Food detection combined block processing device
By designing an automated food testing assembly block processing device, the automated assembly and welding of workpieces were realized, solving the problems of low efficiency and unstable welding in the existing technology, especially the stable assembly and welding of interference fit workpieces.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-02-06
- Publication Date
- 2026-03-31
AI Technical Summary
In existing food testing assembly block processing, the assembly and welding processes are separate, resulting in low production efficiency. This is especially true for interference fit workpieces, where operation is difficult and welding quality is unstable.
A food testing assembly block processing device was designed. The device uses a motor to drive a turntable, which in turn drives a limit rod and a slide rod to realize the automatic feeding, assembly and welding of workpieces. Combined with a plasma arc welder, the device completes the fully automatic assembly and welding process, including the automatic pressing and welding of steel balls.
It enables efficient and automated assembly and welding of workpieces, improves production efficiency, and ensures welding quality and precision, especially the stable assembly of interference fit workpieces.
Smart Images

Figure CN121755841A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of welding technology, and more specifically, to a food testing assembly block processing device. Background Technology
[0002] Food testing assembly blocks are typically composed of multiple different metal blocks. Current welding production generally employs a separate "assemble first, then weld" operation. This model has significant drawbacks: First, the separation of assembly and welding processes leads to multiple handling and repositioning of the workpiece, resulting in slow production cycles and overall low efficiency. Second, especially for interference-fit workpieces, additional equipment is needed for forced pressing during assembly, and the pressed parts are prone to loosening or misalignment during transfer to the welding station, causing operational difficulties and severely impacting welding quality and precision. Therefore, current technology lacks an integrated device that can efficiently combine assembly and welding processes and reliably handle interference-fit workpieces, hindering the improvement of production efficiency and reliability of related products. Summary of the Invention
[0003] In order to overcome the above-mentioned defects of the prior art, the embodiments of the present invention provide a food testing assembly block processing device. The technical problem to be solved by the present invention is that the welding assembly and welding of the existing assembly blocks are separate, resulting in low production efficiency and inconvenience for assembling workpieces with interference fit.
[0004] To achieve the above objectives, the present invention provides the following technical solution: a food testing block processing device, comprising a base plate, a back plate fixedly connected to the upper end of the base plate, a motor fixedly connected to the rear side of the back plate, a rotating shaft extending from the front end of the motor, a turntable fixedly connected to the cylindrical outer surface of the rotating shaft, a first track groove formed on the rear side of the turntable, a third track groove formed on the front side of the turntable, a rotating cylinder fixedly connected to the front side of the rotating shaft, a second track groove provided on the rotating cylinder, and a first limiting sleeve fixedly connected to the front side of the back plate. A vertical slide rod is slidably connected inside the first limiting sleeve. A fourth limiting rod is fixedly connected to the front side of the vertical slide rod, and the fourth limiting rod is slidably connected to the first track groove. A second limiting sleeve is fixedly connected to the front side of the back plate. A horizontal slide rod is slidably connected inside the second limiting sleeve. A second limiting rod is fixedly connected to the rear side of the horizontal slide rod, and the second limiting rod is slidably connected to the third track groove. A first limiting rod is fixedly connected to the rear side of the first limiting rod. A track plate is slidably connected inside the vertical slide rod, and the first limiting rod is slidably connected to the track plate.
[0005] In a preferred embodiment, a second U-shaped frame is fixedly connected to the left side of the transverse slide bar, and a first insert plate and a second insert plate are fixedly connected to the left side of the second U-shaped frame, with the second insert plate located below the first insert plate. A first discharge hole is provided on the first insert plate, and a second discharge hole is provided on the second insert plate. A push rod is fixedly connected to the left side of the transverse slide bar.
[0006] In a preferred embodiment, a first U-shaped frame is fixedly connected to the upper end of the track plate, a pressure plate is fixedly connected to the lower end of the first U-shaped frame, a front plate is fixedly connected to the front side of the first U-shaped frame, and a plasma arc welder is fixedly connected to the front side of the front plate.
[0007] In a preferred embodiment, a first dropping frame is fixedly connected to the front side of the back plate, and the first dropping frame is located directly above the first chute. The first dropping frame contains multiple sets of first workpieces. A second dropping frame is fixedly connected to the front side of the first dropping frame, and the second dropping frame is located directly above the second chute. The second dropping frame contains multiple sets of second workpieces. A mounting plate is fixedly connected to the lower end of the second dropping frame.
[0008] In a preferred embodiment, a push plate is slidably snapped into the mounting plate, a spring is fixedly connected between the push plate and the mounting plate, a third limiting rod is fixedly connected to the upper end of the push plate, and the third limiting rod is slidably connected to the second track groove.
[0009] In a preferred embodiment, a third dropping frame is fixedly connected to the front side of the back plate, and the third dropping frame is located directly above the first chute. The third dropping frame contains multiple sets of steel balls, and two sets of through slots are opened on one side of the third dropping frame. The first insert plate and the second insert plate are slidably connected to the two sets of through slots respectively.
[0010] In a preferred embodiment, the first track groove can be divided into segments a, n, b, c, and d, wherein segment ab is a 225-degree arc, the angle between the line connecting point m to the center of the circle and the line connecting a to the center of the circle is 45 degrees, the angle between the line connecting point m to the center of the circle and the line connecting b to the center of the circle is 180 degrees, the angle between the line connecting point n to the circle and the line connecting b to the center of the circle is 90 degrees, and segment cd is a 45-degree arc. The third track groove can be divided into segments g, ge, and f, wherein g is a 180-degree arc. The second track groove includes an inclined track groove and a transverse track groove, and the inclined track groove and the transverse track groove are connected end to end.
[0011] In a preferred embodiment, the upper end of the first workpiece is provided with a first circular hole, and the upper end of the second workpiece is provided with a spherical groove.
[0012] The technical effects and advantages of this invention are as follows:
[0013] 1. The motor can drive the turntable to rotate counterclockwise via the rotating shaft. The third track groove can drive the horizontal slide bar to move left and right via the second limit rod. The first track groove can drive the vertical slide bar to move up and down via the fourth limit rod. The horizontal slide bar can drive the track plate to move left and right via the first limit rod. The vertical slide bar can drive the track plate to move up and down, thereby causing the track plate to reciprocate along an L-shaped trajectory. This, in conjunction with other parts, enables fully automatic loading and assembly of the first and second workpieces, welding of the joint between the first and second workpieces, automatic loading of steel balls, and automatic pressing and assembly of the steel balls. Attached Figure Description
[0014] Figure 1 This is a first-state perspective view of the present invention.
[0015] Figure 2 This is a perspective view of the second state of the present invention.
[0016] Figure 3 This is a three-dimensional view of the third state of the present invention.
[0017] Figure 4 This is a perspective view of the fourth state of the present invention.
[0018] Figure 5 This is a perspective view of the fifth state of the present invention.
[0019] Figure 6 This is a perspective view of the sixth state of the present invention.
[0020] Figure 7 This is a perspective view of the backplate of the present invention.
[0021] Figure 8 This is a perspective view of the first workpiece of the present invention.
[0022] Figure 9 This is a perspective view of the second workpiece of the present invention.
[0023] Figure 10 This is a perspective view of the first and second material dropping frames of the present invention.
[0024] Figure 11 This is a perspective view of the third material feeding frame of the present invention.
[0025] Figure 12 This is a perspective view of the first U-shaped frame of the present invention.
[0026] Figure 13 This is a perspective view of the transverse slide bar of the present invention.
[0027] Figure 14 This is a first perspective view of the turntable of the present invention.
[0028] Figure 15 This is a second perspective view of the turntable of the present invention.
[0029] Figure 16 This is a perspective view of the push plate of the present invention.
[0030] Figure 17 This is a perspective view of the vertical slide bar of the present invention.
[0031] The attached figures are labeled as follows:
[0032] 1. Base plate; 2. Back plate; 3. First limiting sleeve; 4. Second limiting sleeve; 5. First slide groove; 6. Second slide groove; 7. First workpiece; 8. First circular hole; 9. Second workpiece; 10. Spherical groove; 11. First blanking frame; 12. Second blanking frame; 13. Mounting plate; 14. Third blanking frame; 15. Through groove; 16. Track plate; 17. First U-shaped frame; 18. Pressure plate; 19. Front plate; 20. Plasma arc welder; 21. Transverse slide bar; 22. First limiting bar; 2 3. Second limiting rod; 24. Push rod; 25. Second U-shaped frame; 26. First insert plate; 27. First discharge hole; 28. Second insert plate; 29. Second discharge hole; 30. Motor; 31. Rotating shaft; 32. Turntable; 33. First track groove; 34. Rotary drum; 35. Second track groove; 36. Third track groove; 37. Inclined track groove; 38. Horizontal groove; 39. Push plate; 40. Spring; 41. Third limiting rod; 42. Vertical sliding rod; 43. Fourth limiting rod; 44. Steel ball. Detailed Implementation
[0033] Depend on Figures 1-17This invention provides a food testing block processing device, including a base plate 1, a back plate 2 fixedly connected to the upper end of the base plate 1, a motor 30 fixedly connected to the rear side of the back plate 2, a rotating shaft 31 extending from the front end of the motor 30, a turntable 32 fixedly connected to the cylindrical outer surface of the rotating shaft 31, a first track groove 33 formed on the rear side of the turntable 32, a third track groove 36 formed on the front side of the turntable 32, a rotating cylinder 34 fixedly connected to the front side of the rotating shaft 31, a second track groove 35 provided on the rotating cylinder 34, a first limiting sleeve 3 fixedly connected to the front side of the back plate 2, a vertical sliding rod 42 slidably connected inside the first limiting sleeve 3, a fourth limiting rod 43 fixedly connected to the front side of the vertical sliding rod 42, and the fourth limiting rod 43 slidably connected to the first track groove 33, and a second limiting sleeve 4 fixedly connected to the front side of the back plate 2. A transverse slide rod 21 is slidably connected to the inner side of the transverse slide rod 21. A second limiting rod 23 is fixedly connected to the rear side of the transverse slide rod 21, and the second limiting rod 23 is slidably connected to the third track groove 36. A first limiting rod 22 is fixedly connected to the rear side of the first limiting rod 22. A track plate 16 is slidably connected to the vertical slide rod 42, and the first limiting rod 22 is slidably connected to the track plate 16. The motor 30 can drive the turntable 32 to rotate counterclockwise through the rotating shaft 31. The third track groove 36 can drive the transverse slide rod 21 to move left and right through the second limiting rod 23. The first track groove 33 can drive the vertical slide rod 42 to move up and down through the fourth limiting rod 43. The transverse slide rod 21 can drive the track plate 16 to move left and right through the first limiting rod 22. The vertical slide rod 42 can drive the track plate 16 to move up and down, thereby causing the track plate 16 to reciprocate along an L-shaped trajectory.
[0034] A second U-shaped frame 25 is fixedly connected to the left side of the transverse slide bar 21. A first insert plate 26 and a second insert plate 28 are fixedly connected to the left side of the second U-shaped frame 25, with the second insert plate 28 located below the first insert plate 26. A first discharge hole 27 is provided on the first insert plate 26, and a second discharge hole 29 is provided on the second insert plate 28. A push rod 24 is fixedly connected to the left side of the transverse slide bar 21. A third discharge frame 14 is fixedly connected to the front side of the back plate 2, and the third discharge frame 14 is located directly above the first slide groove 5. The third feeding frame 14 contains multiple sets of steel balls 44. Two sets of through slots 15 are provided on one side of the third feeding frame 14, and the first insert plate 26 and the second insert plate 28 are slidably connected to the two sets of through slots 15 respectively. When the horizontal slide bar 21 moves to the left, the push rod 24 can push the combination of the first round hole 8 and the second workpiece 9 to the left by one station. The first feeding hole 27 and the second feeding hole 29 are connected to the third feeding frame 14 when the horizontal slide bar 21 moves to the left limit and to the right limit respectively, so that only one steel ball 44 falls for each turn of the turntable 32.
[0035] The upper end of the track plate 16 is fixedly connected to a first U-shaped frame 17, the lower end of the first U-shaped frame 17 is fixedly connected to a pressure plate 18, the front side of the first U-shaped frame 17 is fixedly connected to a front plate 19, and the front side of the front plate 19 is fixedly connected to a plasma arc welder 20; the pressure plate 18 can press the steel ball 44, so that the steel ball 44 is pressed into the first round hole 8 and the spherical groove 10, and the plasma arc welder 20 welds the joints on the left and upper sides of the first workpiece 7 and the second workpiece 9.
[0036] A first dropping frame 11 is fixedly connected to the front side of the back plate 2, and the first dropping frame 11 is located directly above the first slide 5. The first dropping frame 11 contains multiple sets of first workpieces 7. A second dropping frame 12 is fixedly connected to the front side of the first dropping frame 11, and the second dropping frame 12 is located directly above the second slide 6. The second dropping frame 12 contains multiple sets of second workpieces 9. A mounting plate 13 is fixedly connected to the lower end of the second dropping frame 12.
[0037] A push plate 39 is slidably snapped into the mounting plate 13. A spring 40 is fixedly connected between the push plate 39 and the mounting plate 13. A third limiting rod 41 is fixedly connected to the upper end of the push plate 39, and the third limiting rod 41 is slidably connected to the second track groove 35. When the rotating drum 34 rotates, the inclined track groove 37 can drive the push plate 39 to move forward through the third limiting rod 41 to compress the spring 40 to store force. When the third limiting rod 41 slides to the transverse groove 38, it pushes the second workpiece 9 into the first workpiece 7.
[0038] The first track groove 33 can be divided into segments a, n, b, c, and d, where segment ab is a 225-degree arc, the angle between the line connecting point m to the center and the line connecting a to the center is 45 degrees, the angle between the line connecting point m to the center and the line connecting b to the center is 180 degrees, the angle between the line connecting point n to the circle and the line connecting b to the center is 90 degrees, and segment cd is a 45-degree arc. The third track groove 36 can be divided into segments g, ge, and f, where g is a 180-degree arc. The second track groove 35 includes an inclined track groove 37 and a transverse groove 38, and the inclined track groove 37 and the transverse groove 38 are connected end to end.
[0039] In practice, the initial state is as follows: Figure 1 As shown, at this time, the second limiting rod 23 is located at point e on the third track groove 36, the third limiting rod 41 is located in the inclined track groove 37, and the fourth limiting rod 43 is located at point m on the first track groove 33. Then, the motor 30 is started, and the motor 30 drives the turntable 32 to rotate counterclockwise through the rotating shaft 31. The third track groove 36 can drive the horizontal sliding rod 21 to move left and right through the second limiting rod 23, and the first track groove 33 can drive the vertical sliding rod 42 to move up and down through the fourth limiting rod 43. The horizontal sliding rod 21 can drive the track plate 16 to move left and right through the first limiting rod 22, and the vertical sliding rod 42 can drive the track plate 16 to move up and down, so that the track plate 16 reciprocates along an L-shaped trajectory. The specific process is as follows;
[0040] First, turntable 32 is rotated 90 degrees counterclockwise, and the device... Figure 1 State moved to Figure 2 The state shown is for a more intuitive display of the positional relationships of the various workpieces. Figure 2 The push plate 39 is in the "not popped out" state, but in reality, it has already pushed the second workpiece 9 into the first workpiece 7 under the elastic force of the spring 40. At this time, the second limiting rod 23 is located at point f on the third track groove 36, the third limiting rod 41 is located in the transverse groove 38, and the fourth limiting rod 43 is located at point n on the first track groove 33. During this process, the third track groove 36 drives the transverse slide rod 21 to move to the right through the second limiting rod 23. Before the transverse slide rod 21 moves to the rightmost end, the push rod 24 moves away from directly below the first drop frame 11, and a set of first workpieces 7 falls into the first slide groove 5. The inclined track groove 37 drives the push plate 39 to move forward through the third limiting rod 41 (compressing the spring 40). Figure 2 At the instant of the state (at the intersection of the inclined track groove 37 and the transverse groove 38), under the elastic force of the spring 40, the push plate 39 pushes backward, pushing the second workpiece 9 on the second slide 6 into the corresponding first workpiece 7 on the first slide 5 (at this time, the upper part of the push plate 39 blocks the lower end of the second dropping frame 12, so the second workpiece 9 will not fall onto the second slide 6); at the same time, the rightward movement of the transverse slide rod 21 will drive the first insertion plate 26 and the second insertion plate 28 to the right through the second U-shaped frame 25, so that the second dropping hole 29 is connected to the third dropping frame 14 (this is... Figure 2 The state shown is in Figure 1 In this state, the first dropping hole 27 is connected to the third dropping frame 14, and a set of steel balls 44 are located above the second insert plate 28. The set of steel balls 44 falls into the first round hole 8 on the first workpiece 7 directly below the third dropping frame 14 (the first round hole 8 and the steel ball 44 are interference-fitted, so the steel ball 44 cannot completely enter the first round hole 8), thereby realizing the feeding of steel balls 44 one by one.
[0041] Then turntable 32 continues to rotate 90 degrees counterclockwise, and the device... Figure 2 State moved to Figure 3In the state shown (at this time, the second limiting rod 23 is located at point g on the third track groove 36, the third limiting rod 41 is located in the inclined track groove 37, and the fourth limiting rod 43 is located at point b on the first track groove 33), during this process, the third track groove 36 drives the transverse slide rod 21 to move to the left through the second limiting rod 23, and the transverse slide rod 21 drives the push rod 24 to move to the left, thereby pushing the newly assembled first workpiece 7 and second workpiece 9 to the left by one station. At the same time, the first dropping hole 27 moves to the left to coincide with the third dropping frame 14, and a new set of steel balls 44 falls onto the second insert plate 28. The inclined track groove 37 drives the push plate 39 to push the compression spring 40 forward through the third limiting rod 41. The plasma arc welder 20 starts to weld the upper joint of the first workpiece 7 and the second workpiece 9 (only one set of upper joints of the first workpiece 7 and the second workpiece 9 is welded, and the plasma arc welder 20 stops immediately after the welding is completed).
[0042] Then turntable 32 continues to rotate counterclockwise by 45 degrees, and the device... Figure 3 State moved to Figure 4 In the state shown (at this time, the second limiting rod 23 is located at section ge on the third track groove 36, the third limiting rod 41 is located in the inclined track groove 37, and the fourth limiting rod 43 is located at point c on the first track groove 33), during this process, the first track groove 33 will drive the vertical sliding rod 42 to move down through the fourth limiting rod 43, thereby driving the first U-shaped frame 17 and the pressure plate 18 to move down. The pressure plate 18 will completely press the steel ball 44 into the first round hole 8 and the spherical groove 10. The inclined track groove 37 will drive the push plate 39 to push the compression spring 40 forward through the third limiting rod 41.
[0043] Then turntable 32 continues to rotate counterclockwise by 45 degrees, and the device... Figure 4 State moved to Figure 5 In the state shown (at this time, the second limiting rod 23 is located at the ge section on the third track groove 36, the third limiting rod 41 is located in the inclined track groove 37, and the fourth limiting rod 43 is located at point d on the first track groove 33), during this process, the horizontal sliding rod 21 and the vertical sliding rod 42 do not move, and the inclined track groove 37 drives the push plate 39 to push the compression spring 40 forward through the third limiting rod 41.
[0044] Then turntable 32 continues to rotate counterclockwise by 45 degrees, and the device... Figure 5 State moved to Figure 6In the state shown (at this time, the second limiting rod 23 is located at section ge on the third track groove 36, the third limiting rod 41 is located in the inclined track groove 37, and the fourth limiting rod 43 is located at point a on the first track groove 33), during this process, the first track groove 33 will drive the vertical slide rod 42 to move upward through the fourth limiting rod 43, thereby driving the first U-shaped frame 17 and the front plate 19 to move upward. The plasma arc welder 20 is started in this process to weld the left joint of the first workpiece 7 and the second workpiece 9. The inclined track groove 37 drives the push plate 39 to push the compression spring 40 forward through the third limiting rod 41. The push plate 39 moves away from below the second drop frame 12, and a new set of second workpieces 9 falls onto the second slide groove 6.
[0045] Then turntable 32 continues to rotate counterclockwise by 45 degrees, and the device... Figure 6 State moved to Figure 1 In the state shown, during this process, the horizontal slide bar 21 and the vertical slide bar 42 do not move, and the inclined track groove 37 drives the push plate 39 to push the compression spring 40 forward through the third limit rod 41; repeating the above operation can automatically complete the assembly of the first workpiece 7 and the second workpiece 9, the welding of the joint between the first workpiece 7 and the second workpiece 9, the automatic feeding of steel balls 44, and the automatic pressing assembly of steel balls 44.
[0046] In conclusion, the above are merely preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A food testing set block processing apparatus comprising a base plate (1), characterized in that: The upper end of the bottom plate (1) is fixedly connected with a back plate (2), the rear side of the back plate (2) is fixedly connected with a motor (30), the front end of the motor (30) extends with a rotating shaft (31), the cylindrical outer surface of the rotating shaft (31) is fixedly connected with a rotating disc (32), the rear side of the rotating disc (32) is provided with a first track groove (33), the front side of the rotating disc (32) is provided with a third track groove (36), the front side of the rotating shaft (31) is fixedly connected with a rotating drum (34), the rotating drum (34) is provided with a second track groove (35), the front side of the back plate (2) is fixedly connected with a first limiting sleeve (3), the first limiting sleeve (3) is slidably connected with a vertical sliding rod (42), the front side of the vertical sliding rod (42) is fixedly connected with a fourth limiting rod (43), and the fourth limiting rod (43) is slidably connected with the first track groove (33), the front side of the back plate (2) is fixedly connected with a second limiting sleeve (4), the second limiting sleeve (4) is slidably connected with a horizontal sliding rod (21), the rear side of the horizontal sliding rod (21) is fixedly connected with a second limiting rod (23), and the second limiting rod (23) is slidably connected with the third track groove (36), the rear side of the first limiting rod (22) is fixedly connected with a first limiting rod (22), the vertical sliding rod (42) is slidably connected with a track plate (16), and the first limiting rod (22) is slidably connected with the track plate (16).
2. A food testing modular block processing apparatus as claimed in claim 1, wherein: The left side of the horizontal sliding rod (21) is fixedly connected with a second U-shaped frame (25), the left side of the second U-shaped frame (25) is fixedly connected with a first plugboard (26) and a second plugboard (28), and the second plugboard (28) is located below the first plugboard (26), the first plugboard (26) is provided with a first blanking hole (27), the second plugboard (28) is provided with a second blanking hole (29), and the left side of the horizontal sliding rod (21) is fixedly connected with a push rod (24).
3. A food testing module processing apparatus as claimed in claim 1, wherein: The upper end of the track plate (16) is fixedly connected with a first U-shaped frame (17), the lower end of the first U-shaped frame (17) is fixedly connected with a pressing plate (18), the front side of the first U-shaped frame (17) is fixedly connected with a front plate (19), and the front side of the front plate (19) is fixedly connected with a plasma arc welder (20).
4. The food detection module block processing apparatus of claim 1, wherein: The front side of the back plate (2) is fixedly connected with a first blanking frame (11), and the first blanking frame (11) is located directly above the first sliding groove (5), a plurality of first workpieces (7) are contained in the first blanking frame (11), the front side of the first blanking frame (11) is fixedly connected with a second blanking frame (12), and the second blanking frame (12) is located directly above the second sliding groove (6), a plurality of second workpieces (9) are contained in the second blanking frame (12), and the lower end of the second blanking frame (12) is fixedly connected with a mounting plate (13).
5. A food testing modular block processing apparatus as claimed in claim 4, wherein: The push plate (39) is slidably connected with the mounting plate (13), the spring (40) is fixedly connected between the push plate (39) and the mounting plate (13), the upper end of the push plate (39) is fixedly connected with the third limiting rod (41), and the third limiting rod (41) is slidably connected with the second track groove (35).
6. A food testing modular block processing apparatus as defined in claim 2, wherein: The third blanking frame (14) is fixedly connected to the front side of the back plate (2) and is located directly above the first sliding groove (5), a plurality of groups of steel balls (44) are arranged in the third blanking frame (14), two groups of penetrating grooves (15) are formed in one side of the third blanking frame (14), and the first plug plate (26) and the second plug plate (28) are slidably connected with the two groups of penetrating grooves (15) respectively.
7. The food detection module block processing apparatus of claim 1, wherein: The first track groove (33) can be divided into a-m-n-b-c-d sections, the a-b section is a 225-degree circular arc, the included angle between the line connecting the m point and the center and the line connecting the a point and the center is 45 degrees, the included angle between the line connecting the m point and the center and the line connecting the b point and the center is 180 degrees, the included angle between the line connecting the n point and the center and the line connecting the b point and the center is 90 degrees, the c-d section is a 45-degree circular arc, the third track groove (36) can be divided into g-e-f sections, the g-e section is a 180-degree circular arc, the second track groove (35) comprises a slant track groove (37) and a transverse groove (38), and the slant track groove (37) and the transverse groove (38) are connected end to end.
8. The food detection module block processing apparatus of claim 1, wherein: The upper end of the first workpiece (7) is provided with a first circular hole (8), and the upper end of the second workpiece (9) is provided with a spherical groove (10).