loses the downward control of the bottom limit member 71. Finally, the pressure plate 6 can rise upward under the action of the second return spring 10. At the same time, the clamping block 8 also rises upward under the action of the tension and pressure block 61, loses the clamping lock on the locking rod 9, and finally the entire mechanism is unlocked.
[0043] Specifically, in order to make the splint 31 slide more smoothly in the guide groove 401, here, the two outer sides of the splint 31 located in the guide groove 401 are further provided with power-assisting pulley sets 11, and the wheel surface of the power-assisting pulley set 11 acts on the end face of the mounting plate 100 to accelerate the sliding speed of the splint 31.
[0044] Specifically, a dustproof plate 12 is sleeved on the outer periphery of the clamping plate 31 near the upper end surface of the spring seat 5, wherein the oppositely arranged dustproof plates 12 are staggered in height, and the oppositely arranged tension and compression screws 7 are staggered in horizontal positions when extending into the avoidance groove 62.
[0045] Specifically, in order to increase the degree of clamping of the clamping block 8 to the locking rod 9 and achieve the purpose of complete locking, the locking rod 9 is provided with an external thread, and the inner arc surface of the clamping portion 82 of the clamping block 8 is provided with an internal thread, so as to increase the clamping force and prevent slipping. The clamping angle is targeted here. For individual cases, the internal thread can be replaced by embossing (convex and concave) or buckle (convex and concave) structure.
[0046] The above embodiments are only preferred embodiments of the present invention and cannot be used to limit the scope of protection of the present invention. Any non-substantial changes and replacements made by technicians in this field on the basis of the present invention fall within the scope of protection required by the present invention.
Claims
1. A clamp device for cutting hoof food, comprising: A mounting plate, wherein a plurality of slide grooves are provided on the mounting plate; The driving mechanism is installed at the lower end of the mounting plate and consists of a driving motor and a transmission assembly. The driving motor is installed at the lower end of the mounting plate through a support plate. The transmission assembly includes a screw slider, a lifting plate, a transverse slide rail, a slider seat, and a transfer gear shaft. The outer side of the screw slider is fixedly connected to the lifting plate. Vertical racks are provided on both sides of the lifting plate. The transverse slide rail is fixed to the lower end of the mounting plate. The slider seat slides with the slide rail. A transverse rack is provided on one side of the slider seat. A transfer gear shaft is fixed to one side of the slider seat and the lower end of the mounting plate through a bearing fixing seat. An external gear and an intermediate gear are provided on the transfer gear shaft, wherein the intermediate gear is meshed with the vertical rack, and the external gear is meshed with the transverse rack. The clamping mechanism is mounted on the upper end of the mounting plate and is composed of a plurality of clamping and pressing components arranged in an array and slidable toward each other, and has transverse and longitudinal cuts. The clamping mechanism is capable of clamping toward each other and separating in opposite directions by direct or indirect drive of a driving mechanism. The clamping assembly includes a clamping plate and a pressure head clamp, wherein the pressure head clamp includes a bottom clamping piece located at the lower end of the clamping plate and a top clamping piece located at the upper end of the clamping plate, wherein the bottom clamping piece and the top clamping piece are directly or indirectly rotatably hinged to the clamping plate; The cam is fixedly mounted on the support frame, and the cam is secured to the bottom of the chassis with a secure coupling to the chassis. The cam is secured to the bottom of the chassis with a secure coupling to the chassis. The bottom clamping piece includes a lower clamping arm and an upper clamping arm distributed at an obtuse angle, wherein a rotating part is provided between the lower clamping arm and the upper clamping arm, a seat rod is extended out of the bottom clamping plate, the rotating part is hinged to the seat rod, a lower clamping head is provided at the end of the lower clamping arm, an upper clamping head is provided at the end of the upper clamping arm, and a top clamping arm and a top clamping head are provided on the top clamping piece.
2. A clamp device for cutting hoof food according to claim 1, characterized in that: A top slider extends from the upper end of the slider seat, and the upper end of the top slider extends into and passes through the slide groove to be connected with the push plate. The lower end of the clamping plate is connected to the push plate, and the push plate drives the upper clamping plate to slide toward or away from each other.
3. A clamp device for cutting hoof food according to any one of claims 1-2, characterized in that: The top slider extends from the upper end of the slider seat, and the upper end of the mounting plate is provided with a guide slot seat, and the guide slot seat is provided with a guide slot. The upper end of the guide slot seat is provided with a spring seat, and a splint slide slot is provided in the spring seat, and a straight push spring is provided on the inner side of the splint slide slot. The upper end of the top slider passes through the slide slot and the guide slot and is fixed to the inner lower end of the spring seat to drive the spring seat to slide, and the bottom of the splint is respectively embedded in the guide slot and the splint slide slot from bottom to top and can slide along the guide slot and the splint slide slot, and one end of the straight push spring abuts against the splint.
4. A clamp device for cutting hoof food according to claim 3, characterized in that: The cam is secured to the upper and lower ends of the guide rails and is adapted to engage the guide rails when the cam is engaged with the guide rails, and the cams are secured to the lower ends of the guide rails when the cams are engaged. The plate is pressed downward, and the clamping block includes a sliding part and a clamping part, wherein the inner side of the sliding part is provided with a pulling and pressing groove adapted to pass through the pulling and pressing block, the outer side of the sliding part is provided with a first inclined surface, and the inner side of the inclined pressing groove is provided with a second inclined surface matched with the first inclined surface, wherein the vertical axis height of the pulling and pressing groove is higher than the height of the pulling and pressing block, one end of the locking rod is fixed to the clamping plate, and the other end extends to the avoidance groove of the pressure plate, wherein the clamping parts of a pair of adjacent clamping blocks can just hold the locking rod after being pressed downward by the pressure plate, and a second return spring is also provided between the pressure plate and the mounting plate.
5. A clamp device for cutting hoof food according to claim 4, characterized in that: The two outer sides of the guide groove portion of the clamping plate are further provided with power-assist pulley sets, and the wheel surfaces of the power-assist pulley sets act on the end surface of the mounting plate to accelerate the sliding speed of the clamping plate.
6. A clamp device for cutting hoof food according to claim 5, characterized in that: The outer periphery of the clamping plate near the upper end surface of the spring seat is sleeved with a dustproof plate, wherein the oppositely arranged dustproof plates are staggered in height, and the oppositely arranged tension and compression screws are staggered in horizontal positions when extending into the avoidance groove.
7. A clamp device for cutting hoof food according to claim 6, characterized in that: The locking rod is provided with an external thread, and the inner arc surface of the clamping portion of the clamping block is provided with an internal thread, so as to increase the clamping force and prevent slipping.
Citation Information
Patent Citations
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