{"id":100148,"date":"2026-02-15T20:21:05","date_gmt":"2026-02-15T20:21:05","guid":{"rendered":"https:\/\/vibromera.eu\/?post_type=calculator&#038;p=100148"},"modified":"2026-07-12T19:18:43","modified_gmt":"2026-07-12T19:18:43","slug":"machining-time-calculator","status":"publish","type":"calculator","link":"https:\/\/vibromera.eu\/ms\/calculators\/machining-time-calculator\/","title":{"rendered":"Machining Cutting-Feed Time Worksheet"},"content":{"rendered":"\n<script type=\"application\/ld+json\">{\"@context\":\"https:\/\/schema.org\",\"@type\":\"WebApplication\",\"name\":\"Machining Cutting-Feed Time Worksheet\",\"description\":\"Calculate ideal cutting-feed time from a documented feed-path distance and either linear feed rate or turning feed per revolution at constant spindle speed,with SI and inch units and explicit cycle-time exclusions.\",\"url\":\"https:\/\/vibromera.eu\/calculators\/machining-time-calculator\/\",\"applicationCategory\":\"Engineering 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h1{font-size:clamp(28px,4vw,44px);line-height:1.08;margin:8px 0 12px}.mt-lead{font-size:17px;line-height:1.65;color:var(--sec);max-width:920px}.mt-badges{display:flex;flex-wrap:wrap;gap:8px;margin-top:18px}.mt-badge{padding:6px 10px;border-radius:99px;background:#fff;border:1px solid var(--b);font-size:12px;font-weight:700}.mt-main{padding:30px 38px}.mt-panel{border:1px solid var(--b);border-radius:14px;padding:24px}.mt-panel h2{font-size:22px;margin:0 0 8px}.mt-note{font-size:14px;line-height:1.55;color:var(--sec)}.mt-grid{display:grid;grid-template-columns:1fr 1fr;gap:18px;margin-top:20px}.mt-field{display:flex;flex-direction:column;gap:7px}.mt-field[hidden]{display:none}.mt-wide{grid-column:1\/-1}.mt-label{font-size:13px;font-weight:800}.mt-help{font-size:12px;line-height:1.4;color:var(--mut)}.mt-input,.mt-select,.mt-textarea{font:inherit;width:100%;border:1px solid #bcb8af;border-radius:9px;padding:11px 12px;background:#fff;color:var(--ink)}.mt-textarea{min-height:92px;resize:vertical}.mt-input:focus,.mt-select:focus,.mt-textarea:focus{outline:3px solid rgba(49,95,136,.17);border-color:var(--mt)}.mt-error{min-height:22px;color:var(--red);font-size:14px;font-weight:800;margin:14px 0 0}.mt-results{margin-top:20px;border:1px solid var(--b);border-radius:12px;overflow:hidden}.mt-results[hidden]{display:none}.mt-rhead{background:var(--mtl);padding:18px 20px}.mt-rtitle{font-size:20px;font-weight:900;color:var(--mt)}.mt-rsub{font-size:13px;color:var(--sec);margin-top:4px}.mt-rgrid{display:grid;grid-template-columns:repeat(3,1fr);gap:1px;background:var(--bl)}.mt-card{background:#fff;padding:18px}.mt-card h3{font-size:12px;text-transform:uppercase;letter-spacing:.06em;color:var(--mut);margin:0 0 8px}.mt-val{font-size:20px;font-weight:900;overflow-wrap:anywhere}.mt-unit{font-size:12px;color:var(--mut);margin-top:4px}.mt-alert{border-left:4px solid var(--amb);background:var(--yel);padding:14px 16px;margin-top:18px;font-size:14px;line-height:1.55}.mt-section{border-top:1px solid var(--bl);padding:28px 38px}.mt-section h2{font-size:24px;margin:0 0 10px}.mt-section h3{font-size:18px;margin:22px 0 8px}.mt-section p,.mt-section li{font-size:14px;line-height:1.65;color:var(--sec)}.mt-table-wrap{overflow-x:auto;border:1px solid var(--b);border-radius:10px}.mt-table{width:100%;border-collapse:collapse;min-width:760px}.mt-table th,.mt-table td{padding:12px 13px;text-align:left;vertical-align:top;border-bottom:1px solid var(--bl);font-size:13px;line-height:1.45}.mt-table th{background:var(--alt);font-weight:900}.mt-table tr:last-child td{border-bottom:0}.mt-code{font-family:ui-monospace,SFMono-Regular,Consolas,monospace}.mt-footer{padding:20px 38px;background:var(--alt);font-size:12px;color:var(--mut)}.mt-footer a,.mt-section a{color:var(--mt)}@media(max-width:700px){.mt-hero,.mt-main,.mt-section{padding-left:20px;padding-right:20px}.mt-grid,.mt-rgrid{grid-template-columns:1fr}.mt-wide{grid-column:auto}.mt-panel{padding:18px}.mt-table{min-width:680px}}<\/style>\n<div class=\"mt-wrap\"><header class=\"mt-hero\"><div class=\"mt-kicker\">Ideal cutting-feed time \u00b7 not total cycle time<\/div><h1>Machining Cutting-Feed Time Worksheet<\/h1><p class=\"mt-lead\">Divide a documented feed-path distance by a documented linear feed,or use feed per revolution multiplied by constant spindle speed for a turning traverse. The worksheet estimates time spent moving at the entered cutting feed only.<\/p><div class=\"mt-badges\"><span class=\"mt-badge\">Linear feed \/ constant-RPM turning<\/span><span class=\"mt-badge\">mm or inch<\/span><span class=\"mt-badge\">No feed recommendations<\/span><span class=\"mt-badge\">No rapid or setup time<\/span><\/div><\/header>\n<main class=\"mt-main\"><section class=\"mt-panel\"><h2>Document one repeated feed-motion case<\/h2><p class=\"mt-note\">Select units and model first. Changing either selector reinterprets\u2014not converts\u2014numbers already entered. If traverses have different lengths or feeds,calculate them separately and sum their times.<\/p><form id=\"mt-form\" novalidate><div class=\"mt-grid\"><div class=\"mt-field\"><label class=\"mt-label\" for=\"mt-units\">Input\/output units<\/label><select class=\"mt-select\" id=\"mt-units\"><option value=\"\">Select\u2026<\/option><option value=\"si\">Metric:mm,mm\/min,mm\/rev<\/option><option value=\"us\">Inch:in,in\/min,in\/rev<\/option><\/select><\/div><div class=\"mt-field\"><label class=\"mt-label\" for=\"mt-mode\">Feed model<\/label><select class=\"mt-select\" id=\"mt-mode\"><option value=\"\">Select\u2026<\/option><option value=\"linear\">Documented linear feed rate<\/option><option value=\"turning\">Turning feed\/rev \u00d7 constant r\/min<\/option><\/select><\/div><div class=\"mt-field\"><label class=\"mt-label\" for=\"mt-length\">Primary feed-path distance per traverse (<span class=\"mt-u-length\">unit<\/span>)<\/label><input class=\"mt-input\" id=\"mt-length\" inputmode=\"decimal\" autocomplete=\"off\"><span class=\"mt-help\">Use actual tool-centre\/feed-direction path length,not merely a drawing dimension.<\/span><\/div><div class=\"mt-field\"><label class=\"mt-label\" for=\"mt-extra\">Additional distance at the same cutting feed per traverse (<span class=\"mt-u-length\">unit<\/span>)<\/label><input class=\"mt-input\" id=\"mt-extra\" inputmode=\"decimal\" autocomplete=\"off\"><span class=\"mt-help\">Enter0 if none. Include only approach\/overtravel executed at the entered feed;exclude rapid positioning.<\/span><\/div><div class=\"mt-field\"><label class=\"mt-label\" for=\"mt-count\">Number of identical feed traverses<\/label><input class=\"mt-input\" id=\"mt-count\" inputmode=\"numeric\" autocomplete=\"off\"><span class=\"mt-help\">Every counted traverse must use the same total distance and feed.<\/span><\/div><div class=\"mt-field\" id=\"mt-linear-field\"><label class=\"mt-label\" for=\"mt-vf\">Documented linear feed v<sub>f<\/sub> (<span id=\"mt-u-vf\">unit\/min<\/span>)<\/label><input class=\"mt-input\" id=\"mt-vf\" inputmode=\"decimal\" autocomplete=\"off\"><span class=\"mt-help\">Use the programmed or measured path feed applicable to this motion.<\/span><\/div><div class=\"mt-field\" id=\"mt-fn-field\"><label class=\"mt-label\" for=\"mt-fn\">Turning feed per revolution f<sub>n<\/sub> (<span id=\"mt-u-fn\">unit\/rev<\/span>)<\/label><input class=\"mt-input\" id=\"mt-fn\" inputmode=\"decimal\" autocomplete=\"off\"><\/div><div class=\"mt-field\" id=\"mt-rpm-field\"><label class=\"mt-label\" for=\"mt-rpm\">Constant spindle speed n (r\/min)<\/label><input class=\"mt-input\" id=\"mt-rpm\" inputmode=\"decimal\" autocomplete=\"off\"><span class=\"mt-help\">Do not use this model where CSS or another control mode changes n during the traverse.<\/span><\/div><div class=\"mt-field mt-wide\"><label class=\"mt-label\" for=\"mt-source\">Assumption and source record<\/label><textarea class=\"mt-textarea\" id=\"mt-source\" maxlength=\"1800\" placeholder=\"Drawing\/CAM path and included\/excluded segments;programmed feed mode and value;tool\/workpiece\/machine data source;spindle mode;number of identical traverses;feed overrides or measured cycle evidence\"><\/textarea><\/div><\/div><p class=\"mt-error\" id=\"mt-error\" role=\"alert\"><\/p><\/form>\n<section class=\"mt-results\" id=\"mt-results\" hidden data-json=\"\"><div class=\"mt-rhead\"><div class=\"mt-rtitle\">Ideal cutting-feed time<\/div><div class=\"mt-rsub\" id=\"mt-summary\">\u2014<\/div><\/div><div class=\"mt-rgrid\"><article class=\"mt-card\"><h3>Total cutting-feed time<\/h3><div class=\"mt-val\" id=\"mt-r-total\">\u2014<\/div><div class=\"mt-unit\" id=\"mt-r-total-s\">\u2014<\/div><\/article><article class=\"mt-card\"><h3>Time per identical traverse<\/h3><div class=\"mt-val\" id=\"mt-r-each\">\u2014<\/div><div class=\"mt-unit\">distance\/effective feed<\/div><\/article><article class=\"mt-card\"><h3>Feed distance per traverse<\/h3><div class=\"mt-val\" id=\"mt-r-distance\">\u2014<\/div><div class=\"mt-unit\" id=\"mt-r-distance-si\">\u2014<\/div><\/article><article class=\"mt-card\"><h3>Effective linear feed<\/h3><div class=\"mt-val\" id=\"mt-r-feed\">\u2014<\/div><div class=\"mt-unit\" id=\"mt-r-feed-si\">\u2014<\/div><\/article><article class=\"mt-card\"><h3>Identical traverses<\/h3><div class=\"mt-val\" id=\"mt-r-count\">\u2014<\/div><div class=\"mt-unit\">no automatic allowance for return motion<\/div><\/article><article class=\"mt-card\"><h3>Model<\/h3><div class=\"mt-val\" id=\"mt-r-model\">\u2014<\/div><div class=\"mt-unit\">general engineering arithmetic;not an ISO formula<\/div><\/article><\/div><\/section>\n<div class=\"mt-alert\"><strong>Decision boundary:<\/strong> this is not total machining or cycle time. It excludes rapid moves,acceleration\/deceleration,corner\/feed limiting,entry ramps not included in distance,retracts,dwells,spindle acceleration,tool changes,indexing,probing,loading,unloading,inspection,feed overrides,interruptions and setup. Use CAM\/controller simulation or measured cycles for production planning.<\/div><\/section><\/main>\n<section class=\"mt-section\"><h2>Equations and units<\/h2><div class=\"mt-table-wrap\"><table class=\"mt-table\"><thead><tr><th>Model<\/th><th>Equation<\/th><th>Required interpretation<\/th><\/tr><\/thead><tbody><tr><td>Distance per traverse<\/td><td class=\"mt-code\">L<sub>m<\/sub>=L+L<sub>add,feed<\/sub><\/td><td>Both distances are travelled at the same entered cutting feed. Rapid clearance is excluded.<\/td><\/tr><tr><td>Documented linear feed<\/td><td class=\"mt-code\">t<sub>each<\/sub>=L<sub>m<\/sub>\/v<sub>f<\/sub><\/td><td>Distance and feed must use the same length unit;result is minutes.<\/td><\/tr><tr><td>Turning at constant speed<\/td><td class=\"mt-code\">v<sub>f<\/sub>=f<sub>n<\/sub>n; t<sub>each<\/sub>=L<sub>m<\/sub>\/(f<sub>n<\/sub>n)<\/td><td>f<sub>n<\/sub> is length\/rev and n is rev\/min. Constant n and a single feed direction\/path are assumed.<\/td><\/tr><tr><td>Repeated identical traverses<\/td><td class=\"mt-code\">t<sub>total<\/sub>=N t<sub>each<\/sub><\/td><td>N is a positive integer. For unequal segments use t<sub>total<\/sub>=\u03a3L<sub>i<\/sub>\/v<sub>i<\/sub>.<\/td><\/tr><\/tbody><\/table><\/div><p>Internal working distances use millimetres. Exact conversion:1 international inch=25.4mm. Minutes and seconds use exactly60s\/min.<\/p><\/section>\n<section class=\"mt-section\"><h2>What was corrected<\/h2><p>The former page called the result \u201ctotal machining time\u201d while correctly admitting elsewhere that rapid positioning,tool changes and idle time were absent. The result is now consistently labelled cutting-feed time. \u201cApproach distance\u201d was also said to include rapid clearance,but the code added all of it at the cutting feed. The replacement input accepts only additional distance actually traversed at that same feed.<\/p><p>Negative additional distance,negative or fractional passes,numeric prefixes such as <span class=\"mt-code\">200mm<\/span> and silent fallback to one pass were formerly accepted. Strict whole-value validation now rejects them. Fixed 2\u20135mm guidance,pre-filled examples,quick presets and generic advice to increase speed\/feed were removed because safe cutting data depend on the workpiece,tool,engagement,holder,fixture,machine,coolant and production objective.<\/p><\/section>\n<section class=\"mt-section\"><h2>Source and applicability boundary<\/h2><p><a href=\"https:\/\/cdn.sandvik.coromant.com\/files\/sitecollectiondocuments\/services\/metal-cutting-e-learning\/formulas-and-definitions\/formulas-and-deinitions-for-turning-metric-enu.pdf\" target=\"_blank\" rel=\"noopener\">Sandvik Coromant,Formulas and definitions for turning\u2014metric<\/a> publishes <span class=\"mt-code\">T<sub>c<\/sub>=l<sub>m<\/sub>\/(f<sub>n<\/sub>n)<\/span> with l<sub>m<\/sub> in mm,f<sub>n<\/sub> in mm\/rev,n in r\/min and T<sub>c<\/sub> in minutes. <a href=\"https:\/\/cdn.sandvik.coromant.com\/files\/sitecollectiondocuments\/services\/metal-cutting-e-learning\/formulas-and-definitions\/formulas-and-deinitions-for-milling-metric-enu.pdf\" target=\"_blank\" rel=\"noopener\">Its milling metric sheet<\/a> defines table feed <span class=\"mt-code\">v<sub>f<\/sub>=f<sub>z<\/sub>nz<sub>c<\/sub><\/span>;the inch sheet uses the equivalent inch\/min convention.<\/p><p><a href=\"https:\/\/www.kennametal.com\/is\/en\/resources\/engineering-calculators\/miscellaneous\/speed-and-feed.html\" target=\"_blank\" rel=\"noopener\">Kennametal&#8217;s official speed\/feed calculator<\/a> states that theoretical calculations are for planning and actual results vary;its guidance also ties suitable data to the material,tool,machine and workholding. This worksheet therefore does not recommend a feed or cutting speed.<\/p><p>The <a href=\"https:\/\/msvs-dei.vlabs.ac.in\/mem103\/Unit5lesson3.html\" target=\"_blank\" rel=\"noopener\">Manufacturing Processes-I Virtual Lab published example<\/a> uses a150mm turning length,0.4mm\/rev and500r\/min,obtaining <span class=\"mt-code\">t=150\/(0.4\u00d7500)=0.75min<\/span>. That example is included in the independent test set. The arithmetic is general engineering kinematics,not a formula attributed to ISO.<\/p><h3>Use a different model when<\/h3><ul><li>Turning uses constant surface speed or RPM changes materially during facing,contouring or diameter change.<\/li><li>Toolpath segments have different feeds,feed limits,arc corrections,ramps or controller look-ahead effects.<\/li><li>Multiple passes have different distances,feeds or entry\/exit motions.<\/li><li>The desired result is quote\/cycle time rather than ideal motion time at cutting feed.<\/li><\/ul><\/section>\n<footer class=\"mt-footer\">\u00a92024\u20132026 <a href=\"https:\/\/vibromera.eu\/\">Vibromera<\/a> \u00b7 Scientific review July2026<\/footer><\/div>\n<script>(function(){'use strict';function $(id){return document.getElementById(id)}var INMM=25.4;function num(s){s=String(s).trim();if(!s||s.includes('.')&&s.includes(',')||!\/^[+-]?(?:\\d+(?:[.,]\\d*)?|[.,]\\d+)(?:[eE][+-]?\\d+)?$\/.test(s))return NaN;var n=Number(s.replace(',','.'));return Number.isFinite(n)&&Math.abs(n)<=1e15?n:NaN}function out(x,d){return x.toLocaleString('en-US',{minimumFractionDigits:d,maximumFractionDigits:d})}function clear(){['mt-r-total','mt-r-total-s','mt-r-each','mt-r-distance','mt-r-distance-si','mt-r-feed','mt-r-feed-si','mt-r-count','mt-r-model','mt-summary'].forEach(function(id){$(id).textContent='\u2014'});$('mt-results').hidden=true;$('mt-results').dataset.json=''}function fail(m){clear();$('mt-error').textContent=m}function labels(u){var lu=u==='us'?'in':u==='si'?'mm':'unit';document.querySelectorAll('.mt-u-length').forEach(function(e){e.textContent=lu});$('mt-u-vf').textContent=lu+'\/min';$('mt-u-fn').textContent=lu+'\/rev'}function fields(mode){$('mt-linear-field').hidden=mode!=='linear';$('mt-fn-field').hidden=mode!=='turning';$('mt-rpm-field').hidden=mode!=='turning'}function calc(){var u=$('mt-units').value,mode=$('mt-mode').value,source=$('mt-source').value.trim(),raw={length:$('mt-length').value,extra:$('mt-extra').value,count:$('mt-count').value,vf:$('mt-vf').value,fn:$('mt-fn').value,rpm:$('mt-rpm').value};labels(u);fields(mode);var started=u||mode||source||Object.keys(raw).some(function(k){return raw[k].trim()});if(!started){$('mt-error').textContent='';clear();return}if(!['si','us'].includes(u)||!['linear','turning'].includes(mode)||!source){fail('Select units and a feed model,and document the path,feed,traverse and machine-data sources.');return}var length=num(raw.length),extra=num(raw.extra),count=num(raw.count),feedRaw=mode==='linear'?num(raw.vf):num(raw.fn),rpm=mode==='turning'?num(raw.rpm):null;if(![length,extra,count,feedRaw].every(Number.isFinite)||mode==='turning'&&!Number.isFinite(rpm)){fail('Enter every required value as one complete finite number;use either decimal point or decimal comma,not both.');return}if(!(length>0&&length<=1e9&&extra>=0&&extra<=1e9&&Number.isInteger(count)&&count>=1&&count<=1e6&&feedRaw>0&&feedRaw<=1e9&&(mode==='linear'||rpm>0&&rpm<=1e7))){fail('Values are outside the worksheet bounds:positive path and feed,non-negative additional feed-distance,integer traverses1\u20131,000,000 and positive constant r\/min for turning.');return}var lf=u==='us'?INMM:1,L=length*lf,A=extra*lf,feed=mode==='linear'?feedRaw*lf:feedRaw*lf*rpm,distance=L+A,each=distance\/feed,total=each*count,seconds=total*60;if([L,A,feed,distance,each,total,seconds].some(function(x){return!Number.isFinite(x)})||!(each>0&&total>0)){fail('The result exceeds the worksheet numerical range.');return}var unit=u==='us'?'in':'mm',distanceOut=u==='us'?distance\/INMM:distance,feedOut=u==='us'?feed\/INMM:feed;$('mt-error').textContent='';$('mt-summary').textContent=(mode==='linear'?'documented linear feed':'turning feed\/rev \u00d7 constant r\/min')+';'+out(count,0)+' identical traverse'+(count===1?'':'s')+';cutting-feed motion only.';$('mt-r-total').textContent=out(total,9)+' min';$('mt-r-total-s').textContent=out(seconds,6)+' s \u00b7 '+out(total\/60,9)+' h';$('mt-r-each').textContent=out(each,9)+' min';$('mt-r-distance').textContent=out(distanceOut,9)+' '+unit;$('mt-r-distance-si').textContent=out(distance,9)+' mm working value';$('mt-r-feed').textContent=out(feedOut,9)+' '+unit+'\/min';$('mt-r-feed-si').textContent=out(feed,9)+' mm\/min working value';$('mt-r-count').textContent=out(count,0);$('mt-r-model').textContent=mode==='linear'?'L\/vf':'L\/(fn\u00b7n)';$('mt-results').dataset.json=JSON.stringify({feed_distance_each_mm:distance,effective_feed_mm_min:feed,time_each_min:each,total_cutting_feed_time_min:total,total_cutting_feed_time_s:seconds,traverses:count,mode:mode});$('mt-results').hidden=false}$('mt-form').addEventListener('input',calc);$('mt-form').addEventListener('change',calc);calc()})();<\/script>\n","protected":false},"excerpt":{"rendered":"<p>Kalkulator masa pemesinan dalam talian percuma. Kirakan masa kitaran untuk penggilingan (t=L\/vf) dan pemutaran (t=(L+pendekatan)\/(f\u00d7n)). Masukkan panjang potongan, kadar suapan atau suapan\/putaran dan RPM.<\/p>","protected":false},"featured_media":0,"template":"","meta":{"ai_generated_summary":"","footnotes":""},"categories":[],"tags":[],"class_list":["post-100148","calculator","type-calculator","status-publish","hentry"],"_links":{"self":[{"href":"https:\/\/vibromera.eu\/ms\/wp-json\/wp\/v2\/calculator\/100148","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/vibromera.eu\/ms\/wp-json\/wp\/v2\/calculator"}],"about":[{"href":"https:\/\/vibromera.eu\/ms\/wp-json\/wp\/v2\/types\/calculator"}],"version-history":[{"count":3,"href":"https:\/\/vibromera.eu\/ms\/wp-json\/wp\/v2\/calculator\/100148\/revisions"}],"predecessor-version":[{"id":102485,"href":"https:\/\/vibromera.eu\/ms\/wp-json\/wp\/v2\/calculator\/100148\/revisions\/102485"}],"wp:attachment":[{"href":"https:\/\/vibromera.eu\/ms\/wp-json\/wp\/v2\/media?parent=100148"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/vibromera.eu\/ms\/wp-json\/wp\/v2\/categories?post=100148"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/vibromera.eu\/ms\/wp-json\/wp\/v2\/tags?post=100148"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}