Sawing and drilling integrated machine tool equipment for machining gas cylinder nozzle
By introducing strong magnets and rubber layers to attract iron filings in the gas cylinder nozzle processing equipment, and combining them with power components and air compressors, the automatic collection and compression of iron filings is achieved. This solves the problems of inconvenient handling of iron filings and safety hazards during drilling, and improves the operational safety and cleaning efficiency of the equipment.
Patent Information
- Application Number
- CN202512042280.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-31
- Publication Date
- 2026-02-13
AI Technical Summary
In the current gas cylinder nozzle processing equipment, iron filings need to be collected and cleaned manually during the drilling process, and the sharp iron filings may cut workers, making the operation inconvenient.
An integrated sawing and drilling machine tool was designed, comprising a first collection component, a second collection component, and a third collection component. It uses a strong magnet and a rubber layer to attract iron filings, and drives the support to move through a power component. Combined with an air compressor and a metal threaded conveyor shaft, it realizes the automatic collection and compression of iron filings.
It effectively avoids the risk of injury from scattered iron filings, reduces the cleaning frequency, improves the stability and safety of the equipment, and saves space for waste disposal.
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Figure CN121514965A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of gas cylinder processing, and particularly relates to a saw-drilling integrated machine tool device for gas cylinder nozzle processing. BACKGROUND
[0002] A gas cylinder is a closed container for storing and transporting high-pressure gas, such as oxygen, nitrogen, hydrogen, liquefied petroleum gas, etc., which is usually made of high-strength metal or composite material, preferably high-temperature softening metal blank, and is manufactured as a seamless steel pipe. Before the installation of the nozzle, the end of the gas cylinder needs to be processed by laser or sawing to the specified length, and the burrs on the end face need to be removed. Finally, the end for installing the nozzle is drilled and slotted by a lathe. This work is usually operated by a saw-drilling integrated machine.
[0003] However, it should be noted that the iron filings generated by drilling will actually fall directly inside the machine tool, and some iron filings may be ejected outward. Therefore, during the drilling process, the worker needs to be away from the equipment, and the cutting and drilling quality needs to be checked after processing. Finally, the iron filings that fall will be uniformly treated by the worker, usually according to the processing intensity to customize the cleaning period. However, since the iron filings are sharp, it is extremely likely to scratch the worker during the treatment process, thereby causing the inconvenience of the existing equipment operation. SUMMARY
[0004] To solve the problems in the background art, the application provides a saw-drilling integrated machine tool device for gas cylinder nozzle processing, which solves the problem that the iron filings generated during drilling and cutting need to be collected and cleaned by workers, and the sharp iron filings may scratch the workers during processing.
[0005] To achieve the above-mentioned purpose, the application provides the following technical scheme: a saw-drilling integrated machine tool device for gas cylinder nozzle processing, comprising a saw-drilling integrated machine, wherein a machine table is arranged on the saw-drilling integrated machine, and a first collecting assembly is mounted on the machine table through two groups of symmetrical adjusters.
[0006] A second collecting assembly is mounted in the middle of the machine table, and a third collecting assembly is mounted on the side of the saw-drilling integrated machine.
[0007] One of the first collecting assemblies comprises a bearing box arranged on the adjuster, a gas bag is mounted in the bearing box, a group of strong magnets is arranged on the gas bag, and the two ends of the strong magnets are connected with the two ends of the gas bag.
[0008] A support is symmetrically and slidingly connected to the two sides of the bearing box, one roller and two auxiliary shafts are rotatably mounted on the support.
[0009] The two auxiliary shafts are located on the two sides of the roller and are rolled on the rubber layer, and the roller is located at the bottom of the rubber layer.
[0010] The top end of the bearing box is provided with a power assembly, which can drive the support to reciprocate on the bearing box.
[0011] Preferably, the plurality of strong magnets are connected by nylon cloth, and a plastic plate is attached to each strong magnet.
[0012] Preferably, the first collecting assembly further comprises air pipes symmetrically arranged on both sides of the inside of the bearing box, the air pipes are in communication with the air compressor, a plurality of guide holes are equidistantly arranged on the air pipes, and the guide holes can guide the downward inclined flow of air.
[0013] Preferably, the rollers can support the rubber layer and a part of the strong magnets to be outward, respectively, the upper and lower ends of the rubber layer are riveted to the bearing box, and the left and right sides of the rubber layer are tightly attached to the inner wall of the bearing box.
[0014] Preferably, one of the adjusters comprises a sleeve and a threaded rod one, and the threaded rod one is screwedly arranged in the sleeve.
[0015] Preferably, each of the two long and short adjusters is a group, and each of the two groups of symmetric adjusters can support the bearing box.
[0016] Preferably, the top end of the long threaded rod one is hingedly and slidingly connected to the bottom of the bearing box, and the short threaded rod one is only hingedly connected to the inside of the bearing box.
[0017] Preferably, the power assembly comprises a double-shaft motor fixed to the top of the bearing box, two threaded rods two are connected to the two ends of the output shaft of the double-shaft motor through bevel gear sets, respectively, the end portions of the threaded rods two are rotatably arranged on the side surface of the bearing box, and the support is screwedly arranged on the threaded rods two.
[0018] Preferably, the second collecting assembly comprises a motor two fixed to the side surface of the machine table, the inside of the machine table is provided with three conveyors, the conveyors are composed of gears and metal threaded conveying shafts, the metal threaded conveying shafts are rotatably installed in the inside of the machine table, each of the gears is connected by a chain, and the output shaft of the motor two is in transmission connection with one of the gears.
[0019] The threads of every two adjacent metal threaded conveying shafts are staggered.
[0020] Preferably, the third collecting assembly comprises a collecting box in communication with the inside of the machine table, the inside of the collecting box is provided with a plurality of spring telescopic rods, the end portions of the spring telescopic rods support baffles, and the baffles block the communication of the collecting box.
[0021] Compared with the prior art, the present application has the following beneficial effects:
[0022] The application cooperates the structures of the first collecting assembly and the second collecting assembly, when the iron filings pass through the rubber layer, the iron filings are guided and adsorbed on the rubber layer by the magnetic force generated by the strong magnet, the possibility of hurting people by the iron filings is avoided, the situation that the iron filings are separated from the rubber layer due to the collision and the magnetic force cannot act on the iron filings is reduced, the support is reciprocatingly moved by the power assembly, the rubber layer is supported by the roller and is far away from the strong magnet, so that the part of the iron filings on the rubber layer is not affected by the magnetic force and falls on the second collecting assembly, since the roller can only move in the axial direction, the auxiliary shaft pulls the rubber layer on the roller, the cut on the rubber layer caused by the iron filings is extended, the iron filings are forced to separate from the cut, and the situation that the iron filings are mixed on the rubber layer is reduced.
[0023] The application cooperates the structures of the second collecting assembly and the third collecting assembly, after the iron filings fall in the machine table, the metal screw conveying shaft can be rotated to convey the iron filings to the side close to the baffle, the iron filings are effectively compressed through the extrusion of the iron filings, finally the spring telescopic rod is pushed to move the baffle to expose the communication between the collecting box and the machine table, the iron filings in blocks can fall from the communication, the space occupied by the waste materials is effectively saved, the subsequent processing is facilitated, and the cleaning period of the device is prolonged. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 It is a first schematic view of the appearance structure of the application;
[0025] Figure 2 It is a second schematic view of the appearance structure of the application;
[0026] Figure 3 It is a schematic view of the structure cooperation of the first collecting assembly and the power assembly of the application;
[0027] Figure 4 It is a schematic view of the structure cooperation of the first collecting assembly and the power assembly of the application; Figure 1 It is an enlarged schematic view of A in the application
[0028] Figure 5 It is a schematic view of the structure cooperation of the bearing box and the adjuster of the application;
[0029] Figure 6 It is a schematic view of the internal structure of the bearing box of the application;
[0030] Figure 7 It is a schematic view of the structure cooperation of the support and the structure thereon of the application;
[0031] Figure 8 It is a sectional front view of the internal structure of the bearing box of the application;
[0032] Figure 9 It is a schematic view of the partial structure disassembly of the first collecting assembly of the application;
[0033] Figure 10The front view of the carrying box after being folded by 45 degrees;
[0034] Figure 11 The schematic view of the structure cooperation between the first collecting assembly and the second collecting assembly of the application;
[0035] Figure 12 The schematic view of the structure cooperation between the machine and the conveyor of the application;
[0036] Figure 13 The schematic view of the structure cooperation between the conveyor and the third collecting assembly of the application.
[0037] In the figure: 1, saw-drill integrated machine; 11, gas cylinder carrying table; 2, machine table; 3, adjuster; 31, sleeve; 32, thread screw one; 4, first collecting assembly; 41, carrying box; 42, rubber layer; 43, air bag; 44, strong magnet; 45, plastic plate; 46, roller; 47, auxiliary shaft; 48, bracket; 49, air pipe; 40, guide hole; 5, power assembly; 51, double-shaft motor; 52, bevel gear set; 53, thread rod two; 6, second collecting assembly; 61, motor two; 62, conveyor; 621, gear; 622, metal thread conveying shaft; 63, chain; 7, third collecting assembly; 71, collecting box; 72, spring telescopic rod; 73, baffle. DETAILED DESCRIPTION
[0038] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the application.
[0039] As Figures 1 to 13 shown, the application provides a saw-drill integrated machine tool device for gas cylinder nozzle processing, which comprises a saw-drill integrated machine 1, a machine table 2 arranged on the saw-drill integrated machine 1, and a first collecting assembly 4 installed on the machine table 2 through two groups of symmetrical adjusters 3;
[0040] A second collecting assembly 6 is installed in the middle of the machine table 2, and a third collecting assembly 7 is installed on the side of the saw-drill integrated machine 1;
[0041] One of the first collecting assemblies 4 comprises a carrying box 41 arranged on the adjuster 3, an air bag 43 installed inside the carrying box 41, a group of strong magnets 44 arranged on the air bag 43, and the two ends of the strong magnets 44 connected with the two ends of the air bag 43;
[0042] The roller shaft 46 can support the rubber layer 42 and part of the strong magnet 44 to move outward respectively, the upper and lower ends of the rubber layer 42 are riveted with the bearing box 41, and the left and right sides of the rubber layer 42 are tightly attached to the inner wall of the bearing box 41.
[0043] The plurality of strong magnets 44 are connected through nylon cloth, and a plastic plate 45 is attached to each strong magnet 44.
[0044] The bearing box 41 is symmetrically and slidingly connected with the bracket 48 on both sides, and the bracket 48 is rotatably connected with a roller shaft 46 and two auxiliary shafts 47 respectively;
[0045] The two auxiliary shafts 47 are located on both sides of the roller shaft 46 and are rolled on the rubber layer 42, and the roller shaft 46 is located at the bottom of the rubber layer 42.
[0046] The top end of the bearing box 41 is provided with a power assembly 5, and the power assembly 5 can drive the bracket 48 to reciprocate on the bearing box 41.
[0047] By using the above scheme: it can be seen from the figure that the two bearing boxes 41 are symmetrically arranged, so when the saw-drill integrated machine 1 processes the gas cylinder, the area of the rubber layer 42 contacting the iron filings is increased at the same time, when the iron filings pass through or directly contact the rubber layer 42, they will be guided by the magnetic force generated by the strong magnet 44 at the bottom of the rubber layer 42, and finally be adsorbed on the rubber layer 42, thereby avoiding the possibility of iron filings scattering and hurting people, and collecting the iron filings to a certain extent;
[0048] When the saw-drill integrated machine 1 works, the bracket 48 is driven by the power assembly 5 to move reciprocally;
[0049] During this period, the bracket 48 drives the roller shaft 46 and the auxiliary shaft 47 on it to move, when the roller shaft 46 passes through the part of the rubber layer 42 adhering to the iron filings, it supports the rubber layer 42 and the strong magnet 44 to move away from each other, so that the iron filings in this part will not be affected by the magnetic force any more, and will fall on the second collecting assembly 6 for further collection;
[0050] And due to the influence of the material of the rubber layer 42, the iron filings will actually be stuck on the rubber layer 42, which will directly reduce the situation that the iron filings leave the rubber layer 42 due to collision, the magnetic force cannot act on the iron filings, thereby the iron filings cannot be collected, and the stability of the device is further enhanced;
[0051] It should be noted that since the positions of the roller shaft 46 and the auxiliary shaft 47 are fixed by the bracket 48, they can only move axially, so the auxiliary shaft 47 will pull the rubber layer 42 on the roller shaft 46, making the cut on the rubber layer 42 caused by the iron filings extend, and the iron filings are forced to fall on the second collecting assembly 6, so there is no need to worry about the situation that the iron filings are mixed in the rubber layer 42;
[0052] In actual work, the air bag 43 can always support the strong magnet 44 to adhere to the rubber layer 42, so that the magnetic force of the strong magnet 44 can better adsorb the iron filings, and when the roller 46 moves from top to bottom and makes the upper iron filings fall, it will be adsorbed by the lower strong magnet 44, but since the roller 46 is always in a moving state, the lower iron filings will eventually be guided to fall by the roller 46, so there is no need to worry about the situation that the iron filings cannot fall off the rubber layer 42;
[0053] As mentioned above, the air bag 43 supports the structure thereon and is limited to be in a planar state by the strong magnet 44, but the air bag 43 is flexible Figure 7 As can be seen from FIG. 6, if the auxiliary shaft 47 rolls on a larger iron filing, the flexibility of the air bag 43 can actually make the rubber layer 42 present a concave state, so that the auxiliary shaft 47 will not be stuck;
[0054] In order to avoid the iron filings from piercing the rubber layer 42 and hitting the strong magnet 44, causing the strong magnet 44 to break or scratch, the strong magnet 44 is further provided with a plastic plate 45, so as to prevent the above-mentioned situation from occurring, further improve the durability of the device, and prolong the maintenance period of the device, so that the subsequent use of the device is more worry-free.
[0055] As can be seen from FIG. 6, if the auxiliary shaft 47 rolls on a larger iron filing, the flexibility of the air bag 43 can actually make the rubber layer 42 present a concave state, so that the auxiliary shaft 47 will not be stuck; Figure 1 As can be seen from FIG. 6, if the auxiliary shaft 47 rolls on a larger iron filing, the flexibility of the air bag 43 can actually make the rubber layer 42 present a concave state, so that the auxiliary shaft 47 will not be stuck; Figure 4 As can be seen from FIG. 6, if the auxiliary shaft 47 rolls on a larger iron filing, the flexibility of the air bag 43 can actually make the rubber layer 42 present a concave state, so that the auxiliary shaft 47 will not be stuck;
[0056] As can be seen from FIG. 6, if the auxiliary shaft 47 rolls on a larger iron filing, the flexibility of the air bag 43 can actually make the rubber layer 42 present a concave state, so that the auxiliary shaft 47 will not be stuck; Figures 1-13 As can be seen from FIG. 6, if the auxiliary shaft 47 rolls on a larger iron filing, the flexibility of the air bag 43 can actually make the rubber layer 42 present a concave state, so that the auxiliary shaft 47 will not be stuck;
[0057] With the above scheme: as can be seen from FIG. 6, if the auxiliary shaft 47 rolls on a larger iron filing, the flexibility of the air bag 43 can actually make the rubber layer 42 present a concave state, so that the auxiliary shaft 47 will not be stuck; Figure 9 As can be seen from FIG. 6, if the auxiliary shaft 47 rolls on a larger iron filing, the flexibility of the air bag 43 can actually make the rubber layer 42 present a concave state, so that the auxiliary shaft 47 will not be stuck;
[0058] As can be seen from FIG. 6, if the auxiliary shaft 47 rolls on a larger iron filing, the flexibility of the air bag 43 can actually make the rubber layer 42 present a concave state, so that the auxiliary shaft 47 will not be stuck; Figures 1-12As shown, the power assembly 5 includes a double-shaft motor 51 fixed on the top of the bearing box 41, the two ends of the output shaft of the double-shaft motor 51 are connected with the threaded rod two 53 through the bevel gear set 52 respectively, the end of the threaded rod two 53 is rotatably arranged on the side of the bearing box 41, and the bracket 48 is threadedly sleeved on the threaded rod two 53.
[0059] By adopting the above scheme, when the device is started, the double-shaft motor 51 drives the threaded rod two 53 to rotate through the two groups of bevel gear sets 52, since the bracket 48 is only movably clamped on the bearing box 41, the bracket 48 can move through the clamping groove arranged on the bearing box 41 at this time, and the power conversion is performed through the bevel gear set 52, so that when the auxiliary shaft 47 encounters a large amount of iron filings, the power transmission will not be weakened too much, thereby the large-volume iron filings can be crossed, and the smoothness and durability of the device are further improved.
[0060] As shown in Figure 2 and Figure 5 One of the adjusters 3 includes a sleeve 31 and a threaded rod one 32, and the threaded rod one 32 is threadedly arranged in the sleeve 31.
[0061] Every two long and short adjusters 3 form a group, and every two groups of symmetrical adjusters 3 can support the bearing box 41.
[0062] The top end of the long threaded rod one 32 is hingedly and slidably clamped on the bottom of the bearing box 41, and the short threaded rod one 32 is only hingedly arranged in the bearing box 41.
[0063] By adopting the above scheme, when the angle of the bearing box 41 needs to be adjusted to adapt to bottle mouths of different sizes, the angle of the bearing box 41 can be adjusted by rotating the two longer threaded rods one 32, and the purpose of lowering or raising the height of the bearing box 41 can be achieved by simultaneously rotating each threaded rod one 32, so that the applicability of the device is improved.
[0064] It should be noted that the adjuster 3 is not the only choice, and a more preferred scheme such as a hydraulic rod can be adopted.
[0065] As shown in Figures 1-13 The second collecting assembly 6 includes a motor two 61 fixed on the side of the machine table 2, the machine table 2 is internally provided with three conveyors 62, the conveyor 62 is composed of a gear 621 and a metal threaded conveying shaft 622, the metal threaded conveying shaft 622 is rotatably arranged in the machine table 2, each gear 621 is commonly connected by a chain 63, and the output shaft of the motor two 61 is in transmission connection with one of the gears 621.
[0066] The third collecting assembly 7 comprises a collecting box 71 in communication with the inside of the machine table 2, and a set of spring telescopic rods 72 are arranged in the inside of the collecting box 71, and the end of the spring telescopic rods 72 is supported by a baffle 73, and the baffle 73 blocks the communication of the collecting box 71.
[0067] The thread pieces of every two adjacent metal threaded conveying shafts 622 are staggered with each other.
[0068] By the above scheme: the output shaft of the motor 61 drives one of the gears 621 to rotate, and since each gear 621 is connected through a chain 63, the remaining gears 621 rotate simultaneously and in the same direction, and the iron filings falling in the inside of the machine table 2 can be conveyed to the side close to the baffle 73 by the metal threaded conveying shaft 622 rotating and compressed.
[0069] The metal threaded conveying shaft 622 continuously conveys the iron filings to the side of the collecting box 71, and through the extrusion of the iron filings layer by layer, the iron filings can be effectively compressed and finally push the compression spring telescopic rod 72 to make the baffle 73 move to expose the communication between the collecting box 71 and the machine table 2, and the iron filings in blocks can fall from here;
[0070] This can effectively save the space occupied by the waste treatment, facilitate the subsequent treatment, and prolong the interval time of cleaning the device itself.
[0071] The working principle and use process of the present application are as follows:
[0072] The saw-drill integrated machine 1 is started preferentially, and when the iron filings pass through or directly contact the rubber layer 42, since the air bag 43 can always support the strong magnet 44 to adhere to the rubber layer 42, the magnetic force generated by the strong magnet 44 can guide the iron filings to be adsorbed on the rubber layer 42;
[0073] During this period, the double-shaft motor 51 drives the threaded rod two 53 to rotate through the two sets of bevel gear sets 52, the support 48 can move through the clamping groove arranged on the bearing box 41, the roller 46 and the auxiliary shaft 47 on it move synchronously, and when the roller 46 passes through the rubber layer 42, it can support the rubber layer 42 and the strong magnet 44 to move away from each other, so that the part of the iron filings will not be affected by the magnetic force and fall on the second collecting assembly 6;
[0074] When the air compressor discharges air through the air pipe 49, the air is guided by the guide hole 40 to blow the iron filings downward, and the speed of the iron filings moving downward is increased, so that there are not too many iron filings accumulated on the rubber layer 42;
[0075] Since each gear 621 is connected by the chain 63, the motor 61 can drive all the gears 621 to rotate in the same direction. After the iron filings fall into the machine 2, the rotating metal thread conveying shaft 622 conveys them to the side close to the baffle 73. After being squeezed by layers of iron filings, the iron filings can be effectively compressed and finally push the compression spring telescopic rod 72, so that the baffle 73 moves to expose the communication between the collection box 71 and the machine 2, and the iron filings in blocks can fall from there.
[0076] It should be noted that the relational terms herein such as first and second and the like are used solely to distinguish one from another entity or action without necessarily requiring or implying any actual relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.
[0077] Although embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, alternatives, and variations can be made in the embodiments without departing from the spirit and scope of the present application as defined by the appended claims and their equivalents.
Claims
1. A sawing and drilling integrated machine tool for processing gas cylinder nozzles, comprising a sawing and drilling integrated machine (1), characterized in that: The saw-drill integrated machine (1) is equipped with a machine platform (2), and the machine platform (2) is equipped with a first collection component (4) through two sets of symmetrical adjusters (3). A second collection component (6) is installed in the middle of the machine platform (2), and a third collection component (7) is installed on the side of the saw-drill integrated machine (1). One of the first collection components (4) includes a carrier box (41) disposed on the regulator (3), an airbag (43) is installed inside the carrier box (41), and a set of strong magnets (44) are laid on the airbag (43), with the two ends of the strong magnets (44) connected to the two ends of the airbag (43). The carrier box (41) is symmetrically and slidably connected to the brackets (48) on both sides. A roller (46) and two auxiliary shafts (47) are rotatably mounted on the brackets (48). The two auxiliary shafts (47) are located on both sides of the roller (46) and are rolled on the rubber layer (42), the roller (46) being located at the bottom of the rubber layer (42); The top of the carrier box (41) is provided with a power component (5), which can drive the bracket (48) to move back and forth on the carrier box (41).
2. The integrated sawing and drilling machine tool for processing gas cylinder nozzles according to claim 1, characterized in that: Several of the strong magnets (44) are connected by nylon cloth, and a plastic plate (45) is attached to each strong magnet (44).
3. The integrated sawing and drilling machine tool for processing gas cylinder nozzles according to claim 1, characterized in that: The first collection component (4) also includes air pipes (49) symmetrically arranged on both sides inside the carrier box (41). The air pipes (49) can be connected to an air compressor. A set of guide holes (40) are equidistantly arranged on the air pipes (49). The guide holes (40) can guide the air to flow downwards at an angle.
4. The integrated sawing and drilling machine tool for processing gas cylinder nozzles according to claim 1, characterized in that: The roller (46) can support the rubber layer (42) and a part of the strong magnet (44) outwards respectively. The upper and lower ends of the rubber layer (42) are riveted to the carrier box (41), and the left and right sides of the rubber layer (42) are tightly attached to the inner wall of the carrier box (41).
5. The integrated sawing and drilling machine tool for processing gas cylinder nozzles according to claim 1, characterized in that: One of the regulators (3) includes a sleeve (31) and a threaded screw (32), the threaded screw (32) being threaded inside the sleeve (31).
6. The integrated sawing and drilling machine tool for processing gas cylinder nozzles according to claim 5, characterized in that: Each pair of regulators (3), one long and one short, forms a group, and each pair of symmetrical regulators (3) can support the carrier box (41).
7. The integrated sawing and drilling machine tool for processing gas cylinder nozzles according to claim 6, characterized in that: The top end of the long threaded screw (32) is hinged and slidably engaged with the bottom of the carrier box (41), while the short threaded screw (32) is only hinged to the inside of the carrier box (41).
8. The integrated sawing and drilling machine tool for processing gas cylinder nozzles according to claim 1, characterized in that: The power assembly (5) includes a dual-axis motor (51) fixed to the top of the carrier box (41). The two ends of the output shaft of the dual-axis motor (51) are respectively connected to threaded rods (53) through bevel gear sets (52). The ends of the threaded rods (53) are rotatably disposed on the side of the carrier box (41). The bracket (48) is threaded onto the threaded rods (53).
9. The integrated sawing and drilling machine tool for processing gas cylinder nozzles according to claim 1, characterized in that: The second collection component (6) includes a second motor (61) fixed to the side of the machine base (2). The machine base (2) is equipped with three conveyors (62). Each conveyor (62) is composed of a gear (621) and a metal threaded conveying shaft (622). The metal threaded conveying shaft (622) is rotatably installed inside the machine base (2). Each gear (621) is connected by a chain (63). The output shaft of the second motor (61) is connected to one of the gears (621) in a transmission connection. The threaded plates of each pair of adjacent metal threaded conveyor shafts (622) are interlaced.
10. The integrated sawing and drilling machine tool for processing gas cylinder nozzles according to claim 9, characterized in that: The third collection component (7) includes a collection box (71) that communicates with the inside of the machine (2). A set of spring telescopic rods (72) are provided inside the collection box (71). A baffle (73) is supported at the end of the spring telescopic rods (72) and the baffle (73) blocks the communication of the collection box (71).