Inclined output power tool apron

By designing a power tool holder with tilt output, the problem that existing power tool holders cannot meet the tilt output requirement is solved, realizing the diversified machining needs of the power tool holder. Furthermore, the structural design of the connecting parts improves the stability and maintainability of the equipment.

CN121245032APending Publication Date: 2026-01-02苏州堡威技术有限公司
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Patent Information

Application Number
CN202511823176.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-05
Publication Date
2026-01-02

AI Technical Summary

Technical Problem

Most existing power tool holders use vertical or vertical output, which cannot meet the machining requirements of inclined output, thus having limitations.

Method used

A tilting output power tool holder was designed. By setting the angle between the input shaft and the output shaft to 0°~90°, and through the structural design of the connecting parts, including the cooperation of the lead screw, bevel gear and silicone sleeve, a reliable connection and stability between the upper and lower shells are ensured.

Benefits of technology

It achieves tilting output of the power tool holder, reducing usage limitations, and the design of the connecting parts prevents equipment vibration and loosening, ensuring the stability of the equipment and long-term maintenance.

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Abstract

The invention provides an inclined output power tool apron, which belongs to the technical field of power tool aprons and comprises an upper shell, a lower shell is arranged at the lower end of the upper shell, the upper shell and the lower shell are connected through a connecting piece, an input shaft is screwed on the upper shell, an output shaft is screwed on the lower shell, and the included angle between the central axis of the input shaft and the central axis of the output shaft is 0-90 degrees. A bevel gear A is fixedly connected to the input shaft, a bevel gear B is fixedly connected to the output shaft, and the bevel gear A and the bevel gear B are connected in a meshed mode. The power tool apron solves the problems that existing power tool aprons mostly adopt vertical output or vertical output, some inclined output machining requirements cannot be met, and certain limitation exists.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of power tool holder, and particularly relates to a power tool holder with inclined output. BACKGROUND

[0002] With the increasing complexity of workpieces, the improvement of precision level and machining efficiency, multi-axis and high rotation speed become necessary conditions for tool machines. In addition to the machining center machine, many new machining forms have been developed from the early horizontal lathe, such as double-tool tower, vertical lathe, inverted lathe and turning-milling composite machine, to meet the needs of new era machining mode. The power tool holder refers to the tool holder installed on the power tool tower and driven by a servo motor. Such tool holder is generally applied to turning-milling composite machine, and a few can be applied to machining center with power tool tower.

[0003] Most of the existing power tool holders adopt vertical output or perpendicular output, which cannot meet the machining requirements of some inclined output and has certain limitations. SUMMARY

[0004] The application provides a power tool holder with inclined output, which aims to solve the problem that most of the existing power tool holders adopt vertical output or perpendicular output, which cannot meet the machining requirements of some inclined output and has certain limitations.

[0005] The application provides a power tool holder with inclined output, which comprises an upper shell, a lower shell arranged at the lower end of the upper shell, and a connecting piece arranged between the upper shell and the lower shell. An input shaft is screwed on the upper shell, and an output shaft is screwed on the lower shell. The included angle between the central axis of the input shaft and the central axis of the output shaft is 0-90 degrees. An A bevel gear is fixed on the input shaft, and a B bevel gear is fixed on the output shaft. The A bevel gear and the B bevel gear are connected to each other in meshing mode.

[0006] Further, the adapter comprises a screw, the screw is provided with a A nut and a B nut, the A nut is provided with a groove, the wall of the groove is embedded with a pressing platform, the inner circumferential surface of the A nut is fixedly connected with a C silica gel cylinder, the outer circumferential surface of the C silica gel cylinder is fixedly connected with the pressing platform, the inside of the groove is embedded with a pressing cylinder, the screw is provided with a storage chamber for temporarily storing hydraulic transmission oil, the wall of the storage chamber is provided with a channel, the A nut is clamped with a C sponge block, the C silica gel cylinder is tightly arranged between the screw and the A nut, the pressing cylinder moves downward to the groove, the pressing cylinder presses the pressing platform, the C silica gel cylinder is tightly arranged between the pressing platform and the screw, the pressing cylinder is provided with a notch, the notch is a hexagonal ring-shaped opening, a silica gel ring is fixedly connected in the notch, the silica gel ring is fixedly connected to the wall of the groove, the other end of the pressing cylinder is fixedly connected with a silica gel strip, the outer surface of the pressing cylinder is fixedly connected with a supporting strip, the supporting strip is made of tpe material, the lower end of the supporting strip is fixedly connected to the outer surface of the A nut, when the supporting strip is in the initial state, the supporting strip supports the pressing cylinder to extend out of the groove, after the pressing cylinder moves into the groove, the supporting strip is changed in shape.

[0007] Further, the B nut is fixedly connected with a connecting piece near the A nut, the connecting piece is a ring-shaped structure, the inner ring opening of the connecting piece is a circular truncated cone opening, a ring-shaped platform is inserted into the inner ring opening of the connecting piece, the ring-shaped platform is funnel-shaped, and the ring-shaped platform is fixedly connected to the other side of the A nut, after the connecting piece is tightly arranged between the A nut and the B nut, the ring-shaped platform is embedded into the connecting piece.

[0008] Further, the inner circumferential surface of the ring-shaped platform is fixedly connected with an A silica gel cylinder, the A silica gel cylinder is tightly arranged between the ring-shaped platform and the screw, the outer circumferential surface of the ring-shaped platform is fixedly connected with a B silica gel cylinder, and the B silica gel cylinder is tightly arranged between the ring-shaped platform and the connecting piece.

[0009] Further, a pair of mirror image arranged A assembly openings are provided on the upper wall of the connecting piece, a B assembly opening is provided on the other side of the B nut, an embedding opening is provided on the upper wall of the B assembly opening, the A assembly opening, the B assembly opening and the embedding opening are communicated with each other, an embedding column is embedded in the embedding opening, the embedding column is fixedly connected with a silica gel bead, the silica gel bead is embedded in a slot, the slot is provided on the other side of the A nut, the slot is a ring-shaped groove with a circular cross section, and the other end of the embedding column is fixedly connected with a pulling ring.

[0010] Further, the groove is a hexagonal structure, a pair of opposite walls in the groove are provided with embedding grooves, the pressing platform is provided in one-to-one correspondence with the embedding grooves, the pressing platform is embedded in the embedding groove, and the upper end of the side of the pressing platform extending towards the groove is provided with an inclined wall.

[0011] Further, the storage chamber is embedded with a plug, the plug is fixedly connected to the head end of the screw, the plug is provided with an injection opening, and a silica gel plug is clamped in the injection opening.

[0012] Further, the lower wall surface of the head end of the screw rod is reserved with a through opening, the through opening is a ring-shaped opening, and a plurality of channels are reserved on the screw rod in a circumferential arrangement, and the through opening is connected with the channels.

[0013] Further, a B sponge block is arranged in the through opening, an A sponge block is arranged in the storage chamber, a sponge column is arranged between the A sponge block and the B sponge block, the sponge column passes through the channel, a release paper is arranged on the wall surface of the screw rod, and the release paper covers the B sponge block.

[0014] Further, one side of the A nut is reserved with a C assembly opening, and a C sponge block is arranged in the C assembly opening.

[0015] The beneficial effects of the present application are:

[0016] 1. The present application ensures that the power tool holder can realize inclined output by setting the included angle between the input shaft and the output shaft to 0°-90°, thereby meeting different machining requirements, greatly reducing the limitations of the use of the power tool holder, and ensuring the firmness of the connection between the upper shell and the lower shell through the arrangement of the connecting piece, so as to prevent the disintegration between the upper shell and the lower shell caused by the shaking of the equipment during operation.

[0017] 2. The present application arranges a butt joint structure between the A nut and the B nut, that is, cooperates the embedding column, the silica gel bead and the slot, so that the A nut and the B nut can rotate together, preventing the A nut and the B nut from rotating alone to cause relaxation, and the A nut cooperates with the compression cylinder, the compression table and the C silica gel cylinder, so as to constitute a compression constraint between the A nut and the screw rod, thereby further strengthening the fastening function and ensuring the stability during use of the connecting piece. One side of the screw rod is reserved with a storage chamber, and the cooperation of the A sponge block, the sponge column and the B sponge block causes the hydrodynamic transmission oil to flow between the screw rod and the circular hole on the shell, so as to maintain the screw rod and the circular hole, reduce the hindering effect, prevent the screw rod from being oxidized and corroded, and prevent too much hydrodynamic transmission oil from flowing away through the circular hole, thereby ensuring long-term maintenance effect.

[0018] Other features and advantages of the present application will be set forth in the following description of the application, and in part will become apparent to those skilled in the art from the description, or can be learned by practice of the application. The objects and other advantages of the present application can be achieved and obtained by the structure particularly pointed out in the specification and the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS

[0019] The accompanying drawings are used to provide further understanding of the present application, and constitute a part of the specification, and are used to explain the present application together with embodiments of the present application, and do not constitute a limitation to the present application. In the drawings:

[0020] Figure 1 It is a schematic diagram of the three-dimensional structure of the embodiment of the present application;

[0021] Figure 2 The exploded structure diagram of the lower shell of the embodiment of the present application;

[0022] Figure 3 The front view structure diagram of the embodiment of the present application;

[0023] Figure 4 The perspective structure diagram of the adapter of the embodiment of the present application;

[0024] Figure 5 The top view structure diagram of the adapter of the embodiment of the present application;

[0025] Figure 6 The M-M direction section structure diagram of the embodiment of the present application; Figure 5

[0026] Figure 7 The R enlarged structure diagram of the embodiment of the present application; Figure 6

[0027] Figure 8 The S enlarged structure diagram of the embodiment of the present application; Figure 6

[0028] Figure 9 The T enlarged structure diagram of the embodiment of the present application; Figure 8

[0029] Figure 10 The A female thread and the compression cylinder adapter structure diagram of the embodiment of the present application;

[0030] Figure 11 The front view structure diagram of the embodiment of the present application; Figure 10

[0031] Figure 12 The N-N direction section structure diagram of the embodiment of the present application; Figure 11

[0032] The B female thread and the coupling sheet adapter structure diagram of the embodiment of the present application; Figure 13

[0033] The front view structure diagram of the embodiment of the present application; Figure 14 Figure 13 The P-P direction section structure diagram of the embodiment of the present application;

[0034] Figure 15 Figure 14

[0035] ​​​​​​​​: 1, upper shell; 2, lower shell; 3, input shaft; 4, output shaft; 5, A bevel gear; 6, B bevel gear; 7, adapter; 71, screw rod; 72, A nut; 73, B nut; 74, connecting plate; 75, ring-shaped table; 76, A silica gel cylinder; 77, B silica gel cylinder; 78, groove; 79, embedded slot; 710, C silica gel cylinder; 711, pressing table; 712, pressing cylinder; 713, notch; 714, silica gel ring; 715, supporting strip; 716, silica gel strip; 717, A assembly opening; 718, B assembly opening; 719, embedded port; 720, embedded column; 721, insertion slot; 722, silica gel bead; 723, pulling ring; 724, storage chamber; 725, plug; 726, filling port; 727, silica gel plug; 728, through port; 729, channel; 730, A sponge block; 731, B sponge block; 732, sponge column; 733, C assembly opening; 734, C sponge block. DETAILED DESCRIPTION

[0036] In order to make the purpose, technical scheme and advantages of the technical scheme of the present application clearer, the technical scheme of the embodiments of the present application will be described clearly and completely below in conjunction with the drawings of the embodiments of the present application. The same reference signs in the drawings represent the same parts. It should be noted that the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the described embodiments of the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of protection of the present application.

[0037] REFERENCE Figures 1-3 The embodiments of the present application propose a power tool holder with inclined output, comprising an upper shell 1, a lower shell 2 arranged at the lower end of the upper shell 1, and an adapter 7 connecting the upper shell 1 and the lower shell 2. An input shaft 3 is screwed onto the upper shell 1, and an output shaft 4 is screwed onto the lower shell 2. The included angle between the central axis of the input shaft 3 and the central axis of the output shaft 4 is 0°-90°. An A bevel gear 5 is fixedly connected to the input shaft 3, and a B bevel gear 6 is fixedly connected to the output shaft 4. The A bevel gear 5 and the B bevel gear 6 are meshingly connected to each other.

[0038] By setting the included angle between the input shaft 3 and the output shaft 4 to 0°-90°, it is ensured that the power tool holder can realize inclined output, thereby meeting different processing requirements, greatly reducing the limitations of the use of the power tool holder, and through the arrangement of the adapter 7, the firmness of the connection between the upper shell 1 and the lower shell 2 is ensured to prevent disintegration between the upper shell 1 and the lower shell 2 caused by shaking of the equipment during operation.

[0039] REFERENCE Figures 4-15The adapter 7 comprises a screw rod 71, the screw rod 71 is screwed with an A nut 72 and a B nut 73, the B nut 73 is fixedly connected with a connecting sheet 74 near one side of the A nut 72, the connecting sheet 74 is a ring structure, the inner ring opening of the connecting sheet 74 is a circular truncated cone opening, a ring-shaped platform 75 is inserted into the inner ring opening of the connecting sheet 74, the ring-shaped platform 75 is a funnel structure, the ring-shaped platform 75 is fixedly connected to the other side of the A nut 72, after the connecting sheet 74 is tightly pressed between the A nut 72 and the B nut 73, the ring-shaped platform 75 is embedded into the connecting sheet 74; an A silica gel cylinder 76 is fixedly connected to the circumferential surface of the ring-shaped platform 75, the A silica gel cylinder 76 is tightly pressed between the ring-shaped platform 75 and the screw rod 71, a B silica gel cylinder 77 is fixedly connected to the circumferential surface of the ring-shaped platform 75, the B silica gel cylinder 77 is tightly pressed between the ring-shaped platform 75 and the connecting sheet 74. After the screw rod 71 is inserted through the circular hole on the shell, the A nut 72 and the B nut 73 are sequentially screwed on the screw rod 71, after the A nut 72 is tightly screwed on the screw rod 71, one side of the A nut 72 is tightly attached to the shell, and the A silica gel cylinder 76 is tightly pressed between the ring-shaped platform 75 and the screw rod 71, so as to prevent the screwing between the A nut 72 and the screw rod 71 from being loose, after the B nut 73 is tightly screwed on the screw rod 71, the ring-shaped platform 75 is embedded into the connecting sheet 74, and the B silica gel cylinder 77 is tightly pressed between the ring-shaped platform 75 and the connecting sheet 74, so as to strengthen the blocking effect between the connecting sheet 74 and the ring-shaped platform 75, the A nut 72 and the B nut 73 cooperate to prevent the screw rod 71 from being loose and disassembled.

[0040] A pair of mirror image arranged A assembly openings 717 are reserved on the upper wall surface of the connecting sheet 74, a B assembly opening 718 is reserved on the other side of the B nut 73, an embedding opening 719 is reserved on the upper wall surface of the B assembly opening 718, the A assembly opening 717, the B assembly opening 718 and the embedding opening 719 are communicated with each other, an embedding column 720 is embedded in the embedding opening 719, one side of the embedding column 720 is fixedly connected with a silica gel bead 722, the silica gel bead 722 is embedded in a slot 721, the slot 721 is reserved on the other side of the A nut 72, the slot 721 is a ring-shaped groove with a circular cross section, the other side of the embedding column 720 is fixedly connected with a pulling ring 723. After the ring-shaped platform 75 is embedded into the connecting sheet 74, the embedding column 720 is pressed, after the upper end of the embedding column 720 is pressed into the slot 721, the silica gel bead 722 is embedded in the slot 721, then the A nut 72 and the B nut 73 are connected to enable the A nut 72 and the B nut 73 to rotate together, so as to prevent the A nut 72 and the B nut 73 from rotating alone and being loose; when the connection is cancelled, the embedding column 720 is pulled out of the slot 721 by pulling the pulling ring 723.

[0041] A female nut 72 is provided with a groove 78, a pressing platform 711 is embedded on the wall of the groove 78, a C silica gel cylinder 710 is fixed on the inner circumferential surface of the A female nut 72, the pressing platform 711 is fixed on the outer circumferential surface of the C silica gel cylinder 710, the groove 78 is hexagonal in structure, a pair of opposite walls of the groove 78 is provided with an embedded groove 79, the pressing platform 711 is provided in one-to-one correspondence with the embedded groove 79, the pressing platform 711 is embedded in the embedded groove 79, an inclined wall is provided on the upper end of the pressing platform 711 extending towards the groove 78, a pressing cylinder 712 is embedded in the groove 78, the C silica gel cylinder 710 is compressed between the lead screw 71 and the A female nut 72, after the pressing cylinder 712 moves down into the groove 78, the pressing cylinder 712 presses the pressing platform 711, and the C silica gel cylinder 710 is compressed between the pressing platform 711 and the lead screw 71; the pressing cylinder 712 is provided with a notch 713, the notch 713 is a hexagonal ring-shaped opening, a silica gel ring 714 is fixed in the notch 713, the silica gel ring 714 is fixed on the wall of the groove 78, and the other end of the pressing cylinder 712 is fixed with a silica gel strip 716; a supporting strip 715 is fixed on the outer surface of the pressing cylinder 712, the supporting strip 715 is made of tpe material, the lower end of the supporting strip 715 is fixed on the outer surface of the A female nut 72, and the supporting strip 715 supports the pressing cylinder 712 to extend out of the groove 78 in the initial state, after the pressing cylinder 712 moves into the groove 78, the supporting strip 715 changes its shape, when the A female nut 72 moves along the lead screw 71, the supporting strip 715 moves along with the A female nut 72 after touching the wall of the housing, the pressing cylinder 712 is pressed into the groove 78, the silica gel ring 714 and the supporting strip 715 change their shapes, and during the pressing cylinder 712 being received in the groove 78, the pressing cylinder 712 presses the pressing platform 711 along the inclined wall, the pressing platform 711 presses the C silica gel cylinder 710, thereby achieving the purpose of compressing and restraining between the A female nut 72 and the lead screw 71, preventing the A female nut 72 from loosening on the lead screw 71, and the deformation of the supporting strip 715, the pressing cylinder 712 and the silica gel strip 716 tightly connects the A female nut 72 and the lead screw 71, and the B female nut 73 and the A female nut 72 are connected through the embedded column 720 and rotate together, thereby restraining the B female nut 73, thereby enhancing the stability of the assembly of the A female nut 72 and the B female nut 73 on the lead screw 71.

[0042] The screw rod 71 is provided with a storage chamber 724 for temporarily storing the hydraulic transmission oil. The wall of the storage chamber 724 is provided with a passage 729, and the A nut 72 is clamped with the C sponge block 734. The storage chamber 724 is embedded with a plug 725 which is fixed to the head end of the screw rod 71. The plug 725 is provided with a filling port 726, and the filling port 726 is clamped with a silica plug 727. The lower wall of the head end of the screw rod 71 is provided with a through hole 728 which is a ring-shaped hole. A plurality of passages 729 are provided on the screw rod 71 and are arranged in a circumferential direction. The through hole 728 is connected with the passages 729. The B sponge block 731 is arranged in the through hole 728, and the A sponge block 730 is arranged in the storage chamber 724. The sponge column 732 is arranged between the A sponge block 730 and the B sponge block 731 and passes through the passages 729. The wall of the screw rod 71 is provided with an anti-sticking paper which covers the B sponge block 731. The A nut 72 is provided with a C assembly port 733 in which the C sponge block 734 is arranged. Before use, the hydraulic transmission oil is filled into the storage chamber 724 through the silica plug 727 by using a syringe. After the filling, the syringe is removed. When the screw rod 71 is not assembled, the anti-sticking paper is arranged on the B sponge block 731 to shield. When the screw rod 71 is assembled, the anti-sticking paper is removed. After the screw rod 71 is connected with the A nut 72, the hydraulic transmission oil in the storage chamber 724 flows into the A sponge block 730, the sponge column 732 and the B sponge block 731 and then flows into the circular hole. The hydraulic transmission oil maintains the screw rod 71 and the circular hole to prevent the screw rod 71 from being oxidized and corroded. The C sponge block 734 blocks the circular hole to prevent too much hydraulic transmission oil from flowing away through the circular hole.

[0043] In use, first fill the injection syringe with hydraulic transmission oil, then inject the hydraulic transmission oil into the storage chamber 724 through the injection end of the injection syringe, and remove the injection syringe after the injection is completed. When the lead screw 71 is not assembled, the B sponge block 731 in the through hole 728 is blocked by the anti-sticking paper. The lead screw 71 is inserted through the circular hole on the housing. The A nut 72 is screwed on the lead screw 71, and the A nut 72 is screwed on the lead screw 71. When the support strip 715 touches the wall of the housing during movement, the A nut 72 moves along with it. The compression cylinder 712 is pressed into the groove 78, the silicone ring 714 and the support strip 715 are changed in the compression state, and the compression cylinder 712 is received in the groove 78. During the compression cylinder 712 is pressed against the compression platform 711 along the inclined wall, the compression platform 711 compresses the C silicone cylinder 710, thereby forming a compression constraint between the A nut 72 and the lead screw 71, and preventing the A nut 72 from loosening on the lead screw 71. The deformation of the support strip 715, the compression cylinder 712 and the silicone strip 716 makes the A nut 72 and the lead screw 71 tightly screwed. After the A nut 72 is tightened on the lead screw 71, the A nut 72 is tightly pressed against the wall of the housing, and the B silicone cylinder 77 is tightly pressed between the ring platform 75 and the lead screw 71 to prevent the A nut 72 and the lead screw 71 from loosening. The B nut 73 is screwed on the lead screw 71, and the B nut 73 is screwed on the lead screw 71. When the B nut 73 and the lead screw 71 are tightly screwed, the ring platform 75 is embedded in the inside of the connecting piece 74, the B silicone cylinder 77 is tightly pressed between the ring platform 75 and the connecting piece 74, and the resistance between the connecting piece 74 and the ring platform 75 is enhanced. After the ring platform 75 is embedded in the inside of the connecting piece 74, the embedded column 720 is pressed, the upper end of the embedded column 720 is pressed into the slot 721, the silicone bead 722 is embedded in the slot 721, the A nut 72 and the B nut 73 are connected, and the A nut 72 and the B nut 73 can be rotated together to prevent loosening. Remove the anti-sticking paper on the B sponge block 731 in the head end through hole 728 of the lead screw 71, and the hydraulic transmission oil in the storage chamber 724 flows into the circular hole after flowing through the A sponge block 730, the sponge column 732 and the B sponge block 731. Maintain the lead screw 71 and the circular hole to prevent the lead screw 71 from being oxidized and corroded, and the C sponge block 734 blocks one side of the circular hole to prevent too much hydraulic transmission oil from flowing away through the circular hole.

[0044] When disassembling, the A nut 72 and the B nut 73 are disconnected, the pulling ring 723 is pulled, the embedded column 720 is moved, the A nut 72 and the B nut 73 are connected, and the B nut 73 and the A nut 72 are rotated out of the lead screw 71.

[0045] The above shows and describes the basic principles and main features of the present application and the advantages of the present application. Those skilled in the art should understand that the present application is not limited to the above embodiments, and the above embodiments and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A power tool holder with tilted output, characterized in that, It includes an upper shell, and a lower shell is installed at the lower end of the upper shell. The upper shell and the lower shell are connected by a connector. The input shaft is screwed onto the upper shell, and the output shaft is screwed onto the lower shell. The angle between the central axis of the input shaft and the central axis of the output shaft is 0°~90°. A bevel gear is fixedly connected to the input shaft, and a bevel gear is fixedly connected to the output shaft. The A bevel gear and the B bevel gear are meshed with each other.

2. The tilting output power tool holder according to claim 1, characterized in that: The connector includes a lead screw, on which lead screws connect to nuts A and B. Nut A has a groove on one side, and a pressure plate is embedded in the wall of the groove. A silicone cylinder C is fixed to the inner circumference of nut A. One side of the pressure plate is fixed to the outer circumference of silicone cylinder C. A pressure cylinder is embedded inside the groove. One side of the lead screw has a storage chamber for temporarily storing hydraulic transmission oil. A channel is provided in the wall of the storage chamber. A sponge block C is engaged with one side of nut A. Silicone cylinder C is pressed between the lead screw and nut A. After the pressure cylinder moves downward into the groove, the pressure cylinder presses... Pressed against the pressure table, the C silicone cylinder is pressed between the pressure table and the lead screw. One side of the pressure cylinder has a pre-reserved notch, which is a hexagonal prism-shaped ring. A silicone ring is fixed in the notch, and one side of the silicone ring is fixed to the wall of the groove. The other side of the pressure cylinder is fixed to a silicone strip. A support strip is fixed to the outer surface of the pressure cylinder. The support strip is made of TPE material. The lower end of the support strip is fixed to the outer surface of the A lead screw. When the support strip is in the initial state, the support strip supports the pressure cylinder to extend into the groove. After the pressure cylinder moves into the groove, the support strip is compressed and its shape changes.

3. The inclined output power tool holder according to claim 2, characterized in that: The connecting piece is fixed to the side of nut B near nut A. The connecting piece has a ring-shaped structure and the inner ring opening of the connecting piece is a frustum-shaped opening. A ring-shaped platform is inserted into the inner ring opening of the connecting piece. The ring-shaped platform is funnel-shaped and fixed to the other side of nut A. After the connecting piece is pressed between nut A and nut B, the ring-shaped platform is embedded inside the connecting piece.

4. The tilting output power tool holder according to claim 3, characterized in that: Silicone cylinder A is fixedly connected to the inner circumference of the ring-shaped platform, and silicone cylinder A is pressed between the ring-shaped platform and the lead screw. Silicone cylinder B is fixedly connected to the outer circumference of the ring-shaped platform, and silicone cylinder B is pressed between the ring-shaped platform and the connecting plate.

5. A power tool holder with tilting output according to claim 3, characterized in that: The upper wall of the connecting piece has a pair of mirror-arranged A assembly ports, and the other side of the B nut has a B assembly port. The upper wall of the B assembly port has a recessed interface. The A assembly ports, B assembly ports and the recessed interface are connected to each other. A recessed post is embedded in the recessed interface. A silicone bead is fixed to one side of the recessed post. The silicone bead is embedded in the slot. The slot is reserved on the other side of the A nut. The slot is a circular groove with a circular cross-section. The other side of the recessed post is fixed to the pull ring.

6. A power tool holder with tilting output according to claim 2, characterized in that: The trench is a hexagonal prism structure. A pair of opposite walls in the middle of the trench have pre-reserved interlocking grooves. The pressing platform is paired with the interlocking groove one by one. The pressing platform is embedded in the interlocking groove. A slanted wall is reserved on the upper end of the side of the pressing platform that extends towards the trench.

7. A power tool holder with tilting output according to claim 2, characterized in that: A plug is embedded in one side of the storage chamber. The plug is fixed to the head end of the lead screw. A filling port is reserved on the plug, and a silicone plug is inserted into the filling port.

8. A power tool holder with tilting output according to claim 2, characterized in that: An opening is pre-drilled on the lower wall of the lead screw head. The opening is circular, and several channels are pre-drilled. These channels are arranged circumferentially on the lead screw, and the opening and channels are connected.

9. A power tool holder with tilting output according to claim 8, characterized in that: Sponge block B is installed in the passage, sponge block A is installed in the storage room, sponge column is installed between sponge block A and sponge block B, sponge column passes through the passage, and anti-stick paper is installed on the wall of the screw, covering sponge block B.

10. A power tool holder with tilting output according to claim 2, characterized in that: One side of the A-type nut has a C-type assembly port reserved, and a C-type sponge block is installed in the C-type assembly port.

Citation Information

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