A bench vise, also known as a bench vice, is a versatile and essential tool used in woodworking, metalworking, and various other applications. It is designed to securely hold an object in place while you work on it, providing stability and allowing you to perform tasks with precision and control.
A bench vise typically consists of two parallel jaws, one fixed and the other movable, attached to a sturdy frame that can be clamped or bolted to a workbench or other flat surface. The jaws are often made of hardened steel and have serrated or grooved surfaces to provide a firm grip on the workpiece.
To use a bench vise, you would open the jaws by turning the vise handle or operating the vise mechanism, place the workpiece between the jaws, and then tighten the vise by turning the handle in the opposite direction. This action brings the jaws closer together, clamping the workpiece securely in place. The movable jaw can be adjusted along the length of the vise to accommodate different-sized objects.
Bench vises come in various sizes and designs, with different maximum opening capacities and throat depths, to suit different needs and types of work. Some bench vises also have additional features such as swivel bases, allowing you to rotate the vise to different angles, or pipe jaws for gripping cylindrical objects.
Overall, a bench vise is an indispensable tool for many workshops and provides a reliable way to hold objects securely during various tasks, such as sawing, drilling, filing, sanding, or assembly work.
Bench vise 8K
Bench vise design By Solidworks 8K
A vice or vise (American English) is a mechanical apparatus used to secure an object to allow work to be performed on it. Vises have two parallel jaws, one fixed and the other movable, threaded in and out by a screw and lever.
#design #binding #tightening
1- The second video in a series of #binding tightening design videos within the program #SolidWorks
2- This video includes drawing the second piece, which is the sliding jaw
3- The three-dimensional figure shows the sliding jaw to be designed
4- We choose the level #front plane
5- Draw a rectangle with a coordinate principle
6- Draw another rectangle
7- We draw a dotted line from the middle of the rectangle rib to the center and make it vertical to make the rectangle central
8- Determine the length of 70 mm
9- The width is 19 mm
10- The length of the vertical rectangle is 38 mm
11- Its width is 35.3 mm
12- From feature # choose Trim # to delete unwanted parts
13- From #feature we choose #Extrude Boss
14- Mid plane #65 mm
15- Choose the surface of the lateral rectangle
16- We draw a horizontal line, then a vertical line
17- Then a horizontal line
18- We define the dimensions
19- Choose #3point Arc to draw an arc
20- Set the dimensions of the center of the arc
21- Determine the radius of R=35mm
22- From #feature we choose #Extrude Boss
23- Choose #Up to surface
24- We define the surface of the corresponding rectangle
25- Choose the lateral surface of the rectangle
26- We draw a diagonal line
27- Then a horizontal line, then a horizontal line
28- Adjust the dimensions
29- Make the shape closed by selecting the outer edges
30- From #feature we choose #Extrude cut
31- We choose through all
32- Choose the front surface of the rectangle
33- We draw a central dotted line
34- Determine the dimension of 55.5 mm
35- From its end we draw a circle
36- Draw a horizontal straight line
37- We specify a distance of 1.6 mm from the edge
38- The diameter of the circle is 35 mm
39- From feature # choose Trim # to delete unwanted parts
40- From #feature we choose #Extrude Boss
41- Choose #Up to surface
42- Choose the front surface of the rectangle
43- Draw a circle
44- We draw a central dotted line
45- The diameter of the circle is 15 mm
46- Set the dimensions of the center of the circle
47- From #feature we choose #Extrude cut
48- We choose through all
49- We prepare the diameter of the circle to be 19 mm
50- From #feature we choose #Hole wizard
51- From Hole type # we choose the type
52- Under #End condition, select Bind with a value of 11.1 mm
53- And within #thread we specify 57.15 mm
54- Under position we specify the locations of the holes
55- It is the center of the circle
56- From Annotations we choose details
57- We know the choice of seeing sparks
58- Choose the front surface of the rectangle
59- Draw a rectangle
60- We set a reset
61- From #feature we choose #Extrude cut
62- We choose through all
63- From feature we choose Mirror
64- We define the right plane around which the reflection will take place
65- Then we select the desired part Boss cut 3
66- Draw a dotted horizontal line
67- And a vertical line
68- We adjust their dimensions
69- This is to determine the locations of the spark holes
70- From #feature we choose #Hole wizard
Under size we choose 1/4 -20
Under #End condition, select Bind with a value of 16 mm
Under position we specify the locations of the holes
We choose the bottom surface of the shape
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