Summary of the invention
It is detected in view of this, the embodiment of the present application provides a kind of torsion test fixture as the auxiliary of torque force testing instrument
Equipment, for solving above-mentioned technical problem.
The embodiment of the present application provides a kind of torsion test fixture, is adapted for engagement with torque force testing instrument and carries out torsion detection.
Torsion test fixture includes pedestal, pillar and clamping jaw.Pedestal includes load-bearing part, the first activity orientation part and the second activity
Be set to locating piece, the first activity orientation part and the second activity orientation part relative spacing load-bearing part, the first activity orientation part with
The accommodating space for accommodating torque force testing instrument is formed between second activity orientation part.Pillar is fixed on load-bearing part.Clamping jaw can be slided
It is connected to pillar dynamicly.
Wherein, in some embodiments, clamping jaw includes installing part, first clamping member and the second clamping piece, installs part
It is slidably connected to pillar, first clamping member and the second clamping piece are all connected to installing part, and first clamping member and the
Two clamping pieces are oppositely arranged.
Wherein, in some embodiments, clamping jaw further includes guide rail, locating part and fishbolt, guide rail and limit
Part is connected to installing part, and first clamping member is slidably connected to guide rail;Fishbolt wears and is screwed together in locating part, and
It is held in first clamping member.
Wherein, in some embodiments, torsion test fixture further includes stop part and the first elastic component, backstop
Part is set to the one end of pillar far from pedestal, and the first elastic component is set between stop part and installing part.
Wherein, in some embodiments, torsion test fixture further includes the second elastic component, the setting of the second elastic component
Between pedestal and installing part.
Wherein, in some embodiments, pedestal further includes the first fixing piece and the second fixing piece, the first fixing piece with
Second fixing piece is arranged at intervals at load-bearing part along first direction side by side;First activity orientation part and the second activity orientation part are along second
Direction is spaced setting side by side, and second direction is perpendicular to first direction.
Wherein, in some embodiments, the first fixing piece is equipped with first and pushes against part, and the first abutting part is movably worn
In the first fixing piece;Second fixing piece is equipped with second and pushes against part, and the second abutting part is movably arranged in the second fixing piece.
Wherein, in some embodiments, pedestal further includes the first adjusting bolt and second adjusts bolt, the first activity
Locating piece is equipped with the first adjustment hole, and the first adjusting bolt is arranged in the first adjustment hole and connects load-bearing part, the second activity orientation part
Equipped with the second adjustment hole, the second adjusting bolt is arranged in the second adjustment hole and connects load-bearing part.
Wherein, in some embodiments, the first activity orientation part includes interconnecting piece and positioning region, and interconnecting piece is stacked and placed on
On load-bearing part, the first adjustment hole is opened in interconnecting piece, and the length direction of the first adjustment hole is extended along second direction;It is fixed
Position portion is connected to interconnecting piece.
Wherein, in some embodiments, the second activity orientation part includes interconnecting piece and positioning region, and interconnecting piece is stacked and placed on
On load-bearing part, the second adjustment hole is opened in interconnecting piece, and the length direction of the second adjustment hole is extended along second direction;It is fixed
Position portion is connected to interconnecting piece.
Wherein, in some embodiments, pedestal further includes the first handrail and the second handrail, and the first handrail is connected to
One activity orientation part, the second handrail are connected to the second activity orientation part.
In the torsion test fixture that the application embodiment provides, pedestal is used for fixing torque force testing instrument, clamping jaw
In holding element (such as torque screwdriver electric tool) to be detected, the structure of torsion test fixture is simple, easy to use.
During torsion detection, torque force testing instrument and element to be detected are fixed by mechanism member jointly, manual behaviour can be eliminated
Jitter error and interference are thought caused by work, keep the detection accuracy of torque force testing instrument higher.Meanwhile clamping jaw be movably connected in
Pillar, user can hold element to be detected by clamping jaw and move pushing, it can be achieved that quick smoothly adding towards torque force testing instrument
It carries, the process for detecting torsion is more convenient, easily operated, is conducive to improve detection efficiency.
Specific embodiment
In order to make those skilled in the art more fully understand application scheme, below in conjunction in the embodiment of the present application
Attached drawing, the technical scheme in the embodiment of the application is clearly and completely described.Obviously, described embodiment is only
Some embodiments of the present application, instead of all the embodiments.Based on the embodiment in the application, those skilled in the art are not having
Every other embodiment obtained under the premise of creative work is made, shall fall in the protection scope of this application.
Referring to Fig. 1, the application first embodiment provides a kind of torsion test fixture 100, for surveying as torsion
The aided-detection device of instrument is tried, to fix torque force testing instrument 200 (referring to fig. 2) and element to be detected in torsion detection process
300 (referring to fig. 2), to reduce error of the element to be detected in torsion detection process.Wherein, which is torsion
Electric tool (such as torque screwdriver), the torque force testing instrument are used to detect the torsion of the twisting force electric tool.
Torsion test fixture 100 includes pedestal 10 and fixed frame 30, and pedestal 30 is for fixing torque force testing instrument
200, fixed frame 30 is fixed on pedestal 10, and for installing element 300 to be detected.
Pedestal 10 include load-bearing part 12, the first fixation kit 14 and the second fixation kit 16, the first fixation kit 14 with
And second fixation kit 16 be all set on load-bearing part 12.
In the present embodiment, load-bearing part 12 is substantially plate-like, is used to carry torque force testing instrument 200.
First fixation kit 14 is set on load-bearing part 12 along first direction, is used to limit torque force testing instrument 200
Freedom of motion on one direction.In the present embodiment, the first fixation kit 14 is pushed against including the first fixing piece 141, first
Part 143, the second fixing piece 145 and second push against part 147.
First fixing piece 141 is fixed on load-bearing part 12, and the first abutting part 143 is movably arranged in first along first direction
Fixing piece 141.Second fixing piece 141 and 141 relative spacing of the first fixing piece are arranged, and the second fixing piece 143 and first is fixed
Part 141 is set side by side along first direction, is formed by accommodating space between the second fixing piece 143 and the first fixing piece 141 and is used for
Accommodate torque force testing instrument 200.Second abutting part 147 is movably arranged in the second fixing piece 145 along first direction.Second pushes against
Part 147, first push against part 143 for jointly clamp torque force testing instrument 200, by adjust first push against push against part 143 relative to
The installation site of first fixing piece 141, and/or adjust second and push against installation site of the part 147 relative to the second fixing piece 145,
The relative distance between the second abutting part 147 and the first abutting part 143 can be changed, to clamp or discharge torque force testing instrument
200.In some embodiments, the second abutting part 147 and the first abutting part 143 can be screw, bolt or pin etc..
Second fixation kit 16 is set on load-bearing part in a second direction, is used to limit torque force testing instrument 200 second
Freedom of motion on direction, wherein in the present embodiment, second direction is generally perpendicular to the first direction.In present embodiment
In, the second fixation kit 16 includes the first activity orientation part 161, the first regulating part 163, the second activity orientation part 165 and the
Two regulating parts 167.First activity orientation part 161 is connected to load-bearing part 12, and the first regulating part 163 is arranged in the first activity orientation part
161 and it is connected to load-bearing part 12;Second activity orientation part 161 is connected to load-bearing part 12 and opposite with the first activity orientation part 161
Interval setting, the second regulating part 167 are arranged in the second activity orientation part 165 and are connected to load-bearing part 12.
First activity orientation part 161 is set to one end of load-bearing part 12.In the present embodiment, the first activity orientation part
161 include interconnecting piece 1611 and positioning region 1613.Interconnecting piece 1611 is substantially plate-like, and interconnecting piece 1611 is substantially stacked and placed on and holds
In holder 12.Interconnecting piece 1611 is equipped with the first adjustment hole 1612, and the first adjustment hole 1612 runs through interconnecting piece 1611.First adjustment hole
1612 with the first regulating part 163 for matching, to adjust installation position of the first activity orientation part 161 relative to load-bearing part 12
It sets.In the present embodiment, the first adjustment hole 1612 substantially elongate holes, and the length direction of the first adjustment hole 1612 is along
Two directions are extended.Positioning region 1613 is substantially plate-like, and positioning region 1613 is connected to a side of interconnecting piece 1611, and big
It causes perpendicular to load-bearing part 12.First regulating part 163 is arranged in the first adjustment hole 1612 and is connected to load-bearing part 12, by adjusting the
The relative position of one regulating part 163 and interconnecting piece 1611, can adjust peace of the first activity orientation part 161 relative to load-bearing part 12
Holding position.
Second activity orientation part 165 is set to the one end of load-bearing part 12 far from the first activity orientation part 161, and the second activity
Interval is arranged side by side in a second direction for locating piece 165 and the first activity orientation part 161.In the present embodiment, the second activity is fixed
The structure of position part 165 is roughly the same with the structure of the first activity orientation part 161, and the second activity orientation part 165 equally includes connection
Portion 1651 and positioning region 1653.Interconnecting piece 1651 is substantially plate-like, and interconnecting piece 1651 is substantially stacked and placed on load-bearing part 12.Even
Socket part 1651 is equipped with the second adjustment hole 1652, and the second adjustment hole 1652 runs through interconnecting piece 1651.Second adjustment hole 1652 be used for
Second regulating part 167 matches, to adjust installation site of the second activity orientation part 165 relative to load-bearing part 12.In this implementation
In mode, the second adjustment hole 1652 substantially elongate holes, and the length direction of the second adjustment hole 1652 extends in a second direction
Setting.Positioning region 1653 is substantially plate-like, and positioning region 1653 is connected to a side of interconnecting piece 1651, and is approximately perpendicular to
Load-bearing part 12.The positioning region 1653 of second activity orientation part 165 is opposite with the positioning region 1613 of the first activity orientation part 161 to be set
It sets, accommodating space is formed by between positioning region 1653 and positioning region 1613 for accommodating torque force testing instrument 200.
Second regulating part 167 is arranged in the second adjustment hole 1652 and is connected to load-bearing part 12, by adjusting the second regulating part
167 with the relative position of interconnecting piece 1651, installation site of the second activity orientation part 165 relative to load-bearing part 12 can be adjusted,
To adjust the second activity orientation part 165 positioning region 1653 and the first activity orientation part 161 positioning region 1613 between away from
From, make the second fixation kit 16 clamp or release torque force testing instrument 200.
Further, in the present embodiment, the second fixation kit 16 further includes the first handrail 168 and the second handrail
169, the first handrail 168 is connected to the interconnecting piece 1611 of the first activity orientation part 161, and the second handrail 169 is connected to the second activity
The interconnecting piece 1651 of locating piece 165.First handrail 168 and the second handrail 169 are used to provide the user position of gripping, in favor of
User is mobile and adjusts the position of the first activity orientation part 161, the opposite load-bearing part 12 of the second activity orientation part 165.
Fixed frame 30 is arranged adjacent to the second fixing piece 145 of the first fixation kit 14.In the present embodiment, fixed frame 30
Including strut assemblies 32 and clamping jaw 34.Strut assemblies 32 are fixed on load-bearing part 12, and clamping jaw is connected to strut assemblies 32.
Strut assemblies 32 include pillar 321 and stop part 323.Pillar 321 is connected to load-bearing part 12 and is approximately perpendicular to
Load-bearing part 12.Pillar 321 is for installing clamping jaw 34.In the present embodiment, the quantity of pillar 321 is two, two pillars 321
It is generally perpendicularly connected to load-bearing part 12, and two pillars 321 are substantially parallel to one another.It is remote that stop part 323 is set to pillar 321
One end from load-bearing part 12, and the both ends of stop part 323 are connected to two pillars 321.
Further, in the present embodiment, for the ease of adjusting the distance between clamping jaw 34 and load-bearing part 12, pillar 32
It further include the first elastic component 325 and the second elastic component 327.First elastic component 325 be set to stop part 323 and clamping jaw 34 it
Between.In the present embodiment, the first elastic component 325 is helical spring, is sheathed on pillar 321, and for being 34 phase of clamping jaw
There is provided corresponding restoring force for the movement of pillar 321, (when e.g., clamping jaw 34 is moved towards load-bearing part 12, the first elastic component 325 is mentioned
For deviating from the back stretch of load-bearing part 12).It is appreciated that in other implementations, the first elastic component 325 or bullet
The structures such as property sleeve, air spring.Second elastic component 327 is set between clamping jaw 34 and load-bearing part 12.In the present embodiment,
Second elastic component 327 is helical spring, is sheathed on pillar 321, and for mentioning for clamping jaw 34 relative to the movement of pillar 321
For corresponding restoring force, (when e.g., clamping jaw 34 is moved towards load-bearing part 12, the second elastic component 327 provides returning away from load-bearing part 12
Multiple elastic force).It is appreciated that in other implementations, the second elastic component 327 or resilient sleeve, air spring etc.
Structure.
Clamping jaw 34 is movably connected in pillar 321, is used to hold element 300 to be detected.Clamping jaw 34 includes installing part
341 and clamping piece 343.In the present embodiment, for clamping piece 343 substantially in bulk, movable ground is set to pillar 321.
Clamping piece 343 includes first clamping member 3431 and the second clamping piece 3433, first clamping member 3431 and the second clamping piece
3433 are movably connected in installing part 341.First clamping member 3431 and the second clamping piece 3433 are substantially oppositely arranged, and are passed through
Change the distance between first clamping member 3431 and the second clamping piece 3433, clamping piece 343 can be made to clamp or discharge to be checked
Survey element 300.
Further, first clamping member 3431 is equipped with concave surface 3432, concave surface 3432 towards the side of the second clamping piece 3433
A dented space is formed, which clamps element 300 to be detected for matching with the second clamping piece 3433.In this reality
It applies in mode, the substantially partial cylindrical surface of concave surface 3432, to be adapted to the cylindrical periphery wall of element 300 to be detected.Second
Clamping piece 3433 is equipped with concave surface 3434 towards the side of first clamping member 3431, and concave surface 3434 and concave surface 3432 are opposite, and are formed
One dented space, concave surface 3434 clamp element 300 to be detected for matching with concave surface 3433.In the present embodiment, recessed
The substantially partial cylindrical surface of face 3434, to be adapted to the cylindrical periphery wall of element 300 to be detected.
Further, in the present embodiment, first clamping member 3431 and the second clamping piece 3433 pass through guide rail structure
Realize being slidably connected between installing part 341.Specifically, clamping jaw 34 further includes guide rail 345, locating part 347 and clamps
Bolt 349, guide rail 345 are fixed on installing part 341, first clamping member 3431 and the second clamping piece 3433 slideably with guide rail
It matches.Locating part 347 is fixedly connected on installing part 341, and fishbolt 347 wears and be screwed together in locating part 347, and clamps spiral shell
One end of bolt 347 is held in first clamping member 3431, screws togather depth relative to locating part 347 by adjusting fishbolt 347,
First clamping member 3431 can be made to be relatively distant from or close to the second clamping piece 3431, thus make clamping piece 343 clamp or discharge to
Detecting element 300.
Referring to Fig. 2, torsion test fixture 100 provided by the embodiments of the present application is when in use, torsion is surveyed first
Examination instrument 200 is placed in the accommodating space that the first fixation kit 14 and the second fixation kit 16 are collectively formed, by adjusting the
One, which pushes against part 143, second, pushes against part 147, the first activity orientation part 161 and the second activity orientation part 165, makes the first fixed group
Part 14 and the second fixation kit 16 fix torque force testing instrument 200 jointly.Secondly, element 300 to be detected is set to the first folder
Between gripping member 3431 and the second clamping piece 3433, makes element 300 to be detected in alignment with the test section 201 of torque force testing instrument 200, lead to
Fishbolt 349 is overregulated, makes first clamping member 3431 with the second clamping piece 3433 relatively close to be detected to hold jointly
Element 300.Then, it treats detecting element 300 and executes operation, element 300 to be detected drives clamping jaw 34 towards torque force testing instrument 200
Movement, until the torsion portion 301 (such as torque screws cutter head) of element 300 to be detected is matched with test section 201.Finally, starting
Torque force testing instrument 200 treats detecting element 300 and carries out torsion detection, after detection, treats detecting element 300 and executes operation,
Element 300 to be detected drives clamping jaw 34 to return back under the booster action of the first elastic component 325 and the second elastic component 327 initially
Position.
In above-mentioned torsion test fixture 100, by the fixed torque force testing instrument 200 of pedestal 10, and pass through clamping jaw 34
Element 300 to be detected is held, the structure fixed is simple, easy to use.It is common by mechanism member during torsion detection
Fixed torque force testing instrument 200 and element to be detected 300 can be eliminated and think jitter error and interference caused by manual operation,
Keep the detection accuracy of torque force testing instrument higher.Meanwhile clamping jaw 34 is movably connected in pillar, holds by clamping jaw 34 to be detected
Element 300 is moved towards torque force testing instrument 200 to be pushed, it can be achieved that quick smoothly loading, and the process for detecting torsion is more just
It is prompt, easily operated, be conducive to improve detection efficiency.
It is understood that in other implementations, clamping piece 343 can be the knot other than above-mentioned fixture block structure
Structure waits until for example, for three clamping jaw structures, five clamping jaw structures or can be able to be elastic holding structure.
In the description of the present application, it is to be understood that term " on ", "lower", "front", "rear", "left", "right", " inner "
Equal indicating positions or positional relationship are to be based on the orientation or positional relationship shown in the drawings, and are merely for convenience of description the application and simple
Change description, rather than the device or element of indication or suggestion meaning must have a particular orientation, with specific orientation construction with
Operation, therefore should not be understood as the limitation to the application.
In this application, unless otherwise specific regulation or restriction, term " installation ", " connected ", " connection ", " fixation " etc.
Term shall be understood in a broad sense.For example, it may be fixedly connected, may be a detachable connection or integrally connected;It can be machinery
Connection, is also possible to be electrically connected;It can be and be directly connected to, two members can also be also possible to indirectly connected through an intermediary
Connection inside part is also possible to only surface contact.It for the ordinary skill in the art, can be according to specific feelings
Condition understands the concrete meaning of above-mentioned term in this application.
In the description of this specification, reference term " one embodiment ", " some embodiments ", " example ", " specifically show
The description of example " or " some examples " etc. means specific features, structure, material or spy described in conjunction with this embodiment or example
Point is contained at least one embodiment or example of the application.In the present specification, schematic expression of the above terms are not
It must be directed to identical embodiment or example.Moreover, particular features, structures, materials, or characteristics described can be in office
It can be combined in any suitable manner in one or more embodiment or examples.In addition, without conflicting with each other, the skill of this field
Art personnel can tie the feature of different embodiments or examples described in this specification and different embodiments or examples
It closes and combines.
Finally, it should be noted that above embodiments are only to illustrate the technical solution of the application, rather than its limitations;Although
The application is described in detail with reference to the foregoing embodiments, those skilled in the art are when understanding: it still can be with
It modifies the technical solutions described in the foregoing embodiments or equivalent replacement of some of the technical features;And
These are modified or replaceed, do not drive corresponding technical solution essence be detached from each embodiment technical solution of the application spirit and
Range.