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CN202951817U - Precision forging machine hammer adjusting worm axial buffering device - Google Patents

Precision forging machine hammer adjusting worm axial buffering device Download PDF

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Publication number
CN202951817U
CN202951817U CN 201220635268 CN201220635268U CN202951817U CN 202951817 U CN202951817 U CN 202951817U CN 201220635268 CN201220635268 CN 201220635268 CN 201220635268 U CN201220635268 U CN 201220635268U CN 202951817 U CN202951817 U CN 202951817U
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CN
China
Prior art keywords
worm screw
nut
worm
forging machine
transmission shaft
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
CN 201220635268
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Chinese (zh)
Inventor
孟红
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Individual
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Individual
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Priority to CN 201220635268 priority Critical patent/CN202951817U/en
Application granted granted Critical
Publication of CN202951817U publication Critical patent/CN202951817U/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Abstract

The utility model provides a precision forging machine hammer adjusting worm axial buffering device which at least comprises a worm wheel, a sleeve, a nut, a screw rod, a worm, an inner spline sleeve and a transmission shaft. The device is characterized in that in a worm wheel driving part, the worm wheel is communicated with the sleeve which is fixedly connected with the nut through a pin shaft, the nut is fixed with the screw rod through threads, the screw rod is hinged with a pull rod in a precision forging machine hammer adjusting device, and the worm wheel, the sleeve, the nut, the screw rod and the precision forging machine hammer adjusting device are all fixedly arranged on a machine frame. In a worm wheel power input part, a shell is fixedly connected with the machine frame, the worm is arranged in an inner cavity of the shell and drives the worm wheel to rotate, an outer spline is arranged at the tail end of the worm and matched with the inner spline sleeve, the transmission shaft is arranged at the tail end of the shell, and the inner spline sleeve is sleeved outside the transmission shaft. Two bearings are arranged at the front end of the worm, the outer rings of the two bearings are fixed with a sliding sleeve which is connected with a guiding shaft fixed at the front end of an outer shell, a disc spring is sleeved on the guiding shaft, a gasket is arranged on each of two sides of the disc spring, and the disc spring is fixed through the nut. The disc spring is used for enabling the axial direction of the worm to be flexible.

Description

The precise forging machine tup is regulated the worm screw axial buffering device
Technical field
The utility model relates to the precise forging machine technical field, is that the precise forging machine tup is regulated the worm screw axial buffering device.
Background technology
Precise forging machine also likely forges workpiece when adjusting the tup drafts, and like this, the moment that tup contacts with workpiece, in the tup guiding mechanism, the motion of the parts such as pull bar and worm gear is stroboscopic motion, and now, power shaft and worm screw are to rotate continuously.If the worm screw axial location fixes, the motion of worm gear and worm screw will be inharmonious, thereby can't complete due action, and damage parts.
Summary of the invention
The purpose of this utility model is to provide a kind of precise forging machine tup and regulates the worm screw axial buffering device, by adopting the dish spring that the worm screw axial location is become, moves about, and, when worm gear is forced to stall, worm screw can play.
The technical solution of the utility model is that the precise forging machine tup is regulated the worm screw axial buffering device, which comprises at least turbine, cover, nut, screw rod, worm screw, inner spline housing and power transmission shaft, it is characterized in that: in the turbine drive part, turbine and cover conducting, cover is fixedly connected with by bearing pin with nut, nut and screw flight are fixed, and the pull bar in screw rod and precise forging machine hammer head adjustment device is hinged, and they all are fixedly installed on frame; In the turbo-power importation, housing is fixedly connected with frame, and the enclosure interior cavity is provided with worm screw, and worm screw drives turbine rotation, and the end of worm screw is external splines, with inner spline housing, coordinates, and power transmission shaft is arranged on the end of housing, and inner spline housing is sleeved on outside power transmission shaft; The worm screw front end is provided with two bearings, and outer ring and the sliding sleeve of two bearings are fixed, and sliding sleeve is connected with the axis of guide that is fixed on the shell front end; Guideway is equipped with the dish spring, and dish spring both sides are respectively arranged with a pad, and fix by nut.
Described two bearings are fixedly connected with by nut with sliding sleeve.
Be provided with baffle ring between described worm screw front end and sliding sleeve.
Characteristics of the present utility model are to move about by adopting the dish spring that the worm screw axial location is become, and because worm screw is rotated continuously always, when tup forges workpiece, and workpiece Contact worm gear stops operating, thereby forces worm screw axially-movable compact disc spring; When tup leaves workpiece, while hindering the power disappearance of worm gear rotation, the compression stress of dish spring release savings promotes worm screw play, with power transmission shaft, together with the rotation of worm screw, drives the worm gear rotation, and the rotation of acceleration worm gear, improves the tup opening speed.
The accompanying drawing explanation
Below in conjunction with embodiment, the utility model is further described.
Fig. 1 is the structural representation that the precise forging machine tup is regulated the worm screw axial buffering device.
In figure: 100, frame; 101, housing; 102, turbine; 103, worm screw; 104, inner spline housing; 105, power transmission shaft; 106, bearing; 107, sliding sleeve; 108, the axis of guide; 109, dish spring; 110, pad; 111, baffle ring; 201, cover; 202, nut; 203, screw rod.
The specific embodiment
Embodiment 1
The precise forging machine tup is regulated the worm screw axial buffering device, which comprises at least turbine 102, overlap 201, nut 202, screw rod 203, worm screw 103, inner spline housing 104 and power transmission shaft 105, in the turbine drive part, turbine 102 and cover 201 conductings, cover 201 is fixedly connected with by bearing pin with nut 202, nut 202 is fixed with screw rod 203 screw threads, and screw rod 203 is hinged with the pull bar in the precise forging machine hammer head adjustment device, and they all are fixedly installed on frame 100; In the turbo-power importation, housing 101 is fixedly connected with frame 100, housing 101 internal cavities are provided with worm screw 103, worm screw 103 drives turbine 102 and rotates, the end of worm screw 103 is external splines, with inner spline housing 104, coordinate, power transmission shaft 105 is arranged on the end of housing 101, and inner spline housing 104 is sleeved on outside power transmission shaft 105; It is fixing that worm screw 103 front ends are provided with outer ring and the sliding sleeve 107 of 106, two bearings 106 of two bearings, and sliding sleeve 107 is connected with the axis of guide 108 that is fixed on shell 101 front ends; The axis of guide 108 is set with dish spring 109, and dish spring 109 both sides are respectively arranged with a pad 110, and fix by nut.
Embodiment 2
As shown in Figure 1, carry out the adjusting of precise forging machine tup drafts by the pull bar drive adjusting device in the precise forging machine hammer head adjustment device.
At the precise forging machine tup, regulate in the worm screw axial buffering device, the screw rod 203 in the turbine drive part is by hinged fixing with pull bar, for pull bar provides power source.
Screw rod 203 outsides are set with nut 202, and nut 202 is fixed by bearing pin with cover 201, and turbine 102 is connected with cover 201, i.e. turbine 102 rotations drive cover 201 and rotate, thereby are passed to screw rod 203 by nut 202, and then drive the motion of pull bar.
In the turbo-power importation, turbine 102 by with worm screw 103 conductings, provide power by worm screw 103 for turbine 102.
Worm screw 103 is arranged on the internal cavities of housing 101, and the right-hand member of housing 101 is provided with power transmission shaft 105, and power transmission shaft 105 outsides are set with inner spline housing 104, and inner spline housing 104 coordinates with the external splines of worm screw 103 right-hand members realizes interlock.
The output of exterior power source directly and power transmission shaft 105 conductings, and then provides power source for worm screw 103.
In the left side of worm screw 103, be provided with 106, two bearings 106 of two bearings on housing 101 and fix by outer ring and sliding sleeve 107 screw threads, and install baffle ring 111 additional between worm screw 103 and sliding sleeve 107.
Sliding sleeve 107 is fixing with the axis of guide 108 of housing 101 left ends, and the locality that the axis of guide 108 is guaranteed worm screw 103 vertically.
Dish spring 109 is clamped and is passed through fastening nuts by two pads 110, is sleeved on outside the axis of guide 108.
During work, external power supply imports worm screw 103 by power transmission shaft 105 by power, and worm screw 103 drives turbine 102 motions, and then the pull bar of drive screw 203 and connecting screw rod 203, reaches the purpose of regulating the tup drafts and forging.
Owing to adopting dish spring 109 that worm screw 103 axial locations are become, move about, because worm screw 103 is rotated continuously always, when tup forges workpiece, and workpiece Contact worm gear 102 stops operating, thereby forces worm screw 103 axially-movables compact disc spring 109; When tup leaves workpiece, while hindering the power disappearance of worm gear 102 rotations, the compression stress that dish spring 109 discharges savings promotes worm screw 103 plays, with power transmission shaft 105, together with the rotation of worm screw 103, drives worm gear 102 rotations, and accelerate worm gear 102 and rotate, improve the tup opening speed.
The parts that the present embodiment does not describe in detail and structure belong to well-known components and common structure or the conventional means of the industry, here not narration one by one.

Claims (3)

1. the precise forging machine tup is regulated the worm screw axial buffering device, which comprises at least turbine (102), cover (201), nut (202), screw rod (203), worm screw (103), inner spline housing (104) and power transmission shaft (105), it is characterized in that: in the turbine drive part, turbine (102) and cover (201) conducting, cover (201) is fixedly connected with by bearing pin with nut (202), nut (202) is fixed with screw rod (203) screw thread, screw rod (203) is hinged with the pull bar in the precise forging machine hammer head adjustment device, and they all are fixedly installed on frame (100); In the turbo-power importation, housing (101) is fixedly connected with frame (100), housing (101) internal cavities is provided with worm screw (103), worm screw (103) drives turbine (102) and rotates, the end of worm screw (103) is external splines, with inner spline housing (104), coordinate, power transmission shaft (105) is arranged on the end of housing (101), and inner spline housing (104) is sleeved on outside power transmission shaft (105); Worm screw (103) front end is provided with two bearings (106), and the outer ring of two bearings (106) and sliding sleeve (107) are fixing, and sliding sleeve (107) is connected with the axis of guide (108) that is fixed on shell (101) front end; The axis of guide (108) is set with dish spring (109), and dish spring (109) both sides are respectively arranged with a pad (110), and fix by nut.
2. regulate the worm screw axial buffering device according to the precise forging machine tup described in claim 1, it is characterized in that: described two bearings (106) are fixedly connected with by nut with sliding sleeve (107).
3. regulate the worm screw axial buffering device according to the precise forging machine tup described in claim 1, it is characterized in that: between described worm screw (103) front end and sliding sleeve (107), be provided with baffle ring (111).
CN 201220635268 2012-11-27 2012-11-27 Precision forging machine hammer adjusting worm axial buffering device Expired - Lifetime CN202951817U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201220635268 CN202951817U (en) 2012-11-27 2012-11-27 Precision forging machine hammer adjusting worm axial buffering device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201220635268 CN202951817U (en) 2012-11-27 2012-11-27 Precision forging machine hammer adjusting worm axial buffering device

Publications (1)

Publication Number Publication Date
CN202951817U true CN202951817U (en) 2013-05-29

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Application Number Title Priority Date Filing Date
CN 201220635268 Expired - Lifetime CN202951817U (en) 2012-11-27 2012-11-27 Precision forging machine hammer adjusting worm axial buffering device

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102962388A (en) * 2012-11-27 2013-03-13 孟红 Buffer structure for adjusting axial direction of worm of hammerhead of precision forging machine

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102962388A (en) * 2012-11-27 2013-03-13 孟红 Buffer structure for adjusting axial direction of worm of hammerhead of precision forging machine

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Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20130529

Effective date of abandoning: 20170322

C25 Abandonment of patent right or utility model to avoid double patenting