CN218382104U - Sliding frequency tester for window glass - Google Patents

Sliding frequency tester for window glass Download PDF

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Publication number
CN218382104U
CN218382104U CN202222145462.5U CN202222145462U CN218382104U CN 218382104 U CN218382104 U CN 218382104U CN 202222145462 U CN202222145462 U CN 202222145462U CN 218382104 U CN218382104 U CN 218382104U
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CN
China
Prior art keywords
support frame
rod
sleeve
base
cylinder
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Active
Application number
CN202222145462.5U
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Chinese (zh)
Inventor
侯辉
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.)
Dingzhou Shunhua Glassware Co ltd
Original Assignee
Dingzhou Shunhua Glassware Co ltd
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Application filed by Dingzhou Shunhua Glassware Co ltd filed Critical Dingzhou Shunhua Glassware Co ltd
Priority to CN202222145462.5U priority Critical patent/CN218382104U/en
Application granted granted Critical
Publication of CN218382104U publication Critical patent/CN218382104U/en
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Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a sliding frequency testing machine for casing window glass, which comprises a base arranged on a workbench, wherein two pairs of upright rods which are vertically arranged are arranged on the base; fixing bolts are arranged on the side surfaces of the vertical rods, a right support frame is fixedly connected between the pair of vertical rods on the right side, and end rods are arranged at the bottoms of the pair of vertical rods on the left side; a sleeve is arranged on the base on the right side of the end rod, threads are arranged in the sleeve, and a threaded rod is arranged in the sleeve; the middle part of the threaded rod is hinged with a left support frame, and a through hole is formed in the left support frame; a cylinder is arranged between the left support frame and the right support frame, and a connecting hook is arranged at the end part of a telescopic rod of the cylinder; the cylinder is connected with a vent pipe and a connecting wire, and the other end of the connecting wire is connected with a switch; the left support frame is provided with a counter. The utility model has the advantages of small volume, low manufacturing cost, convenient operation and high reliability of test.

Description

Sliding frequency tester for window glass
Technical Field
The utility model relates to a glass detects technical field, more specifically relates to a suit window glass push-and-pull frequency testing machine.
Background
The window has the advantages that the window does not occupy extra space no matter in the opening state or the closing state, and the structure is simpler.
The window glass has different quality and different push-pull times. The sliding frequency of the high-quality window glass is high, and the phenomena of puckery feeling, large noise and even no sliding can occur when the sliding frequency of the poor-quality window glass is lower. Thus, one important criterion for testing the quality of a glazing is the frequency with which the glazing is pushed or pulled. There is no such product on the market, and therefore, a sliding frequency tester for window glass is needed.
SUMMERY OF THE UTILITY MODEL
The utility model discloses the technical problem that needs to solve provides a suit window glass push-and-pull frequency testing machine to solve the problem in the background art.
In order to solve the technical problem, the utility model adopts the following technical proposal.
The sliding frequency testing machine for the window-sleeving glass comprises a base arranged on a workbench, wherein two pairs of vertical rods are vertically arranged on the base; the side surfaces of the upright posts are respectively provided with a fixing bolt for fixing the window glass of the sleeve, a right supporting frame is fixedly connected between the pair of upright posts positioned on the right side, and the bottoms of the pair of upright posts positioned on the left side are provided with horizontal end rods arranged along the front-back direction; a sleeve extending in the left-right direction and horizontally arranged is arranged on the base on the right side of the end rod, a thread is arranged in the sleeve, and a threaded rod is arranged in the sleeve in a matching manner; the middle part of the threaded rod is hinged with a left support frame, and a through hole is formed in the left support frame; a cylinder is arranged between the left support frame and the right support frame, and a connecting hook is arranged at the end part of a telescopic rod of the cylinder; the air cylinder is connected with an air pipe and a connecting wire for controlling the air cylinder to work, and the other end of the connecting wire is connected with a switch; and a counter for calculating the stretching times of the air cylinder is arranged on the left support frame.
Further optimize technical scheme, right branch strut left side is provided with the platform that is used for placing the cylinder, and the high setting of highly cooperating through-hole of platform.
Further optimize technical scheme, be provided with the support horizontal pole that the level set up, left and right directions extend on the base.
According to the technical scheme, the vertical rods for supporting the sleeve window glass from the side face are arranged beside the supporting cross rods, and the clamps for clamping the sleeve window glass are arranged on the vertical rods.
Further optimizing the technical scheme, but support horizontal pole below is connected with height-adjusting's screw rod.
Further optimize technical scheme, but the below of end rod is connected with height-adjusting's screw rod.
Due to the adoption of the technical scheme, the utility model has the following technical progress.
The utility model provides a pair of suit window glass push-and-pull frequency testing machine comes the process of imitative people's hand push-and-pull glass through cylinder push-and-pull suit window glass, and cylinder push-and-pull in-process suit window glass atress is balanced, has guaranteed the authenticity of simulation in the experimentation. The utility model has the advantages of small volume, low manufacturing cost, convenient operation and high reliability of the test.
Drawings
Fig. 1 is a schematic structural view of the present invention;
wherein: 1. end rod, 2, base, 3, pole setting, 4, support horizontal pole, 51, right branch strut, 52, left branch strut, 6, cylinder, 7, montant, 8, fixing bolt, 9, connecting hook, 10, counter, 11, breather pipe, 12, switch, 13, connecting wire, 14, sleeve pipe, 15, threaded rod.
Detailed Description
The present invention will be described in further detail with reference to the drawings and specific embodiments.
A sliding frequency testing machine for window-covering glass is shown in a combined figure 1 and comprises an end rod 1, a base 2, a vertical rod 3, a supporting cross rod 4, a right supporting frame 51, a left supporting frame 52, a cylinder 6, a vertical rod 7, a fixing bolt 8, a connecting hook 9, a counter 10, a vent pipe 11, a switch 12, a connecting wire 13, a sleeve 14 and a threaded rod 15.
The base 2 is rectangular and horizontally arranged on the workbench. Two pairs of upright rods 3 which are vertically arranged are arranged on the base 2, and the upright rods 3 are respectively arranged at the feet of the base 2.
All be provided with fixing bolt 8 on the side of pole setting 3 for fix the suit window glass when the experiment.
A right support frame 51 is fixedly connected between the pair of upright rods 3 positioned on the right side, end rods 1 are arranged at the bottoms of the pair of upright rods 3 positioned on the left side, and the end rods 1 are arranged horizontally in the front-back direction. The lower part of the end rod 1 is connected with a screw rod with adjustable height so as to be convenient to adjust according to the size of the window glass.
A sleeve 14 is arranged on the base 2 on the right side of the end rod 1, the sleeve 14 extends in the left-right direction and is horizontally arranged, threads are arranged in the sleeve 14, and a threaded rod 15 is arranged in the sleeve 14. The middle part of threaded rod 15 articulates there is left support frame 52, and has seted up the through-hole on the left support frame 52.
An air cylinder 6 is arranged between the left support frame 52 and the right support frame 51, and a connecting hook 9 is arranged at the end part of an expansion rod of the air cylinder 6. The cylinder 6 is connected with a vent pipe 11 and a connecting line 13 for controlling the operation of the cylinder 6, and the other end of the connecting line 13 is connected with a switch 12.
The left support frame 52 is provided with a counter 10 for counting the expansion times of the air cylinder 6.
The left side of the right support frame 51 is provided with a platform for placing the cylinder 6, and the height of the platform is matched with the height of the through hole, so that the cylinder 6 is horizontally arranged between the through hole and the platform.
The base 2 is provided with a horizontally arranged supporting cross rod 4, and the supporting cross rod 4 extends along the left and right directions and is used for supporting the window sleeving glass. The lower part of the supporting cross rod 4 is connected with a screw rod with adjustable height so as to be convenient to adjust according to the size of the window glass.
A vertical rod 7 for supporting the sleeving window glass from the side is arranged beside the supporting cross rod 4, and a clamp for clamping the sleeving window glass is arranged on the vertical rod 7.
The utility model discloses when in actual use, according to the size of cover window glass and the position control of cylinder 6 support horizontal pole 4, the height of end rod 1, fix cover window glass through clip on the montant 7 and the fixing bolt 8 in the pole setting 3. A connecting hook 9 of a telescopic rod of the air cylinder 6 is connected with a window lock of the window-sleeving glass, a switch 12 is pressed, and the telescopic rod of the air cylinder 6 moves to drive the glass to slide; meanwhile, the counter 10 counts the number of times the glass slides and displays it. When the phenomena of puckery, large noise and even no sliding occur, the switch 12 is pressed to stop pushing and pulling, and the number of times displayed by the counter 10 at this moment is the upper limit of the normal pushing and pulling frequency of the set of window glass.

Claims (6)

1. The sliding frequency testing machine of the set window glass is characterized in that: comprises a base (2) arranged on a workbench, wherein two pairs of upright rods (3) which are vertically arranged are arranged on the base (2); fixing bolts (8) for fixing the window glass of the sleeve are arranged on the side surfaces of the upright rods (3), a right support frame (51) is fixedly connected between the pair of upright rods (3) on the right side, and end rods (1) which are arranged in the front-back direction and are horizontal are arranged at the bottoms of the pair of upright rods (3) on the left side; a sleeve (14) which extends in the left-right direction and is horizontally arranged is arranged on the base (2) on the right side of the end rod (1), threads are arranged in the sleeve (14), and a threaded rod (15) is arranged in the sleeve (14); the middle part of the threaded rod (15) is hinged with a left support frame (52), and a through hole is formed in the left support frame (52); a cylinder (6) is arranged between the left support frame (52) and the right support frame (51), and a connecting hook (9) is arranged at the end part of a telescopic rod of the cylinder (6); the air cylinder (6) is connected with an air pipe (11) and a connecting line (13) for controlling the air cylinder (6) to work, and the other end of the connecting line (13) is connected with a switch (12); the left support frame (52) is provided with a counter (10) used for calculating the stretching times of the air cylinder (6).
2. The sliding frequency testing machine for a window covering glass according to claim 1, wherein: the left side of the right supporting frame (51) is provided with a platform for placing the air cylinder (6), and the height of the platform is matched with that of the through hole.
3. The sliding frequency testing machine for a window covering glass according to claim 1, wherein: the base (2) is provided with a horizontally arranged supporting cross rod (4) extending in the left-right direction.
4. A sliding frequency testing machine for a window covering glass according to claim 3, wherein: a vertical rod (7) for supporting the sleeving window glass from the side is arranged beside the supporting cross rod (4), and a clamp for clamping the sleeving window glass is arranged on the vertical rod (7).
5. The sliding frequency testing machine for a window set glass according to claim 4, wherein: the height-adjustable screw is connected below the supporting cross rod (4).
6. A sliding frequency testing machine for a window covering glass according to claim 1, wherein: the lower part of the end rod (1) is connected with a screw rod with adjustable height.
CN202222145462.5U 2022-08-16 2022-08-16 Sliding frequency tester for window glass Active CN218382104U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222145462.5U CN218382104U (en) 2022-08-16 2022-08-16 Sliding frequency tester for window glass

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222145462.5U CN218382104U (en) 2022-08-16 2022-08-16 Sliding frequency tester for window glass

Publications (1)

Publication Number Publication Date
CN218382104U true CN218382104U (en) 2023-01-24

Family

ID=84968001

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222145462.5U Active CN218382104U (en) 2022-08-16 2022-08-16 Sliding frequency tester for window glass

Country Status (1)

Country Link
CN (1) CN218382104U (en)

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