A breaking hammer processing apparatus

By designing an adjustable deburring mechanism and a feeler rod feedback mechanism for the breaker hammer processing equipment, the problems of long deburring time and incomplete cleaning during drill rod turning processing are solved, and efficient and safe drill rod deburring processing and equipment adaptability are achieved.

CN120662843BActive Publication Date: 2025-10-24YANTAI CHENGLI PRECISION MASCH CO LTD
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Patent Information

Application Number
CN202511186711.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-08-22
Publication Date
2025-10-24
Estimated Expiration
2045-08-22

AI Technical Summary

Technical Problem

The existing turning process of breaker hammer drill rods has the disadvantages of long deburring time, low efficiency, incomplete cleaning, easy jamming and wear of parts, and difficulty in adapting to the needs of multi-variety and small-batch production.

Method used

A breaker hammer processing equipment is designed, which is equipped with an adjustable deburring mechanism and a feeler rod feedback mechanism. It uses a tungsten steel scraper to synchronously deburr, combined with a gear ring to drive negative pressure adsorption and air flow to blow away waste, to achieve process simplification and equipment safety.

Benefits of technology

It achieves efficient and safe deburring of drill rods, avoids burr splashing and waste accumulation, ensures processing accuracy and equipment safety, and adapts to the flexible production of drill rods of various specifications.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of turning, in particular to a broken hammer processing equipment, including lathe, rotary clamping disc, feed mechanism, slide rail and slide table, the top of the slide table is movably provided with a turning tool, the top of the slide table is movably provided with a tungsten steel scraper, the slide table is provided with an adjustable deburring mechanism, the slide table is provided with a waste collecting mechanism for collecting the waste under the tungsten steel scraper, the slide table is provided with a touch rod feedback mechanism, when the turning tool turns the drill rod, the tungsten steel scraper is arranged in the subsequent process position of the turning tool, and the deburring treatment can be immediately carried out after turning, so that the process is simplified, since the burrs after turning have not been completely hardened, it is more labor-saving and efficient to remove at this time, the adjustable deburring mechanism is linked with the slide table, when the slide table drives the turning tool to move and adjust, the tungsten steel scraper will be adjusted in position and angle synchronously, so as to adapt to the deburring needs of drill rods of various specifications.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of turning, in particular to a breaking hammer machining equipment. BACKGROUND

[0002] As a core equipment for breaking hard materials in engineering construction, the machining precision of the key component, a drill rod, of a breaking hammer directly determines the breaking efficiency and the service life of the equipment. The drill rod is made of high-strength alloy steel, and the turning machining is used to complete the forming of key positions such as an outer circle, an end face and a step, so as to ensure the assembly precision and stress uniformity of the breaking hammer body. Therefore, the turning process occupies a core position in the production of the breaking hammer.

[0003] The existing drill rod turning machining adopts a step-by-step mode of 'turning and then deburring', and the deburring process is time-consuming. Since the drill rod is made of high-strength alloy material, the burrs formed after turning have high hardness and complex shapes. When the burrs are manually or mechanically removed, the removal effect and surface protection need to be considered. The deburring time of a single drill rod often exceeds the turning process itself, which significantly reduces the overall production efficiency.

[0004] In addition, the metal burrs and small debris generated by turning are not thoroughly cleaned, which can easily cause part jamming during subsequent assembly, even exacerbate the wear of the drill rod and the matching parts during the working of the breaking hammer, and shorten the service life of the equipment. Meanwhile, the sizes of the drill rods of different models of breaking hammers differ significantly, and the length and diameter span are large. The traditional lathe needs to frequently replace clamps and adjust tool parameters to adapt to different specifications. Not only is the operation cumbersome, but the replacement time is often as long as dozens of minutes, which cannot meet the flexible production demand of multiple varieties and small batches, and restricts the improvement of the machining efficiency and the stability of the quality. Therefore, the application provides a breaking hammer machining equipment. SUMMARY

[0005] One technical problem to be solved by the application is how to design a breaking hammer machining equipment for cleaning burrs of different models of drill rods.

[0006] To solve the above technical problem, the application provides a breaking hammer machining equipment, which comprises a machine tool, a rotating clamping disc, a feeding mechanism, a sliding rail and a sliding table. A turning tool is movably arranged on the top of the sliding table. A tungsten steel scraper is movably arranged on the top of the sliding table. An adjustable deburring mechanism is arranged on the sliding table. When the turning tool turns the drill rod, the adjustable deburring mechanism drives the tungsten steel scraper to synchronously perform subsequent deburring. When the turning tool is adjusted according to the machining requirement, the tungsten steel scraper can be adjusted through the mechanism. A waste collecting mechanism is arranged on the sliding table and used for collecting the waste under the tungsten steel scraper. A touch rod feedback mechanism is arranged on the sliding table and used for overturning the tungsten steel scraper when the turning tool jumps, so as to avoid breakage.

[0007] In some embodiments, the waste collecting mechanism comprises a gear ring sleeved outside the rotating clamping disc, the side of the machine tool is movably provided with a spline shaft, the outside of the spline shaft is sleeved with a gear engaged with the gear ring, and the outside of the spline shaft is sleeved with a protective shell connected with the sliding table.

[0008] In some embodiments, the inner wall of the protective shell is movably provided with a spline sleeve, the outside of the spline sleeve is movably sleeved with the spline shaft, the outside of the spline sleeve is provided with a plurality of blades, the outside of the protective shell is provided with an exhaust cylinder, the outside of the protective shell is provided with an adsorption shell, and the exhaust cylinder and the adsorption shell are communicated through the protective shell.

[0009] In some embodiments, the inside of the adsorption shell is movably provided with a moving frame, the inside of the moving frame is provided with an adsorption plate, the outside of the moving frame is provided with a circular groove, the inner wall of the circular groove is movably provided with a ball, a spring one is arranged between the ball and the circular groove, and the inside of the adsorption shell is provided with a clamping groove movably connected with the ball.

[0010] In some embodiments, the adjustable hair removing mechanism comprises an arc-shaped plate arranged on the sliding table, the inside of the arc-shaped plate is provided with an arc-shaped groove, the inside of the arc-shaped groove is movably provided with a double-inclined-surface arc-shaped block, the side of the turning tool is provided with a moving clamp one, and the outside of the moving clamp one is movably arranged on the inside of the arc-shaped groove.

[0011] In some embodiments, the inside of the arc-shaped groove is movably provided with a moving clamp two connected with a tungsten steel scraper, the inside of the arc-shaped groove is provided with two pairs of guide grooves, the moving clamp one and the moving clamp two are movably arranged in the inside of the corresponding guide grooves respectively, the inside of the arc-shaped groove is provided with a baffle, and a spring two is arranged between the baffle and the moving clamp two.

[0012] In some embodiments, the touch rod feedback mechanism comprises two side plates arranged on the outside of the turning tool, the two side plates are movably arranged on the inside of the moving clamp two, the inside of the two side plates is provided with a rotating rod rotatably arranged on the moving clamp two, and the outside of the rotating rod is sleeved with a worm wheel.

[0013] In some embodiments, the outside of the moving clamp two is provided with a mounting frame, the side of the mounting frame is rotatably provided with a worm rotatably engaged with the worm wheel, the side of the moving clamp two is provided with a fixing frame, and the side of the fixing frame is movably provided with a sleeve disc connected with the worm.

[0014] In some embodiments, the outside of the worm is provided with a clamping block one, the inside of the sleeve disc is movably provided with a clamping block two movably connected with the clamping block one, the outside of the sleeve disc is sleeved with a rotating plate, the outside of the sleeve disc is sleeved with a torsional spring connected with the rotating plate, and the top of the rotating plate is provided with an inclined block one.

[0015] In some embodiments, the top of the fixing frame is provided with two straight plates, a connecting rod is arranged between the two straight plates, a turnover plate is movably arranged on the outer side of the connecting rod, a contact pin is arranged on the top of the turnover plate, and an inclined block two is movably connected to an inclined block one arranged on the side of the turnover plate.

[0016] The present application has at least the following advantages:

[0017] 1. When the turning tool is used for turning the drill rod, the tungsten steel scraper is arranged at the subsequent process position of the turning tool, and the burr removal process can be immediately performed after turning, so that the process is simplified. Since the burr is not completely hardened after turning, it is more labor-saving and efficient to remove it at this time. The adjustable burr removal mechanism is connected with the sliding table in linkage, so that the tungsten steel scraper can be adjusted in position and angle synchronously when the sliding table drives the turning tool to move and adjust, thereby adapting to the burr removal requirements of drill rods of various specifications.

[0018] 2. The gear is driven to rotate by the gear ring, so that the plurality of blades are driven to rotate to generate negative pressure, and the burrs scraped by the tungsten steel scraper can be adsorbed on the adsorption plate, thereby effectively preventing the burrs from splashing and polluting. At the same time, the airflow generated by the exhaust cylinder directly blows to the turning tool processing area, so that the accumulated waste can be blown away in time, thereby avoiding the influence of the accumulated waste on the turning precision or the damage to the tool.

[0019] 3. The contact pin of the contact rod feedback mechanism is always attached to the outer surface of the drill rod. When hard objects that cannot be scraped are encountered, the contact rod feedback mechanism will immediately drive the scraper to flip and avoid, and at the same time trigger the stop warning, so that the abnormality can be quickly found and loss can be avoided, thereby ensuring the safety of the equipment and the continuity of the processing. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 It is a schematic diagram of the overall structure of the present application;

[0021] Figure 2 It is a schematic diagram of the structure of the rotating clamping disc, the turning tool and the tungsten steel scraper of the present application;

[0022] Figure 3 It is a schematic diagram of the cross-sectional structure of the arc-shaped plate of the present application;

[0023] Figure 4 It is a schematic diagram of the structure of the arc-shaped plate, the exhaust cylinder, the protective shell and the adsorption shell of the present application;

[0024] Figure 5 It is a schematic diagram of the cross-sectional structure of the moving frame of the present application;

[0025] Figure 6 It is Figure 5 It is an enlarged structural schematic diagram at A;

[0026] Figure 7 It is a schematic diagram of the structure of the double-inclined-surface arc-shaped block, the tungsten steel scraper and the contact rod feedback mechanism of the present application;

[0027] Figure 8 Structure diagram of side plate, stylus, fixed frame and turning tool of the present application;

[0028] Figure 9 Structure diagram of worm, side plate, inclined block one and inclined block two of the present application;

[0029] Figure 10 Structure diagram of tungsten steel scraper, worm wheel and mounting frame of the present application;

[0030] Figure 11 Structure diagram of rotating rod, inclined block one and inclined block two of the present application;

[0031] Figure 12 Structure diagram of worm, sleeve disc, torsion spring and rotating plate of the present application.

[0032] In the figure: 1, machine tool; 2, rotating clamping disc; 3, feeding mechanism; 4, slide rail; 5, slide table; 6, waste collecting mechanism; 61, gear ring; 62, gear; 63, spline shaft; 64, blade; 65, spline sleeve; 66, exhaust cylinder; 67, adsorption shell; 68, protective shell; 69, adsorption plate; 610, moving frame; 611, clamping groove; 612, circular groove; 613, spring one; 614, ball; 7, turning tool; 8, adjustable deburring mechanism; 81, arc plate; 82, double-inclined arc block; 83, arc groove; 84, moving clamp one; 85, moving clamp two; 86, baffle; 87, guide groove; 88, spring two; 9, tungsten steel scraper; 10, touch rod feedback mechanism; 101, stylus; 102, side plate; 103, inclined block one; 104, inclined block two; 105, fixed frame; 106, turnover plate; 107, connecting rod; 108, straight plate; 109, worm; 110, worm wheel; 111, mounting frame; 112, rotating rod; 113, sleeve disc; 114, torsion spring; 115, rotating plate; 116, clamping block one; 117, clamping block two. DETAILED DESCRIPTION

[0033] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0034] Embodiment 1: Please refer to Figures 1-12The application provides a technical scheme: a breaking hammer processing equipment, which comprises a machine tool 1, a rotating clamping disc 2, a feeding mechanism 3, a sliding rail 4 and a sliding table 5, the top of the sliding table 5 is movably provided with a turning tool 7, the top of the sliding table 5 is movably provided with a tungsten steel scraping tool 9, the sliding table 5 is provided with an adjustable burr removing mechanism 8, when the turning tool 7 is used to turn a drill rod, the adjustable burr removing mechanism 8 drives the tungsten steel scraping tool 9 to synchronously perform subsequent burr removing treatment, when the turning tool 7 is adjusted according to processing requirements, the tungsten steel scraping tool 9 can be adjusted through the mechanism, the sliding table 5 is provided with a waste collecting mechanism 6 for collecting waste generated by the tungsten steel scraping tool 9, and the sliding table 5 is provided with a touch rod feedback mechanism 10 for overturning the tungsten steel scraping tool 9 when the turning tool 7 jumps, so that the tungsten steel scraping tool 9 is prevented from being broken.

[0035] The waste collecting mechanism 6 comprises a gear ring 61 arranged on the outer side of the rotating clamping disc 2, a spline shaft 63 movably arranged on the side of the machine tool 1, a gear 62 arranged on the outer side of the spline shaft 63 and engaged with the gear ring 61, and a protective shell 68 connected with the sliding table 5 and arranged on the outer side of the spline shaft 63.

[0036] The inner wall of the protective shell 68 is rotationally provided with a spline sleeve 65, the spline sleeve 65 is movably arranged on the outer side of the spline shaft 63, a plurality of blades 64 are arranged on the outer side of the spline sleeve 65, an exhaust cylinder 66 is arranged on the outer side of the protective shell 68, an adsorption shell 67 is arranged on the outer side of the protective shell 68, and the exhaust cylinder 66 and the adsorption shell 67 are connected and communicated through the protective shell 68.

[0037] The inner side of the adsorption shell 67 is movably provided with a moving frame 610, the inner side of the moving frame 610 is provided with an adsorption plate 69, the outer side of the moving frame 610 is provided with a circular groove 612, the inner wall of the circular groove 612 is movably provided with a rolling ball 614, a spring 613 is arranged between the rolling ball 614 and the circular groove 612, the inner side of the adsorption shell 67 is provided with a clamping groove 611 movably connected with the rolling ball 614, and a sealing strip is filled between the adsorption shell 67 and the protective shell 68, so as to avoid high-speed airflow overflowing from the gap between the adsorption shell 67 and the protective shell 68, and to ensure the negative pressure collection efficiency;

[0038] The gear ring 61 on the outer side of the rotating clamping disc 2 is engaged with the gear 62 on the spline shaft 63 to drive, the protective shell 68 on the outer side of the spline shaft 63 forms a closed airflow channel, the spline sleeve 65 in the airflow channel drives the blades 64 to rotate to generate negative pressure, the exhaust cylinder 66 and the adsorption shell 67 connected with the protective shell 68 form circulating airflow to ensure directional adsorption of burrs, and the moving frame 610 and the adsorption plate 69 in the adsorption shell 67 are matched with the rolling ball 614 and the clamping groove 611 to realize quick mounting and dismounting, and the collection efficiency and cleaning convenience are considered;

[0039] Firstly, the drill rod is firmly fixed by rotating the clamping disc 2 and the feeding mechanism 3, the clamping disc 2 adopts a multi-claw linkage structure, which can adapt to drill rods of different diameters, and cooperates with the servo drive of the feeding mechanism 3 to ensure that the drill rod does not shake radially during machining, at this time, the sliding table 5 slides stably along the sliding rail 4, the turning tool 7 is used for turning the drill rod, and the clamping disc 2 drives the drill rod to rotate, the outer gear ring 61 rotates, drives the meshing gear 62 to rotate, and then drives the spline shaft 63 to rotate, the plurality of blades 64 on the spline shaft 63 rotate at high speed to generate directional airflow, the exhaust cylinder 66 blows the waste at the turning tool 7 to avoid the accumulation of iron filings on the machining surface to affect the turning precision, and reduce the wear of the tool caused by friction and overheating.

[0040] Embodiment 2: please refer to Figures 2-5 The present application provides a technical scheme: the adjustable hair removal mechanism 8 includes an arc-shaped plate 81 arranged on the sliding table 5, an arc-shaped groove 83 is formed in the inner side of the arc-shaped plate 81, a double-inclined arc-shaped block 82 is movably arranged in the inner side of the arc-shaped groove 83, the side of the turning tool 7 is arranged in the moving clamp one 84, and the outer side of the moving clamp one 84 is movably arranged in the inner side of the arc-shaped groove 83.

[0041] The inner side of the arc-shaped groove 83 movably arranges the moving clamp two 85 connected with the tungsten steel scraper 9, two pairs of guide grooves 87 are formed in the inner side of the arc-shaped groove 83, the moving clamp one 84 and the moving clamp two 85 are movably arranged in the inner side of the corresponding guide groove 87, and the inner side of the arc-shaped groove 83 is provided with a baffle 86, and the spring two 88 is arranged between the baffle 86 and the moving clamp two 85.

[0042] The double-inclined arc-shaped block 82 slides in the arc-shaped groove 83, the moving clamp connected with the turning tool 7 and the moving clamp connected with the tungsten steel scraper 9 move along the guide groove 87 respectively, and the guide groove 87 is in the shape of a T-shaped section, so that the adjustment direction is accurate, the spring two 88 between the baffle 86 and the moving clamp two 85 provides a reset force, so that the tool maintains a stable posture after adjustment, and the machining consistency is ensured.

[0043] Embodiment 3: please refer to Figures 8-12 The present application provides a technical scheme: the touch rod feedback mechanism 10 includes two side plates 102 arranged on the outer side of the turning tool 7, the two side plates 102 are movably arranged in the inner side of the moving clamp two 85, the inner sides of the two side plates 102 are provided with a rotating rod 112 rotatably arranged on the moving clamp two 85, and the outer side of the rotating rod 112 is sleeved with a worm wheel 110.

[0044] The outer side of the moving clamp two 85 is provided with a mounting bracket 111, the side of the mounting bracket 111 is rotatably provided with a worm gear 109 engaged with the worm wheel 110, the side of the moving clamp two 85 is provided with a fixed frame 105, and the side of the fixed frame 105 is movably provided with a sleeve disc 113 connected with the worm gear 109.

[0045] The outer side of the worm 109 is provided with a clamping block one 116, the inner side of the sleeve disc 113 is provided with a clamping block two 117 movably connected with the clamping block one 116, the outer side of the sleeve disc 113 is sleeved with a rotating plate 115, the outer side of the sleeve disc 113 is sleeved with a torsional spring 114 connected with the rotating plate 115, and the top of the rotating plate 115 is provided with an inclined block one 103.

[0046] The top of the fixing frame 105 is provided with two straight plates 108, the connecting rod 107 is arranged between the two straight plates 108, the outer side of the connecting rod 107 is movably provided with a turnover plate 106, the top of the turnover plate 106 is provided with a contact pin 101, and the side of the turnover plate 106 is provided with an inclined block two 104 movably connected with the inclined block one 103.

[0047] The side plate 102 is installed on the moving clamp through the rotating rod 112, the worm wheel 110 on the rotating rod 112 is engaged with the worm 109 to realize transmission and also has a self-locking function, so that the adjustment stability is enhanced, the clamping block on the outer side of the worm 109 cooperates with the clamping block in the sleeve disc 113 to transmit torque, the rotating plate 115 on the sleeve disc 113 is connected with the torsional spring 114 to provide a reset force, the turnover plate 106 on the fixing frame 105 is flexibly rotated through the connecting rod 107, and the linkage design of the contact pin 101 and the inclined blocks realizes rapid response in an abnormal state and protects key components.

[0048] Working principle: when the device is used, first, the drill rod to be clamped is fixed through the rotation of the clamping disc 2 and the feeding mechanism 3, at this time, the sliding table 5 slides on the sliding rail 4, the turning tool 7 turns the drill rod, at the same time, the rotation of the clamping disc 2 drives the gear ring 61 to rotate, the gear ring 61 drives the gear 62 in meshing to rotate, the gear 62 drives the internal spline shaft 63 to rotate, the spline shaft 63 drives the plurality of blades 64 on the outer surface to rotate, and the exhaust cylinder 66 blows the turning tool 7 to remove the turning waste on the outer surface of the turning tool 7;

[0049] When it is necessary to adjust the turning tool 7 and the tungsten steel scraper 9, at this time, the sliding table 5 moves on the sliding rail 4, thus driving the moving clamp one 84 and the turning tool 7 to slide in the arc-shaped groove 83, so that the moving clamp one 84 extrudes the double-inclined arc-shaped block 82 to slide in the arc-shaped groove 83, thus the inclined surface of the double-inclined arc-shaped block 82 extrudes the moving clamp two 85, and the moving clamp two 85 also extrudes the spring two 88 when being extruded, at this time, the moving clamp two 85 drives the tungsten steel scraper 9 to move through the side plate 102, thus driving the tungsten steel scraper 9 to move, and further enabling the turning tool 7 and the tungsten steel scraper 9 to cope with different drill rod turning;

[0050] At this time, the multiple blades 64 will absorb the burrs scraped off by the tungsten steel scraper 9 to the outer surface of the adsorption plate 69. When the adsorption plate 69 is full of burrs, the movable frame 610 can be pulled to press the ball 614 against the spring 1 613, so that the ball 614 moves out of the slot 611, and the movable frame 610 and the adsorption plate 69 are removed from the adsorption shell 67. After cleaning, they can be reinserted.

[0051] At this time, the stylus 101 will contact the outer surface of the drill rod. When an object that cannot be scraped off occurs, the stylus 101 will drive the flip plate 106 to flip around the connecting rod 107, thereby causing the side inclined block 2 104 to squeeze the inclined block 1 103, and the inclined block 103 will drive the rotating plate 115 to rotate around the sleeve 113, which will drive the torsion spring 114 to rotate. The sleeve 113 will drive the internal block 2 117 to squeeze the block 1 116, so that the block 2 117 drives the worm 109 to rotate, and the worm 109 will drive the meshing worm gear 110 to rotate, thereby causing the rotating rod 112 to rotate, and the rotating rod 112 will drive the side plate 102 on the outer surface to rotate inside the movable clamp 2 85, thereby preventing the turning tool 7 from breaking.

[0052] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.

[0053] While the embodiments of the present invention have been shown and described, it will be apparent to those skilled in the art that various changes, modifications, substitutions, and alterations can be made to the embodiments without departing from the principles and spirit of the invention.

Claims

1. A breaking hammer processing equipment, comprising a machine tool (1), a rotary clamping disc (2), a feeding mechanism (3), a sliding rail (4) and a sliding table (5), a turning tool (7) is movably arranged on the top of the sliding table (5), characterized in that: The top of the sliding table (5) movably provided with a tungsten steel scraper (9), the sliding table (5) is provided with an adjustable hair removal mechanism (8), when the turning tool (7) is turning the drill rod, the adjustable hair removal mechanism (8) drives the tungsten steel scraper (9) to carry out subsequent hair removal processing, when the turning tool (7) is adjusted according to the processing requirement, the tungsten steel scraper (9) can be adjusted through the mechanism, the sliding table (5) is provided with a waste collecting mechanism (6) for collecting the waste under the tungsten steel scraper (9), the sliding table (5) is provided with a touch rod feedback mechanism (10) for turning over the tungsten steel scraper (9) when the turning tool (7) jumps, avoiding breaking; The adjustable hair removal mechanism (8) comprises an arc-shaped plate (81) provided on the sliding table (5), an arc-shaped groove (83) is formed in the inner side of the arc-shaped plate (81), a double-inclined-surface arc-shaped block (82) is movably arranged in the inner side of the arc-shaped groove (83), and the side of the turning tool (7) is arranged in a moving clamp (84), and the outer side of the moving clamp (84) is movably arranged in the inner side of the arc-shaped groove (83); The inner side of the arc-shaped groove (83) movably arranged a moving clamp (85) connected with the tungsten steel scraper (9), the inner side of the arc-shaped groove (83) is provided with two pairs of guide grooves (87), the moving clamp (84) and the moving clamp (85) are movably arranged in the inner side of the corresponding guide groove (87), and the inner side of the arc-shaped groove (83) is provided with a baffle (86), and the baffle (86) and the moving clamp (85) are provided with a spring (88) therebetween; The touch rod feedback mechanism (10) comprises two side plates (102) arranged on the outer side of the turning tool (7), the two side plates (102) are movably arranged in the inner side of the moving clamp (85), the inner sides of the two side plates (102) are provided with rotating rods (112) rotatably arranged on the moving clamp (85), and the outer side of the rotating rod (112) is sleeved with a worm wheel (110); The outer side of the moving clamp (85) is provided with a mounting frame (111), the side of the mounting frame (111) is rotatably provided with a worm (109) engaged with the worm wheel (110), the side of the moving clamp (85) is provided with a fixed frame (105), and the side of the fixed frame (105) is movably provided with a sleeve disc (113) connected with the worm (109); The outer side of the worm (109) is provided with a clamping block (116), the inner side of the sleeve disc (113) is provided with a clamping block (117) movably connected with the clamping block (116), the outer side of the sleeve disc (113) is sleeved with a rotating plate (115), the outer side of the sleeve disc (113) is sleeved with a torsional spring (114) connected with the rotating plate (115), and the top of the rotating plate (115) is provided with an inclined block (103). The top of the fixing frame (105) is provided with two straight plates (108), a connecting rod (107) is arranged between the two straight plates (108), the outer side of the connecting rod (107) is movably provided with a turnover plate (106), the top of the turnover plate (106) is provided with a contact pin (101), and the side of the turnover plate (106) is provided with a second inclined block (104) movably connected with a first inclined block (103).

2. The breaking hammer processing apparatus of claim 1, wherein: The waste collecting mechanism (6) comprises a gear ring (61) sleeved outside the rotary clamping disc (2), the machine tool (1) is movably provided with a spline shaft (63) on the side, the outer side of the spline shaft (63) is sleeved with a gear (62) engaged with the gear ring (61), and the outer side of the spline shaft (63) is sleeved with a protective shell (68) connected with the sliding table (5).

3. The breaking hammer processing apparatus of claim 2, wherein: The inner wall of the protective shell (68) is rotatably provided with a spline sleeve (65), the spline sleeve (65) is movably sleeved outside the spline shaft (63), the outer side of the spline sleeve (65) is provided with a plurality of blades (64), the outer side of the protective shell (68) is provided with an exhaust cylinder (66), the outer side of the protective shell (68) is provided with an adsorption shell (67), and the exhaust cylinder (66) and the adsorption shell (67) are connected in communication through the protective shell (68).

4. The breaking hammer processing apparatus of claim 3, wherein: The inner side of the adsorption shell (67) is movably provided with a moving frame (610), the inner side of the moving frame (610) is provided with an adsorption plate (69), the outer side of the moving frame (610) is provided with a circular groove (612), the inner wall of the circular groove (612) is movably provided with a ball (614), a spring (613) is arranged between the ball (614) and the circular groove (612), and the inner side of the adsorption shell (67) is provided with a clamping groove (611) movably connected with the ball (614).

Citation Information

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