CN216869846U - Spring force detects with adjusting assembly devices - Google Patents

Spring force detects with adjusting assembly devices Download PDF

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Publication number
CN216869846U
CN216869846U CN202220101564.4U CN202220101564U CN216869846U CN 216869846 U CN216869846 U CN 216869846U CN 202220101564 U CN202220101564 U CN 202220101564U CN 216869846 U CN216869846 U CN 216869846U
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CN
China
Prior art keywords
frame
spring
track
detection
spring elasticity
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Expired - Fee Related
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CN202220101564.4U
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Chinese (zh)
Inventor
李贤明
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Hangzhou Nanzhuang Metal Products Co ltd
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Hangzhou Nanzhuang Metal Products Co ltd
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Priority to CN202220101564.4U priority Critical patent/CN216869846U/en
Application granted granted Critical
Publication of CN216869846U publication Critical patent/CN216869846U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses an adjusting and assembling mechanism for spring elasticity detection, which comprises a detection frame and a spring assembling base mechanism, wherein an equipment protection cover is arranged above the front end of the detection frame, a spring elasticity detection track frame is arranged below the equipment protection cover, the spring assembling base mechanism is arranged below the spring elasticity detection track frame, a table top frame is arranged below the spring assembling base mechanism, and a positioning base is fixed at the bottom end of the table top frame. This spring force detects with adjusting assembly devices does benefit to and supports a plurality of springs and detects or single spring product, and the user can manually promote the drawing dish and drive the arrangement frame and slide through the spout rail, does benefit to and detects assembly devices to spring force and carries out the product type and adjust the detection, and it is more single to change assembly devices, carries out elasticity to a plurality of springs and detects, improves the mounting bracket defect in the spring assembly devices, does benefit to a plurality of springs and detects the arrangement.

Description

Spring force detects with adjusting assembly devices
Technical Field
The utility model relates to the technical field of spring elasticity detection and assembly mechanisms, in particular to an adjusting and assembly mechanism for spring elasticity detection.
Background
With the rapid development of the technological level, the durability fatigue test is performed on springs and serpentine springs to test the elastic force life of the springs and the durability life test evaluation is performed on the serpentine springs, repeated pressing tests can be performed according to preset pressure conditions, the cycle can be preset, the springs stop automatically when reaching a certain number, a testing machine needs to be connected with compressed air, an air compressor with the pressure of more than 2HP is used, unqualified alarm prompt and data display of a tested sample are achieved, the voltage is input by an insulation withstand voltage tester, and the spring elastic force detection assembly mechanism has adjustment defects.
Spring force on the market detects assembly devices adopts single detection assembly jig, is difficult to detect assembly devices to spring force and carries out product type regulation and detection, and assembly devices is more single, is difficult to carry out elasticity to a plurality of springs and detects, and there is the regulation defect in the mounting bracket among the spring assembly devices, is unfavorable for a plurality of springs to detect and settles.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an adjusting and assembling mechanism for detecting spring elasticity, which aims to solve the problems that the spring elasticity detecting and assembling mechanism in the market proposed in the background technology adopts a single detecting and assembling frame, the product type adjustment and detection of the spring elasticity detecting and assembling mechanism are difficult, the assembling mechanism is single, the elasticity detection of a plurality of springs is difficult, and the installing frame in the spring assembling mechanism has adjustment defects and is not beneficial to the detection and arrangement of the plurality of springs.
In order to achieve the purpose, the utility model provides the following technical scheme: the utility model provides a spring force detects with adjusting assembly devices, includes test rack and spring assembly base mechanism, the front end top of test rack is provided with the equipment protection casing, and the below of equipment protection casing installs spring force and detects the track frame, spring assembly base mechanism installs in the below that spring force detected the track frame, the below of spring assembly base mechanism is provided with the mesa frame, and the bottom mounting of mesa frame has a location base, the inside top that spring force detected the track frame is provided with spring force and detects the assembly rack, and spring force detects the inside of assembly rack and be provided with and tie the plate rail, the components of a whole that can function independently spring force detection frame is installed to the below of tying the plate rail.
Further, be threaded connection between test rack and the equipment protection casing, and be swing joint between equipment protection casing and the spring force detection assembly jig.
Furthermore, the spring elasticity detection assembly jig is embedded into the spring elasticity detection track frame and is movably installed in the spring elasticity detection track frame, and the spring elasticity detection track frame is movably connected with the spring assembly base mechanism.
Furthermore, the bolt plate frame and the split spring elasticity detection frame are in threaded connection, and the number of the split spring elasticity detection frames is three.
Further, spring force detects track frame and includes set bolt dish, components of a whole that can function independently track and outside track, spring force detects the inside upper and lower both sides of track frame and installs set bolt dish, spring force detects the inside distribution of track frame and installs components of a whole that can function independently track, and the outside track is installed to the orbital both sides of components of a whole that can function independently.
Furthermore, the three split rails are distributed and installed inside the external rail, and the external rail and the sleeve bolt disc form a buckling structure through the split rails.
Furthermore, spring assembly base mechanism is including placer, spout rail and pull dish, the inside of spring assembly base mechanism is provided with the placer, and the spout rail has been seted up to the both sides of placer, the below of placer is fixed with the pull dish.
Compared with the prior art, the utility model has the beneficial effects that: this spring force detects with adjusting assembly devices for a plurality of spring products are installed on three components of a whole that can function independently spring force testing stand, do benefit to a plurality of springs and detect the contrast assembly, do benefit to the manual three components of a whole that can function independently spring force testing stand that dismantles threaded connection of user simultaneously and tie the plate rail and carry out single assembly devices and change, help single spring product and three spring product to detect.
1. The utility model can ensure that the three split rails are distributed and installed inside the external rail, is favorable for penetrating the three split spring elasticity detection frames into the three split rails, can ensure that three spring products are subjected to embedded installation, detection and assembly, is favorable for a user to manually loosen the threads to disassemble the split rails and the toggle plate, and is favorable for embedding and installing a larger spring into the spring elasticity detection rail frame and the external rail to be subjected to detection and assembly.
2. According to the spring assembly mechanism, the placement frame can be slidably arranged in the spring assembly base mechanism through the sliding groove rail for supporting, multiple spring detection or single spring products can be supported, a user can manually push the drawing disc to drive the placement frame to slide through the sliding groove rail, product type adjustment and detection of the spring elasticity detection assembly mechanism can be facilitated, the assembly mechanism is changed to be single, elasticity detection is carried out on multiple springs, the defects of an installation frame in the spring assembly mechanism are overcome, and multiple spring detection and placement are facilitated.
Drawings
FIG. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic view of the internal structure of the spring force detection track frame according to the present invention;
fig. 3 is a schematic view of the internal structure of the spring mounting base mechanism of the present invention.
In the figure: 1. a detection frame; 2. an equipment shield; 3. a spring elasticity detection assembly jig; 301. a tray frame; 302. a split spring elasticity detection frame; 4. a spring elasticity detection track frame; 401. a bolt sleeving plate; 402. a split track; 403. an outer track; 5. a spring assembly base mechanism; 501. a placement frame; 502. a chute rail; 503. drawing the disc; 6. a table top frame; 7. and (6) positioning the base.
Detailed Description
As shown in fig. 1, the present invention provides a technical solution: the utility model provides a spring force detects with adjusting assembly devices, including testing jig 1 and spring assembly base mechanism 5, be provided with equipment protection casing 2 on the front end of testing jig 1, and the below of equipment protection casing 2 is installed spring force and is detected track frame 4, spring assembly base mechanism 5 is installed in the below that spring force detected track frame 4, the below of spring assembly base mechanism 5 is provided with mesa frame 6, and the bottom mounting of mesa frame 6 has location base 7, the inside top that spring force detected track frame 4 is provided with spring force and detects assembly frame 3, and the inside that spring force detected assembly frame 3 is provided with bolt plate frame 301, the below of bolt plate frame 301 is installed and is divided spring force and detect frame 302, be threaded connection between testing jig 1 and the equipment protection casing 2, and be swing joint between equipment protection casing 2 and the spring force detection assembly frame 3, detect assembly frame 3 swing joint on threaded connection's testing jig 1 and equipment protection casing 2 with spring force, with spring force on the testing jig 2 of spring force detection assembly frame 3 The spring elasticity detection assembly frame 3 is installed in the spring elasticity detection track frame 4 in an embedded and movable mode, the spring elasticity detection track frame 4 is movably connected with the spring assembly base mechanism 5, the spring elasticity detection track frame 4 is installed on the detection frame 1 and the equipment protection cover 2, the spring elasticity detection assembly frame 3 can be installed in the spring elasticity detection track frame 4 in an embedded and movable mode, the spring elasticity detection assembly frame 3 and the spring elasticity detection track frame 4 which are movably arranged can be manually adjusted by a user conveniently, spring products can be installed in the spring elasticity detection assembly frame 3 and the spring elasticity detection track frame 4, the bolt plate frame 301 and the split spring elasticity detection frame 302 are in threaded connection, the split spring elasticity detection frames 302 are three, and the three split spring elasticity detection frames 302 are installed on the detection frame 1 through the bolt plate frame 301 in a threaded connection mode, During equipment protection casing 2 and spring force detect track frame 4 for a plurality of spring products are installed on three components of a whole that can function independently spring force detection frame 302, do benefit to a plurality of springs and detect the contrast assembly, do benefit to user's manual dismantlement threaded connection's three components of a whole that can function independently spring force detection frame 302 simultaneously and bolt plate rail 301 and carry out single assembly devices and change, help single spring product and three spring product to detect.
As shown in fig. 2, the present invention provides a technical solution: an adjusting and assembling mechanism for spring elasticity detection is disclosed, wherein a spring elasticity detection track frame 4 comprises a toggle plate 401, a split track 402 and an external track 403, the toggle plate 401 is arranged at the upper side and the lower side of the interior of the spring elasticity detection track frame 4, the split track 402 is arranged at the interior of the spring elasticity detection track frame 4, the external track 403 is arranged at the two sides of the split track 402, the three split tracks 402 are arranged at the interior of the external track 403 in a distributed manner, the external track 403 and the toggle plate 401 form a buckling structure through the split track 402, the toggle plate 401 is respectively arranged at the upper side and the lower side of the spring elasticity detection track frame 4, the three split tracks 402 can be arranged at the interior of the external track 403 in a distributed manner, the three split spring elasticity detection frames 302 can be conveniently penetrated in the three split tracks 402, the three spring products can be embedded in the installation and detection assembly, and the split track 402 and the toggle plate 402 can be conveniently disassembled by manual screw loosening of a user, the large spring is embedded in the spring elasticity detection track frame 4 and the external track 403 for detection and assembly.
As shown in fig. 3, the present invention provides a technical solution: an adjusting and assembling mechanism for detecting spring elasticity is disclosed, wherein a spring assembly base mechanism 5 comprises a placement frame 501, a chute rail 502 and a drawing disc 503, the placement frame 501 is arranged in the spring assembly base mechanism 5, the chute rails 502 are arranged on two sides of the placement frame 501, the drawing disc 503 is fixed below the placement frame 501, the spring assembly base mechanism 5 is movably arranged between a spring elasticity detection rail frame 4 and a table top frame 6, the placement frame 501 can be slidably arranged in the spring assembly base mechanism 5 through the chute rails 502 for supporting, so that multiple spring detections or single spring products can be supported, a user can manually push the drawing disc 503 to drive the placement frame 501 to slide through the chute rails 502, the product type adjustment and detection can be favorably carried out on the spring elasticity detection assembling mechanism, the assembling mechanism is changed to be single, the spring elasticity detection can be carried out on multiple springs, and the mounting frame defects in the spring assembling mechanism can be improved, and a plurality of spring detection arrangement is facilitated.
In summary, when the adjusting and assembling mechanism for detecting spring force is used, the toggle plate 401 is respectively installed on the upper and lower sides of the spring force detection track frame 4, so that the three split tracks 402 are respectively installed inside the external track 403, the three split spring force detection frames 302 are conveniently penetrated into the three split tracks 402, the three spring products can be assembled and detected in an embedded manner, meanwhile, the split tracks 402 and the toggle plate 402 can be conveniently detached by manual screw loosening of a user, the spring assembly base mechanism 5 is movably installed between the spring force detection track frame 4 and the table top frame 6, the mounting frame 501 can be slidably installed in the spring assembly base mechanism 5 through the sliding groove rail 502 for supporting a plurality of spring detection or a single spring product, the user can manually push the pulling plate 503 to drive the mounting frame 501 to slide through the sliding groove rail 502, and the adjusting and detecting mechanism for detecting the type of the spring force is facilitated, install three components of a whole that can function independently spring force detection frame 302 at detection frame 1 through tieing disk rack 301 threaded connection, equipment protection casing 2 and spring force detect among the track frame 4, make a plurality of spring products install on three components of a whole that can function independently spring force detection frame 302, do benefit to a plurality of springs and detect contrast assembly, detect track frame 4 with spring force and install on detection frame 1 and equipment protection casing 2, can make spring force detect the 3 embedding movable mounting of assembly jig in spring force detects track frame 4, do benefit to the spring force that user's manual regulation activity settled and detect assembly jig 3 and spring force and detect track frame 4.

Claims (7)

1. An adjusting and assembling mechanism for detecting spring elasticity is characterized by comprising a detection frame (1) and a spring assembling base mechanism (5), wherein an equipment protective cover (2) is arranged above the front end of the detection frame (1), and a spring elasticity detection track frame (4) is arranged below the equipment protective cover (2), the spring assembly base mechanism (5) is arranged below the spring elasticity detection track frame (4), a table top frame (6) is arranged below the spring assembly base mechanism (5), a positioning base (7) is fixed at the bottom end of the table top frame (6), a spring elasticity detection assembly frame (3) is arranged at the top end inside the spring elasticity detection track frame (4), and a bolt disc rack (301) is arranged in the spring elasticity detection assembly rack (3), and a split spring elasticity detection frame (302) is arranged below the bolt disc frame (301).
2. The adjusting and assembling mechanism for detecting spring force according to claim 1, wherein: the detection frame (1) is in threaded connection with the equipment protection cover (2), and the equipment protection cover (2) is movably connected with the spring elasticity detection assembly frame (3).
3. The adjusting and assembling mechanism for detecting spring force according to claim 1, wherein: the spring elasticity detection assembly frame (3) is embedded into the spring elasticity detection track frame (4) and is movably connected with the spring assembly base mechanism (5), and the spring elasticity detection track frame (4) is movably installed in the spring elasticity detection track frame (4).
4. The adjusting and assembling mechanism for detecting spring force according to claim 1, wherein: the bolt plate frame (301) is in threaded connection with the split spring elasticity detection frame (302), and the number of the split spring elasticity detection frames (302) is three.
5. The adjusting and assembling mechanism for detecting spring force according to claim 1, wherein: spring elasticity detects track frame (4) including set bolt dish (401), components of a whole that can function independently track (402) and outside track (403), set bolt dish (401) are installed to both sides about the inside of spring elasticity detects track frame (4), spring elasticity detects the inside distribution of track frame (4) and installs components of a whole that can function independently track (402), and outside track (403) are installed to the both sides of components of a whole that can function independently track (402).
6. The adjusting and assembling mechanism for detecting spring force according to claim 5, wherein: the external track (403) and the toggle plate (401) form a buckling structure through the split track (402).
7. The adjusting and assembling mechanism for detecting spring force according to claim 1, wherein: spring assembly base mechanism (5) are including placeeing frame (501), spout rail (502) and pull dish (503), the inside of spring assembly base mechanism (5) is provided with placeeing frame (501), and the both sides of placeeing frame (501) have seted up spout rail (502), the below of placeeing frame (501) is fixed with pull dish (503).
CN202220101564.4U 2022-01-16 2022-01-16 Spring force detects with adjusting assembly devices Expired - Fee Related CN216869846U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220101564.4U CN216869846U (en) 2022-01-16 2022-01-16 Spring force detects with adjusting assembly devices

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220101564.4U CN216869846U (en) 2022-01-16 2022-01-16 Spring force detects with adjusting assembly devices

Publications (1)

Publication Number Publication Date
CN216869846U true CN216869846U (en) 2022-07-01

Family

ID=82150562

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220101564.4U Expired - Fee Related CN216869846U (en) 2022-01-16 2022-01-16 Spring force detects with adjusting assembly devices

Country Status (1)

Country Link
CN (1) CN216869846U (en)

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Granted publication date: 20220701