Generator convenient to install oilstone

By designing a collaborative component structure, the problems of carbon brush wear and dust pollution caused by generator slip ring corrosion were solved, enabling rapid installation and fixing of oilstones or carbon brushes, simplifying the installation process, and improving the generator's operating efficiency.

CN121840977APending Publication Date: 2026-04-10GUIZHOU WUJIANG HYDROPOWER DEV +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
GUIZHOU WUJIANG HYDROPOWER DEV
Filing Date
2024-01-30
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

The existing generator has severe rust on the slip rings, which leads to severe wear of the carbon brushes, resulting in dust pollution. In addition, the installation of the oilstone is inconvenient and requires a cumbersome bolt fixing process.

Method used

A structure comprising a body component, a functional component, a trigger component, a clamping component, an impact-receiving component, a receiving component, and a conversion component is designed. Through the synergistic effect of these components, the quick installation and fixation of an oilstone or carbon brush can be achieved.

Benefits of technology

It enables rapid installation of oilstones or carbon brushes, reduces dust pollution, simplifies the installation process, and improves the operating efficiency of the generator.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of generators, in particular to a generator convenient for oilstone installation, comprising: a main body component including a body assembly, a functional assembly arranged on the body assembly, a trigger assembly arranged in the functional assembly, and a clamping assembly arranged in the functional assembly; the transmission component comprises a hit assembly arranged in the trigger assembly, a receiving assembly arranged in the hit assembly and a conversion assembly connected with the receiving assembly, and the trigger assembly can transmit power to the hit assembly after being subjected to acting force applied by an oilstone or a carbon brush; the hit assembly can abut against the receiving assembly to move in the moving process, at the moment, the receiving assembly pushes the oilstone or the carbon brush to move towards the position of the body assembly, and therefore it can be ensured that the oilstone or the carbon brush can make contact with the receiving assembly, and the conversion assembly can convert acting force of translation into rotating acting force and transmit the rotating acting force to the clamping assembly; and then the oilstone or the carbon brush is fixed through the clamping assembly.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of generator technology, and particularly relates to a generator facilitating installation of oilstone. BACKGROUND

[0002] Due to less starting time of the generator and humid environment, the slip ring is seriously corroded, and due to the shielding of the bracket, the slip ring is not easy to be thoroughly rusted before each start, so that the corroded slip ring will cause severe wear of the carbon brush when the unit is started, the carbon brush is quickly worn out, and a large amount of carbon powder and smoke dust is generated, which pollutes the environment of the generator layer, and most importantly, causes the rotor insulation to decrease.

[0003] Therefore, the oilstone is polished to the size of the carbon brush, and the oilstone is used to grind the slip ring when the unit is idling and baking insulation, and a large amount of dust and smoke dust is not generated during grinding, and a small amount of grinding debris generated can be cleaned when measuring the rotor insulation after idling, but the installation of the carbon brush on the motor mostly adopts the method that the carbon brush is placed in the carbon brush box, and then a plurality of bolts are used to fix the carbon brush by the staff, which is extremely troublesome. SUMMARY

[0004] In view of the above or the existing problems in the prior art that the oilstone is inconvenient to install, the present application is proposed.

[0005] Therefore, the purpose of the present application is to provide a generator facilitating installation of oilstone.

[0006] To solve the above technical problems, the present application provides the following technical scheme: comprising,

[0007] The main component comprises a body assembly, a functional assembly provided on the body assembly, a trigger assembly provided in the functional assembly, and a clamping assembly provided in the functional assembly;

[0008] The transmission component comprises a receiving assembly provided in the trigger assembly, a receiving assembly provided in the receiving assembly, and a conversion assembly connected with the receiving assembly.

[0009] As a preferred scheme of the generator facilitating installation of oilstone of the present application, wherein: the body assembly comprises a support table, a slip ring provided on the support table, and a mounting rack provided on the support table.

[0010] As a preferred scheme of the generator facilitating installation of oilstone of the present application, wherein: the functional assembly comprises a device cavity provided in the mounting rack, an adaptive slot provided on the top of the mounting rack, an output slot provided on the mounting rack, a limiting slot provided on the side of the mounting rack, and a T-shaped slot provided on the inner wall of the mounting rack.

[0011] As a preferred embodiment of the generator of the present invention that facilitates the installation of an oilstone, the triggering component includes a shaft disposed in the adapter groove, a pressure rod disposed outside the shaft, and a slot opened on the pressure rod.

[0012] As a preferred embodiment of the generator for easy installation of oilstones according to the present invention, the clamping assembly includes a clamping plate disposed in the T-shaped groove, a sliding rod connected to the clamping plate, an inclined block disposed in the T-shaped groove, a locking groove opened on the side of the inclined block, and a margin groove opened on the inclined surface of the inclined block.

[0013] The inclined block is connected to the clamping plate.

[0014] As a preferred embodiment of the generator of the present invention that facilitates the installation of an oilstone, the impact-receiving component includes a receiving rod disposed in the slot, a sliding frame disposed at the end of the receiving rod, a limiting frame disposed outside the sliding frame, and an abutment block slidably connected to the side of the limiting frame.

[0015] The contact block is connected to the sliding frame.

[0016] As a preferred embodiment of the generator for easy installation of an oilstone according to the present invention, the receiving component includes an irregularly shaped rod disposed on the side of the limiting frame, a return spring connected to the irregularly shaped rod and the sliding frame, and a lever disposed outside the irregularly shaped rod.

[0017] As a preferred embodiment of the generator of the present invention that facilitates the installation of an oilstone, the conversion assembly includes a conversion rod disposed outside the lever, a spiral groove formed outside the conversion rod, a transmission rod disposed at the end of the conversion rod, and a lifting rod disposed at the end of the transmission rod;

[0018] The lifting rod moves within the output slot.

[0019] As a preferred embodiment of the generator for easy installation of the whetstone according to the present invention, it further includes: an action component; which includes an abutting component disposed within the clamping assembly, and a limiting component disposed within the functional component;

[0020] The abutment assembly includes a slider disposed in the limiting groove, an L-shaped abutment rod disposed on the top of the slider, a surplus spring disposed in the surplus groove, and an inclined plate disposed at the end of the surplus spring.

[0021] As a preferred embodiment of the generator for easy installation of an oilstone according to the present invention, the limiting component includes a locking rod disposed in the limiting groove, a storage spring sleeved on the locking rod, and a baffle disposed at the end of the locking rod.

[0022] The generator convenient for installing oil stone has the advantages that the body assembly plays a supporting role and can install the oil stone and the carbon brush, the oil stone is installed to polish the rusted position on the body assembly, the carbon brush is installed to enable the body assembly to operate, the function assembly plays a limiting and guiding role on other assemblies, the trigger assembly can transmit power to the hit assembly after being subjected to the force applied by the oil stone or the carbon brush, the hit assembly can abut against the receiving assembly during movement, the receiving assembly moves the oil stone or the carbon brush to the position of the body assembly at this time, so that the oil stone or the carbon brush can be ensured to contact, and the hit assembly can also transmit the force to the conversion assembly, the conversion assembly can convert the translational force into a rotational force and transmit the rotational force to the clamping assembly, and then the oil stone or the carbon brush is fixed through the clamping assembly, so that the oil stone or the carbon brush is quickly installed. BRIEF DESCRIPTION OF DRAWINGS

[0023] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0024] Figure 1 The overall schematic diagram of the generator convenient for installing oil stone.

[0025] Figure 2 The body assembly structure schematic diagram of the generator convenient for installing oil stone

[0026] Figure 3 The mounting bracket schematic diagram of the generator convenient for installing oil stone.

[0027] Figure 4 The mounting bracket cross-section structure schematic diagram of the generator convenient for installing oil stone.

[0028] Figure 5 The function assembly structure schematic diagram of the generator convenient for installing oil stone.

[0029] Figure 6 The trigger assembly structure schematic diagram of the generator convenient for installing oil stone.

[0030] Figure 7 The clamping assembly structure schematic diagram of the generator convenient for installing oil stone.

[0031] Figure 8 The transmission component structure schematic diagram of the generator convenient for installing oil stone.

[0032] Figure 9 The hit assembly structure schematic diagram of the generator convenient for installing oil stone.

[0033] Figure 10 Structure diagram of receiving component of generator for facilitating installation of oil stone.

[0034] Figure 11 Structure diagram of conversion component of generator for facilitating installation of oil stone.

[0035] Figure 12 Structure diagram of resistance component of generator for facilitating installation of oil stone.

[0036] Figure 13 Structure diagram of limiting component of generator for facilitating installation of oil stone. DETAILED DESCRIPTION

[0037] In order to make the above objectives, features and advantages of the present application more apparent, specific embodiments of the present application are described in detail below with reference to the accompanying drawings.

[0038] In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present application. However, it will be apparent to one skilled in the art that the present application can be practiced without the specific details and that numerous implementation maybe made without departing from the scope of the present application. Therefore, the specific details set forth in the following description should not be taken as limiting the present application.

[0039] Secondly, the "one embodiment" or "embodiment" referred to herein means that the specific features, structures or characteristics can be included in at least one implementation of the present application. The "in one embodiment" appearing in different places in the specification does not mean the same embodiment, nor is it an independent or selective embodiment mutually exclusive with other embodiments.

[0040] Example 1, with reference to Figures 1 to 5For the first embodiment of the present application, the embodiment provides a generator with oilstone for easy installation, which comprises a main part 100, including a body assembly 101, a functional assembly 102 provided on the body assembly 101, a trigger assembly 103 provided in the functional assembly 102, and a clamping assembly 104 provided in the functional assembly 102; a transmission part 200, including a receiving assembly 201 provided in the trigger assembly 103, a receiving assembly 202 provided in the receiving assembly 201, and a conversion assembly 203 connected with the receiving assembly 202, the body assembly 101 plays a supporting role, and can also install oilstone and carbon brush, the oilstone is installed to polish the rusted position on the body assembly 101, and the carbon brush is installed to enable the body assembly 101 to operate, the functional assembly 102 plays a role in limiting and guiding other components, the trigger assembly 103 can transmit power to the receiving assembly 201 after being subjected to the force applied by the oilstone or the carbon brush, the receiving assembly 201 will touch the receiving assembly 202 during movement, at this time, the receiving assembly 202 will move the oilstone or the carbon brush to the position of the body assembly 101, so as to ensure that the oilstone or the carbon brush can contact with it, and the receiving assembly 201 can also transmit the force to the conversion assembly 203, the conversion assembly 203 can convert the translational force into rotational force and transmit it to the clamping assembly 104, and then fix the oilstone or the carbon brush through the clamping assembly 104, so as to realize the rapid installation of the oilstone or the carbon brush.

[0041] Further, the body assembly 101 comprises a support table 101a, a slip ring 101b provided on the support table 101a, and a mounting bracket 101c provided on the support table 101a, the slip ring 101b is installed on the outer side of the support table 101a, and a plurality of mounting brackets 101c are arranged in an array with the slip ring 101b as the center on the top of the support table 101a, the mounting bracket 101c is used to place the oilstone or the carbon brush to operate the slip ring 101b.

[0042] Further, the functional assembly 102 comprises a device cavity 102a formed in the mounting frame 101c, an adapting slot 102b formed on the top of the mounting frame 101c, an output slot 102c formed on the mounting frame 101c, a limiting slot 102d formed on the side of the mounting frame 101c, and a T-shaped slot 102e formed on the inner wall of the mounting frame 101c. The mounting frame 101c is internally provided with the device cavity 102a, and the top of the mounting frame 101c is provided with the adapting slot 102b, and the device cavity 102a is in communication with the outside through the adapting slot 102b. The top of the mounting frame 101c is provided with the output slot 102c on both sides of the adapting slot 102b, and the output slot 102c is in communication with the device cavity 102a. The mounting frame 101c is provided with the limiting slot 102d on both sides, and the limiting slot 102d is in communication with the device cavity 102a. The inner wall of the mounting frame 101c is provided with the T-shaped slot 102e on both sides, and the T-shaped slot 102e is in communication with the device cavity 102a. The adapting slot 102b is placed with the triggering assembly 103, the device cavity 102a is placed with the transmission component 200, the output slot 102c is placed with the receiving assembly 202, the limiting slot 102d enables the force of the conversion assembly 203 to be transmitted, and the T-shaped slot 102e is used to place the clamping assembly 104.

[0043] Further, the triggering assembly 103 comprises a shaft 103a arranged in the adapting slot 102b, a pressing rod 103b arranged outside the shaft 103a, and a slot 103c formed on the pressing rod 103b. The end of the adapting slot 102b is rotatably connected with the shaft 103a, and the outer side of the shaft 103a is fixedly connected with the pressing rod 103b. The pressing rod 103b is arranged in an inclined manner, and the slot 103c is formed through the lower part of the rod body of the pressing rod 103b. The shaft 103a serves to support the pressing rod 103b. The pressing rod 103b can detect whether the oil stone or the carbon brush is placed on the mounting frame 101c, and the pressing force will be transmitted to the hit assembly 201. The slot 103c is formed to prevent the hit assembly 201 and the pressing rod 103b from interfering with each other.

[0044] Further, the clamping assembly 104 comprises a clamping plate 104a arranged in the T-shaped slot 102e, a sliding rod 104b connected with the clamping plate 104a, an inclined block 104c arranged in the T-shaped slot 102e, a locking slot 104d arranged on the side of the inclined block 104c, and a surplus slot 104e arranged on the inclined surface of the inclined block 104c; wherein the inclined block 104c is connected with the clamping plate 104a, the clamping plate 104a is arranged in the horizontal slot part of the T-shaped slot 102e, the other end of the clamping plate 104a is fixedly connected with the sliding rod 104b, the sliding rod 104b is slidingly connected with the mounting frame 101c, the vertical slot part of the T-shaped slot 102e is slidingly connected with the inclined block 104c, the side of the inclined block 104c is provided with the locking slot 104d, and the inclined surface of the inclined block 104c is provided with the surplus slot 104e; the clamping plate 104a serves to fix the oil stone or the carbon brush on the mounting frame 101c, the sliding rod 104b enables the clamping plate 104a to slide in the mounting frame 101c, and the arrangement of the inclined block 104c enables the clamping plate 104a to move into the mounting frame 101c when the action structure abuts against the inclined surface of the inclined block 104c, and finally the oil stone or the carbon brush is installed by limiting the locking slot 104d.

[0045] In use, first, the oil stone or the carbon brush is placed on the mounting frame 101c, and then the worker pushes the oil stone or the carbon brush to move in the direction of the pressing rod 103b; when the oil stone or the carbon brush is pressed against the pressing rod 103b after moving to a certain distance, the pressing rod 103b rotates around the shaft rod 103a and enters the adaptive slot 102b, and in the process of entering, the pressing rod 103b moves the receiving assembly 202 inward and moves the oil stone or the carbon brush to the sliding ring 101b, and then the action structure drives the inclined block 104c through the conversion assembly 203, and after abutting against the inclined surface of the inclined block 104c, the inclined block 104c moves to the oil stone or the carbon brush, and simultaneously drives the clamping plate 104a and the sliding rod 104b to move, thereby clamping and fixing the oil stone or the carbon brush, so as to achieve the purpose of facilitating the installation of the oil stone or the carbon brush.

[0046] Embodiment 2, refer to Figures 1 to 7For the second embodiment of the present application, unlike the previous embodiment, the hit component 201 includes a receiving rod 201a arranged in the slot 103c, a sliding frame 201b arranged at the end of the receiving rod 201a, a limiting frame 201c arranged outside the sliding frame 201b, and a contact block 201d slidingly connected to the side of the limiting frame 201c. The contact block 201d is connected to the sliding frame 201b, the receiving rod 201a is rotatably connected inside the slot 103c, the bottom end of the receiving rod 201a is rotatably connected to the sliding frame 201b, the limiting frame 201c is arranged outside the sliding frame 201b, the limiting frame 201c is fixedly connected to the bottom of the equipment cavity 102a, the sliding frame 201b is slidingly connected inside the limiting frame 201c, the limiting frame 201c is hollow, and the limiting frame 201c is slidingly connected to the two sides of the limiting frame 201c. Both sides of the contact block 201d are fixedly connected to the two sides of the sliding frame 201b, the receiving rod 201a is arranged in an inclined manner, so that when the lower pressing rod 103b is pressed, it will not be mutually blocked with the receiving rod 201a, and the end of the receiving rod 201a connected to the sliding frame 201b will move inside the limiting frame 201c. The sliding frame 201b plays a connecting role, so that the receiving rod 201a can drive the contact block 201d to move during movement, so as to achieve the purpose of moving the receiving assembly 202, and the limiting frame 201c plays a limiting role for the sliding frame 201b.

[0047] Further, the receiving assembly 202 includes a special-shaped rod 202a arranged at the side of the limiting frame 201c, a return spring 202b connected to the special-shaped rod 202a and the sliding frame 201b, and a push rod 202c arranged outside the special-shaped rod 202a. One end of the special-shaped rod 202a is arranged at the side of the limiting frame 201c, the special-shaped rod 202a is composed of a horizontal L rod M1 and a vertical L rod M2, and there is a certain distance between the special-shaped rod 202a and the contact block 201d. In this way, the oil stone or carbon brush can be pushed in the direction of the sliding ring 101b only after moving a certain distance in the mounting frame 101c. In addition, the special-shaped rod 202a cooperates with the above-mentioned clamping assembly 104 to further position the oil stone or carbon brush, preventing the carbon brush or oil stone from being pushed backward by the sliding ring 101b during operation. The horizontal L rod M1 and the sliding frame 201b are fixedly connected with the return spring 202b, and the side of the horizontal L rod M1 is fixedly connected with the push rod 202c. After the oil stone or carbon brush on the mounting frame 101c is removed, the compressed return spring 202b will push the special-shaped rod 202a and the receiving rod 201a to reset, so that manual resetting is not required.

[0048] Further, the conversion assembly 203 comprises a conversion rod 203a arranged outside the push rod 202c, a spiral groove 203b arranged outside the conversion rod 203a, a transmission rod 203c arranged at the end of the conversion rod 203a, and a lifting rod 203d arranged at the end of the transmission rod 203c; wherein the lifting rod 203d moves in the output slot 102c, the outside of the push rod 202c is provided with the conversion rod 203a, the outside of the conversion rod 203a is provided with the spiral groove 203b, the push rod 202c is movably connected in the spiral groove 203b, the end of the conversion rod 203a is fixedly connected with the transmission rod 203c, and the end of the transmission rod 203c is fixedly connected with the lifting rod 203d; the spiral groove 203b arranged outside the conversion rod 203a can convert the translational force of the special-shaped rod 202a into rotational force, the transmission rod 203c can transmit the rotational force to the lifting rod 203d, and the lifting rod 203d can lift the action structure to abut against the inclined surface of the inclined block 104c, so that the clamping plate 104a can fix the oil stone or carbon brush, thereby achieving the purpose of providing power for the clamping assembly 104.

[0049] The remaining structures are the same as those in Embodiment 1.

[0050] In use, in the process of pressing down the lower pressing rod 103b, the receiving rod 201a will also abut against the movement, at which time the receiving rod 201a will drive the sliding frame 201b to move in the limiting frame 201c, and the abutment block 201d will also move with the sliding frame 201b; when moving to a certain distance, the abutment block 201d will abut against the transverse L-shaped rod M1 to move, which will drive the longitudinal L-shaped rod M2 to move in the output slot 102c, and also abut against the oil stone or carbon brush to move in the direction of the slip ring 101b, so as to ensure that the oil stone or carbon brush can contact the slip ring 101b; in addition, in the process of operation of the slip ring 101b, the special-shaped rod 202a can also prevent the oil stone or carbon brush from separating from the inner wall of the slip ring 101b, and in the process of movement of the special-shaped rod 202a, the push rod 202c can also be driven to move in the spiral groove 203b, so that the conversion rod 203a will rotate along the track of the spiral groove 203b; at this time, the conversion rod 203a will drive the transmission rod 203c to rotate, at which time the lifting rod 203d will rotate around the transmission rod 203c and move in the limiting slot 102d to lift the action structure, thereby achieving the conversion of the action force.

[0051] Embodiment 3, refer to Figures 1 to 13For the third embodiment of the present application, unlike the previous embodiment, the above-mentioned acting structure instead of the acting component 300 further comprises the acting component 300; it comprises the abutting component 301 arranged in the clamping assembly 104 and the limiting component 302 arranged in the functional assembly 102; the abutting component 301 can provide power to the above-mentioned clamping assembly 104, and at the same time, after unlocking, it can also provide a stroke allowance between the clamping assembly 104, so as to avoid mutual hindering among the abutting component 301, the clamping assembly 104 and the oil stone or the carbon brush, and the limiting component 302 plays a role of fixing the clamping assembly 104.

[0052] Further, the abutting component 301 comprises the sliding bar 301a arranged in the limiting groove 102d, the L-shaped abutting rod 301b arranged at the top of the sliding bar 301a, the allowance spring 301c arranged in the allowance groove 104e, and the inclined plate 301d arranged at the end of the allowance spring 301c; the sliding bar 301a is slidingly connected in the limiting groove 102d; the L-shaped abutting rod 301b is fixedly connected at the top of the sliding bar 301a; the allowance spring 301c is fixedly connected in the allowance groove 104e; the end of the allowance spring 301c is fixedly connected with the inclined plate 301d; the inclined plate 301d is matched with the allowance groove 104e; the sliding bar 301a plays a role of supporting the L-shaped abutting rod 301b, and can also transmit the force of the lifting rod 203d to the L-shaped abutting rod 301b; in the process of the L-shaped abutting rod 301b rising, the inclined block 104c will drive the clamping plate 104a to move inward to fix the oil stone or the carbon brush.

[0053] Further, the limiting component 302 comprises the locking rod 302a arranged in the limiting groove 102d, the force storage spring 302b sleeved outside the locking rod 302a, and the baffle 302c arranged at the end of the locking rod 302a; the locking rod 302a is slidingly connected with the mounting frame 101c located at the vertical groove position of the T-shaped groove 102e; the end of the locking rod 302a penetrates the mounting frame 101c and is fixedly connected with the baffle 302c; the force storage spring 302b is arranged between the baffle 302c and the mounting frame 101c; the locking rod 302a can be inserted into the locking groove 104d to lock the inclined block 104c; the force storage spring 302b can drive the baffle 302c to pull the force storage spring 302b after the locking rod 302a is abutted; when the locking rod 302a is no longer abutted, the force storage spring 302b will reset and drive the locking rod 302a to reset.

[0054] The remaining structures are the same as those of the second embodiment.

[0055] In use, in the process of rotating the lifting rod 203d, the slide 301a will be lifted in the limiting groove 102d, at this time the slide 301a will rise, in the process of rising of the slide 301a, the L-shaped resisting rod 301b will be lifted, in the process of lifting, the L-shaped resisting rod 301b will resist the inclined block 104c, the farther the L-shaped resisting rod 301b goes up, the more the inclined block 104c moves to the direction of the oil stone or the carbon brush, in the process of moving of the inclined block 104c, the side of the locking groove 104d will resist the locking rod 302a to move outward, in the process of moving, the locking rod 302a will pull the baffle 302c to pull the force storage spring 302b, when the side of the inclined block 104c no longer resists the locking rod 302a, the force storage spring 302b will reset and drive the locking rod 302a to insert into the locking groove 104d, thereby achieving the locking of the clamping plate 104a, and at the same time when the locking rod 302a inserts into the locking groove 104d, the L-shaped resisting rod 301b will move to the position of the excess groove 104e, when unlocking, only need to pull the baffle 302c to drive the locking rod 302a to leave the locking groove 104d, at this time one side of the clamping plate 104a is pushed outward to release the restriction of the oil stone or the carbon brush, and then the carbon brush can be removed, thereby achieving the purpose of restricting the clamping plate 104a.

[0056] Importantly, it should be noted that the constructions and arrangements of the present application shown in the various exemplary embodiments are illustrative only. Although only a few embodiments have been described in detail in this disclosure, many modifications are possible (e.g., variations in sizes, dimensions, structures, shapes and proportions of the various elements, values of parameters, mounting arrangements, use of materials, colors, orientations, etc.) without materially departing from the novel teachings and advantages of the subject matter described in this application. For example, elements shown as integrally formed can be constructed of multiple parts or elements, the position of elements can be reversed or otherwise varied, and the nature or number of elements or positions can be altered or varied. Accordingly, all such modifications are intended to be included within the scope of the present application. The order or sequence of any process or method steps can be changed, or reordered, according to alternative embodiments. Any "means plus function" clauses are intended to cover the structures described herein as performing the recited functions and not only structural equivalents but also equivalent structures. Other substitutions, modifications, changes, and omissions can be made in the design, operating

[0057] Furthermore, in the interest of providing a concise description of illustrative embodiments, not all features of an actual implementation can be described (that is, not all

[0058] It will be appreciated that in the development of any actual embodiment, as in any engineering or design project, numerous implementation-specific decisions can be made. Such development efforts might be complex and time-consuming, but would nevertheless be a routine undertaking for those of ordinary skill in the art having the benefit of this disclosure.

[0059] It should be noted that the above examples are merely used to illustrate the technical solutions of the present application, rather than limit the present application. Although the present application is described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or equivalently replaced, without departing from the spirit and scope of the technical solutions of the present application, and all should be included in the scope of the claims of the present application.

Claims

1. A generator that is easy to install an oilstone, characterized in that: include, The main body component (100) includes a body assembly (101), a functional component (102) opened on the body assembly (101), a trigger component (103) disposed in the functional component (102), and a clamping component (104) disposed in the functional component (102). The transmission component (200) includes a receiving component (201) disposed within the triggering component (103), a receiving component (202) disposed within the receiving component (201), and a conversion component (203) connected to the receiving component (202).

2. The generator for easy installation of an oilstone as described in claim 1, characterized in that: The main body assembly (101) includes a support platform (101a), a slip ring (101b) disposed on the support platform (101a), and a mounting bracket (101c) disposed on the support platform (101a).

3. The generator for easy installation of an oilstone as described in claim 2, characterized in that: The functional component (102) includes a device cavity (102a) opened in the mounting bracket (101c), an adapter slot (102b) opened on the top of the mounting bracket (101c), an output slot (102c) opened on the mounting bracket (101c), a limiting slot (102d) opened on the side of the mounting bracket (101c), and a T-shaped slot (102e) opened on the inner wall of the mounting bracket (101c).

4. The generator for easy installation of an oilstone as described in claim 3, characterized in that: The triggering component (103) includes a shaft (103a) disposed in the adapter groove (102b), a pressing rod (103b) disposed outside the shaft (103a), and a slot (103c) opened on the pressing rod (103b).

5. The generator for easy installation of an oilstone as described in claim 4, characterized in that: The clamping assembly (104) includes a clamping plate (104a) disposed in the T-shaped groove (102e), a slide rod (104b) connected to the clamping plate (104a), an inclined block (104c) disposed in the T-shaped groove (102e), a locking groove (104d) opened on the side of the inclined block (104c), and a clearance groove (104e) opened on the inclined surface of the inclined block (104c). The inclined block (104c) is connected to the clamping plate (104a).

6. The generator for easy installation of an oilstone as described in claim 5, characterized in that: The impact-receiving component (201) includes a receiving rod (201a) disposed in the slot (103c), a sliding frame (201b) disposed at the end of the receiving rod (201a), a limiting frame (201c) disposed outside the sliding frame (201b), and an abutment block (201d) slidably connected to the side of the limiting frame (201c); The contact block (201d) is connected to the sliding frame (201b).

7. The generator for easy installation of an oilstone as described in claim 6, characterized in that: The receiving component (202) includes an irregular rod (202a) disposed on the side of the limiting frame (201c), a return spring (202b) connected to the irregular rod (202a) and the slide frame (201b), and a lever (202c) disposed outside the irregular rod (202a).

8. The generator for easy installation of an oilstone as described in claim 7, characterized in that: The conversion assembly (203) includes a conversion rod (203a) disposed outside the lever (202c), a spiral groove (203b) opened outside the conversion rod (203a), a transmission rod (203c) disposed at the end of the conversion rod (203a), and a lifting rod (203d) disposed at the end of the transmission rod (203c); The lifting rod (203d) is movable within the output slot (102c).

9. The generator for easy installation of an oilstone as described in claim 7 or 8, characterized in that: It also includes an action component (300); which includes an abutment component (301) disposed within the clamping assembly (104) and a restraining component (302) disposed within the functional component (102); The abutment assembly (301) includes a slide bar (301a) disposed in the limiting groove (102d), an L-shaped abutment rod (301b) disposed at the top of the slide bar (301a), a surplus spring (301c) disposed in the surplus groove (104e), and an inclined plate (301d) disposed at the end of the surplus spring (301c).

10. The generator for easy installation of an oilstone as described in claim 9, characterized in that: The limiting component (302) includes a locking rod (302a) disposed in the limiting groove (102d), a storage spring (302b) sleeved on the locking rod (302a), and a baffle (302c) disposed at the end of the locking rod (302a).