AU2016100631A4 - A nonslip crow bar device with pivot - Google Patents

A nonslip crow bar device with pivot Download PDF

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Publication number
AU2016100631A4
AU2016100631A4 AU2016100631A AU2016100631A AU2016100631A4 AU 2016100631 A4 AU2016100631 A4 AU 2016100631A4 AU 2016100631 A AU2016100631 A AU 2016100631A AU 2016100631 A AU2016100631 A AU 2016100631A AU 2016100631 A4 AU2016100631 A4 AU 2016100631A4
Authority
AU
Australia
Prior art keywords
mentioned
nonslip
bar
pivot
bearing bar
Prior art date
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.)
Ceased
Application number
AU2016100631A
Inventor
Z.Gang Meng
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Hangzhou Juxiang Locks Co Ltd
Original Assignee
Hangzhou Juxiang Locks Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Hangzhou Juxiang Locks Co Ltd filed Critical Hangzhou Juxiang Locks Co Ltd
Application granted granted Critical
Publication of AU2016100631A4 publication Critical patent/AU2016100631A4/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Abstract

Abstract of descriptions This utility model discloses a nonslip crow bar device with pivot includes bearing bar. Mounting sleeve is set up on the top of the bearing bar mentioned close to its left end. The mounting sleeve mentioned is upward sloping. Handlebar is set up in the mounting sleeve mentioned. Screw No.1 is arranged between the handlebar and the mounting sleeve mentioned. Jack is set up at the left end of the bearing bar mentioned. Motion bar is arranged in the jack mentioned. Screw fixing the motion bar mentioned is set up at the front end of the bearing bar mentioned. More than two spherical pivot slots are distributed evenly at the bottom of the motion bar mentioned. T-shaped support is set up below the motion bar mentioned. Spherical pivot fitting with the spherical pivot slot is set up on the top of the support mentioned. Nonslip teeth are distributed evenly on the surface of the guide slope mentioned. Nonslip teeth and the bearing bar mentioned are integrated. There are more than two nonslip teeth mentioned. This device has simple structure and low costs. Nonslip teeth can prevent slipping of goods pried. It is suitable for promotion for use. Attached figure of descriptions Fig. 1

Description

Descriptions A nonslip crow bar device with pivot
Technical field
This utility model involves a nonslip crow bar device with pivot. Background technology
Crow bar is a common hardware tool. Goods can be pried via crow bar. However, crow bars in existing technologies have a simple structure. It is necessary to use a pivot in the use process, while it is troublesome to seek for a pivot.
Invention content
The technical problem to be solved by this utility model is to provide a nonslip crow bar device with pivot. When this device is used, the adjustment of pivot position can be completed through the movement of motion bar so as to realize the adjustment of fitting angle of bearing bar for the convenience of prying goods. Nonslip teeth can prevent slipping of goods pried.
To solve problems above, this utility model adopts the following technical scheme: A nonslip crow bar device with pivot includes bearing bar. Mounting sleeve is set up on the top of the bearing bar mentioned close to its left end. The mounting sleeve mentioned is upward sloping. Handlebar is set up in the mounting sleeve mentioned. Screw No.1 is arranged between the handlebar and the mounting sleeve mentioned. Jack is set up at the left end of the bearing bar mentioned. Motion bar is arranged in the jack mentioned. Screw fixing the motion bar mentioned is set up at the front end of the bearing bar mentioned. More than two spherical pivot slots are distributed evenly at the bottom of the motion bar mentioned. T-shaped support is set up below the motion bar mentioned. Spherical pivot fitting with the spherical pivot slot is set up on the top of the support mentioned. Guide slope is set up on the top of the bearing rod mentioned close to the right end. Nonslip teeth are distributed evenly on the surface of the guide slope mentioned. Nonslip teeth and the bearing bar mentioned are integrated. There are more than two nonslip teeth mentioned. This device has simple structure and low costs.
Preferably, stop block is set up on the top of the bearing bar mentioned close to its left end. The stop block and the bearing bar mentioned have an integrated structure.
Preferably, the jack and the motion bar mentioned have transition fit.
Preferably, the end of the motion bar mentioned away from the bearing bar mentioned has spherical transition.
Beneficial effect of this utility model: when this device is used, the adjustment of pivot position can be completed through the movement of motion bar so as to realize the adjustment of fitting angle of bearing bar for the convenience of prying goods. Nonslip teeth can prevent slipping of goods pried. This device has simple structure and low costs and is suitable for promotion for use.
Descriptions of attached figure
To illustrate implementation example of this utility model or technical proposal in existing technologies more clearly, attached figures to be used in implementation example or descriptions of existing technologies are briefly introduced below. Obviously, attached figures described below are only some implementation examples of this utility model. Common technical personnel in this field can obtain other attached figures according to these attached figures without creative work.
Fig.1 is the structural schematic diagram of this utility model.
Detailed implementation way
Preferable implementation example of this utility model is illustrated below in combination with attached figures so that advantages and features of this utility model can be understood by technical personnel in this field more easily and the protection scope of this utility model can be defined more clearly. A nonslip crow bar device with pivot shown in fig. 1 includes bearing bar 1. Mounting sleeve 2 is set up on the top of the bearing bar 1 mentioned close to its left end. The mounting sleeve 2 mentioned is upward sloping. Handlebar 3 is set up in the mounting sleeve 2 mentioned. Screw No.1 301 is arranged between the handlebar 3 and the mounting sleeve 2 mentioned. Jack (not shown in the figure) is set up at the left end of the bearing bar 1 mentioned. Motion bar 4 is arranged in the jack mentioned. Screw 401 fixing the motion bar 4 mentioned is set up at the front end of the bearing bar 1 mentioned. More than two spherical pivot slots 411 are distributed evenly at the bottom of the motion bar 4 mentioned. T-shaped support 5 is set up below the motion bar 4 mentioned. Spherical pivot 511 fitting with the spherical pivot slot 411 is set up on the top of the support 5 mentioned. Guide slope 121 is set up on the top of the bearing rod 1 mentioned close to the right end. Nonslip teeth 122 are distributed evenly on the surface of the guide slope 121 mentioned. Nonslip teeth 122 and the bearing bar 1 mentioned are integrated. There are more than two nonslip teeth 122 mentioned.
Abetter implementation example in this utility model: stop block 131 is set up on the top of the bearing bar 1 mentioned close to its left end. The stop block 131 and the bearing bar 1 mentioned have an integrated structure. A better implementation example in this utility model: the jack and the motion bar 4 mentioned have transition fit. A better implementation example in this utility model: the end of the motion bar 4 mentioned away from the bearing bar 1 mentioned has spherical transition.
Beneficial effect of this utility model: when this device is used, the adjustment of pivot position can be completed through the movement of motion bar so as to realize the adjustment of fitting angle of bearing bar for the convenience of prying goods. Nonslip teeth can prevent slipping of goods pried. This device has simple structure and low costs and is suitable for promotion for use.
The above shows and describes basic principle, main features and advantages of this utility model. Technical personnel in this industry should know that this utility model is not limited by the implementation example above. The implementation example and descriptions above only describe principles of this utility model. This utility model will have various changes and improvements without violating the spirit and scope of this utility model. Such changes and improvements will fall into the scope of this utility model requiring protection. The scope of protection required by this utility model is defined by the claim attached and its equivalent.

Claims (4)

  1. Claim
    1. A nonslip crow bar device with pivot characterized by the following: it includes bearing bar. Mounting sleeve is set up on the top of the bearing bar mentioned close to its left end. The mounting sleeve mentioned is upward sloping. Handlebar is set up in the mounting sleeve mentioned. Screw No.1 is arranged between the handlebar and the mounting sleeve mentioned. Jack is set up at the left end of the bearing bar mentioned. Motion bar is arranged in the jack mentioned. Screw fixing the motion bar mentioned is set up at the front end of the bearing bar mentioned. More than two spherical pivot slots are distributed evenly at the bottom of the motion bar mentioned. T-shaped support is set up below the motion bar mentioned. Spherical pivot fitting with the spherical pivot slot is set up on the top of the support mentioned. Guide slope is set up on the top of the bearing rod mentioned close to the right end. Nonslip teeth are distributed evenly on the surface of the guide slope mentioned. Nonslip teeth and the bearing bar mentioned are integrated. There are more than two nonslip teeth mentioned.
  2. 2. Nonslip crow bar device with pivot mentioned according to claim 1 is characterized by the following: stop block is set up on the top of the bearing bar mentioned close to its left end. The stop block and the bearing bar mentioned have an integrated structure.
  3. 3. Nonslip crow bar device with pivot mentioned according to claim 1 is characterized by the following: the jack and the motion bar mentioned have transition fit. Claim
  4. 4. Nonslip crow bar device with pivot mentioned according to claim 1 is characterized by the following: the end of the motion bar mentioned away from the bearing bar mentioned has spherical transition.
AU2016100631A 2016-03-09 2016-05-17 A nonslip crow bar device with pivot Ceased AU2016100631A4 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201620178390.6U CN205367634U (en) 2016-03-09 2016-03-09 Crow bar device with fulcrum and antiskid
CN2016201783906 2016-03-10

Publications (1)

Publication Number Publication Date
AU2016100631A4 true AU2016100631A4 (en) 2016-06-30

Family

ID=56266000

Family Applications (1)

Application Number Title Priority Date Filing Date
AU2016100631A Ceased AU2016100631A4 (en) 2016-03-09 2016-05-17 A nonslip crow bar device with pivot

Country Status (2)

Country Link
CN (1) CN205367634U (en)
AU (1) AU2016100631A4 (en)

Also Published As

Publication number Publication date
CN205367634U (en) 2016-07-06

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Legal Events

Date Code Title Description
FGI Letters patent sealed or granted (innovation patent)
MK16 Application refused